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      <title>Class for SSCC 1703 - Group VIA by SHEELA CHANDREN</title>
      <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA</link>
      <description>As usual, please write down the summary for Group VIA (Oxygen &amp; Sulfur) here and any questions that you have.</description>
      <language>en-us</language>
      <pubDate>2021-01-04 15:48:26 UTC</pubDate>
      <lastBuildDate>2021-01-13 06:10:33 UTC</lastBuildDate>
      <webMaster>hello@padlet.com</webMaster>
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         <title>NUR QISTINA IZZATI BINTI MOHD FITRINAZRIN POON</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054412884</link>
         <description><![CDATA[<div><strong><mark>Group VIA </mark></strong><br><strong><em>Oxygen ,Sulphur, Selenium, Tellurium, Polonium.</em></strong></div><ul><li><em>V.e = 6</em></li><li><em>Metallic character increases down the group</em></li><li><em>IE decreases down the group due to the decreased shielding effect along Se,Te and Po.</em></li></ul><div><strong><em><mark>OXYGEN</mark></em></strong></div><ul><li><em>Types of compounds form : </em><strong><em>ionic</em></strong><em> : Group IA and IIA , </em><strong><em>covalent</em></strong><em> : most of elements. </em></li><li><em>Electronegativity is very high (sec highest in periodic table)</em></li><li><em>Forming strong p-pi p-pi bonds with itself , carbon and nitrogen.</em></li><li><em>Exist in atmospheric gaseous (21%）， in water ,anionic mineral in CO2,NO3,SO4 and Oxides.</em></li><li><em>Form 2 allotropes : O2 n O3.</em></li><li><em>Preparation : </em><strong><em>Commercial</em></strong><em> : from fractional distillation of liquid air to separate O2</em><strong><em>. Lab</em></strong><em> : Heating of KCLO3 ,decomposition of H2O2 and electrolysis of water uses graphite as electrodes (anode)</em></li><li><em>Colourless gas and in liquid form: blue liquid</em></li><li><em>Paramagnetic with 2 unpaired electrons.</em></li><li><em>Reactive@ elevated temperature n combine directly with most of elements except noble gas.</em></li><li><em>Producing " fuel cell" ,carbohydrate, respiration, and welding industries.</em></li></ul><div><strong>OZONE</strong></div><ul><li><em>Got resonance structure</em></li><li><strong><em>FORMATION OF OZONE</em></strong><em><br>1. O (g) + O2 → O</em><em><sub>3 </sub></em><em>(g)<br>2. Photochemical decomposition of NO</em><em><sub>2 </sub></em><em><br>NO</em><em><sub>2</sub></em><em> (g)  NO (g) + O (g)<br>O (g) + O</em><em><sub>2</sub></em><em> → O</em><em><sub>3 </sub></em><em>(g)<br>3. Industrial production of O</em><em><sub>3</sub></em><em> <br>    3O</em><em><sub>2</sub></em><em> (g)  2O</em><em><sub>3 </sub></em><em>(g)</em></li><li><strong><em>CHARACTERISTICS</em></strong><em><br>* Blue gaseous in colour<br>* Dark blue liquid<br>* Strong oxidation agent <br>* Smell</em></li><li><strong><em>OZONE TEST</em></strong><em><br>Use</em><strong><em> Mercury, Hg . </em></strong><em>The</em><strong><em> bright</em></strong><em> shining Mercury will</em><strong><em> become tarnish</em></strong><em> and starting to stick to the surface of glass in the presence of Ozone.</em></li><li><strong><em>USES</em></strong><em><br>* Deodorize air, purify water, and treat industrial wastes.<br>* It atmosphere ,O3 prevent high energy UV frm reaching earth.<br>* Detergent.<br>* Preservative.</em></li><li><em>Compounds of Oxygen : oxide (paramagnetic) ,peroxide(diamagnetic) and superoxide (paramagnetic).</em></li><li><em>Properties of oxides compounds.</em></li><li><em>Oxidation increases, acidity increases.</em></li><li><strong><em>HYDRIDES OF OXYGEN</em></strong></li></ul><div><em>        * H2O-WATER  </em></div><ul><li><em>polar molecule ,act as ligand,amphoteric character</em></li><li><em>Structure of </em><strong><em>H2O2</em></strong><em> : open book</em></li><li><em>H2O2 : colourless syrupy liquid strong oxidizing agent also act as reducing agent.</em></li><li><em>Uses : bleaching agent for wool,hair and teeth , antiseptic.</em></li></ul><div><strong><em><mark>SULPHUR</mark></em></strong></div><ul><li><em>Exist as free element ,S (brimstone)</em></li><li><em>Ores :pyrite (FeS),Galena(PbS) and sphalerite (ZnS)</em></li><li><em>S8 molecule ( crown shape)</em></li><li><em>Extraction of S : FRASCH PROCESS </em></li><li>Odourless, tasteless,light <em>yellow,non-metallic solid</em></li><li><em>Not readily wetted or dissolved by H2O</em></li><li><em>Flammable and burn in air with blue flame.</em></li><li><em>Uses : produce H2SO4 , vulcanization of natural rubber , bleaching of dried fruits and paper products.</em></li><li><em> Reaction with O2 (combustion)</em></li><li><em>Heating w metal bcomes metal sulfide</em></li><li><em>Rection w conc acid</em></li></ul><div><strong><em><mark>Compounds of S</mark></em></strong></div><ul><li><em>Metallic sulfide (ionic sulfide)</em></li><li><em>Non-metallic ( covalent sulfide)</em></li><li><em>Oxides of Sulfur</em></li><li><em>SO2 &amp; SO3</em></li><li><em>H2SO3 *H2SO4</em></li></ul><div><strong><em><mark>Uses of Sulphuric acid , H</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><strong><em><mark>SO</mark></em></strong><strong><em><mark><sub>4</sub></mark></em></strong></div><div><em>* Fertilizers : </em><strong><em>(NH</em></strong><strong><em><sub>4</sub></em></strong><strong><em>)</em></strong><strong><em><sub>2</sub></em></strong><strong><em>SO</em></strong><strong><em><sub>4 </sub></em></strong></div><div><em>* Produce conc. </em><strong><em>HCl </em></strong></div><div><em>NaCl (s) + H</em><em><sub>2</sub></em><em>SO</em><em><sub>4 →</sub></em><em> Na</em><em><sub>2</sub></em><em>SO</em><em><sub>4 </sub></em><em>(aq)+</em><strong><em> HCl(l)</em></strong></div><div><em>* Chemicals for detergent, ether and ester </em><br><strong><em><mark>-CONTACT/TOUCH PROCESS</mark></em></strong></div><div><strong>Halides of Sulfur </strong></div><div><strong>EXIST</strong></div><div><em>* X= F &amp; Cl</em></div><div><em>* X= Br (only a few)</em></div><div><strong>NOT EXIST</strong></div><div><em>* X= I </em></div><div><strong>Disulfur dihalide,S</strong><strong><sub>2</sub></strong><strong>X</strong><strong><sub>2</sub></strong></div><div><em>* 2S(s) + X</em><em><sub>2</sub></em><em> → S</em><em><sub>2</sub></em><em>X</em><em><sub>2</sub></em><em>(l) ; </em><strong><em>X=F,Cl,Br</em></strong></div><div><em>* S</em><em><sub>2</sub></em><em>F</em><em><sub>2</sub></em><em> - gas</em></div><div><em>*S</em><em><sub>2</sub></em><em>Cl</em><em><sub>2</sub></em><em> - yellow liquid                </em></div><div><em>*S</em><em><sub>2</sub></em><em>Br</em><em><sub>2</sub></em><em> - unstable liquid structure </em>   </div><div><strong><em><mark>S</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><strong><em><mark>X</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><strong><em><mark> </mark></em></strong><br><strong>sp</strong><strong><sup>3</sup></strong><strong> hybridization</strong><br><strong><mark> Hydrolysis in water  </mark></strong><strong><br>  * </strong><strong><em>S</em></strong><strong><em><sub>2</sub></em></strong><strong><em>X</em></strong><strong><em><sub>2</sub></em></strong><strong><em> + H</em></strong><strong><em><sub>2</sub></em></strong><strong><em>O → HX + H</em></strong><strong><em><sub>2</sub></em></strong><strong><em>SO</em></strong><strong><em><sub>4</sub></em></strong><strong><em> + S↓ </em></strong><strong><br></strong><strong><em>*</em></strong><strong><em><mark>S</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><strong><em><mark>Cl</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><mark> <br></mark>S<sub>2</sub>Cl<sub>2 </sub>react further with Cl<sub>2</sub> to produce SCl<sub>2<br></sub><strong><em>* S</em></strong><strong><em><sub>2</sub></em></strong><strong><em>Cl</em></strong><strong><em><sub>2</sub></em></strong><strong><em> + Cl</em></strong><strong><em><sub>2</sub></em></strong><strong><em> → 2SCl</em></strong><strong><em><sub>2 <br>*</sub></em></strong> SCl<sub>2</sub> reacts with ethane(ethylene, C<sub>2</sub>H<sub>4</sub>) give<strong><em> mustard gas</em></strong> S(CH<sub>2</sub>CH<sub>2</sub>Cl)<sub>2     </sub><strong>*mustard gas used in warfare.<br></strong><strong><em><mark>SX</mark></em></strong><strong><em><mark><sub>4</sub></mark></em></strong><br><strong>sp</strong><strong><sup>3</sup></strong><strong>d hybridization</strong><br><strong><em><mark>Preparation </mark></em></strong><strong><br></strong><strong><em>* S(l) + X</em></strong><strong><em><sub>2</sub></em></strong><strong><em> → SX</em></strong><strong><em><sub>4</sub></em></strong><strong><em> ; X=Cl<br></em></strong><strong>*</strong><strong><em> S(l) + X</em></strong><strong><em><sub>2</sub></em></strong><strong><em>  SX</em></strong><strong><em><sub>4</sub></em></strong><strong><em> ; X=F</em></strong><strong> <br></strong><strong><em><mark>Reaction</mark></em></strong><strong><br></strong>Hydrolysis in water and alkali<br><strong><em>*SX</em></strong><strong><em><sub>4</sub></em></strong><strong><em>+H</em></strong><strong><em><sub>2</sub></em></strong><strong><em>O→ SO</em></strong><strong><em><sub>2</sub></em></strong><strong><em>(g)+ HX<br>*SX</em></strong><strong><em><sub>4</sub></em></strong><strong><em>+OH</em></strong><strong><em><sup>-</sup></em></strong><strong><em> →SO</em></strong><strong><em><sub>3</sub></em></strong><strong><em><sup>2-</sup></em></strong><strong><em>(aq) +4X</em></strong><strong><em><sup>-</sup></em></strong><strong><em> + 3H</em></strong><strong><em><sub>2</sub></em></strong><strong><em>O</em></strong><strong> </strong><strong><mark>Able to expend the octet</mark></strong><br><strong><em>*SF</em></strong><strong><em><sub>4</sub></em></strong><strong><em> + F</em></strong><strong><em><sub>2</sub></em></strong><strong><em> →SF</em></strong><strong><em><sub>6</sub></em></strong><br><strong><em><mark>SX</mark></em></strong><strong><em><mark><sub>6</sub></mark></em></strong><br><strong>sp</strong><strong><sup>3</sup></strong><strong>d</strong><strong><sup>2</sup></strong><strong> hybridization</strong><br><strong><em><mark>*Synthesis</mark></em></strong><strong><br></strong><em>S directly react with all halogen</em><strong><em> except iodine</em></strong><em> to form SX</em><em><sub>6 </sub></em><sub><br></sub><strong><em><mark>Properties SF</mark></em></strong><strong><em><mark><sub>6</sub></mark></em></strong><strong><sub><br></sub></strong><em> -Non-toxic</em><br><em>-Colourless,tasteless,Odorless.<br>-Thermally stable and insoluble in water.</em><br><strong><em><mark>Thiosulfuric acid (H</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><strong><em><mark>S</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><strong><em><mark>O</mark></em></strong><strong><em><mark><sub>3</sub></mark></em></strong><strong><em><mark>) &amp; its Salts (S</mark></em></strong><strong><em><mark><sub>2</sub></mark></em></strong><strong><em><mark>O</mark></em></strong><strong><em><mark><sub>3</sub></mark></em></strong><strong><em><mark><sup>2-</sup></mark></em></strong><strong><em><mark>)</mark></em></strong></div><div>- <em>H</em><em><sub>2</sub></em><em>S</em><em><sub>2</sub></em><em>O</em><em><sub>3  </sub></em><em>is not stable</em></div><div><em>-The important salt is Na</em><em><sub>2</sub></em><em>S</em><em><sub>2</sub></em><em>O</em><em><sub>3 </sub></em><em>. 5H</em><em><sub>2</sub></em><em>O</em></div><div><em>- sp</em><em><sup>3 </sup></em><em>hybridization</em></div><div><strong><em>- Uses</em></strong></div><div><em>-Quantitative analysis in idometry </em></div><div><em>- In photography :S</em><em><sub>2</sub></em><em>O</em><em><sub>3</sub></em><em><sup>2-</sup></em><em> is used to remove silver(l) salt which is not reduced by Ag.<br><br></em><strong><em><mark>Thank you very much for the lessons dr .</mark></em></strong></div><div><em>    </em></div><div><br></div><div><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 04:28:59 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054412884</guid>
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         <title>SYAZIEMAH BINTI JASMANI</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054437592</link>
         <description><![CDATA[<div>Summary Group IVA:<br>-Down the group, metallic character increases while IE decreases.<br>-Oxidation state : O : -2(stable)<br>                              others : -2 to +6<br>OXYGEN<br>1. Different form other members in group because the electronegativity of o2 is very high and can form strong ppi-ppi bonds.<br>2. Preparation :<br>    -Fractional distillation of liquid air to <br>     separate O2.<br>    -Heating of KClO3.<br>    -Decomposition of H2O2.<br>    -Electrolysis of H20 uses graphite as <br>     electrodes<br>3. Compound of Oxygen- OXIDE<br>i) form normal oxide, high oxide, suboxide and mix-oxide (spinel compund).<br>ii) Properties :<br>    - Nature of bonding<br>    - Acid-Base<br>4. Compound of Oxygen- HYDRIDES <br>    (H2O)<br>i) Properties : - polar molecule<br>                         - act as ligand<br>                         - act as oxidizing and <br>                           reducing agent<br>5. HYDROGEN PEROXIDE- H2O2<br>i) open book structure.<br>ii)Properties:<br>- Colourless syrupy liquid.<br>-Thermally unstable &amp; easily decompose<br>-Strong oxidizing agent.<br>- As reducing agent.<br>iii) Used as bleaching agent, as antiseptic and used in mild oxidant.<br><br>SULFUR<br>1. Ring in crown shape.<br>2. Allotrope : Rhombic &amp; Monoclinic<br>3. Extraction : Frasch process<br>4. Chemical properties :<br>    - Combustion.<br>     - Heating with metal.<br>     - Reaction with conc. acid<br>5. Compound of Sulfur- OXIDES<br>i) Chemical properties:<br>    - react with H2O to form acid solution<br>    - react with alkali<br>    - reducing agent<br>    - oxidizing agent<br>6.Compound of Sulfur- OXOACIDS<br>i) Derived from SO2<br>ii) The salt : sulfite ion, (SO3)2-<br>iii) Uses of H2SO4<br>    - fertilizers<br>    -chemical for detergent<br>    - dehydrating agent<br>    - white glow pigment<br>    - produce conc. HCl<br>7. Compound of Sulfur- HALIDES<br>i) sp3 hybridization<br>ii) Preparation :<br>    -hydrolysis in water<br>    - S2Cl2 react further with Cl2<br>    - SCl2 react with ethane<br>iii) Uses :<br>    - qualitative analysis in iodometry<br>    - in photography<br><br><br><br></div>]]></description>
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         <pubDate>2021-01-05 04:42:52 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054437592</guid>
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         <title>SITI MASYITHAH BINTI MOHAMAD JAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054439054</link>
         <description><![CDATA[<div>Thank you dr for your well explainations . Here are my summary about group IVA :<br><strong>OXYGEN<br></strong># Exist in the atmospheric gaseous<br># Form 2 allotropes <br>- oxygen O2, ozone O3<br># Preparation <br>- from fractional distillation of liquid air<br>- heating of KClO3<br>- decomposition of H2O<br>- electrolysis of water (graphite-electrodes)<br># Colourless, liquid(blue), paramagnetic(2 unpaired e)<br># Uses<br>- producing fuel cell<br>- respiration <br>- welding industries<br># Formation of ozone <br>- blue gaseous , smell, strong oxidation agent<br>- mercury ( becomes tarnish)<br>- substitute of Cl2 (water treatment)<br>- layer prevent high energy UV <br>#Oxides<br>- form oxide(paramagnetic), peroxide(diamagnetic), superoxide(paramagnetic)<br>#Hydrides (H2O)<br>- sp3, bent , AX2E2<br>-colourless liquid , solid and gas<br>- polar molecule and neutral oxide<br>- act as ligand <br>_ oxidizing &amp; reducing agent<br>-H2O2 (bleaching agent ,colourless,thermally unstable , strong oxidising agent, reducing agent)<strong><br><br>SULFUR<br></strong># exist as free element (brimestone)<br># formed 2 S8 ring <br># odourless,tasteless,light yellow<br># high degree of solubility<br># used in the vucanization of natural rubber, fungicide, furnigant<br>#Chemical properties<br>- combustion (O2)<br>- heating with metal (metal sulphide)<br>- reaction with conc. acid<br>#Oxides<br>-SO2 <br>react with water, alkali.Reducing &amp; oxidizing agent.<br>-SO3<br>prepared by Touch process &amp; heating Fe2(SO4)3<br>#Oxoacids<br>1)sulfurous acid H2SO3<br>- derived from SO2<br>- dibasic acid &amp; sulphite acid<br>2) sulfuric acid H2SO4<br>- derived from SO3<br>- dibasic acid &amp; strong acid<br>- dehydrating agent<br>- sulphate salt by react with alkali, metal oxides, metal, carbonate/bicarbonate<br>- fertilizers <br>-CONTACT/TOUCH PROCESS<br># Halides<br>-hydrolysis in water<br>- able to expend the octet<br>- S react directly with all halogen<br>- quantitative analysis in Iodometry<br>- photography decolorize</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 04:43:44 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054439054</guid>
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         <title>WOO JOO LEONG</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054446108</link>
         <description><![CDATA[<div>Thank you Dr for today lesson, here is my summary for Group VIA:<br><br>-when down the group:<br>metallic character increase<br>IE decrease<br>-Oxygen is different from others due to high EN and strong p pi p pi bond<br><br>Oxygen:<br>- preparation, characteristics and uses<br><br>Ozone:<br>- formation, characteristics, testing of ozone (by Hg) and uses of O3 (H20 treatment and ozone treatment)<br><br>Compounds of oxygen: <br>- monoxide, peroxide and superoxide<br>- oxides can divided into normal oxide, high oxide, suboxide, and mix-oxide<br>- properties of oxide compound<br><br>Hydride of oxygen: <br>- H2O ( properties)<br>- H2O2 (properties and uses)<br><br>Sulphur<br>- allotrope, extraction, properties and uses<br><br>compound of sulphur:<br>- metallic sulphide, and non metallic sulphide <br><br>Oxide of sulphur:<br>- SO2 (properties and sources) and SO3 (properties)<br><br>Oxoacids: H2SO3 and H2SO4<br>-structure, properties, salt uses, and preparation of H2SO4<br><br>Halide of Sulpbur, sulphur tetrahalide and sulphur hexahalides<br><br>Thiosulphuric acid and the use of its salt</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 04:47:40 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054446108</guid>
