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      <title>KC5 Balancing by Alexis</title>
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      <description>Alexis, Monika, Eduardo, Steven</description>
      <language>en-us</language>
      <pubDate>2018-05-15 19:06:43 UTC</pubDate>
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         <author>gomezale009</author>
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         <description><![CDATA[￼]]></description>
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         <pubDate>2018-05-15 19:19:56 UTC</pubDate>
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         <title></title>
         <author>cruzste</author>
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         <pubDate>2018-05-15 19:21:57 UTC</pubDate>
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         <title></title>
         <author>espinmon000_2</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/260997794</link>
         <description><![CDATA[￼]]></description>
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         <pubDate>2018-05-15 19:35:13 UTC</pubDate>
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         <title></title>
         <author>espinmon000_2</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/260997961</link>
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         <pubDate>2018-05-15 19:35:43 UTC</pubDate>
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         <title></title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261357323</link>
         <description><![CDATA[
]]></description>
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         <pubDate>2018-05-16 19:02:03 UTC</pubDate>
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         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261357386</link>
         <description><![CDATA[
]]></description>
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         <pubDate>2018-05-16 19:02:16 UTC</pubDate>
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         <title></title>
         <author>espinmon000_2</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261359301</link>
         <description><![CDATA[
]]></description>
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         <pubDate>2018-05-16 19:08:06 UTC</pubDate>
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         <title></title>
         <author>espinmon000_2</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261359311</link>
         <description><![CDATA[
]]></description>
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         <pubDate>2018-05-16 19:08:08 UTC</pubDate>
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         <title>Question 15: Law of Conservation of Mass states:</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360160</link>
         <description><![CDATA[<div>Chemical equations must be balanced<br>"In an ordinary chemical reaction matter is neither created nor destroyed"<figure class="attachment attachment--preview"><img src="https://encrypted-tbn0.gstatic.com/images?q=tbn:ANd9GcSLgoYEMuSdiVG2S0hE-pcoVm5z9xycfWSYouw3B2JairaFokti9A" width="259" height="194"><figcaption class="attachment__caption"></figcaption></figure><br><br></div>]]></description>
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         <pubDate>2018-05-16 19:11:03 UTC</pubDate>
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         <title>Question 14:</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360210</link>
         <description><![CDATA[<div>0Mg + 2HCl --------&gt; 0 MgCl<sub>2</sub> + 0 H<sub>2</sub><br>Type of reaction: Double Replacement<br>  </div>]]></description>
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         <pubDate>2018-05-16 19:11:14 UTC</pubDate>
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         <title>Question 13: </title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360552</link>
         <description><![CDATA[<div>2Fe + 3 Cl<sub>2</sub> --------&gt; 2FeCl<sub>3<br></sub><strong><sub>Type of reaction: Synthesis<br></sub></strong>  </div>]]></description>
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         <pubDate>2018-05-16 19:12:21 UTC</pubDate>
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      <item>
         <title>Question 12- </title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360621</link>
         <description><![CDATA[<div>&nbsp; &nbsp;1N<sub>2</sub> + 3H<sub>2</sub> ----------&gt; &nbsp; 2NH<sub>3<br></sub><strong><em>Type of reaction: Synthesis<br>&nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp; &nbsp;&nbsp;</em></strong>&nbsp;<figure class="attachment attachment--preview" 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" width="259" height="194"><figcaption class="attachment__caption"></figcaption></figure>&nbsp;</div>]]></description>
         <enclosure url="" />
         <pubDate>2018-05-16 19:12:30 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360621</guid>
      </item>
      <item>
         <title>Question 11</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360724</link>
         <description><![CDATA[<div>4 NH<sub>3 </sub>+ 3 O<sub>2 </sub>---&gt; 2 N<sub>2 </sub>+ 6 H<sub>2</sub>O <br>Type of reaction= Single replacement</div>]]></description>
         <enclosure url="https://fthmb.tqn.com/8GJjiewcIQp5VTAgc56hfKTJVdg=/768x0/filters:no_upscale()/about/single_displacement_reaction-56a1327a3df78cf7726851ad.png" />
         <pubDate>2018-05-16 19:12:42 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360724</guid>
      </item>
      <item>
         <title>Question 10 </title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360821</link>
         <description><![CDATA[<div>2 Hg<sub>2</sub>O ---&gt; 4 Hg + 1 O<sub>2 <br></sub>Type of reaction= Decomposition </div>]]></description>
         <enclosure url="http://2.bp.blogspot.com/-lzw1rWJQ4fI/U1ao_e4mtYI/AAAAAAAAACo/HENHvaPOgYk/s1600/decomposition.png" />
         <pubDate>2018-05-16 19:13:01 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360821</guid>
      </item>
      <item>
         <title>Question 9</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360876</link>
         <description><![CDATA[<div>2 N<sub>2 </sub>+ 5 O<sub>2</sub> ---&gt; 2 N<sub>2</sub>O<sub>5 <br></sub>Type of reaction= Synthesis </div>]]></description>
