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      <title>Remake of Chemical/Physical 3 by </title>
      <link>https://padlet.com/omargarcia106/rvfd67l8idfc</link>
      <description>Definition and picture for 1. Chemical Property, 2. Physical property, 3. Chemical change, 4. Physical change</description>
      <language>en-us</language>
      <pubDate>2016-10-18 13:18:48 UTC</pubDate>
      <lastBuildDate>2024-08-20 10:37:47 UTC</lastBuildDate>
      <webMaster>hello@padlet.com</webMaster>
      <image>
         <url></url>
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      <item>
         <title>chemical property </title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131542726</link>
         <description><![CDATA[<div>A <strong>chemical property</strong> is any of a material's <strong>properties</strong> that becomes evident during, or after, a <strong>chemical</strong> reaction; that is, any quality that can be established only by changing a substance's <strong>chemical</strong> identity<br><br><br><br><br><br><br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:30:21 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131542726</guid>
      </item>
      <item>
         <title>Saul Martinez               Chemical Change</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543033</link>
         <description><![CDATA[<div>any <strong>change</strong> that results in the formation of new <strong>chemical </strong>substances.<br><figure class="attachment attachment-preview" 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" width="261" height="193"><figcaption class="caption"></figcaption></figure><figure class="attachment attachment-preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:193,&quot;url&quot;:null,&quot;width&quot;:261}" data-trix-content-type="image"><img src="null" width="261" height="193"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:00 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543033</guid>
      </item>
      <item>
         <title></title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543100</link>
         <description><![CDATA[<div>chemical change</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:07 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543100</guid>
      </item>
      <item>
         <title>Juan Rodriguez</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543111</link>
         <description><![CDATA[<div>physical property- <strong>Physical properties</strong> can be observed or measured without changing the composition of matter.</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:09 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543111</guid>
      </item>
      <item>
         <title>Chemical Property-Alexandra Chavez</title>
         <author>achavez94</author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543123</link>
         <description><![CDATA[<div>A <strong>chemical property</strong> is any of a material's <strong>properties</strong> that becomes evident during, or after, a <strong>chemical</strong> reaction; that is, any quality that can be established only by changing a substance's <strong>chemical</strong> identity.<br><figure class="attachment attachment-preview"><img width="215" height="234"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:10 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543123</guid>
      </item>
      <item>
         <title>Physical</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543213</link>
         <description><![CDATA[]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:21 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543213</guid>
      </item>
      <item>
         <title>Giselle Vazquez </title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543227</link>
         <description><![CDATA[<div>A <strong>physical property</strong> is any <strong>property</strong> that is measurable, whose value describes a state of a <strong>physical</strong> system. The changes in the <strong>physical properties</strong> of a system can be used to describe its transformations or evolutions between its momentary states.<br><figure class="attachment attachment-preview" 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&quot;,&quot;width&quot;:211}" 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" width="211" height="238"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:23 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543227</guid>
      </item>
      <item>
         <title>chemical property</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543270</link>
         <description><![CDATA[]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:28 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543270</guid>
      </item>
      <item>
         <title></title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543397</link>
         <description><![CDATA[<div>chemical change is any <strong>change</strong> that results in the formation of new <strong>chemical </strong>substances. At the molecular level, <strong>chemical change</strong> involves making or breaking of bonds between atoms.&nbsp;</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:31:44 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543397</guid>
      </item>
      <item>
         <title>Alfredo Guzman</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543536</link>