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      <item>
         <title>AISYAH BINTI MASHURE</title>
         <author>aisyahm1</author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054448736</link>
         <description><![CDATA[<div>Thankyou Dr fon the lesson .<br><br></div><pre>Group IVA (chalcogens group)</pre><div>🔴Down group Metallic character increase<br>🔴Down group IE decrease, <br>🔴Oxidation state O <br>   (-2 stable - 1 perox)<br>     Others : - 2  to +6<br>🔴Ionic when react IA &amp; IIA<br>     Covalent M2-, <br>      Two covalent,<br>       Mr- ion,<br>       onium salt<br>       Hypervalents MR4 &amp; MR6(exc O does not has d orbital)<br><br></div><pre><strong><mark>ELEMENT OXYGEN </mark></strong></pre><div>🔴Reasons Different from others<br>1)very high electronegativity (ionic character and hydrogen bonding)<br>2)form strong p pi - p pi with O,C,N (double bond)  while others form rings and chain<br>🔴Form allotrope <br>1)O2 oxygen<br>2)O3 ozone<br>🔴O2 OXYGEN <br><strong>⚪Preparation </strong><br>1) commercial <br>Fractional distillation of liquid air <br>2)laboratory <br> - heating KlCo3(s) with MnO4<br>-decomposition of H2O2 with MnO4<br>-electrolysis of water (graphite as electrode)  O2 formed at cathode <br><strong>⚪Characteristic </strong><br>1)in Gas colourless, in liquid blue form<br>2)O2 paramagnetic : 2 unpaired electron (according MOT) <br>3)Combine with most element exc noble gas <br><strong>⚪ USES</strong><br>1)Fuel cell (generate energy) <br>2)respiration<br>3)welding industry <br>🔴OZONE O3<br>⚪ have r<strong>esonance structures</strong><br>⚪<strong>Formation of ozone</strong><br> 1)O+O2-&gt;O3<br>2)photochemical decomposition NO2 <br>3)industrial production<br>Electrical discharge O2(g) followed cooling to liquid oxygen and distill <br>⚪<strong> Characteristics </strong><br>Blue gaseous, dark blue liquid<br>Smell<br>Strong oxidation agent<br>⚪<strong>Testing O3 </strong><br>using Mercury, from bright shining Mercury to tarnish and Hg stick to surface <br><strong>⚪Uses </strong><br>1)Water treatment to kill bacteria <br>O3 better than Cl2<br>2)Detergen, deodorizer, presevertive<br>3)prevent high energy uv to reach earth<br>4)ozone treatment <br>🔴Compoud <br>⚪<strong>OXIDE</strong><br>1)in form  oxide, Peroxides   Superoxide<br>2)Proven diamagnetic/paramagnetic from MOT <br>3)class oxide <br>- normal oxide<br>-high oxide(excess O content) <br>-suboxide(less O content) <br>-mix oxide(mix 2 diff oxide) <br>5)properties<br>-Nature of bonding: ionic, covalent, intermediate <br>-Acid base : strong acid, strong base, neutral, amphoteric <br>6)acid base oxide <br>-metal&amp; non metal<br>-oxidation state same element increase, acidity increase <br><strong>⚪ hydride</strong> <br>-H2O, water <br>-Sp3,bend, AX2E2<br>-Properties <br>1)polar molecule<br>2)colourless in (l) (s) (g) <br>3)density solid&lt;liquid<br>4)neutral oxide (but can change acid or base depend compound react) <br>5)ligand <br>6)oxidising and reducing agent<br><strong>⚪Hydrogen peroxide </strong><br>-book shapes structure (open book) <br>-properties<br>1)colourles syrupy liquid(HB) <br>2)thrmally unstable and decompose <br>3)strong oxidizing agent<br>4)as reducing agent <br>-Uses<br>1)bleaching agent<br>2)antiseptic, disinfectant, germicide<br><br></div><pre><strong><mark>ELEMENT SULFUR </mark></strong></pre><div>🔴Free element S, Brimstone and Exists as S8molecule crown shape) <br>🔴allotrope <br>Alpha-rhombic and B-monoclinic S <br>🔴S8 ring arranged differently (granulated and another is needle like form)<br>🔴Extraction by Frasch Process <br>🔴Properties <br>-odorless, tasteless, light yellow non-metallic solid<br>-not dissolved by water (floating) <br>-rhombic and monoclinic soluble in most organic solvent <br>-high Solubility <br>-flammable and burn in air (blue flame) <br>🔴Uses in H2SO4, black gun powder, vulcation of natural rubber<br>🔴sulphur compound <br>1)Metallic sulphide-ionic <br>2)Non metallic sulfide-covalent <br>-H2S<br>-CS2<br>🔴Compound <br><strong>⚪Oxide. </strong><br>1)SO2<br>2)SO3<br>Prepare by Touch Process or heating of ferum(II) Sulfate or dehydration of conc H2SO4<br>Form So3 crystal <br><strong>⚪OXOACIDS</strong><br>1)H2SO3 sulphurous acid +4, <br>anion So3 2-<br>2)H2SO4 sulphuric acid +6<br>Anion: So4 2-, dibasic strong acid<br>3)industrial manufacture. <br>CONTACT/TOUCH PROCESS<br><strong>⚪Halides </strong><br>For F, Cl, few Br, I not exist<br>S2F2-gas<br>S2Cl2-yellow liquid <br>S2Br2 - unstable liquid structure <br> <br>1)SX4 (sulfur tetrahalide) , For perpare if X:F =73 c, inert atmosphere <br>2)SX6 (sulfur hexahalide) direct with halogen exc Iodine <br>3)Thiosulphate (H2SO2O3 not stable &amp; S2O3 2-)<br>Salt : Na2S2O3.5H2O</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 04:49:06 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054448736</guid>
      </item>
      <item>
         <title>NAURAH AFNAN BINTI KAMARUDIN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054450998</link>
         <description><![CDATA[<div>Thank you Dr.for today lesson.Here my summary:<br><strong>OXYGEN<br></strong>-Metallic character increase down the group<br>-IE decrease due to shielding effect<br>-electronegativity is very high form ionic character,form hydrogen bonding<br><strong>ALLOTROPE<br>i)O2<br>ii)O3<br>i)-preparation: from fractionally distillation of liquid air to seperate O2(commercially)</strong><br>-in liquid form:blue liquid<br>-uses:producing fuel cell,respiration<br><strong>-ii)preparation:O+O2-------O3</strong><br>-dark blue,smell<br>-as detergent,deodorizer.<br><strong>OXIDES<br></strong>-oxide(diamagnetic)<br>-peroxide(diamagnetic)<br>-superoxide(paramagnetic)<strong><br>HYDRIDE(H2O)<br></strong>-polar molecule <br>-amphoteric character,act as ligand<br>(<strong>H2O2)(hydrogen peroxide)<br></strong>-syrup liquid due to hydrogen bond<br>-bleaching agent,antiseptic<br><strong>SULPHUR<br>ALLOTROPE<br>i)alfa rhombic<br>ii)beta monoclinicS<br>EXTRACTION:<br>-Frasch process<br></strong>-reactive element<br>-not readily welted<br>-flammable and burn in air with blue flame<br>-produce H2SO4,component black powder,bleaching of dried fruit<br><strong>OXIDE(acid rain)<br>-SO2+H2O-----H2SO3<br></strong>-Volcanoes activities form emmision SO2 from increase temperature<br>-SO3(contact/touch process)<br>-SO2+O2------SO3<br>-forming SO2 crystal<br><strong>-OXOACID<br>H2SO3(dibasic acid)<br></strong>-salt:sulfite ion<br><strong>-H2SO4<br></strong>-dibasic acid,strong acid,vicous liquid due to hydrogen bond,as catalyst<br>-contact/touch process:SO3 not dissolve directly to H2O to avoid fog formation<br><strong>HALIDE<br></strong>-only I does not exist<br>-<strong>Disulphur dihalide</strong><br>-<strong>sulphur tetrahalide</strong>(distorted trigonal bipyramidal)<br>-<strong>sulphur hexahalide<br></strong>-S directly react with halide except I,non-toxic<strong>,<br>-thiosulphuric acid<br></strong>-not stable,uses starch as indicator<strong><br><br></strong><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 04:50:20 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054450998</guid>
      </item>
      <item>
         <title>MUHAMMAD DANISH BIN MOHD ARIF</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054451298</link>
         <description><![CDATA[<div>Thank you dr for the class. Here are some summary for group IVA:<br>Group IV<br>- metallic character increases down the group but IE and shielding effect decreased <br>- different between oxygen and other elements: electronegativity O very high, can form p(pi)-p(pi) bonds with itself, C and N<br>OXYGEN<br>- preparation: by fractional distillation of liquid air for commercial and heating of KCLO3, decomposition of H202, electrolysis of water in laboratory <br>-characteristic: colourless gas, blue liquid in liquid form, paramagnetic <br>-use: producing fuel cell, respiration, welding industries <br>• OZONE<br>- formation: photochemical decomposition of NO2, electrical discharge of O2 followed by cooling liquid oxygen<br>- characteristic: blue gaseous, and dark blue in liquid form, smell, strong oxidation agent<br>-testing: by using mercury <br>- use: water treatment, detergent, deodorant, prevent UV ray in atmosphere <br>COMPOUNDS:<br>• oxides<br>- form oxide, peroxide, superoxide <br>-properties: nature of bonding and acid-base<br>• hydride<br> - water,H2O<br>- properties: colourless liquid, solid, gas, polar molecules, neutral oxide<br>- properties: act as ligand, oxidizing and reducing agent<br>-H2O2<br>-book shaped structure <br>- properties: colourless syrup liquid, strong oxidizing agent and reducing agent <br>- use: bleaching agent, antiseptic<br>SULFUR<br>- free element (brimstone) formed by bacterial action <br>- exists as S8 molecule in form of puckered ring<br>- allotrope: alpha and beta rombhic sulphur<br>- extraction: frasch process<br>- properties: odourless, tasteless, light yellow non metallic solid, flammable with blue flame<br>- use: to produce H2SO4, as components of black gunpowder, bleaching dried fruit<br>COMPOUNDS <br>1. Metallic sulfide <br>- solid and dark colour, insoluble in water, react with acid<br>2. Non- metallic sulfide <br>-H2S:  colourless gas, foul smelling, toxic gas<br>- CS2: colourless liquid with fouling smell, hydrolyze in water<br>• OXIDE<br>1.  SO2: colourless gas, chocking smell, poisonous gas<br>- properties: react with water form acid solution, reducing and oxidizing agent<br>- sources: volcanoes activity, combustion of sulfide ore, roasting anhydride CaSO4<br>2. SO3: colourless gas, dissolved in water to form sulfuric acid<br>- preparation: contact process, heating of ferum(III) sulfate<br>- properties: forming SO3 crystal when cooled, reaction with water, reaction with sulfuric acid<br>• OXOACID<br>1. H2SO3: sulfurous acid<br>- properties: dibasic acid, obtained salt when react with alkali<br>2. H2SO4: sulfuric acid<br>- properties: dibasic acid, strong acid, viscous liquid, high boiling point <br>- obtain sulfate salt by react H2SO4 with alkali, metal oxide, metal, carbonate <br>- use: chemical detergent, produce conc. HCL<br>• HALIDE<br>- exist for F and Cl, a few for Br and not exist with I<br>- disulfur dihalide: sp3 hybridization, can hydrolysis in water<br>- sulfur tetrahalide: sp3d hybridization<br>- reaction: hydrolysis in water and alkali, able to expand the octet<br>- sulfur hexahalide: sp3d2 hybridization <br>- properties SF6: colourless, odorless, tasteless and non toxic<br>• Thiosulfuric acid ( H2S2O3)<br>- not stable, has sp3 hybridization <br>- use: quantitative analysis in iodometry and in photography</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 04:50:30 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054451298</guid>
      </item>
      <item>
         <title>SAHIZANZAIHAN BIN ISMAIL</title>
         <author>sahizanzaihan114</author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054452773</link>
         <description><![CDATA[<div>SUMMARY GROUP VIA</div><div>- characteristic</div><div>  - metallic characteristic increase</div><div>  - IE decreased due to increasing shielding effect</div><div>  - oxidation state = O(-2,-1), others (-2 to +6)</div><div>- types of compound form</div><div>  - ionic = E + group IA, IIA</div><div>  - covalent = with most of the element</div><div>- attain a noble gas electronic structure include the formation of </div><div>-M<sup>2-</sup> ion</div><div>-2 covalent bond</div><div>- MR- ion</div><div>- onium salt</div><div>- hypervalents</div><div> </div><div>Why oxygen is different ?</div><div>  - electronegativity is very high</div><div>  - can form strong p(pi)-p(pi) bond with itself, N or C</div><div> </div><div>OXYGEN</div><div>- exist in the atmospheric gaseous (21% O<sub>2</sub>)</div><div>- anionic mineral in the earth crust</div><div>  - carbonate, nitrate, sulphate, oxides</div><div>-exist in water</div><div>- as allotrope (O<sub>2</sub> , O<sub>3</sub>)</div><div> </div><div>Preparation</div><div>  - fraction distillation of liquid air</div><div>  - reaction of KClO<sub>3</sub></div><div>  - decomposition of H<sub>2</sub>O</div><div>  - electrolysis of water (C as electrode)</div><div>Characteristic</div><div>  - colourless gas, blue liquid</div><div>  - paramagnetic with 2 unpaired electron</div><div>  - reactive at elevated temperature and combine directly with </div><div>most element except noble gas</div><div>Uses</div><div>  - production of fuel cell</div><div>  - respiration</div><div>  - welding industries</div><div> </div><div>Ozone (O<sub>3</sub>)</div><div>Formation </div><div>  - O + O<sub>2</sub> --&gt; O<sub>3</sub></div><div>  - photochemical decomposition of NO<sub>2</sub></div><div>  - electrical discharged of oxygen gaseous followed by cooling to </div><div>  Liquid oxygen and distilled</div><div>Characteristic</div><div>  - blue gaseous, dark blue liquid, smell, strong oxidizing agent</div><div>Testing O<sub>3</sub></div><div>  - use mercury (bright shining mercury becomes tarnish and stick</div><div>To the surface of glass )</div><div>Uses</div><div>  - substitute Cl<sub>2</sub> in water treatment to kill bacteria</div><div>  - as detergent, deodorizer, preservative</div><div>  - prevent UV ray from reaching earth</div><div> </div><div>COMPOUNDS<br>Oxides </div><div>  - oxide, peroxide, superoxide</div><div>- normal oxide</div><div>   - follow valence rule (MgO, Na<sub>2</sub>O)</div><div>- high oxide</div><div>   - more than actual according to valence rule (Mn<sub>2</sub>O, PbO<sub>2</sub>)</div><div>- suboxide</div><div>   - less content of oxygen according<sub> </sub>to valence rule</div><div>- mix-oxide</div><div>   - known as spinel compound Pb<sub>3</sub>O<sub>4</sub> (2PbO.PbO<sub>2</sub>)</div><div>- acid-base oxide</div><div>   - metal and non-metal</div><div>   - oxidation state = oxidation increase , acidity increase</div><div> </div><div>Hydrides (H<sub>2</sub>O)</div><div>Characteristic </div><div>  - colourless liquid, solid gas</div><div>  - polar molecule</div><div>  - density solid &lt; water</div><div>  - neutral oxide but changes to acid or base depend on the compound being reacted</div><div>  - act as a ligand</div><div>  - as oxidizing and reducing agent</div><div> </div><div>Hydrogen Peroxide (H<sub>2</sub>O<sub>2</sub>)</div><div>Book-shaped structure</div><div>Characteristic</div><div>  - colourless syrupy liquid, miscible with water, soluble in alcohol</div><div>  - thermally unstable and decomposes in the presence of finely divided metal catalyst</div><div>  - strong oxidizing and reducing agent</div><div>Uses </div><div>  - bleaching agent</div><div>  - antiseptic, disinfectant, germicide</div><div>  - MgO<sub>2</sub> and CaO<sub>2</sub> as mild oxidant in toothpaste </div><div> </div><div>SULFUR</div><div>- exist as free element, brimstone which are formed by bacterial action on volcanic gas</div><div>- ores (pyrite, galena, sphalerite)</div><div>- Allotrope</div><div>   - alpha-rhombic S</div><div>   - beta-moniclinic S</div><div>Extraction</div><div>Mined by Frasch process</div><div>  - superheated water pumped down the outer-most of 3 pipes</div><div>  - compressed air pumped down to inner-most pipe</div><div>Properties</div><div>  - odourless, tasteless, light-yellow non metallic solid</div><div>  - not readily wetted or dissolved in water </div><div>  - rhombic and monoclinic sulfur are soluble to a limited extent in most organic solvent</div><div>  - high degree solubility is attained in carbon disulfide</div><div>  - flammable and burn in air with blue flame</div><div>Uses</div><div>  - to produce sulfuric acid</div><div>  - in vulcanization of natural rubber</div><div>  - bleaching of dried fruit and paper product</div><div> </div><div> </div><div>Compounds</div><div>1) Metalliic sulfide</div><div>   - solid and dark/ black (ZnS/PbS yellow)</div><div>   - anionic sulfide form highly electropositive metals undergo hydrolysis</div><div>   - solid insoluble</div><div>   - react with acid to evolve H<sub>2</sub>S gas</div><div>2) Non metallic sulfide</div><div>   H<sub>2</sub>S</div><div>- colourless gas, foul smelling, extremely toxic gas</div><div>- dissolve in water to produce acidic solution</div><div>- easily oxidized</div><div>- as reducing agent</div><div>   CS<sub>2</sub></div><div>- colourless liquid with fouling smell</div><div>- solvent for S, P, I<sub>2</sub> , rubber and wax</div><div>- hydrolyze in water</div><div> </div><div>COMPOUNDS</div><div>Oxides</div><div>SO<sub>2</sub></div><div> - colourless gas, choking smell, poisonous gas</div><div>SO<sub>3</sub></div><div> - colourless gas, dissolve in water to form sulfuric acid, react with sulfuric acid to form oleum</div><div>SO<sub>2</sub></div><div> - react with water to form acid</div><div> - react with alkali to form sulfite salt</div><div> - as reducing and oxidizing agent</div><div>Sources of SO<sub>2</sub></div><div> - volcanoes activities</div><div> - combustion of sulfide ores, coal and oil</div><div> - roasting anhydride CaSO<sub>4 </sub>with coke</div><div> - reaction of sulfite salt with acid</div><div> - reaction of metal with conc. Sulfuric acid</div><div>SO<sub>3</sub></div><div>Preparation</div><div> - contact process</div><div> - heating Ferum (III) sulfate</div><div> - dehydration of conc. H<sub>2</sub>SO<sub>4</sub> by solid P<sub>2</sub>O<sub>5</sub></div><div>Properties</div><div> - form SO<sub>3 </sub>crystal when cooled</div><div> - react with water to form sulfuric acid</div><div> - react with sulfuric acid to form oleum</div><div> </div><div>Oxoacid</div><div>H<sub>2</sub>SO<sub>3</sub></div><div>- derived form SO<sub>2</sub></div><div>Properties</div><div> - dibasic acid, sulfite salt obtained by reacting acid with alkali</div><div>H<sub>2</sub>SO<sub>4</sub></div><div>- derived form SO<sub>3</sub></div><div>Properties</div><div> - dibasic acid, strong acid</div><div> - conc. Sulfuric acid is viscous liquid due to HB</div><div> - High BP due to HB</div><div> - conc acid as dehydrating agent</div><div> - dilute acid as an acid</div><div> - hot and con as oxidizing agent</div><div>H<sub>2</sub>SO<sub>4</sub> ---&gt; sulfate salt </div><div> - obtained by reacting the acid with = alkali, metal oxide, metal, carbonate/ dicarbonate</div><div>Uses</div><div> - fertilizer, as detergent, dehydrating agent, pigment, to produce conc. HCl</div><div>Industrial Manufacturer of H<sub>2</sub>SO<sub>4</sub></div><div>- touch process</div><div>1) Combustion S ---&gt; SO<sub>2</sub></div><div>2) Oxidation SO<sub>2</sub> ---&gt; SO<sub>3</sub></div><div>3) SO<sub>3</sub> transformation to H<sub>2</sub>SO<sub>4</sub></div><div>I) Dissolution of SO<sub>3</sub> with H<sub>2</sub>SO<sub>4</sub> ---&gt; oleum</div><div>II) Added amount of water to oleum ---&gt; conc. H<sub>2</sub>SO<sub>4</sub></div><div> </div><div>Halide</div><div>- exist for F, Cl, Br</div><div>- S<sub>2</sub>F<sub>2</sub> = gas</div><div> S<sub>2</sub>Cl<sub>2</sub> = yellow liquid</div><div> S<sub>2</sub>Br = unstable liquid structure</div><div>- hydrolyze in water</div><div>- S<sub>2</sub>Cl<sub>2</sub> further react with Cl<sub>2</sub> ---&gt; SCl<sub>2</sub></div><div>- SCl<sub>2</sub> react with ethane ---&gt; mustard gas</div><div>Sulfur tetrahalide</div><div>Reaction</div><div> - hydrolysis in water and alkali</div><div> - able to expand the octet</div><div>Sulfur hexahalide</div><div>Reaction</div><div> - S react with all halogen except Iodine</div><div>Properties</div><div> - colourless, odourless, tasteless, non toxic, thermally stable, insoluble in water</div><div> </div><div>Thiosulfuric acid</div><div> - not stable, salt is the important part (Na<sub>2</sub>S<sub>2</sub>O<sub>3</sub>.5H<sub>2</sub>O)</div><div> - uses for quantitative analysis in iodometry, also in photography </div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 04:51:18 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054452773</guid>
