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      <title>Electric current by George Rios</title>
      <link>https://padlet.com/jogorios2088/kzxul1h2vuag</link>
      <description></description>
      <language>en-us</language>
      <pubDate>2018-06-20 22:16:57 UTC</pubDate>
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         <title>Electric current</title>
         <author>jogorios2088</author>
         <link>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012601</link>
         <description><![CDATA[<div>a flow of electric charge. In electric circuits this charge is often carried by moving electrons in a wire</div>]]></description>
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         <pubDate>2018-06-20 22:17:54 UTC</pubDate>
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         <title>ohm&#39;s law</title>
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" width="190" height="160"><figcaption class="attachment__caption"></figcaption></figure></a></div><div>The potential difference (voltage) across an ideal conductor is proportional to the current through it. The constant of proportionality is called the "resistance", R.<strong>Ohm's Law</strong> is given by: V = I R where V is the potential difference between two points which include a resistance R.</div>]]></description>
         <enclosure url="https://www.youtube.com/watch?v=8jB6hDUqN0Y" />
         <pubDate>2018-06-20 22:18:10 UTC</pubDate>
         <guid>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012610</guid>
      </item>
      <item>
         <title>electromotive force</title>
         <author>jogorios2088</author>
         <link>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012618</link>
         <description><![CDATA[<div>a difference in potential that tends to give rise to an electric current.</div>]]></description>
         <enclosure url="https://www.youtube.com/watch?v=cbSKkrzdXe4" />
         <pubDate>2018-06-20 22:18:21 UTC</pubDate>
         <guid>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012618</guid>
      </item>
      <item>
         <title>Electric potential energy </title>
         <author>jogorios2088</author>
         <link>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012713</link>
         <description><![CDATA[<div>oltage, electric potential difference, electric pressure or electric tension is the difference in electric potential between two points<br><br></div>]]></description>
         <enclosure url="https://www.khanacademy.org/science/physics/electric-charge-electric-force-and-voltage/electric-potential-voltage/v/electric-potential-energy" />
         <pubDate>2018-06-20 22:20:12 UTC</pubDate>
         <guid>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012713</guid>
      </item>
      <item>
         <title>Resistance </title>
         <author>jogorios2088</author>
         <link>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012726</link>
         <description><![CDATA[<div> a measure of the difficulty to pass an electric current through that conductor. The inverse quantity is electrical conductance, and is the ease with which an electric current passes.</div>]]></description>
         <enclosure url="https://www.youtube.com/watch?v=-PJcj1TCf_g" />
         <pubDate>2018-06-20 22:20:28 UTC</pubDate>
         <guid>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012726</guid>
      </item>
      <item>
         <title>Resistivity </title>
         <author>jogorios2088</author>
         <link>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012732</link>
         <description><![CDATA[<div>a measure of the resisting power of a specified material to the flow of an electric current.</div>]]></description>
         <enclosure url="https://padlet-uploads.storage.googleapis.com/297924219/a5b44cc97a71a9e00fad831f4216237e/download__1_.png" />
         <pubDate>2018-06-20 22:20:35 UTC</pubDate>
         <guid>https://padlet.com/jogorios2088/kzxul1h2vuag/wish/268012732</guid>
      </item>
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