         <description><![CDATA[<div><strong>physical properties</strong> of a system can be used to describe its transformations or evolution between its momentary states.<br><br>Physical property Examples of <strong>physical properties</strong> are: color, smell, freezing point, boiling point, melting point, infra-red spectrum, attraction or repulsion&nbsp; to magnets, opacity, viscosity and density.</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:32:06 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543536</guid>
      </item>
      <item>
         <title></title>
         <author>cxperez</author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543637</link>
         <description><![CDATA[<div>Physical change is are <strong>changes</strong> affecting the form of a chemical substance.&nbsp;</div>]]></description>
         <enclosure url="https://padletuploads.blob.core.windows.net/aws/141084032/bd51e827411a53735ff88dfd57c50485/download.jpg" />
         <pubDate>2016-10-18 16:32:25 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543637</guid>
      </item>
      <item>
         <title>&amp;nbsp;chemical property A&amp;nbsp;chemical property&amp;nbsp;is any of a material&#39;s&amp;nbsp;properties&amp;nbsp;that becomes evident during, or after, a&amp;nbsp;chemical&amp;nbsp;reaction; that is, any quality that can be established only by changing a substance&#39;s&amp;nbsp;chemical&amp;nbsp;identity</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543852</link>
         <description><![CDATA[<div><br><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:32:58 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543852</guid>
      </item>
      <item>
         <title>victor</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543908</link>
         <description><![CDATA[<div>physical property is&nbsp;like a ice cube it's really solid when u grab it and when u place it on the table it melts so that's physical property</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:33:07 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543908</guid>
      </item>
      <item>
         <title></title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543936</link>
         <description><![CDATA[]]></description>
         <enclosure url="https://www.google.com/imgres?imgurl=https%3A%2F%2Farts2science.files.wordpress.com%2F2015%2F05%2Fnailrusting1_460.jpg%3Fw%3D460%26h%3D287&amp;imgrefurl=https%3A%2F%2Farts2science.wordpress.com%2Fmatter%2Fphysicalchemicalchanges%2Fchemicalchanges%2F&amp;docid=xnJ2g_fZOsZ87M&amp;tbnid=aPAESx8cIXlT3M%3A&amp;w=460&amp;h=287&amp;safe=active&amp;bih=655&amp;biw=1366&amp;ved=0ahUKEwjpwczw4-TPAhWn6IMKHURuDBoQMwhSKA0wDQ&amp;iact=mrc&amp;uact=8" />
         <pubDate>2016-10-18 16:33:11 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543936</guid>
      </item>
      <item>
         <title>Jacob Williams</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543977</link>
         <description><![CDATA[<div><strong>Chemical change</strong> is any <strong>change</strong> that results in the formation of new <strong>chemical </strong>substances.</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:33:17 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543977</guid>
      </item>
      <item>
         <title>Physical property-Joseph Gonzalez</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543990</link>
         <description><![CDATA[<div>Physical property can be observed </div>]]></description>
         <enclosure url="https://www.google.com/imgres?imgurl=http%3A%2F%2Fscience7jones.weebly.com%2Fuploads%2F1%2F4%2F2%2F3%2F14238929%2F831442188_orig.jpg%3F295&amp;imgrefurl=http%3A%2F%2Fscience7jones.weebly.com%2Fchapter-2-the-properties-of-matter.html&amp;docid=aan38CD6mZwmPM&amp;tbnid=oeFhfPNAaF9agM%3A&amp;w=300&amp;h=178&amp;safe=active&amp;bih=751&amp;biw=1536&amp;ved=0ahUKEwj7ltr14-TPAhUG2oMKHfoLDxAQMwh1KAgwCA&amp;iact=mrc&amp;uact=8" />
         <pubDate>2016-10-18 16:33:19 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131543990</guid>
      </item>
      <item>
         <title>chemical change </title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544320</link>
         <description><![CDATA[<div>a chemical that changes to form a new substance <figure class="attachment attachment-preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:168,&quot;url&quot;:&quot;https://encrypted-tbn3.gstatic.com/images?q=tbn:ANd9GcRXG7m4UgSiP4ycyPoQskGlsuaqp0ltO9MvSmT4nsjbf81XQb-mcw&quot;,&quot;width&quot;:300}" data-trix-content-type="image"><img src="https://encrypted-tbn3.gstatic.com/images?q=tbn:ANd9GcRXG7m4UgSiP4ycyPoQskGlsuaqp0ltO9MvSmT4nsjbf81XQb-mcw" width="300" height="168"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:34:05 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544320</guid>
      </item>
      <item>
         <title>Monique McCurry</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544338</link>
         <description><![CDATA[<div>Chemical change is any change that results in the formation of new chemical substances. At the molecular level, chemical change involves making or breaking of bonds between atoms. These changes are chemical: iron rusting (iron oxide forms) gasoline burning (water vapor and carbon dioxide form)<br><figure class="attachment attachment-preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:240,&quot;url&quot;:&quot;https://media1.britannica.com/eb-media/97/152197-049-AAAE168A.jpg&quot;,&quot;width&quot;:426}" data-trix-content-type="image"><img src="https://media1.britannica.com/eb-media/97/152197-049-AAAE168A.jpg" width="426" height="240"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:34:07 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544338</guid>
      </item>
      <item>