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      <item>
         <title>ROSE SYAZWANI BT RAMLI</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054454657</link>
         <description><![CDATA[<div><strong>SUMMARY GOURP IVA</strong><br>DOWN THE GROUP:</div><div>·Metallic character INCREASE</div><div>-O &amp; S: non-metallic and insulator</div><div>-Se &amp; Te: metalloid &amp; semiconductors</div><div>-Po:truly metal and conductor</div><div>·IE DECREASE:decrease shielding shielding effects</div><div>· Oxidation state:</div><div>§  O: -2(stable),-1(peroxo)</div><div>§  Other element: -2 to +6<br>Type of compound form;</div><div>·Ionic: E + Group IA and IIA</div><div>·Covalent: most of element</div><div>i.M2-ions </div><div>ii.Two covalent bonds</div><div>iii.MR- ions</div><div>iv.Onium salts</div><div>v. Hypervalents  MR4 and MR6 (except O)<br>Oxygen different from other;<br>1.Electronegativity of O high</div><div>i.Form ionic character on M-O bonds</div><div>ii.Form hydrogen bond<br>2.Form strong p-p bonds with itself,C &amp; N <br><br><strong><mark>OXYGEN<br></mark></strong>·Exist in atmospheric gaseous (21% )</div><div>·Anionic mineral in earth crust(carbonate,nitrate,sulfate,oxides)</div><div>·In water<br>.Form allotropes<br> Preparation;<br>Comercial:Fractional distillation of liquid air to separate  from  and Ar<br>In Laboratory:</div><div>·Heating (s)</div><div>·Decomposition of</div><div>·Electrolysis of water uses graphite as electrodes<br>Characteristic;</div><div>·Colorless gas<br>· in liquid form:Blue liquid</div><div>·is paramagnetic with 2 unpaired electrons (according MOT)</div><div>ACID BASE OXIDE : <strong> <br>-</strong>metal and non-metal <br>-oxidation state which is acidity increase when oxidation increase<br>HYDRIDES OF OXYGEN :<strong><br>- </strong>WATER, H<sub>2</sub>O  (bent shape with hybridization sp<sup>3</sup>)<br>~PROPERTIES : <br>i) polar molecule<br>ii) neutral oxide but change to acid/alkali (develope  amphoteric character)<br>iii)act as ligand<br> iv) act as reducing agent and oxidizing agent<br>-HYDROGEN PEROXIDE ,H<sub>2</sub>O<sub>2  </sub>(has book shape structure)<br>~PROPERTIES : <br>i) colourless syrupy liquid due to hydrogen bonding and soluble in alcohol<br>ii)thermally unstable and decompose when finely divided metal catalyst<br>present<br>iii)strong oxidizing agent and also a reducing agent<br>~USES :<br>i) as bleaching agent for wool, hair and teeth<br>ii) as antiseptic, disinfectant and germicide.<br><br><strong><mark>SULFUR<br></mark></strong>`Exist in free element and S8 molecule;granulated form and needle form<br>Extraction of sulfur;<br>`mined by Frasch process<br>Properties of sulfur;<br>`odourless,tasteless,light yellow non-metallic solid<br>`not readily wetted or dissolve in water<br>`high degree of solubility<br>`flammable and burn in air with blue flame<br>Uses;<br>produce sulfuric acid<br>`component of black gunpowder<br>`use in vulcanization of natural rubber,fungicide and fumigant.<br>`bleaching dried fruits and paper product<br>Chemical properties;<br>`Reaction with O2(combustion)<br>`heating with metal become metal sulfide<br>`reaction with conc.acid<br>Compound of sulfur<br>1.metallic sulfide<br>`all metallic sulfide in dark/black except ZnS &amp; PbS (yellow)<br>`solid insoluble in water<br>`react with acid<br>2.Nonmetallic sulfide(covalent sulfide)<br>H2S;<br>`colorless gas,foul smell(like rotten egg smell),extremely toxic gas,dissolve in water,easily oxidize,reducing agent.<br>CS2;<br>`colorless liquid,fouling smell,solvent for,S,P,I2,rubber wax<br>`hydrolyse in water<br>Oxide of sulfur;<br>SO2;<br>`Colorless,chocking smell,poisonous gas<br>`react w water form acid solution,react w alkali,reducing agent,oxidizing agent.<br>`source;volcanoes activity,combustion sulfide ores,coil and oil,roasting anhydride CaSO4 with coke,reaction of metal w conc.sulfuric acid,reaction sulfite salt w acid.<br>SO3;<br>`Preparation:touch process,heating ferum(III) sulfate,dehydration of conc.H2SO4 by solid P2O5<br>`Properties;forming SO3,reaction w water<br>H2SO3;<br>`Salt; sulfate anion<br>`properties;ionazation,sulfate salt<br>H2SO4;<br>`salt;sulfate anion<br>`properties;dibasic acid,strong acid,high b.p.,sulfonate agent<br>`sulfate salt;obtained by reacting H2SO4;Alkali,metal oxide,metal,carbonate/bicarbonate<br>`Uses;fertilizers,chemical for detergent,ether and ester,dehydrating agent,pigment,produce conc. HCl<br>Contact process;<br>`combustion of S<br>`oxidation of SO2<br>`SO3 transformation to H2SO4<br>Halide of sulfur<br>`SX4<br>`SX6<br>`Thiosulfuric acid and its salt<br>-uses;quantitative analysis in iodometry,in photography.<br><br>thank you dr!</div>]]></description>
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         <pubDate>2021-01-05 04:52:21 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054454657</guid>
      </item>
      <item>
         <title>HEMLYN HENDRY</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054456865</link>
         <description><![CDATA[<div>Thank you for the lecture dr &lt;3<br>Summary of Group VIA<br><strong>Oxygen</strong><br>1)Metallic character increases ,IE decrease down the group<br>2)The types of compounds formed are ionic (E+ Group IA&amp;IIA) and covalent with most of the elements<br>3)Its different from other members because it has high electronegativity and it forms strong ppi-ppi bond with itself ,C,N.<br>Preparation<br>- Commercial: Fractional distillation of liquid air<br>-Laboratory<br>: Heating of KCl<br>:Decomposition of  H2O2                  :Electrolysis of water using graphite as electrodes<br>4)Has characteristics such as colorless gas, blue liquid form, paramagnetic<br>5)Has usage such as producing fuel cell ,respiration, welding industries<br>6)The compounds of oxygen are such as oxides(normal oxide, high oxide, suboxide, mix-oxide),Hydrides(water)<br><br><strong>Sulfur</strong><br>1)Exist as a brimstone (S)<br>2)The ores are :pyrite, galena , sphalarite<br>3)Sulfur is extracted through Frasch Process<br>4)The properties of sulfur are such as odorless, tasteless, non-metallic solid, not readily wetted or dissolved by water, reactive element except when it is combined with(inert gases, gold, platinum)<br>5)Uses are such as production of H2SO4, component of black gunpowder, vulcanization of natural rubber<br>6)Chemical properties:<br>- Reaction with oxygen<br>-Heating with metal becomes metal sulfides<br>-Reaction with conc. acid<br>7)Compounds of sulfur are (ionic, covalent sulfide), oxides(so2,so3), oxoacids(H2SO3, H2SO4) halides(SX4,SX6)<br> ~ For halides it does not exist for I<br>        </div>]]></description>
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         <pubDate>2021-01-05 04:53:33 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054456865</guid>
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      <item>
         <title>SYED MUHAMMAD KHAIRI BIN SYED NORDIN </title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054511477</link>
         <description><![CDATA[<div>Group VIA summary <br>-metallic character increase down the group <br>-IE decrease down the group<br><br><strong>Oxygen<br>-</strong>preparation<br>  i)commercial- fractional distillation of liquid air to separate O2 from N2 and Ar<br>ii) lab-heating KClO3, decomposition of H2O2 and electrolysis of water using graphite electrodes<br> character -colourless gas, blue liquid<br>uses- producing fuel cell, respiration ,welding industries<br><br><strong>Ozone <br></strong>Formation<br>1)photochemical decomposition of NO2<br>2)industrial-involve electrical discharged of O2 followed by cooling liquid O2 and distills<br><br>character-blue gaseous, dark blue liquid <br><br>uses- substitute Cl2 in water treatment, detergent, atmosphere<br><br>Oxides <br>normal oxide<br>Peroxide<br>Superoxide<br><br>Hydride<br>1)H2O<br>2)H2O2<br><br><strong>Sulphur<br></strong>allotropes<br>-alpha rhombic<br>-beta monoclinic<br>Extract- Frasch Process<br><br>Properties <br>-odourless, tasteless, light yellow solid<br>-not readily wetted or dissolve in water<br>Compound<br>1)metallic sulphide<br>     -dark black colour except ZnS &amp; PbS<br>    -anionic sulphide<br>solid insoluble n water<br>2)Non-metallic silphide<br>H2S-hydrogen Sulphide<br>-colourless, foul smell, extreme toxic <br><br>CS2- Carbon Disulphide <br>- colourless liquid <br>-foul smell<br>-solvent for S, P, I2, rubber and wax<br><br>Oxide<br><strong>SO2</strong><br> properties<br>-react with H2O -&gt; H2SO4<br>                  Alkali -&gt; sulfite salt<br>  -  reducing agent<br>-oxidizing agent<br><br>source- volcanoes activity, combustion of sulphide ores, roasting anhydride  CaSO4 with coke<br><br><strong>SO3<br></strong>preparation- Contact/Touch Process<br><br>properties -SO3 crystal when cooled to  -195 K<br><br>Oxoacid<br>H2SO3 (sulphurous acid)<br>H2SO4 (sulphuric acid)<br>-properties- dibasic acid<br>                  - sulphonation agent<br>                   -as catalyst <br>   -Uses- fertilizer<br>            - dehydrating agent <br>            - detergent <br>Halide<br> Disulphur dihalide , S2X2<br>S2F2-gas<br>S2Cl2- yellow liquid <br>S2Br2- unstable<br><br>Sulphur tetrahalide SX4<br>Sulphur Hexahalide SX6 <br><br>Thiosulphuric Acid (H2S2O3)<br>used in Iodometry and photography<br><br></div>]]></description>
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         <pubDate>2021-01-05 05:23:59 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054511477</guid>
      </item>
      <item>
         <title>Siti Hadijah binti Muslimun</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054542286</link>
         <description><![CDATA[<div>Thankyou Dr for today’s lesson and pre-recorded class. Summary for group VIA:</div><div>-Down the group, metallic character increases while IE decreases down the group- shielding effects decreases along Se, Te and Po</div><div>-Oxidation state: (-2 stable, -1 peroxo) (other elements: -2 to +6)</div><div>-Oxygen is different from others due to</div><div>     - electronegativity is very high -form ionic and hydrogen bonding</div><div>     - strong p-pi—p-pi bonds</div><div><strong>Oxygen</strong></div><div>- Form 2 allotropes (O2; oxygen &amp; O3; ozone)</div><div>- Preparation – fractional distillation of liquid air (commercial)</div><div>- O2 paramagnetic with 2 unpaired electron</div><div>- Reactive (high temp) &amp; combine directly with most of elements except noble gas</div><div>- Uses- producing “fuel cell”, respiration &amp; welding industries</div><div>- Ozone (O3) -strong oxidation agent &amp; testing for O3 by using Hg</div><div>- Uses  - water treatment, detergent, deodorizer, prevent high energy UV from reaching earth</div><div>- Oxide - (oxide - paramagnetic, peroxide -diamagnetic &amp; superoxide -paramagnetic) &amp; (normal oxide, high oxide, suboxide &amp; mix oxide) &amp; Acid-base oxide (oxidation increases, acidity increases)</div><div>- H2O (can accept or donates H+) &amp; H2O2 (easily decomposed)-bleaching agent, antiseptic &amp; mild oxidant in toothpaste</div><div><strong>Sulfur</strong></div><div><strong>- </strong>Ores- pyrite, galena &amp; sphalerite</div><div><strong>- </strong>Allotrope- alpha-rhombic S &amp; beta-monoclinic S</div><div>- Extraction- Frasch process – obtained 99.5% purity of S</div><div>- Reactive element &amp; combine all other elements except inert gases, gold &amp; platinum</div><div>- High degree of solubility</div><div>- All metallic sulfides are solid and dark/black except ZnS &amp; PbS (yellow)</div><div>- Non-metallic sulfides: H2S – extremely toxic gas and easily oxidized &amp; CS2 – solvent for S, P, I2, rubber, wax</div><div>- Oxide: SO2- react with water to form acid solution &amp; SO3 – Contact/Touch process &amp; forming alpha-SO3, beta-SO3 &amp; gamma-SO3</div><div>- Oxoacid- H2SO3 (derived from SO2) &amp; H2SO4 (derived from SO3) – dibasic acid &amp; strong acid</div><div>- Industrial manufacture of H2SO4 – contact/touch process</div><div>- Halide- exist for F &amp; Cl, only a few for Br &amp; does not exist for I</div><div>- Thiosulfuric acid – not stable &amp; important salt (S2O32-) &amp; Uses – analysis in Iodometry &amp; in photography</div><div> </div>]]></description>
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         <pubDate>2021-01-05 05:41:37 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054542286</guid>
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      <item>
         <title>IFFAH IZZATI BINTI AZMAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054574582</link>
         <description><![CDATA[<div>Summary for Group VIA<br>- metallic character increase down the group<br>- IE decrease down the group<br><br>OXYGEN<br>- form 2 allotropes<br>i) O2<br>ii) O3<br><br>i) O2<br>- colourless gas<br>- oxygen is paramagnetic with 2 unpaired electrons <br>-uses :<br>~ producing " fuel cell"<br>~ respiration<br>~ welding industries<br><br>ii) O3<br>- blue gaseous in colour<br>- dark blue liquid<br>- strong oxidation agent<br>- formation of ozone :<br>~ O react with O2<br>~ photochemical decomposition of NO2<br>~ industrial production of O3 involved electrical discharged of O2 gaseous followed by cooling to liquid oxygen and distills.<br>- uses :<br>~ as detergent, deodorizer and preservative<br>~ ozone layer prevent high energy uv from reaching the earth<br><br>- compound of oxygen<br>i) oxide ( diamagnetic)<br>ii) peroxide (diamagnetic)<br>iii) superoxide (paramagnetic)<br><br>- properties of water :<br>- colourless liquid, solid and gas<br>- neutral oxide but changes to acid or base depending on the compound being reacted (amphoteric character)<br>- act as ligand<br>- act as oxidizing agent and reducing agent<br><br>- properties of H2O2 :<br>- colourless syrupy liquid due to hydrogen bonding, miscrible with water, soluble in alcohol<br>- the molecule is thermally unstable and decomposes in the presence of finely divided metal catalyst<br>- strong oxidizing agent<br>- reducing agent<br><br>uses :<br>- as bleaching agent for wool, hair, teeth<br>- as antiseptic, disinfectant and germicide<br><br>SULFUR<br>- exist as free element, brimstone<br>- S8 molecule in the form of a puckered ring in crown shape<br>- allotrope of sulfur:<br>~ a-rhombic S<br>~B-monoclinic S<br><br>extraction of sulfur<br>- Frasch Process<br>- superheated water is pumped down the outermost of three concentric pipes<br>- compressed air is pumped down the innermost pipe<br>- a mixture of hot water, molten sulfur and air comes up the middle pipe<br>- sulfur obtained has 99.5% purity.<br><br>properties of sulfur<br> - odourless, tasteless, light yellow non-metallic solid<br>- not readily wetted or dissolved by<br>- reactive element <br>- high degree of solubility<br>- flammable and burn in air with blue flame<br><br>uses:<br>- used to produced sulfuric acid<br>- vulcanization of natural rubber<br>- bleaching dried fruits and paper product<br><br>chemical properties of SO2:<br>- react with water to form acid solution<br>- react with alkali<br>- reducing agent<br>- oxidizing agent<br><br>preparation of SO3:<br>- contact process by heating of ferum(III) sulfate<br>- dehydration of concentrated h2so4 by solid p2o5<br><br>uses of sulfuric acid:<br>- fertilizer<br>- chemical for detergent, ether,ester<br>- dehydrating agent<br>- pigment<br>- to produce concentrated hcl<br><br></div>]]></description>
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         <pubDate>2021-01-05 06:00:45 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054574582</guid>
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      <item>
         <title>Zulfa Annisa Binti Mohd Noor</title>
         <author>zulfaa480</author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054688392</link>