         <enclosure url="https://classconnection.s3.amazonaws.com/792/flashcards/883792/png/synthesis1320159583606.png" />
         <pubDate>2018-05-16 19:13:13 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360876</guid>
      </item>
      <item>
         <title>Question 8</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360971</link>
         <description><![CDATA[<div>2 KClO<sub>3 </sub>---&gt; 2 KCl + 3 O<sub>2</sub>&nbsp; &nbsp;<br>Type of reaction= decomposition</div>]]></description>
         <enclosure url="http://www.aboutthemcat.org/images/chemistry/decomposition-reaction.png" />
         <pubDate>2018-05-16 19:13:32 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261360971</guid>
      </item>
      <item>
         <title>Question 7</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361034</link>
         <description><![CDATA[<div>Number of <strong>elements</strong> is always equal on each side of the arrow in a balanced chemical reaction </div>]]></description>
         <enclosure url="https://sciencenotes.org/wp-content/uploads/2014/11/PeriodicTableWallpaperBBG.png" />
         <pubDate>2018-05-16 19:13:42 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361034</guid>
      </item>
      <item>
         <title>Question 6- Identify the number of atoms of each element and the total number of atoms.  </title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361171</link>
         <description><![CDATA[<div>                               a) H<sub>2</sub>O        b)NH<sub>4</sub>NO<sub>3</sub>     c) Fe<sub>2</sub>(SO<sub>4</sub>)<sub>3</sub>   d) N<sub>2</sub>O<sub>5<br>H: 2                    N=14                               Fe= 55.8*2= 111.6                N= 14*3=28<br>O: 16                  H=4                                 S= 32.1* 3= 96.3                   O= 16*5=80<br>Total: 19            N=14                              O=16*4=64*3= 192                   Equals: 108<br>                           O=16.3=48                             Equals: 399.9<br>                              Equals: 80               <br></sub>  <figure class="attachment attachment--preview"><img src="https://encrypted-tbn0.gstatic.com/images?q=tbn:ANd9GcRrNdoUeQGD4e65Cb35tupJd1U4tWudXDg-dAWsKQjsxe3nXUH3" width="304" height="166"><figcaption class="attachment__caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2018-05-16 19:14:08 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361171</guid>
      </item>
      <item>
         <title>Question 5- Define Coefficient </title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361256</link>
         <description><![CDATA[<div>A number placed before a formula in a chemical reaction.&nbsp; &nbsp;<figure class="attachment attachment--preview" 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width="266" height="190"><figcaption class="attachment__caption"></figcaption></figure>&nbsp;</div>]]></description>
         <enclosure url="" />
         <pubDate>2018-05-16 19:14:25 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361256</guid>
      </item>
      <item>
         <title>Question 4- Part B: Which is on the left  and which is on the right?</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361288</link>
         <description><![CDATA[<div>Reactants are on the left, and Products are on the right.&nbsp; <figure class="attachment attachment--preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:194,&quot;url&quot;:&quot;https://encrypted-tbn0.gstatic.com/images?q=tbn:ANd9GcRDsBMngcLGrbWjTctwQpzf4iSR2y87bKes-GPnm55V6MIyd-M1&quot;,&quot;width&quot;:259}" data-trix-content-type="image"><img src="https://encrypted-tbn0.gstatic.com/images?q=tbn:ANd9GcRDsBMngcLGrbWjTctwQpzf4iSR2y87bKes-GPnm55V6MIyd-M1" width="259" height="194"><figcaption class="attachment__caption"></figcaption></figure>&nbsp;</div>]]></description>
         <enclosure url="" />
         <pubDate>2018-05-16 19:14:31 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361288</guid>
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      <item>
         <title>Question 4- Part A: Define Reactant and Product</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361333</link>
         <description><![CDATA[<div>Reactant is the substance consumed, and Product is the substance formed.  <figure class="attachment attachment--preview"><img src="https://encrypted-tbn0.gstatic.com/images?q=tbn:ANd9GcR7LGs0ITABvK87uL1uMzL0cCPppZRLQQa0MSCdoeTNkOYozM7gOg" width="284" height="177"><figcaption class="attachment__caption"></figcaption></figure> </div>]]></description>
         <enclosure url="" />
         <pubDate>2018-05-16 19:14:39 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361333</guid>
      </item>
      <item>
         <title>Question 3: Which type of change involves the creation of new substances ?</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361383</link>
         <description><![CDATA[<div>Chemical change   </div>]]></description>
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         <pubDate>2018-05-16 19:14:47 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361383</guid>
      </item>
      <item>
         <title>Question 2: Examples of physical change </title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361430</link>
         <description><![CDATA[<div> Question 2: Examples of physical change   </div>]]></description>
         <enclosure url="http://slideplayer.com/6342761/22/images/4/Physical+Change.jpg" />
         <pubDate>2018-05-16 19:14:54 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361430</guid>
      </item>
      <item>
         <title>Question 1: Examples of chemical change.</title>
         <author>Eduardo_Molina83</author>
         <link>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361457</link>
         <description><![CDATA[<div>Burning candle,rusty nail and moldy food.<figure class="attachment attachment--preview"><img src="https://arts2science.files.wordpress.com/2015/05/chemicalchangesmix.jpg?w=460&amp;h=341" width="460" height="341"><figcaption class="attachment__caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2018-05-16 19:15:00 UTC</pubDate>
         <guid>https://padlet.com/gomezale009/x9y7mru8uhmj/wish/261361457</guid>
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