         <title>Physical property</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544446</link>
         <description><![CDATA[<div>a property (as color, hardness, boiling point) of matter not involving in its manifestation a chemical change<br><figure class="attachment attachment-preview" 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width="327" height="154"><figcaption class="caption"></figcaption></figure></div><div><br></div><div><br></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:34:20 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544446</guid>
      </item>
      <item>
         <title>chemical property is  A chemical property is any of a material&#39;s properties that becomes evident during, or after, a chemical reaction; that is, any quality that can be established only by changing a substance&#39;s chemical identity</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544512</link>
         <description><![CDATA[<div>kevin </div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:34:29 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544512</guid>
      </item>
      <item>
         <title>juan lopez</title>
         <author>jmlopez40</author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544959</link>
         <description><![CDATA[<div><br>Las <strong>propiedades físicas</strong> son aquellas que se pueden medir sin que se afecte la composición o la identidad de la sustancia. <strong>Ejemplo</strong> de estas <strong>propiedades</strong> son la densidad, el punto de fusión, el punto de ebullición, entre otras.<figure class="attachment attachment-preview" data-trix-attachment="{&quot;contentType&quot;:&quot;image&quot;,&quot;height&quot;:300,&quot;url&quot;:&quot;http://flashvirtual.50webs.com/imagenes/estados.jpg&quot;,&quot;width&quot;:479}" data-trix-content-type="image"><img src="http://flashvirtual.50webs.com/imagenes/estados.jpg" width="479" height="300"><figcaption class="caption"></figcaption></figure></div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:35:18 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131544959</guid>
      </item>
      <item>
         <title></title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545036</link>
         <description><![CDATA[<div>kevin gonzalez <br>A <strong>chemical property</strong> is any of a material's <strong>properties</strong> that becomes evident during, or after, a <strong>chemical</strong> reaction; that is, any quality that can be established only by changing a substance's <strong>chemical</strong> identity<br><br></div>]]></description>
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         <pubDate>2016-10-18 16:35:29 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545036</guid>
      </item>
      <item>
         <title>damon </title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545181</link>
         <description><![CDATA[<div>physical property</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:35:44 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545181</guid>
      </item>
      <item>
         <title>Alfredo Guzman</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545262</link>
         <description><![CDATA[<div>Physical property&nbsp;<br><strong>physical properties</strong> of a system can be used to describe its transformations or evolution between its momentary states.<br><br><strong>physical properties</strong> are: color, smell, freezing point, boiling point, melting point, infra-red spectrum, attraction or repulsion to magnets, opacity, viscosity and density.</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:35:58 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545262</guid>
      </item>
      <item>
         <title></title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545661</link>
         <description><![CDATA[]]></description>
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         <pubDate>2016-10-18 16:36:45 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545661</guid>
      </item>
      <item>
         <title>Amya King</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545890</link>
         <description><![CDATA[<div>chemical change is somethung tha</div>]]></description>
         <enclosure url="" />
         <pubDate>2016-10-18 16:37:09 UTC</pubDate>
         <guid>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545890</guid>
      </item>
      <item>
         <title>brianna sandoval</title>
         <author></author>
         <link>https://padlet.com/omargarcia106/rvfd67l8idfc/wish/131545971</link>
         <description><![CDATA[<div>A <strong>chemical property</strong> is any of a material's <strong>properties</strong> that becomes evident during, or after, a<strong>chemical</strong> reaction; that is, any quality that can be established only by changing a substance's<strong>chemical</strong> identity</div>]]></description>
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         <pubDate>2016-10-18 16:37:17 UTC</pubDate>
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         <description><![CDATA[<div><strong>Chemical change</strong> is any <strong>change</strong> that results in the formation of new <strong>chemical</strong>substances. At the molecular level, <strong>chemical change</strong> involves making or breaking of bonds between atoms<br><br></div>]]></description>
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         <pubDate>2016-10-19 01:32:57 UTC</pubDate>
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         <pubDate>2016-10-19 01:36:37 UTC</pubDate>
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