         <description><![CDATA[<div>Thank you Dr. for the lesson. Here is my summary for Group VIA :- <br>Going down the group :</div><ul><li>Metallic characteristic increases shown by electrical properties of the elements</li><li>IE decrease due to decrease shielding effect.</li></ul><div>Oxidation state : - 2 to +6 except oxidation state for O : -2 &amp; -1<br> The reason why oxygen is different from other members :-</div><ul><li>High electronegativity</li><li>Strong ppi-ppi bond with itself , carbon and nitrogen. </li></ul><div><mark>Oxygen </mark></div><div>- Form 2 Allotropes</div><ul><li><em>Oxygen, O2</em></li></ul><div>Preparation <br>-Commercial : Fractional distillation of liquid air to separate O2<br>-In laboratory :</div><ul><li>Heating KClO3</li><li>Decompostion of H2O2</li><li>Electrolysis of water uses graphite as electrodes </li></ul><div>Characteristic : <br>-Colourless gas , blue liquid and paramagnetic. <br>Uses :<br>- Producing "fuel cell"<br>-Respiration <br>-Welding industries</div><ul><li><em>Ozone,O3</em></li></ul><div>Formation : </div><ul><li>Directly form from O and O2</li><li>Photochemical decomposition of NO2</li><li>Industrial production : Discharged of O2 gaseous followed by cooling to liquid oxygen and distills. </li></ul><div>Characteristic :<br>-Blue gaseous , dark blue liquid , smell and strong oxidizing agent .<br>Testing :  Use mercury <br>- Mercury will become tarnish and stick to the surface of the glass. <br>Uses :-<br>-Water treatment. <br>- As detergent , deodorizer and preservative. <br>-Prevent UV from reaching the earth. <br>Compound of oxygen <br><em>Oxides</em></div><ol><li>Oxide - paramagnetic </li><li>Peroxide - diamagnetic</li><li>Superoxide - paramagnetic</li></ol><div>4 types of oxides :-<br>- Normal Oxide<br>-High Oxide<br>-Suboxide<br>-Mix-oxide <br>Properties depends on :-<br>- Nature of bonding and acid-base. <br><em>Hydrides<br></em>Water, H2O <br>Properties :<br>- Colourless liquid, gas and solid , polar molecule , solid state is less dense than liquid state , give amphoteric characteristic , act as ligand and act as oxidizing agent and reducing agent. <br>Hydrogen peroxide , H2O2, <br>Properties :<br>- Colourless syrupy liquid , thermally unstable and decomposes in the presense of finely divided metal catalyst, strong oxidizing agent and reducing agent. <br><br><mark>Sulfur<br></mark>Allotropes:- <br>-Alpha-rhombic S <br>-Beta-monoclinic S <br>Extraction :</div><ul><li>Frasch Process</li></ul><div>Properties :<br>-Odourless, tasteless ,light yellow non-metallic solid, reactive element when combines with other elements except inert gasses, gold and platinum. <br>Uses : <br>-Used to produced sulfuric acid <br>-Component of black gunpowder. <br>-Used in the vulcanization of natural rubber<br>-Used in the bleaching of dried fruits. <br>Compounds of Sulfur. <br>1. Metallic sulfide (Ionic sulfide)<br>2. Non-metallic sulfide (Covalent sulfide)- H2S &amp; CS2<br><em>Oxides</em></div><ul><li>SO2</li></ul><div>Oxidation state : +4 <br>Properties :  Colourless gas , chocking smell and poisonous gas. <br>Sources : <br>-Volcanoes activities<br>- Combustion of sulfide ores , coal and oil. <br>-Roasting anhydride CaSo4 with coke <br>-Reaction of sulfite salt with acid<br>-Reaction of metal with conc. sulfuric acid. </div><ul><li>SO3</li></ul><div>Preparation :<br>-Commercial : Touch process<br>-Dehydration of conc. H2SO4 by solid P2O5. <br>Properties : Colourless gas , dissolve in water produce sulfuric acid and react with sulfuric acid to produce oleum. <br><em>Oxoacids </em></div><ul><li>Sulfurous acid/ Sulfuric(IV) acid , H2SO3</li></ul><div>-Derived from SO2<br>-Salt : Sulfite anion. <br>Properties : - Dibasic acid , sulfite salt is obtained by reacting the acid with alkali.</div><ul><li>Sulfuric acid or Sulfuric(VI) acid , H2SO4 </li></ul><div>-Derived from SO3<br>-Salt: Sulfate anion. <br>Properities: <br>-Dibasic acid, conc H2SO4 is viscous liquid and dehydrating agent , high boiling point , in dilute concentration acts as acid and conc and hot as oxidizing agent.<br> Uses : <br>-Fertilizers , chemicals for detergent , ether , ester , dehydrating agent , used as white glow pigment and to produce conc. HCl . <br>Industrial Manufacture : Touch Process <br><em>Halides</em></div><div>Sulfur halides &amp; Disulfur halides <br>- Only exists for F , Cl and Br. </div><ul><li>Sulfur tetrahalide</li><li>Sulfur Hexahalides</li></ul><div><em>Thiosulfuric acid and its Salt<br>-</em>Thiosulfuric acid is not stable<br>Uses : Quantitative analysis in Iodometry and in photography . </div><div><br><br></div><div><br></div><div><br></div><div><br></div><div><br></div>]]></description>
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         <pubDate>2021-01-05 07:02:37 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054688392</guid>
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      <item>
         <title>SITI RAIHANAH BINTI ROSLAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054749625</link>
         <description><![CDATA[<div>GROUP VIA (CHALCOGENS)</div><div><br></div><ul><li>metallic character increases</li><li>ionization engergy decreases</li><li>form ionic compound with Group IA &amp; IIA and covalent with others</li></ul><div>why oxygen different ?<br>- electronegativity high (form ionic character and hydrogen bond</div><div>- forming p(pi)-p(pi) bonds with itself, C &amp; N<br><br></div><div><mark>OXYGEN(O2)</mark></div><div># fractional  distillation of liquid air to separate O2<br># heaating KClO3<br># decomposition H2O2<br># electrolysis H2O</div><ul><li>colouless gas</li><li>blue liquid</li><li>paramagnetic </li><li>reactive at high temp</li></ul><div><em>uses</em></div><ul><li>produce "fuel cell"</li><li>welding industries</li><li>respiration</li></ul><div><br></div><div><mark>OZONE(O3)</mark></div><div># directly from O &amp; O2<br># photochemical decomposition NO2<br># electrical charged of O2 gaseous</div><ul><li>blue gasesous </li><li>dark blue liquid</li><li>smell</li><li>strong oxidation agent</li></ul><div><em>uses</em></div><ul><li>substitute Cl2 in water treatment to kill bacteria</li><li>atmosphere</li><li>detergent</li></ul><div><br></div><div>Testing O3 : use mercury, Hg<br>&gt; bright shining mercury becime tarnish &amp; Hg stic at glass surface<br><em><br>compounds of oxygen</em></div><ul><li>Oxide</li></ul><div>(oxide, peroxide, superoxide)</div><ul><li>Hydrides (H2O)</li><li>Hydrogen Peroxide (H2O2)</li></ul><div><br><mark>SULPHUR </mark></div><ul><li>free element  (brimestone)</li><li>ores : pyrite(FeS), galena(PbS), sphalerite(ZnS)</li><li>S8 molecules (crown shape)</li><li>form S8 ring (alpha-rhombic S &amp; beta-monoclinic S)</li></ul><div><em>extraction</em></div><ul><li>Frasch Process (low melting point &amp;  density)</li></ul><div><em>properties</em></div><ul><li>odourless, tasteless, logh yellow non-metallic </li><li>not readily wetted, not dissolved in water</li><li>flammable &amp; burn in air with blue flame</li></ul><div><em>chemical properties</em></div><ul><li>reaction with oxygen (combustion)</li><li>heating with metal</li><li>reaction with conc. acid</li></ul><div><em>uses</em></div><ul><li>produce H2SO4</li><li>vulcanization of rubber</li><li>component of black gunpowder</li><li>bleaching dried fruit/paper product</li></ul><div><br></div><div><mark>METALLIC SULFIDE (IONIC)</mark></div><ul><li>all solid &amp; dark/black colour except ZnS &amp; PbS (yellow solid)</li><li>anionic sulfide from highly electropositive metals undergo hydrolysis &gt; basic soln.</li><li>soluble in water</li><li>react with acid &gt; H2S gas envolve</li></ul><div><br><mark>NON-METALLIC SULFIDE (COVALENT)</mark></div><ul><li>hydrogen sulfide, H2S </li><li>carbon disulfide, CS2</li></ul><div><br><em>compounds of sulfur</em></div><ul><li>Oxide</li></ul><div><strong>- SO2</strong><br><em>chemical properties</em></div><ol><li> react with water &gt; acid soln.</li><li> react with alkali &gt; sulfide salt</li><li> reducing &amp; oxidizing agent</li></ol><div><em>sources</em><br># volcanoes activities <br># combustion anhydride CaSO4 with coke<br># reaction with sulfide salt with acid<br># reaction of metal with conce. H2SO4<br># combustion sulfide ores, coal, oil</div><div><strong>- SO3</strong><br># Touch Process<br># heating ferum (III) sulfate<br># dehyfration conc. H2SO4<br><em>properties</em><br>form SO3 when cooled <br>(alpha-SO3, beta-SO3 &amp; gamma-SO3)<br><br></div><ul><li>Oxoacid</li></ul><div>- H2SO3 <br>- H2SO4<br><em>industrial manufacture H2SO4 (</em>contact/touch process)</div><ol><li>combustion of S &gt; SO2</li><li> oxidation SO2 &gt; SO3</li><li>SO3 transformation to H2SO4</li></ol><div>- dissolution SO3 into conc. H2SO4 &gt; oleum<br>- addition of H2O to oleum &gt; H2SO4<br><br></div><ul><li>Halides</li></ul><div>- sulfur tetrahalide, SX4</div><div>- sulfur hexahalide, SX6<br><br><em>thiosulfuric acid (H2S2O3) and <br>salts (S2O3 </em><em><sup>2-</sup></em><em>)</em><br>- H2S2O3 nit stable<br>- important salt : Na2S2O3.5H2O<br><br>thankyou dr for today lesson :) </div>]]></description>
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         <pubDate>2021-01-05 07:36:19 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054749625</guid>
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      <item>
         <title>SITI AINA AISHAH BINTI AZIZAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054794992</link>
         <description><![CDATA[<div>Thank you dr for today's class and the other pre-recorded videos :)) <br><br>Here summary for Group VIA<br><em>Down the group:</em><br>- metallic character increases<br>- IE decreases<br><em>Compounds form:</em><br>- ionic (Group IA &amp; IIA)<br>- covalent (most elements)<br><em>Why oxygen different than others?</em><br>1) very high electronegativity<br>2) forming strong ppi-ppi bonds with O, C, N<br><br></div><blockquote><strong>Oxygen, O2</strong></blockquote><div>- exist in the atmospheric gaseous<br>- anionic mineral in earth crust<br>- form 2 allotropes (O2 &amp; O3)<br><strong><em>Preparation:</em></strong><br><em>Commercial:</em><br>1) From fractional distillation of liquid air - separate O2<br><em>Laboratory:</em><br>1) Heating KClO3<br>2) decomposition H2O2<br>3) Electrolysis of water use graphite as electrode<br><strong><em>Characteristics:</em></strong><br>- colourless gas<br>- liquid form (blue liquid)<br>- paramagnetic with 2 unpaired e-<br>- reactive at elevated temperature and combine directly with most elemnts (except noble gas)<br><strong><em>Uses:</em></strong><br>- producing fuel cell<br>- respiration<br>- welding industries<br><strong>Ozone, O3</strong><br><strong><em>Formation</em></strong><br>1) O + O2 ---&gt; O3<br>2) Photochemical decomposition of NO2<br>3) Industrial - electrical discharged of O2 gaseous<br><strong><em>Characteristics</em></strong><br>- blue gaseous<br>- dark blue liquid<br>- smell<br>- strong oxidizing agent<br><strong><em>Uses:</em></strong><br>- in susbtitute of Cl2 in water treatment - kill bacteria<br>- as detergent, deodorizer, preservative<br>- in atmosphere: prevent high energy UV from reach earth<br><br><strong>Oxides</strong><br>1) Oxide (O2-) - paramagnetic<br>2) Peroxide ((O2)2-) - diamagnetic<br>3) Superoxide ((O2)-) - paramagnetic<br><strong><em>Properties:</em></strong><br>1) Natural of bonding<br>2) acid-base<br><strong><em>Acid-base:</em></strong><br>Oxidation increase, acidity increase<br><br><strong>Hydrides</strong><br><em>H2O - water</em><br><strong><em>Properties:</em></strong><br>- colourless liquid, gas, solid<br>- polar molecule --&gt; solvent for most ionic<br>- density solid &lt; liquid<br>- neutral oxide -&gt; change to acid/base depend on compound reacted (Amphoteric)<br>- act as ligand<br>- oxidizing and reducing agent<br><br><strong>H2O2 - hydrogen peroxide</strong><br>- open book structure<br><strong><em>Properties:</em></strong><br>- colourless syrupy liquid -&gt; HB<br>- thermally unstable and decompose in presence of finely divided metal catalyst<br>-strong oxidizing agent<br>- reducing agent<br><strong><em>Uses:</em></strong><br>- bleaching agent<br>- antiseptic, disinfectant and germicide<br>- MgO2 &amp; CaO2 as mild oxidant in toothpaste<br><br></div><blockquote>Sulfur</blockquote><div>- exists as free element, S<br>- ores : pyrite, galena, sphalerite<br>- S8 molecule ( puckered ring form)<br>- Allotropes: alpha-rhombic S and beta-monoclinic S<br><br><strong>Extraction:</strong><br>- By Frasch Process : due to low melting point &amp; low density<br><br><strong>Properties:</strong><br>- odourless, tasteless, light yellow non-metallic solid<br>- not readily wetted or dissolved by water<br>- reactive element, combine with all other element (except inert gas, gold, platinum)<br>- rhombic &amp; monoclinic sulfur are soluble in organic solvents<br>- high degree of solubility in CS2 -&gt; dissolve rhombic sulfur<br>- flammable &amp; burn in air with blue flame<br><br><strong>Uses:</strong><br>- to produced sulfuric acid, H2SO4<br>- component of black gunpowder<br>- used in vulcanization of natural rubber<br>- used in bleaching of dried fruits and paper products<br><br><strong>Chemical prop:</strong><br>- Reaction with O2 (combustion)<br>- Heating with metal -&gt; metal sulfides<br>- Reaction with conc. acid<br><br><strong>Compounds:</strong><br><strong><em>1) Metallic sulfides (ionic)</em></strong><br>- Solid and dark/black excp ZnS &amp; PbS -&gt; yellow<br>- Anionic sulfide from highly electropositive metals undergo hydrolysis -&gt; basic solution<br>- Solid insoluble in water<br>- React with acid --&gt; H2S gas evolves<br><strong><em>2) Non-metallic sulfide (covalent)</em></strong><br><em><mark>Hydrogen sulfide, H2S</mark></em><br>- colourless gas<br>- foul smelling<br>- extrmely toxic gas<br>- dissolve in water --&gt; acidic solution<br>- easily oxidized<br>- reducing agent<br><em><mark>Carbon disulfides, CS2</mark></em><br>- colourless liquid, fouling smell<br>- solvent S, P, I2, rubber, wax<br>- hydrolyze in water<br><br><strong>Oxides</strong><br><em><mark>SO2</mark></em><br>- hybridization: sp2<br>- geometry: bend<br>- type: AX2E<br>- colourless gas<br>- chocking smell<br>- poisonous gas<br><em><mark>SO3</mark></em><br>- hybridization: sp2<br>- geometry: trigonal planar<br>- colourless gas<br>- dissolves in water --&gt; sulfuric acid<br>- react with sulfuric acid --&gt; oleum<br><br></div><ul><li><em>SO2</em></li></ul><div><strong><em>Chemical prop:</em></strong><br>- React with water --&gt; acidic solution (acid rain)<br>- React with alkali --&gt; sulfite salt ((SO3)2-)<br>- Reducing agent<br>- Oxidizing agent<br><strong><em>Sources:</em></strong><br>- volcanoes activities<br>- combustion of sulfide ores, coal, oil<br>- roasting anhydride CaSO4 with coke<br>- reaction of sulfite salt with acid<br>- reaction of metal with conc. sulfuric acid<br><br></div><ul><li><em>SO3</em></li></ul><div><strong><em>Preparation:<br></em></strong>1)<strong><em> </em></strong>Contact/Touch Process <br>2) Heating of ferum(III) sulfate<br>3) dehydration of conc. H2SO4 by solid P2O5<br><strong><em>Properties:</em></strong><br>1) Forming SO3 crstal when cooled<br>  - alpha-SO3 : crystal trimetric form<br>  - beta-SO3 : cube, transpareny crystal, meta stable<br>  - gamma-SO3 : needle-like, most stable<br>2) Reaction with water<br>3) Reaction with sulfuric acid --&gt; produced oleum<br><br><strong>Oxoacid</strong><br><em><mark>H2SO3 (Sulfurous acid)</mark></em><br>- Derived from SO2<br>- Salt : sulfite anion (SO3)2-<br><strong><em>Properties:</em></strong><br>1) Ionization<br>2) Sulfite salt obtained by react acid with alkali<br>  - dissollves in water undergo hydrolysis<br><em><mark>H2SO4 (Sulfuric acid)</mark></em><br>- Derived from SO3<br>- Salt : sulfate anion (SO4)2-<br><strong><em>Properties:</em></strong><br>- dibasic acid, strong acid<br>- viscous liquid -&gt; HB between molecule<br>- high bp -&gt; HB<br>- <strong>conc. acid</strong>: Dehydrating agent<br>- <strong>dilute concentration</strong>: acid<br>- <strong>conc. and hot</strong>: oxidizing agent<br>- sulfonation agent<br>- as catalyst - H2SO4 absorb water<br><br><strong>H2SO4 (Sulfate salt)</strong><br>- obtained by react H2So4 with<br>  : alkali<br>  : metal oxide<br>  : metal<br>  : carbonate/bicarbonate<br><strong><em>Uses sulfuric acid</em></strong><br>- fertilizers<br>- Chemical for detergent, ether, ester<br>- Dehydrating agent -&gt; remove water from gas, liquid, solid<br>- pigment -&gt; TiO2, TiOSO4: white glow pigment in paint<br>- prodece conc. HCl<br><strong><em>Industrial of sulfuric acid</em></strong><br><em>Contact Process</em><br>1) Combustion S --&gt; SO2<br>2) Oxidation SO2 --&gt; SO3<br>3) SO3 transformation to H2SO4<br>    - Dissolution of SO3 into H2SO4 --&gt; oleum<br>   - Addition of water to H2S2O7 --&gt; H2SO4<br><br><strong>Halides</strong><br>- exists for:<br>  : X = F &amp; Cl<br>  : X = Br - only a few<br>  : X = I - not exist<br>- disulfur dihalide, S2X2<br>   S2F2 - gas<br>  S2Cl2 - yellow liquid<br>  S2Br2 - unstable liquid<br>( <em><mark>decrease in stability</mark></em> )<br>- hydrolysis in water<br>- S2Cl2 react further with Cl2 --&gt; SCl2<br>- SCl2 reacts with ethene give mustard gas<br><br><em><mark>Sulfur tetrahalide, SX4<br></mark></em>Structure: Trigonal bipyramidal<em><mark><br></mark></em>Reactions:<br>- Hydrlysis in water and alkali<br>- Able to expend the octet<br><br><em><mark>Sulfur hexahalides, SX6</mark></em><br>Synthesis:<br>- S react directly with all halogen exp iodine<br>Properties;<br>- colourless, odorless, tastesless, non-toxic, thermally stable, insoluble in water<br>- Not Lewis base, no available non-bonding<br>- Despite +6 it is not oxidizing agent - F atoms protect S<br>- Much better insulator than air<br><br><strong>Thiosulfuric acid (H2S2O3) &amp; salts (S2O3 2-)<br></strong>- H2S2O3 not stable <br>- Important salt --&gt; Na2S2O3.5H2O<br><strong><em>Uses:</em></strong><br>- Quantitative analysis in Iodometry: titration method, use starch as indicator (blue --&gt; decolorize)<br>- In photography<br>  : S2O3 2- , to remove silver(I) salt that not reduce by Ag</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 07:59:56 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054794992</guid>
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         <title>IRDINA BINTI AZUWIR</title>
         <author>irdina01</author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054815492</link>
         <description><![CDATA[<div><strong>Group VIA</strong><br>- metallic increases down the group<br>- IE increases down the group (decreased shielding effects)<br>- -2 to +6 except O<br>- forms both ionic and covalent<br>- O is different<br>high electronegativity</div><div>forms pπ - pπ bonds with itself, C, N<br><br><strong>OXYGEN<br></strong>- 2 allotropes: O<sub>2</sub> &amp; O<sub>3</sub><br>- prep. ind.: fractional distillation<br>prep. lab: heating KClO<sub>3</sub>, decomposition of H<sub>2</sub>O<sub>2</sub>, electrolysis of water<br>- char.: colourless gas, blue liquid, O<sub>2</sub> paramagnetic<br>- uses: producing fuel cell, respiration, welding industries<br><em>O</em><em><sub>3</sub></em><em><mark><br></mark></em>- resonance structure<br>- formation: O + O<sub>2</sub> -&gt; O<sub>3</sub>, photochemical decomposition of NO<sub>2</sub><br>- char.: blue gaseous, dark blue liquid, smell, strong oxidation agent<br>- testing for O<sub>3</sub> use Hg<br>- uses: water treatment, detergent, deodorizer, preservative, prevent high energy UV from penetrating<br><mark>Oxides</mark><br>- Normal, high, sub, mix<br>- prop.: ionic/covalent/intermediate, strong acidic/neutral/amphoteric/strong base<br><mark>Hydrides</mark><br><em>H</em><em><sub>2</sub></em><em>O</em><br>- prop.: colorless in all states, polar, density solid &lt; liquid, neutral oxide with amphoteric character, ligand, oxidation &amp; reduction agent<br><em>H</em><em><sub>2</sub></em><em>O</em><em><sub>2</sub></em><br>- book-shaped<br>- colorless syrupy liquid (H-bonding), thermally unstable, strong oxidizing agent, reducing agent<br>- uses: bleaching agent, antiseptic, disinfectant, germicide<br><br><strong>Sulphur</strong><br>- exists as free element (brimstone), S<sub>8</sub> molecule<br>- allotrope (S8 arranged differently): α-rhombic S &amp; <strong><br></strong>β-monoclinic S<br>- extraction: Frasch Process (99.5% purity)<br>- prop.: odourless, tasteless, light yellow, not readily dissolved by water, reactive except with inert gases, gold &amp; platinum, rhombic &amp; monoclinic soluble in select organic solvents, flammable with blue flame<br>- uses: prod. H<sub>2</sub>SO<sub>4</sub>, black gunpowder, vulcanization of natural rubber, fungicide, fumigant, bleaching of dried fruits<br>- chem. prop.: react with O<sub>2</sub>, metal &amp; conc. acid<br><mark>Ionic sulfide<br></mark>- solid, dark colour except with Zn &amp; Pb, solid insoluble, react with acid evolves H<sub>2</sub>S gas<br><mark>Covalent sulfide<br></mark>- H2S: colorless, foul smell, toxic, soluble in water, easily oxidized, reducing agent<br>- CS2: colourless liquid, foul smell, solvent, hydrolize in water<br><mark>Oxides</mark><br><em>SO</em><em><sub>2</sub></em><br>- sp<sup>2</sup>, bend, colourless gas, choking smell, poisonous<br>- reacts with water &amp; alkali, reducing &amp; oxidizing agent<br>- sources: volcanic activity, combustion of sulfide ores, roasting anhydride CaSO4, react sulfite salt &amp; acid, metal &amp; conc. sulfuric acid<br><em>SO</em><em><sub>3</sub></em><br>- sp<sup>2</sup>, trigonal planar, colourless gas, soluble in water, produces oleum when react with H<sub>2</sub>SO<sub>4</sub><br>- prep.: Contact process, heating Fe<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>, dehydration of conc. H<sub>2</sub>SO<sub>4</sub> by solid P<sub>2</sub>O<sub>5</sub><br>- prop.: forms crystals when cooled (α, β, γ)<br>Oxoacids<br><em>H</em><em><sub>2</sub></em><em>SO</em><em><sub>3</sub></em><br>- dibasic acid, react with alkali to get sulfite salt, salt dissolves in water<br><em>H</em><em><sub>2</sub></em><em>SO</em><em><sub>4</sub></em><br>- strong dibasic acid, viscous liquid &amp; high BP (H-bond), dehydrating agent (conc.), oxidizing agent (hot &amp; conc.), sulfonation agent<br>- uses: fertilizers, detergent, ether, ester, dehydrating agent, pigment, prod. conc. HCl<br>- Contact Process: Combustion of S, Oxidation of SO<sub>2</sub>, SO<sub>3</sub> to H<sub>2</sub>SO<sub>4</sub><br><mark>Halides</mark><br>- exists for F, Cl and a few for Br<br><em>S</em><em><sub>2</sub></em><em>X</em><em><sub>2 </sub></em><br>- exists for all but becomes increasingly unstable<br>- hydrolize in water, S2Cl2 react further to get SCl2<br><em>SX</em><em><sub>4</sub></em><br>- distorted trigonal bipyramid<br>- prep.: direct reaction for Cl, direct reaction under inert atmosphere and -73<strong>°</strong>C for F<br>- hydrolize, able to expand octet<br><em>SX</em><em><sub>6</sub></em><br>- prep.: reacts readily except I<br>- prop.: colorless, odorless, tasteless, non-toxic, thermally stable &amp; insoluble in water<br>- not a Lewis base (no available non-bonding lone pair electron)<br>- not oxidizing agent (F aroms protect S)<br>- better insulator than air<br><em>H</em><em><sub>2</sub></em><em>S</em><em><sub>2</sub></em><em>O</em><em><sub>3</sub></em><br>- not stable<br>- important salt : Na<sub>2</sub>S<sub>2</sub>O<sub>3</sub><strong>.</strong>5H<sub>2</sub>O<br>- uses: quantitative analysis in iodometry</div>]]></description>
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         <pubDate>2021-01-05 08:11:08 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054815492</guid>
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      <item>
         <title>WAN NUR ANIS FAQIHAH BINTI WAN MAT</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054916646</link>
         <description><![CDATA[<div>Thank you Dr for the explaination for this subtopic.Here is my summary.<br>Characteristics Group VIA<br> -metallic character decrease down the group due to the electrical properties of elements<br> -Ionization energy decrease down the group due to the decreasing of shielding effects <br> -Ionic to group IA and IIA and covalent to most of the element(M²- ions, two covalent bond for water and (CH3)S, MR- ions, onium salts, hypervalents<br> Unique of Oxygen than others<br> -higher electronegativity<br> -forming strong pπ-pπ bonds with itself, C and N<br> OXYGEN<br> -Anionic mineral in earth crust(carbonate,nitrate,sulfate,oxides)<br> In water<br> Form allotropes: oxygen and ozone<br> Preparation of oxygen<br> Comercial:Fractional distillation of liquid air to separate oxygen<br> In Laboratory:Heating of KClO3 solid<br>                           Decomposition of H2O2<br>                           Electrolysis of water <br> Characteristic: Colorless gas, blue liquid<br> -oxygen is paramagnetic with 2 unpaired electrons(according MOT)<br> Uses : -producing fuel cell<br>             - respiration <br> OZONE<br> FORMATION :-O (g) + O2 → O3 (g)<br>                           -Photochemical<br>                            decomposition of NO2 <br>                           - Industrial production of O3 <br> CHARACTERISTICS:<br>-gas :blue, liquid: dark blue <br> -Strong oxidation agent <br>USES :-Deodorize air, purify water, and treat<br>              industrial wastes<br>             -ozone treatment<br>             -ozone layer prevent UV from reach <br>              the earth<br> OZONE TEST :<br> -Use Mercury,Hg . The bright shining Mercury will become tarnish and starting to stick to the surface of glass due to presence of ozone<br> OXIDE (normal oxide, high oxide, suboxide and mid-oxide)<br> ACID BASE OXIDE : <br> -metal and non-metal    <br> -oxidation state which is acidity increase when oxidation increase, e.g : N2O (N=+1) is neutral, N2O5 (N=+5) is strong acid<br> HYDRIDES OF OXYGEN :<br>  - WATER, H2O  (bent shape with hybridization sp3)</div><div> -PROPERTIES :<br>i) polar molecule</div><div>ii) neutral oxide but change to acid/alkali (develope  amphoteric character)</div><div> iii)act as ligand</div><div>  iv) act as reducing agent and oxidizing agent</div><div>-HYDROGEN PEROXIDE ,H2O2  (has book shape structure)<br> -PROPERTIES : <br> i) colourless syrupy liquid due to hydrogen bonding and soluble in alcohol<br>  ii)thermally unstable and decompose when finely divided metal cattalyst present<br> iii)strong oxidizing agent and also a reducing agent</div><div>-USES :<br> i) as bleaching agent for wool, hair and teeth<br>  ii) as antiseptic, disinfectant and germicide.<br> SULFUR(exist as free element<br> -Ores :phyrite, galena and sphalarite<br> -Exist as S8 molecule(crown shape)<br> -Allotrope of sulfur : alpha-rhombic S and gamma-monoclinic S<br> Extraction of Sulfur:<br> -Frasch Process due to low m.p. &amp; low density<br> -Superheated water (115°C) pumped down outer-most 3 concentric pipe<br> -Compress air pump down the inner pipe<br> -Mixture of hot water, molten sulfur &amp; air comes up the middle <br> -Sulfur obtaines has 99.5% purity<br> -Properties:<br> -odorless, tasteless and reactive element combine with all except inert gases, gold and platinum<br> -not readily wetted or dissolve in water<br> -used to produce H2SO4<br> -High degree of solubility<br> &amp;<br> -Flammable and burn in air with blue flame<br><br></div><div>Uses:<br> -Component of black gunpowder<br> -use in vulcanization of natural rubber,as a fungicide &amp; fumigant<br> -Use as bleaching agent for dried fruit and for paper product<br> -Chemical property: <br> -Reaction with O2(combustion)<br> -Heating with metal become metal sulfide<br> -reaction with conc. acid<br> -Metallic sulfide (ionic sulfide)<br> -All metallic sulfides are solid and dark color(Except Zn &amp; Pb (yellow)<br> -Anionic sulfide from highly electropositive metals undergo hydrolysis; resulting basic solution<br> -Solid insoluble in water<br> -react with acid; H2S gas evolves<br> NON-METALLIC SULFIDE (COVALENT SULFIDE)<br> -Hydrogen Sulfide (sp3)<br> has foul smell and extremely toxic<br> Dissolved in water form acidic solution<br> easily to oxidize, act as reducing agent<br> Carbon Disulfide (sp)<br> Solvent for S, P, I2, rubber and wax<br> Hydrolyze in water<br> OXIDE ( SO2 and SO3)<br> -SO2 (S=+4)<br> hybridization= sp2 with bend shape<br> Colorless gas with choking smell<br> Poisonous gas<br> -PROPERTIES : <br> i) react with water to form acidic solution (phenomeon acidic rain)<br> ii) react with alkali form sulfite salt (SO32-)<br>  iii) act as reducing agent and oxidizing agent<br> -SOURCES OF SO2 (air pollution) :<br> i) Volcanoes activities (emission of SO2 from the higher temperature of the molten earth)<br> ii) Combustion of sulfide ores, coal and oil<br>  iii) Roasting anhydride calcium sulfate, CaSO4 with coke<br>  iv) Reaction of sulfide salt with acid<br>  v) Reaction of metal with concentrated H2SO4<br> -SO3 (S=+6)<br> Hybridization=sp2 with trigonal planar shape<br> Usage : dissolve in water form sulfuric acid, H2SO4<br> React with sulfuric acid form oleum, H2S2O7<br> PREPARATION : <br> i) Contact Process, SO2 + O2 🡪 SO3<br> ii) Heating of Fe2(SO4)3<br> iii) Dehydration of concentrated H2SO4 by solid P2O3<br> PROPERTIES : <br> i) Form SO3 crystal when cooled to 195K<br> Alpha-SO3, cyclic trimetric form<br> Beta-SO3, cube, transparent crystal , cross-linked of SO4 into layers<br> Gamma-SO3, needle-like crystal with infinite helical chains of SO4<br>  ii) Reaction SO3 with water form H2SO4<br> iii) Reaction SO3 with H2SO4 form oleum, H2S2O7<br> OXOACID (SULFUROUS ACID, H2SO3)<br> SO2(g) + H2O(l) --&gt;H2SO3(aq)<br> sulfite anion, SO32-<br> -Properties : <br> i)dibasic acid<br> ii)sulfite salt obtained by reacting acid with alkali<br> iii)salt dissolve in water umdergo hydrolysis<br> H2SO4<br> -Properties:<br> i)concentrated acid is dehydrating agent<br> ii)diluted concentration act as acid<br> iii)concentrated and acid H2SO4 as oxidizing agent<br> H2SO4 can sulfate salt form by react with alkali, oxide, metal and carbonate or bicarbonate<br> -Uses:<br> i)chemicals for detergent, ether and ester<br> ii)pigment TiO2, TiOSO4 as white glow pigment in paint<br> INDUSTRIAL MANUFACTURE OF H2SO4<br> Touch/Contact Process<br> i)combustion of S<br> ii)oxidation of SO2<br> iii)SO3 transformation to H2SO4<br> -dissolution of SO3 into oleum<br> -addition of a certain amount of water to oleum to form H2SO4<br> HALIDES<br> -Disulfur dihalide(S2X2) can undergo hydrolysis in water, S2Cl2 react with excess Cl2 form SCl2 and S2Cl2 react with ethane give mustard gas which used as war weapon but banned due to its hazardous<br> -Sulfur Tetrahalides<br> SCl4 can be prepared react S with Cl2<br> and SF4 can be prepare by react S with Cl2 with -73°C and in inert atmosphere<br> Reaction : i)hydrolysis in water and alkali<br>                   ii)able to expand to the octet(SF6)<br> -Sulfur Hexahalides<br> can synthesis with S directly with all halides except I to form SX6<br> Properties :<br> i)colorless, odorless, tasteless, non-toxic, thermally stable and insoluble im water<br> H2SO3 AND (S2O3)2-<br> -can be used as quantitative analysis in iodometry and in photography</div><div>            <br><br></div><div><br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 09:02:34 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1054916646</guid>
      </item>
      <item>
         <title>EMERALDISYAH ALIFIA WISAKSONO</title>
         <author>wisaksono</author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055005667</link>
         <description><![CDATA[<div>Thank you for today's lecture, the music video was very interesting XD. Below is my summary of Group IVA;<br>- Going down, the metallic character increases and the IE &amp; shielding effects decreases.<br>- Oxidation number; O is -2 (stable) &amp; -1 (peroxo), other elements -2 to +6.<br>- Type of compound formed: Ionic with Group IA &amp; IIA &amp; Covalent with most of the elements.<br><br>1. Oxygen<br>- Oxygen has very high electronegativity and strong ppi-ppi bonds with itself, carbon, and nitrogen.<br>- Anionic mineral in the earth's crust.<br>- Found in water.<br>- 2 allotropes: oxygen (O2) &amp; ozone (O3)<br>- Preparation: Commercial (fractional distillation of liquid air) &amp; in Lab (Heating KCLO3, Decomposition of H2O2, &amp; Electrolysis of water using graphite as electrodes).<br>- Properties: Colorless gas, blue liquid, paramagnetic with 2 unpaired electrons, reactive at elevated temperature, &amp; combine directly with most elements excepts noble gas.<br>- Uses: Fuel cell, respiration, welding industry.<br><br>a) Ozone (O3)<br>- Preparation: O(g) + O2 -&gt; O3(g), Photochemical decomposition of NO2, &amp; electrical discharge of O2 (industrial).<br>- Properties: Blue gas, dark blue liquid, smell present, strong oxidation agent.<br>- Testing of O3 uses mercury.<br>- Uses: Subtitute of Cl2 in water treatment, detergent, deodorizer, preservative, O3 layer in the atmosphere to prevent entry of high energy UV, &amp; ozone treatment.<br><br>b) Oxygen (O2)<br>- Diamagnetic, 12e-<br>- Bond order 2, bond length 121pm<br><br>c) Peroxide (O2^2-)<br>- Diamagnetic, 14e-<br>- Bond order 1.5, bond length 128pm<br><br>d) Superoxide (O2^-)<br>- Paramagnetic, 13e-<br>- Bond order 1, bond length 148pm<br><br>e) Oxide (2O^2-)<br>- Diamagnetic, 16e-<br>- No bond order and bond length<br>- Normal, high, sub, mix-oxide<br>- Properties: Ionic, covalent, intermediate bonding. Strong acid, neutral, amphoteric, strong base.<br><br>f) Water (H2O)<br>- sp3 hybridization, bend, AX2E2.<br>- Properties: Colorless gas, liquid, solid, Polar molecule, liquid form more dense, neutral but changes depending on compound being reacted (amphoteric character), act as ligand, act as oxidizing and reducing agent.<br><br>g) Hydrogen peroxide (H2O2)<br>- Open book-like structure.<br>- Properties: Colorless syrupy liquid, miscible with water &amp; soluble in alcohol, thermally unstable, decomposed if there's finely divided meta; catalyst, strong oxidizing agent, reducing agent.<br>- Uses: Bleaching agent for wool, hair, teeth, etc, Antiseptic, disinfectant, germicide.<br><br>2. Sulfur<br>- Exist as free element and S8 molecule in a crown-like form.<br>- Pyrite, Galena, Sphalerite ores.<br>- 2 allotropes: a-rhombi S &amp; B-monoclinic S.<br>- Extraction: Mined using the Frasch Process.<br>- Properties: Odorless, tasteless, light yellow, non-metallic solid, not readily wetter or dissolved in water, reactive if combined with other elements except inert gases, gold, &amp; platinum, flammable in air with blue flame.<br>- Uses: Sulfuric acid, black gunpowder, vulcanization of natural rubber, blecahing dried fruits and paper products.<br>- Metallic sulfide: solid, dark/black (except ZnS &amp; PbS=yellow solid), anionic sulfide from highly electropositive metals undergo hydrolysis=basic solution, solid insoluble in water.<br>- Non-Metallic sulfide:<br>a) H2S: Colorless gas, foul smell, extremely toxic, dissolve in water=acidic solution, easily oxidized, reducing agent.<br>b) CS2: Colorless liwuid, foul smell, hydrolysed in water.<br><br>a) Oxides of Sulfur<br>- SIVO2: sp2 hybrid, bend, AX2E, colorless gas, choking smell, poisonous gas.<br>- SIVO3: sp2 hybrid, trigonal planar, AX3, colorless gas, dissolve in water=sulfuric acid, reaction with sulfuric acid=oleum.<br>- Properties of SO2: +water=acidic solution, +alkali=sulfite salt, reduing agent, oxidizing agent.<br>- Source of SO2: Volcano activities, Combustion of sulfide ores, coal, oil, Roasting anhydride CaSO4 with coke, Sulfite salt with acid, Metal with conc. sulfuric acid.<br>- Preparation of SO3: Contact/Touch Process, Heating of ferum(III) sulfate, Dehydration of conc. H2SO4 by solid P2O5.<br>- Properties of SO3: crystal when cooled, a-SO3, B-SO3, y-SO3, +water=H2SO4, +sulfuric acid=oleum.<br><br>b) Oxoacids of Sulfur<br>- Oxoacid H2SO3: Sulfurous acid, SO2 + H2O -&gt; H2SO3<br>- Properties of H2SO3: dibasic acid.<br>- Oxoacid H2SO4: Sulfuric acid, SO3 + H2O -&gt; H2SO4<br>- Properties of H2SO4: dibasic acid, strong acid, conc. H2SO4 is viscous liquid, high b.p. acid in dilute concentration, oxidizing agent in conc. &amp; hot, sulfonation agent, catalyst.<br>- Sulfate salts are obtained by reacting H2SO4 with alkali, metal, &amp; carbonate/bicarbonate.<br>- Uses of H2SO4: Fertilizers, chemical detergent, ether, ester, dehydrating agent, pigment, production of conc. HCl.<br>- Industrial manufacture of H2SO4 by Contact/Touch Process.<br><br>c)Halides of Sulfur<br>- Sulfur halides: F &amp; Cl exists, Br a few, I does not exist.<br>- Disulfur dihalide (S2X2): F2-gas, Cl2-yellow liquid, Br2-unstable liquid structure.<br>- sp3 hybrid, hydrolysis in water, +Cl2=SCl2, +ethylene C2H4=mustard gas.<br>- Sulfur tetrahalide, SX4: Distorted trigonal bipyramidal, preparation by +Cl2 or +F2 in inert atmosphere, hydrolysis in water &amp; alkali, able to expand the octet.<br>- Sulfur hexahalide, SX6: sp3d2 hybrid, reacts readily w halogen except Iodine, SF6 is colorless, tasteless, non-toxic, thermally stable, insoluble in water.<br>- Thiosulfuric acid (H2S2O3) is not stable.<br>- Uses: Quantitative analysis in iodometry (titration method using starch as indicator) &amp; in photography.<br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 09:48:49 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055005667</guid>
      </item>
      <item>
         <title>HANIS SAFIYAH BINTI MOHD AMIN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055102575</link>
         <description><![CDATA[<div>Thank you dr for your explanation. Here are my summary<br><br><strong><em><mark>Oxygen<br></mark></em></strong>- the electronegativity is very high <br>- oxygen can form strong p-pi p-pi bonds with itself, carbon and nitrogen<br>- have two allotropes<br> *oxygen, O2<br> *ozone,O3<br>- can be prepared by fractional distillation of liquid air to separate O2 (commercial)<br>- heating of KClO3, decomposition of H2O2, electrolysis of water uses graphite as electrodes (laboratory)<br>- it is a colourless gassand in blue liquid<br>- it is a paramagnetic with 2 unpaired electron <br>- can combine directly with most of the elements except for noble gas<br><strong><mark>USES</mark></strong><strong><em><mark><br></mark></em></strong>- as producing "fuel cell"<br>- carbohydrate <br>- in respiration<br>- in welding industries <br><strong><mark>OZONE<br></mark></strong>- prepared by direct reaction of oxygen atom and oxygen gas, photochemical decomposition of NO2 and electrical discharged of O2 and followed by cooling to liquid oxygen and distills.<br>- it is a blue gaseous in colour, and dark blue in liquid, have smell and strong oxidation agent<br>- can test the presence of O3 by react Hg and O3 , if bright shining of Hg turn to tarnish, then there is O3<br><strong><mark>H2O2, hydrogen peroxide<br></mark></strong>- have open book shaped <br>- colourless syrup liquid (hydrogen bonding miscible with water, soluble in alcohol)<br>- thermally unstable and decomposes in the presence of finely divided metal catalyst<br>- strong oxidizing agent<br>- a reducing agent<br>- use as bleaching agent, antiseptic, disinfectant and germicide<br><br><strong><em><mark>Sulfur<br></mark></em></strong>- have two allotrope which are a-rhombic S and B-monoclinic S<br>- sulfur is odourless, tasteless, light-yellow non metallic solid<br>- not readily wetted or dissolved by water<br>a reactive element, combines with all element except for inert gases, gold and platinum.<br>- rhombic and monoclinic sulfur are soluble to a limited extent in most organic solvents<br>- high degree of solubility <br>- flammable and burn in air with blue flame<br>- use to produce sulfuric acid and a component of black gunpowder, vulcanization of natural rubber.<br><br>ionic sulfide<br>- all metallic sulfide are solid and dark black in colour except for ZnS and PbS (yellow colour)<br>- solid insoluble in water<br>react with acid H2S gas evolved<br><br><strong><mark>sulfur trioxide</mark></strong><br>- can be prepared by Touch/Contact process, heating of ferum (III) sulfate and dehydration of conc. H2SO4 by solid P2O5<br>- forming SO3 crystal when cooled<br>- react with water to form H2SO4<br>- react with sulfuric acid to produced oleum <br><br>H2SO4, sulfuric acid<br>- derived from SO3 , salt - sulfate ion<br>- dibasic and strong acid<br>- conc. sulfuric acid is viscous liquid due to the hydrogen bond between the molecules<br>- high b.p due to hydrogen bond between the molecules<br><strong>uses of sulfuric acid</strong><br>- as fertilizers<br>- chemicals for detergent, ether and ester<br>- dehydrating agent <br>as pigment <br>to produce conc. HCl<br><br> </div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 10:41:39 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055102575</guid>
      </item>
      <item>
         <title>LIANA FAQIHAH BINTI MOHD JAFFRI</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055211952</link>
         <description><![CDATA[<div>GROUP VIA <br>oxygen , sulphur , selenium , tellerium, polonium <br>Characteristics <br>-the metallic characteristic increases down the group<br>-IE decreases down the group </div><div>OXYGEN</div><div>-Exist in amphoteric gaseous <br>-Anionic mineral in earth's crust<br>-Form 2 allotrotypes ; O2,O3<br>-Preparation ; <br>1.From fractional distillation of liquid air<br>2. Heating KClO3<br>3.Decomposition H2O2<br>4.Electrolysis of water<br>Characteristic <br>-colourless gas<br>-O2 is paramagnetic <br>Uses <br>-producing fuel cell<br>-respiration<br>--welding industries<br>Ozone (O3)<br>- O + O2 -----&gt; O3<br>-blue gaseous in color<br>-dark blue liquid<br>-strong oxidation agent <br>Use O3 <br>-substitute Cl2 in water treatment to kill bacteria<br>-as detergent<br>Properties of water <br>- colourless liquid <br>- form amphoteric character<br>-act as ligand<br>Properties H2O2 <br>-colourless syrupy liquid <br>-Redox reaction <br>SULPHUR<br>Properties<br>- odourless<br>-tasteless , nonmetallic solid<br>-Rhombic and monoclinic sulphur are soluble<br>-high degree solubility<br>Uses<br>-produce H2SO4<br>-Used in valcunation of natural rubber<br>Compound sulphur <br>1. Metallic sulphide <br>-all solid and dark black <br>-insoluble in water<br>2. Non-metallic sulfide <br>-colourless gas <br>-foul smelling <br>-toxic gas<br>SO3<br>preparation <br>-touch process<br>-heatinng ferum (II) sulphate<br><br></div>]]></description>
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         <pubDate>2021-01-05 11:52:36 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055211952</guid>
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      <item>
         <title>NURHANIS KHALIESAH BINTI MOHAMAD ZAMANI</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055236402</link>
         <description><![CDATA[<div>Thank you Dr for today's class. Below is my summary for Group VIA<br><br>Characteristics<br>- Metallic character increases down the group<br>- IE decreases down the group<br>- Oxidation state: O= -2 (stable), -1 (peroxo)<br>- Tupe of compounds formed: ionic (E + Group IA and IIA) and covalent (most of the elements)<br><br>OXYGEN<br>- Exist in atmospheric gaseous (21%)<br>- Form 2 allotropes: O2 and O3<br>- Prepared from fractional distillation of liquid air and heating of KClO3<br>- Colourless gas, paramagnetic with 2 unpaired electrons<br>- Uses: produce fuel cell and respiration<br><br>OZONE<br>- Formed by photochemical decomposition of NO2<br>- Characteristics: blue gaseous, smell and strong oxidation agent<br>- Uses: detergent, deodorizer<br><br>OXIDES<br>- Oxide, peroxide and superoxide<br><br>H2O<br>- Colourless liquid, solid and gas<br>- Act as oxidizing and reducing agent<br><br>H2O2<br>- Colourless syrup liquid<br>- Strong oxidizing agent<br><br>SULPHUR<br>-  Odourless, tasteless<br>- Reactive element<br>- Flammable and burn in air with blue flame<br>- Uses: vulcanization of natural rubber<br>- Ionic sulphide: solid and dark in colour, solid insoluble in H2O<br>- Covalent sulphide: colourless gas, extremely toxic gas<br><br>SO2<br>- React with H2O to form acid solution<br>- Reducing agent and oxidizing agent<br>- Sources: volcanoes activities, combustion of sulfide ores, coal and oil<br><br>SO3<br>- Prepared by Touch process<br>- Forming SO3 crystal when needed<br><br>H2SO3<br>- Derived of SO2<br>- Sulfite salt is obtained by reacting acid and alkali<br><br>H2SO4<br>-  Conc. sulphuric acid is viscous liquid<br>- High bp due to hydrogen bond<br>- Uses: fertilizers, chemicals for detergent, ether, ester</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 12:08:40 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055236402</guid>
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      <item>
         <title>NUR HANISAH BINTI AZMAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055287797</link>
         <description><![CDATA[<div><strong>The Calcogens Group</strong></div><div> </div><div>Characteristics </div><div>·         The metallic character increase down the group</div><div>·         IE decrease down the group</div><div>·         Attain a noble gas electronic configuration</div><div>How Oxygen differ from other member</div><div>·         Electronegativity is very high</div><div>·         Differ in forming p-pi p-pi bond</div><div> </div><div><strong>OXYGEN</strong></div><div>·         Exist in atmospheric gaseous</div><div>·         Anionic mineral in earth crust</div><div> </div><div><strong>Preparation in commercial:</strong></div><div>-from fractional distillation of liquid air to separate o2</div><div> </div><div><strong>Preparation in laboratory</strong></div><div>-heating of KCIO3 (g)</div><div>-decomposition of H2O2</div><div>-electrolysis of water uses graphite as electrodes</div><div> </div><div><strong>Characteristic</strong></div><div>-colourless gas</div><div>-blue liquid in liquid form</div><div>Paramagnetic with 2 unpaired electron</div><div> </div><div><strong>Uses</strong></div><div>-producing ‘fuel cell’</div><div>-respiration</div><div>-welding industries</div><div> </div><div>OZONE</div><div><strong>Formation</strong></div><div>-O +O2 ----&gt; O3</div><div>-photochemical decomposition of NO2</div><div>-Industrial production of O3 involved electrical discharge of O2 gaseous</div><div> </div><div>Uses</div><div>-to kill bacteria</div><div>-as detergent</div><div> </div><div>COMPOUND OF OXYGEN</div><div><strong>OXIDE</strong></div><div>-normal oxide</div><div>-High oxide</div><div>-Suboxide</div><div>-mix oxide</div><div> </div><div><strong>Properties</strong></div><div><strong>-nature of bonding</strong></div><div>(ionic, covalent, intermediate, strong acidic)</div><div> </div><div><strong>-acid-base</strong></div><div>(strong acidic, neutral, amphoteric, strong base)</div><div> </div><div>HYDRIDES </div><div>Properties of water</div><div>-colorless liquis, solid and gas</div><div>-density of solid&lt;liquid</div><div>-act as ligand</div><div>-act as oxidizing and reducing agent</div><div> </div><div>Properties of H2O2</div><div>-colourless syrupy liquid due to hydrogen bonding</div><div>-the molecule thermally stable</div><div>-strong oxidizing agent</div><div>-Also act as reducing agent</div><div> </div><div> </div><div><strong>SULFUR</strong></div><div> </div><div>·         Exist as free element</div><div> </div><div>Properties of sulphur</div><div>-a high degree of solubility</div><div>Sulphur is flammable and burn in air with blue flame</div><div> </div><div>Uses</div><div>-used in vulcanization of natural rubber</div><div>-used in the bleaching of dried fruits and for paper product</div><div> </div><div>Chemical properties</div><div>-reaction with o2- combustion</div><div>-heating with metal</div><div>-reaction with conc. Acid</div><div> </div><div>Compound of sulphur</div><div>1.       Metallic sulphide</div><div>2.       2. Non-metallic sulphide</div><div> </div><div> </div><div>COMPOUNDS OF SULPHUR</div><div><strong>OXIDES OF SULPHUR</strong></div><div>-O2, O3</div><div> </div><div>Chemical properties</div><div>-react with water to form acid solution</div><div>-react with alkali forming sulphite salt</div><div>-act as reducing agent</div><div>- act as oxidizing agent</div><div> </div><div><strong>OXOACIDS OF SULPHUR</strong></div><div>Properties H2SO3</div><div>-sulfurous acid is dibasic acid</div><div>-the sulphite salt is obtained by reacting the acid with alkali</div><div> </div><div>Properties H2SO4</div><div>-dibasic acid, strong acid</div><div>-conc. Sulphuric acid is viscous liquid due to the hydrogen bond between the molecule </div><div>-high b.p due to hydrogen bond between molecules</div><div> </div><div>Uses </div><div>-act as fertilizers</div><div>-chemicals for detergent , ether, ester</div><div>-dehydrating agent</div><div>To produce concentrated HCL</div><div> </div><div>Industrial manufacturer of H2SO4</div><div>-by CONTACT/TOUCH PROCESS</div><div>1. combustion of Sà SO2</div><div>2. oxidation os SO2à SO3</div><div>3. SO3 tranformation to H2SO4</div><div> </div><div> </div><div><strong>HALIDES OF SULPHUR</strong></div><div>·         Structure: distorted trigonal bipyramidal</div><div> </div><div>Uses</div><div>-quantitative analysis in iodometry</div><div>-used in photography<br><br>question:<br>1. dr, can i have again a short explanation about quantitative analysis in iodometry?  what to prove from the experiment?</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 12:37:45 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055287797</guid>
      </item>
      <item>
         <title>CH&#39;NG ZI LONG</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055396604</link>
         <description><![CDATA[<div>Summary of Group VIA (chalcogens group)<br><br>O and S is non-metal, Se and Te is metalloid, Po is metal<br><br></div><pre>O atom</pre><div>anomalous:<br>- electronegativity is very high<br>- form strong ppi - ppi bond with O, C and N<br><br>Preparation:<br>- from fractional distillation of liquid air <br>- heating of KClO<sub>3</sub><br>- decomposition of H<sub>2</sub>O<sub>2</sub><br>- electrolysis of H<sub>2</sub>O<br><br>Compounds: O<sub>3</sub>, oxide, H<sub>2</sub>O and H<sub>2</sub>O<sub>2</sub><br><br>- oxidation increases, acidity increases<br><br></div><pre>S atom</pre><div>- exists as S<sub>8</sub> molecule in the form 0f puckered ring in crown shape<br>- has 2 forms: alpha-rhombic S and beta-monoclinic S<br>- yellow solid<br>- burn in air with blue flame<br><br>Compounds: metallic sulfide,  covalent sulfide, CS<sub>2</sub>, SO<sub>2</sub>, SO<sub>3</sub>, sulfur oxoacids, sulfur halides and thiosulfuric acid</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 13:21:54 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055396604</guid>
      </item>
      <item>
         <title>PUTERI FARISAH BALQIS BINTI ERWAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055441044</link>
         <description><![CDATA[<div>Thank you Dr for today class, this is my summary for Group IVA (halogen)<br>-Metallic characteristic in INCREASES down the group<br>-Ionization energy decreases steadily because of shielding effect <br>GPIVA + GPIA/GPIIA = ionic , others = covalent bonds (to achieve noble gas electronic configuration)<br>Why Oxygen is different?<br>-electronegativity very high (hydrogen bond present)<br>-forming strong ppai-ppai bonds with carbon,nitrogen<br>Oxygen<br>2 alltropes -O2 , O3 <br>Preparation <br>1)Fractional distillation of liquid air – separate O2 (commercial)<br>2)Heating KCLO3 <br>3) Decomposition H2O2 <br>4) Electrolysis of H2O -graphite electrode<br>Characteristic<br>-colourless gass<br>-blue liquid<br>-O2 paramanegtic (attracted to magnetic field w 2 unpaired electron)<br>-Reactive at elevated temperature and combine directly w most element (except noble gas)<br>Uses <br>-producing “fuel cell”<br>-respiration<br>-welding industries <br>OZONE (O3) <br>-blue gasses, dark blue liquid, smell bad, strong oxidation agent <br>Use in water treatment to kill bacteria (not produce smell, expensive), detergent, deodorizer, preservative , prevent UV ray.<br>COMPOUNDS <br>Oxide<br>-oxide, peroxide, superoxide<br>-higher bond order, shorten bond length, stronger interaction.<br>Hydrides of oxygen, H2O<br>-colourless (all phase) , polar molecules (hydrogen bond exist)<br>-neutral oxide but change to <br>Acid (accept H+)/base (donates H+)-&gt; amphoteric character<br>-act as ligand – form comples<br>-act as oxidizing agent and reducing agent.<br>Hydrogen Peroxide, H2O2<br>-book-shaped structure<br>-strong oxidizing agent , reducing agent.<br>-uses as bleaching agent, antiseptic, disinfectiont, mild in toothpaste<br>SULFUR<br>-exist as free element.<br>-allotrope, alpha and beta rombic<br>-extracted from Frash Process<br>-not readiy reacted by water<br>-reactive element<br>-high degree of solubility <br>-blue flame<br>-uses – sulfuric acid, black gunpowder, vulcanization.<br>Oxide<br>-SO2 <br>-colourless gas, chocking smell, poisonous gas<br>-volacnoes activities, combustion of sulfie ores, coal and oil. <br> SO3<br>-touch process, heating of ferum (III) sulfate<br>-react with water form H2SO4<br>OXOACIDS -h2so3<br>-sulfurous acid<br>-ionization – dibasic acid<br>-sulfite salt is obtained reacting the acid w alkali<br>-touch process<br>Halides Sulfur <br>-F, CL, Br<br>-decreases stability<br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 13:36:17 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055441044</guid>
      </item>
      <item>
         <title>SITI KHADHIJAH BINTI NASIR</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055566965</link>
         <description><![CDATA[<div>Thank you Dr for class today :)<br><br>Summary for group VIA:<br><br></div><ul><li>As go  down the group metallic character increases, IE decreases. </li><li>Form ionic and covalent compounds</li></ul><div><strong>Oxygen</strong></div><ul><li>Electronegativity very high </li><li>Forming strong pπ-pπ bond with itself , carbon and nitrogen</li><li>From 2 alloptropes oxygen and ozone</li><li>Colourless gas and blue liquid</li><li>Reactive at elevated temperature and combine directly with most element except noble gas</li><li>Uses : producing “ fuel cell “ , respiration , welding industries</li></ul><div>Ozone , O₃</div><ul><li>Blue gaseous in colour, smell and strong oxidizing agent</li><li>For testing of ozone uses mercury</li><li>In substitute of Cl₂ in water treatment</li><li>Ozone prevent high energy UV</li></ul><div><br></div><div>Compound of oxygen :</div><div>Oxides (oxide , peroxide and superoxide)</div><ul><li>Normal oxide = follow valence rule</li><li>High oxide  = oxides with more oxygen</li><li>Suboxide = less content of oxygen</li><li>Mix-oxide = mix of 2 different of oxides</li></ul><div>Hydrides (water)</div><ul><li>Colourless liquid , solid and gas</li><li>Polar molecule</li><li>Neutral oxide but changes to acid or base depends on the compound being reacted</li><li>Acts as ligand</li></ul><div>Hydrogen peroxide</div><ul><li>Book-shaped structure</li><li>Colourless liquid due to hydrogen bond</li><li>Uses : bleaching agent, antiseptic</li></ul><div><br></div><div><strong>Sulfur</strong></div><ul><li>Exists as free element</li><li>S₈ molecule in crown shape</li><li>Odourless, tasteless, light yellow non metallic solid</li><li>Not readily wetted or dissolved in water</li><li>Reactive element</li><li>High degree of solubility and flammable</li><li>Uses : produce sulfuric acid, used in vulcanization</li></ul><div>Oxide ( SO₂ , SO₃)</div><ul><li>SO₂ react with water to form acid solution and react with alkali form sulfite salt</li><li>Volcanoes activities</li><li>SO₃ prepared by contact process</li><li>Forming SO₃ crystal when cooled</li></ul><div>Oxaacids (H₂SO₃, H₂SO₄)</div><ul><li>The salt of H₂SO₃ is sulfite anion. H₂SO₃ is dibasic acid </li><li>The salt of H₂SO₄ is sulfate anion. H₂SO₄ is dibasic acid , strong acid. It viscous liquid due to hydrogen bond. </li><li>H₂SO₄ is sulfonation agent</li><li>H₂SO₄ uses as fertilizers , to produce HCl</li></ul><div>Halides </div><ul><li>Exist (F and Cl) , Br only a few and I does not exist</li><li>As go down , the halides of sulfur decrease in stability</li></ul><div>Thiosulfuric acid</div><ul><li>H₂S₂O₃ is not stable</li><li>Uses in quantitative analysis in iodometry and photography</li></ul>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 14:08:57 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055566965</guid>
      </item>
      <item>
         <title>SITI NAZURAH BINTI NAZARUDDIN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055592316</link>
         <description><![CDATA[<div>Thank you for today's class Dr!<br>summary for group VIA:<br>- metallic character increases, IE and shielding effect decreases down the group.<br>-Oxidation state of -2 are stable for O and other members -2 to +6.</div><div>-O different from other members because the electronegativity of oxygen is very high and O also differs markedly from the rest in forming strong ppi-ppi bonds with itself.<br>OXYGEN<br>- anionic mineral in the earth crust.<br>- form 2 allotropes which is O2 &amp; O3.</div><ul><li>Preparation:</li></ul><div>*From fractional distillation of  liquid air to separate O2 (Commercial)<br>*Heating of KClO3, Decomposition of H2O2 and electrolysis of water uses graphite as electrodes (in lab)<br><br>- colourless gas and blue liquid<br>-O2 is paramagnetic with 2 unpaired electrons according to MOT.<br>- Reactive at elevated temperature.<br><br>-USES: producing "fuel cell' , respiration and for welding industries<br>- ozone form by direct reaction, photochemical decomposition of NO2 and electrical discharged of O2 gaseous.<br>-use mercury for testing for O3<br>-OXIDES: normal oxide, high oxide, suboxide, mix-oxide<br>-acidity increase as the oxidation number of the same element increase.<br><br>SULFUR<br>-exist as free element, S which form by bacterial action on volcanic gas.<br>- PROPERTIES: odourless, tasteless, light yellow non-metallic solid.<br>- Sulfur is not readily wetted or dissolved by water.<br>- Sulfur is flammable and burn air with blue flame.<br>-USES:Most of the sulfur produced is to produce sulfuric acid.<br>-CHEM PROPERTIES: react with O2, Heating with metal becomes metal sulfide and reaction with conc. acid.<br>- COMPUND SULFUR</div><ul><li>metallic sulfide(ionic sulfide)</li><li>non-metallic sulfide(covalent sulfide)</li></ul><div>-CHEM PROPERTIES SO2:</div><ul><li>react with water to form acid solution</li><li>react with alkali</li><li>reducing agent</li><li>oxidizing agent</li></ul><div>- PREPARATION SO3</div><ul><li>contact process(commercial)</li><li>dehydration of conc H2SO4 by solid P2O5.</li></ul><div>-OXOACID, H2SO4<br>-Halides of sulfur, SX4, SX6 and Thiosulfuric acid and its salts</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 14:14:36 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055592316</guid>
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      <item>
         <title>SITI NOR SYAFIQAH BINTI MOHAMAD</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055673721</link>
         <description><![CDATA[<div>Thankyou for the lesson Dr ❤<br>Summary for group VIA :<br>-Also known as halcogens group <br>-The metallic character ⬆ when down the group<br>-IE ⬇ down the group owing to the  decrease shielding effect<br>-Oxidation state ,O :(-2)stable, -1(peroxo) &amp; other is between -2 to +6<br>-2nd highest electronegativity in periodic table<br><br><strong>OXYGEN<br>🐾</strong>OXYGEN<strong><br></strong>-forms 2 allotropes which is oxygen and ozone<br>-Preparation <br>1)In commercial-fractional distillation of liquid air to separate O2<br>2)In laboratory-Heating of KClO3 [catalyst=MnO2],Decomposition of H2O2[catalyst=MnO2],Electrolysis of water uses graphite<br>-Colourless gas<br>-Blue liquid <br>-Paramagnetic with 2 unpaired electron according to MOT<br><br>🐾OZONE<br>-O2(g) + O2(g) ➡ O3(g)<br>-Photochemical decomposition of NO2<br>-blue gaseous in colour<br>-dark blue liquid<br>-strong oxidation agent<br>-use mercury,Hg for testing of O3<br>-use as detergent,deodorizer and etc<br><br>Compound of Oxygen:<br>🐬<em>OXIDES(oxide,peroxide &amp; superoxide)</em><br>-Normal oxide follow valence rule<br>-High oxide is oxide with more oxygen<br>-Suboxide is less content of oxygen<br>-Mix-oxide is mix of 2 different of oxides<br><br>🐬<em>HYDRIDES ,H2O</em><br>-polar molecule <br>-act as ligand<br>-act as oxidizing agent and reducing agent<br>-colourless in all phase<br><br>🐬<em>HYDROGEN PEROXIDE</em><br>-book-shaped structure <br>-colourless liquid due to hydrogen bond<br>-use as bleaching agent,antiseptic<br><br><strong>SULFUR<br>-</strong>Exist as free element<br>-Allotropes :alpha-rhombic S and Beta-monodinic S<br>-Extracted by Frasch Process<br>-Properties<br>&gt;odourless,tasteless,light-yellow non-metallic solid<br>&gt;reactive element<br>&gt;high degree of solubility<br>&gt;flammable and burn in air with blue flame<br>-Uses<br>&gt;produce H2SO4<br>&gt;component of black gun powder<br>&gt;use in vulcanization of natural rubber<br>-Chemical properties<br>&gt;reaction with O2(combustion)<br>&gt;heating with metal to become metal sulfide<br>&gt;reaction with conc.acid<br><br>Compound of Sulfur:<br>◀Metallic Sulfides(ionic sulfides)<br>&gt;all are solid &amp; dark/black in colour except ZnS &amp; PbS (yellow solid)<br>&gt;react with acid<br>◀Non-Metallic Sulfide(covalent sulfide)<br>&gt;colourless gas<br>&gt;foul smelling like rotten eggs<br>&gt;extremely toxic gas&gt;act as reducing agent<br><br>Compound of Sulfur :<br><em>OXIDE</em><br>🦋SO2<br>-sp2<br>-bend shape<br>-AX2E<br>-poisonous gas<br>-react with water to form acidic solution<br>-react with alkali forming sulfite salt<br>-act as reducing and oxidizing agent<br>🦋SO3<br>-sp2<br>-trigonal planar shape<br>-AX3<br>-reaction with H2SO4 ➡ oleum<br>-preparation[ by contact/touch process] &amp; [heating of ferum(III) sulfate]<br><br><em>OXOACID</em><br>🦋H2SO3<br>-dibasic acid <br>-acid + alkali ➡ sulfite salt<br>-salt when dissolve in H2O undergo hydrolysis<br>🦋H2SO4<br>-dibasic acid,but strong acid because extra H<br>-high B.P<br>-In dilute concentration acts as acid <br>-In conc. &amp; hot act as oxidizing agent <br>-sulfonation agent <br>-act as catalyst in esterification and etc<br>-mostly use in making fertilizers<br><br><em>HALIDE</em><br>🦋SX6(sulfur hexhalides)<br>-sp3d2<br>-not a lewis base because its donate electron<br>-not oxidizing agent because F protect the S<br>-much better insulator than air<br>🦋H2S2O3(Thiosulfuric acid)<br>-not stable<br>-sp3<br>-use in quantitative analysis in Iodometry<br>-use in photography<br><br><br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-05 14:31:34 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1055673721</guid>
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      <item>
         <title>NURFATINI NASUHA BINTI MOHD NAIM</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1056147666</link>
         <description><![CDATA[<div>Thank you very much for today’s lessons Dr. <br><br>Here summary for Group VIA</div><div>Down the group:</div><div>metallic character increases</div><div>IE decrease</div><div><br></div><div>Compounds form</div><div>ionic (Group IA &amp; IIA)</div><div>covalent (most elements)</div><div><br></div><div>Oxygen different</div><div>very high electronegativity</div><div>forming strong ppi-ppi bonds with O, C, N</div><div><br></div><div>Oxygen, O2</div><div>exist in the atmospheric gaseous</div><div>anionic mineral in earth crust</div><div><br></div><div>form 2 allotropes (O2 &amp; O3)</div><div><br></div><div>Preparation:</div><div>Commercial:</div><div>From fractional distillation of liquid air - separate O2</div><div><br></div><div>Laboratory:</div><div>Heating KClO3</div><div>decomposition H2O2</div><div>Electrolysis of water use graphite as electrode</div><div><br></div><div>Characteristics:</div><div>colourless gas</div><div>liquid form (blue liquid)</div><div>paramagnetic with 2 unpaired e-</div><div>reactive at elevated temperature and combine directly with most elemnts (except noble gas)</div><div><br></div><div>Uses:</div><div>producing fuel cell</div><div>respiration</div><div>welding industries</div><div><br></div><div>Ozone, O3</div><div>Formation</div><div> O + O2 ---&gt; O3</div><div>Photochemical decomposition of NO2</div><div>Industrial - electrical discharged of O2 gaseous</div><div><br></div><div>Characteristics</div><div>blue gaseous</div><div>dark blue liquid</div><div>smelly</div><div>strong oxidizing agent</div><div><br></div><div>Uses:</div><div>in susbtitute of Cl2 in water treatment - kill bacteria</div><div>as detergent, deodorizer, preservative</div><div>in atmosphere: prevent high energy UV from reach earth</div><div><br></div><div>Oxides</div><div>Oxide (O2-) - paramagnetic</div><div>Peroxide ((O2)2-) - diamagnetic</div><div>Superoxide ((O2)-) - paramagnetic</div><div><br></div><div>Properties:</div><div>Natural of bonding</div><div>acid-base</div><div><br></div><div>Acid-base:</div><div>Oxidation increase, acidity increase</div><div><br></div><div>Hydrides</div><div>H2O - water</div><div><br></div><div>Properties:</div><div>colourless liquid, gas, solid</div><div>polar molecule --&gt; solvent for most ionic</div><div>density solid &lt; liquid</div><div>neutral oxide -&gt; change to acid/base depend on compound reacted (Amphoteric)</div><div>act as ligand</div><div>oxidizing and reducing agent</div><div><br></div><div>H2O2 - hydrogen peroxide</div><div>open book structure</div><div><br></div><div>Properties:</div><div>colourless syrupy liquid -&gt; HB</div><div>thermally unstable and decompose in presence of finely divided metal catalyst</div><div>strong oxidizing agent</div><div>reducing agent</div><div><br></div><div>Uses:</div><div>bleaching agent</div><div>antiseptic, disinfectant and germicide</div><div>MgO2 &amp; CaO2 as mild oxidant in toothpaste</div><div><br></div><div>Sulfur</div><div>exists as free element, S</div><div>ores : pyrite, galena, sphalerite</div><div>S8 molecule ( puckered ring form)</div><div>Allotropes: alpha-rhombic S and beta-monoclinic S</div><div><br></div><div>Extraction:</div><div>By Frasch Process : due to low melting point &amp; low density</div><div><br></div><div>Properties:</div><div>odourless, tasteless, light yellow non-metallic solid</div><div>not readily wetted or dissolved by water</div><div>reactive element, combine with all other element (except inert gas, gold, platinum)</div><div>rhombic &amp; monoclinic sulfur are soluble in organic solvents</div><div>high degree of solubility in CS2 -&gt; dissolve rhombic sulfur</div><div>flammable &amp; burn in air with blue flame</div><div><br></div><div>Uses:</div><div> to produced sulfuric acid, H2SO4</div><div>component of black gunpowder</div><div>used in vulcanization of natural rubber</div><div>used in bleaching of dried fruits and paper products</div><div><br></div><div>Chemical prop:</div><div>Reaction with O2 (combustion)</div><div>Heating with metal -&gt; metal sulfides</div><div>Reaction with conc. acid</div><div><br></div><div>Compounds:</div><div>Metallic sulfides (ionic)</div><div>Solid and dark/black excp ZnS &amp; PbS -&gt; yellow</div><div>Anionic sulfide from highly electropositive metals undergo hydrolysis -&gt; basic solution</div><div>Solid insoluble in water</div><div>React with acid --&gt; H2S gas evolves</div><div><br></div><div>2) Non-metallic sulfide (covalent)</div><div>Hydrogen sulfide, H2S</div><div>colourless gas</div><div>foul smelling</div><div>extrmely toxic gas</div><div>dissolve in water --&gt; acidic solution</div><div>easily oxidized</div><div>reducing agent</div><div><br></div><div>Carbon disulfides, CS2</div><div>colourless liquid, fouling smell</div><div>solvent S, P, I2, rubber, wax</div><div>hydrolyze in water</div><div><br></div><div>Oxides</div><div>SO2</div><div>Chemical prop:</div><div>React with water --&gt; acidic solution (acid rain)</div><div>React with alkali --&gt; sulfite salt ((SO3)2-) Reducing agent</div><div>Oxidizing agent</div><div><br></div><div>Sources:</div><div>volcanoes activities</div><div>combustion of sulfide ores, coal, oil</div><div>roasting anhydride CaSO4 with coke</div><div>reaction of sulfite salt with acid</div><div>reaction of metal with conc. sulfuric acid</div><div><br></div><div>* SO3</div><div>Preparation:</div><div>Contact/Touch Process </div><div>Heating of ferum(III) sulfate</div><div>dehydration of conc. H2SO4 by solid P2O5</div><div><br></div><div>Properties:</div><div>Forming SO3 crstal when cooled</div><div>  alpha-SO3 : crystal trimetric form</div><div>  beta-SO3 : cube, transpareny crystal, meta stable</div><div>  gamma-SO3 : needle-like, most stable</div><div>Reaction with water</div><div>Reaction with sulfuric acid --&gt; produced oleum</div><div><br></div><div>Oxoacid</div><div>H2SO3 (Sulfurous acid)</div><div>Derived from SO2</div><div>Salt : sulfite anion (SO3)2-</div><div>Properties:</div><div>Ionization</div><div>Sulfite salt obtained by react acid with alkali</div><div>  dissollves in water undergo hydrolysis</div><div><br></div><div>H2SO4 (Sulfuric acid)</div><div>Derived from SO3</div><div>Salt : sulfate anion (SO4)2-</div><div>Properties:</div><div>dibasic acid, strong acid</div><div>viscous liquid -&gt; HB between molecule</div><div>high bp -&gt; HB</div><div>conc. acid: Dehydrating agent</div><div>dilute concentration: acid</div><div>conc. and hot: oxidizing agent</div><div>sulfonation agent</div><div>as catalyst - H2SO4 absorb water</div><div><br></div><div>H2SO4 (Sulfate salt)</div><div>obtained by react H2So4 with</div><div>  alkali</div><div>  metal oxide</div><div>  Metal</div><div>  carbonate/bicarbonate</div><div><br></div><div>Uses sulfuric acid</div><div>Fertilizers</div><div>Chemical for detergent, ether, ester</div><div>Dehydrating agent -&gt; remove water from gas, liquid, solid</div><div>pigment -&gt; TiO2, TiOSO4: white glow pigment in paint</div><div>produce conc. HCl</div><div><br></div><div>Industrial of sulfuric acid</div><div>Contact Process</div><div>Combustion S --&gt; SO2</div><div>Oxidation SO2 --&gt; SO3</div><div>SO3 transformation to H2SO4</div><div>    - Dissolution of SO3 into H2SO4 --&gt; oleum</div><div>   - Addition of water to H2S2O7 --&gt; H2SO4</div><div><br></div><div>Halides</div><div>exists for:</div><div>  : X = F &amp; Cl</div><div>  : X = Br - only a few</div><div>  : X = I - not exist</div><div>disulfur dihalide, S2X2</div><div>   S2F2 - gas</div><div>  S2Cl2 - yellow liquid</div><div>  S2Br2 - unstable liquid</div><div>( decrease in stability )</div><div>hydrolysis in water</div><div>S2Cl2 react further with Cl2 --&gt; SCl2</div><div>SCl2 reacts with ethene give mustard gas</div><div><br></div><div>Sulfur tetrahalide, SX4</div><div>Structure: Trigonal bipyramidal</div><div>Reactions:</div><div>Hydrlysis in water and alkali</div><div> Able to expend the octet</div><div><br></div><div>Sulfur hexahalides, SX6</div><div>Synthesis:</div><div>S react directly with all halogen exp iodine</div><div>Properties;</div><div>colourless, odorless, tastesless, non-toxic, thermally stable, insoluble in water</div><div>Not Lewis base, no available non-bonding</div><div>Despite +6 it is not oxidizing agent - F atoms protect S</div><div>Much better insulator than air</div><div><br></div><div>Thiosulfuric acid (H2S2O3) &amp; salts (S2O3 2-)</div><div>H2S2O3 not stable </div><div>Important salt --&gt; Na2S2O3.5H2O</div><div><br></div><div>Uses:</div><div>Quantitative analysis in Iodometry: titration method, use starch as indicator (blue --&gt; decolorize)</div><div>In photography</div>]]></description>
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         <pubDate>2021-01-05 16:06:20 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1056147666</guid>
      </item>
      <item>
         <title>TAN SIN JOE</title>
         <author>sjtan2000</author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1056250143</link>
         <description><![CDATA[<div>Thank you Dr.Sheela for today's lecture.<br>Group IVA summary :<br><br><strong>Characteristic</strong></div><ul><li>O, S (non metallic, insulators); Se, Te (metalloid, semiconductors); Po (metal, conductor)</li><li>IE decreases down group &lt;- decreased shielding effect (d10, f14 inner shells_Se, Te, Po)</li><li>Form ionic bond with GIA &amp; GIIA-form M2- ions</li><li>Form covalent bond with most elements-two covalent bonds (e.g. H2O, (CH3)2S)</li><li>Form MR- ions (e.g. OH-, HS-)</li><li>Form onium salts (e.g. H3O+, R3S+)</li><li>Form hypervalents (MR4, MR6 except O - no d orbitals)</li></ul><div><br><strong><mark>O</mark></strong><strong> </strong></div><ul><li>Exist in atmospheric gas 21%</li><li>Anionic mineral in earth crust (carbonate, nitrate, sulphate, oxides)</li><li>Blue (l)</li><li>2 allotropes: O2, O3</li><li>Reactive at high temp.</li><li>Combine w most elements except GVIII</li><li>Very high electronegativity;</li></ul><div>-form ionic M-O bond<br>-form H bond in compounds with O-H</div><ul><li>Form strong pπ-pπ bonds with O, C, N</li></ul><div>-e.g. O=O, O=C=O, O=N-O</div><div>Other group members:</div><ul><li>Form rings &amp; chains (√single bonds, metallic lattices)</li><li>Form dπ-pπ type multiple bonds (hypervalents)</li></ul><div><em>*pπ-pπ bond is stronger than pπ-dπ bond</em></div><div><br><strong>Preparation</strong><br><em>Commercial</em></div><ul><li>Separate O2 by factional distillation air(l)</li></ul><div><em>Lab</em></div><ul><li>Heat KClO3(s)</li><li>Decompose H2O2</li></ul><div><strong>Uses</strong></div><ul><li>Produce fuel cell</li><li>Respiration</li><li>Welding industries</li></ul><div><br><strong>O3, Ozone</strong></div><ul><li>Dark blue (l)</li><li>Strong oxidation agent</li></ul><div><strong>Formation</strong></div><ol><li>O + O2 h&gt; O3</li><li>Photochemical decomposition of NO2</li><li>Industrial production (chemical discharged of O2(g) -&gt; cooling to (l) -&gt; distillation)</li></ol><div><strong>Testing</strong><br>Mercury: bright shining -&gt; tarnish, stick to glass surface<br><strong>Uses</strong></div><ul><li>Substitute Cl in water treatment;</li></ul><div>-high cost<br>-does not react w HC (Cl2 does -&gt; carcinogenic)<br>-does not produce smell/taste to water<br>Prevent high E UV(involved in both formation &amp; destruction of O3) from reaching earth</div><ul><li>Ozone treatment<br><br></li></ul><div><strong>Oxides</strong></div><ul><li>O²-, Oxides, Paramagnetic, 12e-; 2O²- =diamagnetic, 16e-</li><li>O2²-, Peroxide, Diamagnetic, 14e-</li><li>O2-, Superoxide, Paramagnetic, 13e-</li></ul><div>*<em>Bond length O²- &lt; O2- &lt; O2²-</em><br><br></div><div>Oxides (follow valence rule)</div><div>High oxide (O content &gt; actual) </div><div>Suboxide (O content &lt; actual)</div><div>Mix-oxide: spinel compound</div><div><strong>Properties</strong></div><ul><li>Bonding: Ionic, covalent, intermediate</li><li>Acid-base: Strong acidic, neutral, amphoteric, strong base</li></ul><div>*<em>Oxidation state is directly proportional to acidity<br></em><br><br><strong>Water, H2O</strong></div><ul><li>sp³, bent </li><li>Polar: solvent for most ionic &amp; polar compounds &lt;- form H bond</li><li>Density (s) &lt; (l)</li><li>Amphoteric: change to acid / base depends on compound reacted</li><li>Act as:</li></ul><div>-ligand<br>-oxidizing &amp; reducing agent<br><br><br><strong>Hydrogen Peroxide, H2O2</strong></div><ul><li>Book-shaped structure</li><li>Colourless syrupy liquid &lt;- H bond</li><li>Miscible w water, soluble in alcohol</li><li>Thermally unstable:</li></ul><div>-decomposes in presence of finely divided metal<br>2H2O -&gt; 2H2O + O2</div><ul><li>Strong oxidizing agent, reducing agent</li></ul><div><strong>Uses</strong></div><ul><li>Bleaching agent ( wool, hair, teeth)</li><li>Antiseptic, disinfectant, germicide</li><li>MgO2, CaO2: mild oxidant in toothpaste</li></ul><div><br><mark>S</mark>: brimestone</div><div>Exist as:</div><ol><li>Free element &lt;- volcanic gas, H2S</li><li>Ores: FeS, PbS, ZnS</li><li>S8 molecule (crown shape): </li></ol><div>alpha-rhombic S --97°C--&gt; beta-monoclinic S<br>*<em>Both limitedly soluble in most organic solvents</em><br>*<em>CS2 √high degree solubility (often used to dissolve rhombic S)</em><br><br><strong>Extraction</strong></div><ul><li>Mined by Frasch Process (low m.p): 99.5% purity:</li></ul><div>3 concentric pipes:</div><ol><li>Pump superheated water down outermost pipes</li><li>Pump compressed air down innermost pipes</li><li>Mixture (hot water + molten S + air) comes up middle pipe</li></ol><div><strong>Properties</strong></div><ul><li>Odorless, tasteless</li><li>Light yellow</li><li>Float on water</li><li>Flammable, blue flame</li></ul><div><strong>Uses</strong></div><ul><li>Produce H2SO4</li><li>Component of black gun powder (mixture: KNO3, C, S)</li><li>Vulcanisation of natural rubber</li><li>S compounds - bleaching (dried fruits, paper products)</li></ul><div><br></div><div><strong>Compounds</strong></div><ul><li>Metallic sulfide</li><li>Solid (soluble in water), dark except ZnS, PbS: yellow</li><li>Anionic sulfide fr highly electropositive metals --hydrolysis--&gt; basic solution</li></ul><div>S²- + acid -&gt; H2S<br><br><br><strong>Non-metallic sulfide</strong></div><ul><li>Colourless, foul smelling, extremely toxic</li><li>Dissolve in water -&gt; acidic soln</li><li>Easily oxidized -&gt; reducing agent<br><br></li></ul><div><strong>CS2</strong></div><ul><li>Colourless (l), foul smelling</li><li>Solvent: S, P, I2, rubber, wax</li><li>Hydrolyze in water -&gt; CO2 + H2S</li></ul><div><br><strong>Oxides</strong><br><strong>SO2</strong></div><ul><li>sp³, bent</li><li>chocking smell, poisonous gas</li><li>Oxidizing &amp; reducing agent</li><li>React w:</li></ul><div>Water -&gt; acidic soln (acid-rain)</div><div>Alkali -&gt; sulfide salt, SO3³-</div><div><strong>Sources</strong></div><ul><li>Volcanoes activities -&gt; emission of SO2 &lt;- high temp from rotten earth</li><li>Combustion: sulfide ores, coal, oil</li><li>Roasting: anhydride CaSO4 + coke; sulfite salt + acid; metal + {H2SO4}</li></ul><div><br></div><div><strong>SO3</strong></div><ul><li>Form SO3 crystal when cooled to ~-83°C</li><li>Alpha-SO3:cyclic trimeric, m.p 290K</li><li>Beta-SO3: cube, meta stable, m.p 305K</li><li>Gamma-SO3: needle like crystal, most stable</li></ul><div><strong>Rxn</strong></div><ul><li>+ water -&gt; H2SO4</li><li>+ H2SO4 -&gt; H2S2O7, Oleum</li></ul><div><strong>Preparation</strong><br><em>Commercial</em></div><ul><li>Touch/Contact Process</li></ul><div>SO2 + O2 --V2O5--&gt; SO3</div><ul><li>Heat Fe(III) sulphate</li></ul><div><em>Dehydration of {H2SO4} by P2O5(s)</em></div><div><br><strong>Oxoacid<br>H2SO3</strong>, sulphorous acid/sulfuric(IV) acid</div><ul><li>From SO2 + H2O</li><li>Dibasic acid</li></ul><div>Salt: sulfite anion, SO3²- (H2SO3 - 2H+)</div><ul><li>From H2SO3 + alkali</li><li>Dissolve in water -&gt; hydrolysis </li><li>Sulfonation agent<br><br></li></ul><div><strong>H2SO4</strong>, sulphuric acid/sulfuric(VI) acid</div><ul><li>From SO3 + H2O</li><li>Dibasic, strong acid</li><li>{H2SO4}: viscous (l) &amp; high b.p &lt;- H bond</li></ul><div>Salt: sulfate anion, SO4²-</div><ul><li>From H2SO4: - 2H+; +alkali; +oxide; +metal; +carbonate/bicarbonate</li></ul><ol><li>{H2SO4}: dehydrating agent</li><li>Dilute H2SO4: dilute metal</li><li>{hot H2SO4}: oxidizing agent</li></ol><div><strong>Uses</strong></div><ul><li>Produce {HCl}</li><li>Fertilisers: (NH4)2SO4</li><li>Dehydrating agent: remove water fr gas, solid, liquid</li><li>TiOSO4: white glow pigment</li></ul><div><strong>Industrial manufacture</strong></div><ul><li>Contact Process:</li></ul><div>Combustion: S + O2 -&gt; SO2<br>Oxidation: SO2 + O2 --V2O5--&gt; SO3</div><ul><li>Transformation: </li></ul><div>Dilute SO3 + {H2SO4} -&gt; H2S2O7 + certain amount H2O (avoid fog formation) -&gt; H2SO4 w known conc.<br><br><strong>Halides</strong></div><ul><li>Hydrolysis in water</li><li>React further w Cl2 -&gt;SCl2</li><li>React w ethane, C2H4 -&gt; mustard gas S(C-²CH2CL)2</li><li>Exist for: F &amp; Cl</li><li>A few: Br</li><li>Not exist: I</li></ul><div><br><strong>DiSulfide dihalide, S2X2</strong></div><ul><li>Stability: S2F2 (g) &gt; S2Cl2 yellow(l) &gt; S2Br2 unstable(l)</li></ul><div><br><strong>Trihalide, SX4</strong></div><ul><li>Distorted trigonal bypiramidal</li></ul><div><em>Preparation</em></div><ul><li>Cl; /F</li><li>S(l) + X2 --/-73°C(inert atmosphere)--&gt; SX4 </li></ul><div><strong>Rxn</strong></div><ul><li>Hydrolysys -&gt; SO2 + -X</li><li>+ OH- -&gt; SO3- + 4X + 3H2O</li><li>Able to expand octet</li><li>SF4 + F2 -&gt; SF6</li></ul><div><br><strong>Hexahalides, SX6</strong></div><ul><li>Synthesis directly w all haligens except I</li><li>Thermally stable, insoluble in H2O</li><li>Not lewis base &lt;- no available lone pair e-</li><li>Not oxidizing agent &lt;- F holds S very closely</li><li>Much better insulator than air</li></ul><div><br><strong>Thiosulfuric acid, H2S2O3</strong></div><ul><li>S: sp³</li><li>Not stable</li><li>Salt: S2O3²-</li><li>Important salt: Na2S2O3.5H2O</li></ul><div><br><strong>Uses</strong></div><ul><li>Iodometry: Quantitative analysis- titration method w starch as indicator</li><li>I: blue -&gt; decolorize</li><li>Photograohy: remove Ag(I) salt not reduced by Ag</li></ul><div><br><br><br></div>]]></description>
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         <pubDate>2021-01-05 16:26:16 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1056250143</guid>
      </item>
      <item>
         <title>NURUL NASYRAH BT SAHAR</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1059177002</link>
         <description><![CDATA[<div>Thank you Dr for the lessons,<br>here are my summary for group IVA<br><br>-known also as chalcogens group<br>-the metallic character increase,IE and shielding effect decrease down the group<br>-stble oxidatuion state for o is -2,while other members -2 to +6<br>-oxygen different from thers member based on electronegativity and  strong forming bond.<br><br><strong>OXYGEN</strong><br>-2 allotropes: oxygen(o2),ozones(o3)<br><strong>oxygen</strong><br>-preparation: commercial-from frictional distillation liquid air<br>lab-heating of KClO3,decomposition of H2O2,electrolysis of water <br>O2 is paramagnetic<br>-uses:producing fuel cell, respiratin,welding industries.<br><strong>ozone </strong><br>-formation- directly,photochemical decomposition of NO2,industrial involved electrical discharged O2 gaseous<br>-strong oxidation agent<br>-dark blue liquid <br>-mercury was uses to test the presence of o3.<br>-uses:detergent,deodorizer, preservatives<br><strong>OXIDES</strong><br>oxides:paramagnetic<br>peroxide:diamagnetic<br>superoxide:paramagnetic<br>-oxide,high oxide,suboxide,mix-oxide<br><strong>HYDRIDES</strong>- water (act as ligand)<br><strong>HYDROGEN PEROXIDE</strong>-book shaped structure,bleaching agent <br><br><strong>SULPHUR</strong><br>exist as S8 molecule (crown shape)<br>-2 allotropes:<br>rhombic sulphur,monoclinic sulphur<br>-extraction by Frasch Process<br>-odourless,not readily wetted,high degree of solubility<br>-uses: to produce sulphuric acid<br><strong>COMPOUND OF SULPHUR</strong><br>-metallic sulfide (ionic sulfide)<br>-non-metallic sulfide (covalent sulfide):hydrogen sulfide,carbon disulfide<br><strong>OXIDES </strong><br>-SO3 - preparation by contact process,heating of ferum(III) sulfate,dehydration of conc.H2SO4<br><strong>OXOACIDS</strong><br>-sulfurous acid (H2SO3), salt obtained by reacting acid with alkali<br>-sulfuric acid (H2SO4) ,dibasic acid,strong acid,uses for fertilization,dehydrating agent,chemical detergent,industrial manufacture :contact process<br><strong>HALIDES</strong><br>-disulphur dihalides-S2F2,S2Cl2,S2Br2<br>-sulphur tetrahalides,SX4 <br>-sulphur hexahalides,SX6<br><br><strong>thiosufuric acid </strong>is not stable ,uses for quantitative analysis iodometry ,used to removed silver (I) salt</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-06 13:19:02 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1059177002</guid>
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      <item>
         <title>TAN JING XUAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1059502920</link>
         <description><![CDATA[<div>Thank you dr for the lesson and here is my summary for group VIA:<br>-O&amp;S --&gt; non-metal <br> Se&amp;Te --&gt; metalloid<br> Po--&gt; metal<br><strong><em>OXYGEN<br>-</em></strong>electronegativity very high</div><div>-strong <strong>pπ  - pπ  bonds</strong> with itself, carbon and nitrogen</div><div>-forms 2 allotropes (O2 and O3)<br><strong>Oxygen(O2)</strong><br>-colorless gas<br>-blue liquid<br>-paramagnetic<br><strong>Ozone(O3)<br>-</strong>blue gaseous in color<br>-dark blue liquid<br>-strong oxidation agent<br>-use of mercury to test the presence of O3<br>-used in water treatment<br>-as detergent, deodorizer and preservative<br>-O3 layer prevent high energy UV from reaching the earth<strong><br>Oxides</strong></div><ul><li>Oxide, O<sup>2-</sup></li><li>Peroxide, O<sub>2</sub><sup>2-</sup></li><li>Superoxide, O<sup>2-</sup></li></ul><div><strong>Hydrides</strong></div><ul><li>Water, H2O</li></ul><div>-sp3 hybridization (O atom)<br>-bent shape<br>-colourless liquid, solid and gas<br>-polar<br>-amphoteric character<br>-ligand</div><ul><li>Hydrogen Peroxide, H2O2</li></ul><div>-book- shaped structure<br>-colourless syrupy liquid due to hydrogen bonding<br>-strong oxidizing agent and also reducing agent<br>-bleaching agent <br>-antiseptic, disinfectant and germicide<br><strong><em>SULPHUR<br>-</em></strong>exists as <strong>S8 molecule <br></strong>-2 allotropes of sulphur</div><ul><li>Rhombic sulphur </li><li>Monoclinic sulphur</li></ul><div>-mined by <strong>Frasch Process<br></strong>-odourless, tasteless, light yellow non-metallic solid<br>-flammable <br>-produce H2SO4<br>-component of black gunpowder <br>-used in vulcanization of natural rubber<br><strong>Sulphides </strong></div><ul><li>Metallic Sulphide (Ionic Sulphide)</li><li>Non-Metallic Sulphide<strong> </strong>(Covalent Sulphide) eg:H2S&amp;CS2</li></ul><div><strong>Oxides</strong></div><ul><li>Sulphur dioxide, SO2</li><li>Sulphur trioxide, SO3</li></ul><div><strong>Halides<br></strong>-X = I – does not exist</div><ul><li>Disulphur dihalide, S2X2</li><li>Sulphur tetrahalide, SX4</li><li>Sulphur Hexahalides, SX6</li></ul><div><strong>Oxoacids</strong></div><ul><li><strong>Sulphuric(IV) acid,H2SO3 </strong></li></ul><div>-dibasic acid</div><ul><li><strong>Sulfuric(VI) acid,H2SO4</strong>  </li></ul><div>-prepared by Contact process<br>-dibasic acid, strong acid</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-06 14:43:38 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1059502920</guid>
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      <item>
         <title>AHMAD IMRAN BIN AHMAD BASRI</title>
         <author>ahmadimran</author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1059582620</link>
         <description><![CDATA[<div>Thank you dr for the class on group IVA. This will be my summary for this chapter.<br>Group VIA<br>Characteristic:<br>- Metallic character increase down the group<br>- IE decrease down the group<br>- Oxidation state -2 are stable for O<br>Oxygen,O2<br>- Anionic mineral in earth crust<br>- Form 2 allotropes<br>	Oxygen, O2<br>	Ozone, O3<br>Preparation<br>1. Commercial<br>- Fractional distillation of liquid air<br>2. In lab<br>- Heating of KCiO3<br>- Decomposition of H2O2<br>- Electrolysis of water uses graphite as electrodes<br>Characteristics<br>- Colourless gas<br>- Blue liquid<br>- Paramagnetic with unpaired electrons<br>- Reactive and combine with most of elements<br>Uses<br>- Producing "fuel cell"<br>- Respiration<br>- Welding industries<br>Ozone,O3<br>Characteristics of ozone<br>- Blue gas<br>- Dark blue liquid<br>- Strong oxidising agent<br>Testing for mercury<br>- Use Hg<br>Uses of O3<br>- Substitue Cl2 in water treatment<br>- Detergent, deodorizer and preservative<br>- Ozone treatment<br>Compound of oxygen<br>- Oxide<br>- Peroxide<br>- Superoxide<br>Sulphur<br>- Exist as free element<br>- Ores: pyrite, galena, sphalerite<br>Extraction of Sulphur<br>- Frasch Process (obtain with 99.5% purity)<br>Properties of Sulphur<br>- Odourless, tasteless<br>- Cannot dissolved by water<br>- Reactive element<br>- Burn in blue flame<br>Uses<br>- Produce H2SO4<br>- Uses in black gun powder<br>- Vulcanization of natural rubber<br>- Bleaching<br>Compund of Sulphur<br>- Metallic sulphide(ionic)<br>- Non-metallic sulphide(covalent)<br>Oxides of Sulphur<br>1. Sulphur dioxide<br>- React with water form acid solution<br>- Reducing agent<br>- Oxidizing agent<br>- React with alkali form sulphite salt<br>Source<br>- Volcanoes activities<br>- Combustion of sulphide ores, coal and oil<br>- Roasting anhydride CaSO4 with coke<br>- Reaction of sulphite salt with acid<br>- Reaction of metal with conc sulphuric acid<br>2. Sulphur trioxide<br>- Form SO3 crystal when cooled<br>- Reaction with sulphuric acid form oleum</div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-06 15:00:59 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1059582620</guid>
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      <item>
         <title>MUHAMMAD AKMAL AQIL BIN ROZIMAN</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1066595540</link>
         <description><![CDATA[<div>Thank you dr for the explanations in the lectures. Here is my summary of Group VIA: <br>- Group VIA is also known as the Chalcogens Group.<br>-Valence electron : 6<br>- Metallic characteristics increases as going down the group<br>- ionization energy decreases as going down the group due to the decreased shielding effect<br><strong>Oxygen</strong><br>-  Exists in the atmospheric gaseous<br>- Has 2 allotropes : Oxygen gas &amp; Ozone<br>-Oxygen gas:  colourless gas while in liquid form  is blue coloured <br>- Ozone : a blue coloured gas while in has a dark blue colour in liquid state<br>- Water, H2O is a colouless in solid, liquid &amp; gas state<br>- water is an amphoteric compound<br><strong>Sulfur <br></strong>-Has 2 allotropes<br>Extracted by  using a porcess called Frasch process<br>- A odourless, tasteless &amp; non-metallic solid with a light yellow colour.<br>- Sulfur is used in making black gunpowder and a main component in vulcanization of natural rubber<br>-2 types of sulfur oxide : Sulfur dioxide &amp; sulfur trioxide<br>-Reaction of SO2 with water can cause H2SO4(acid rain)<br>-Sulfuric acid is used as fertilizers, a dehydrating agent &amp; to produce hydrochloric acid<br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-08 11:14:15 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1066595540</guid>
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      <item>
         <title>ALVIN IMRAN BIN AZIZ</title>
         <author></author>
         <link>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1071336054</link>
         <description><![CDATA[<div>Thank you Dr for the detailed explanation for group VIA. This is my summary for Group VIA.<br><br>-Group VIA is known as Chalcogens Group:<br>-It Metallic characteristic increase going down the group.<br><br>OXYGEN<br>-Exist as atmospheric gaseos<br>- Form 2 allotropes Oxygen,O2 and Ozone,O3.<br>Preparation :<br>Commercial form:<br>Fractional distillation of liquid air to separate O2.<br>In Lab:<br>-Heating of KClO3.<br>-Decomposition of H2O2.<br>-Electrolysis of water, H2O<br>Ozone,O3<br>-colourless gass<br>-blue colour in liquid form<br>-used as detergent<br>Oxide<br>-form normal oxide, high oxide, suboxide and mix-oxide (spinel compund)<br>Hydide <br>-polar molecule<br>-act as ligand<br>-act as oxidizing and reducing agent<br><br>Sulfur<br>-exist as S8 molecule<br>-2 allotropes rhombic sulphur and monoclinic sulphur.<br>-It is extracted by Frasch Process.<br>-Compound which is oxide, oxoacids, halides.<br><br><br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2021-01-10 13:27:53 UTC</pubDate>
         <guid>https://padlet.com/sheelachandren/sscc1703_GroupVIA/wish/1071336054</guid>
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