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	<title>what is current density | Winner Science</title>
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		<title>Current Density, Conductance And Electrical Conductivity</title>
		<link>https://winnerscience.com/current-density-conductance-and-electrical-conductivity/</link>
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		<dc:creator><![CDATA[amsh]]></dc:creator>
		<pubDate>Sun, 27 Nov 2011 06:52:53 +0000</pubDate>
				<category><![CDATA[Electromagnetism]]></category>
		<category><![CDATA[Define conductance]]></category>
		<category><![CDATA[definition current density]]></category>
		<category><![CDATA[units conductivity]]></category>
		<category><![CDATA[units current density]]></category>
		<category><![CDATA[units of conductance]]></category>
		<category><![CDATA[what is current density]]></category>
		<category><![CDATA[what is electrical conductivity]]></category>
		<guid isPermaLink="false">https://winnerscience.com/?p=2616</guid>

					<description><![CDATA[<p>Current density at a point in a conductor is defined as the amount of current flowing per unit area of the conductor around that point provided the area is held in a direction normal to the current. Let I be the current distributed uniformly across a conductor of cross-sectional area</p>
<p>The post <a href="https://winnerscience.com/current-density-conductance-and-electrical-conductivity/">Current Density, Conductance And Electrical Conductivity</a> first appeared on <a href="https://winnerscience.com">Winner Science</a>.</p>]]></description>
										<content:encoded><![CDATA[<p style="text-align: justify;"><strong>Current density </strong>at a point in a conductor is defined as the amount of current flowing per unit area of the conductor around that point provided the area is held in a direction normal to the current.</p>
<p style="text-align: justify;">Let I be the current distributed uniformly across a conductor of cross-sectional area A. The magnitude of the current density for all points on that cross-section of the conductor is</p>
<p style="text-align: justify;">J=I/A</p>
<p style="text-align: justify;">Current density is a vector quantity. Its direction is the direction of motion of positive charge.<span id="more-2616"></span></p>
<p style="text-align: justify;">As      I=Anev<sub>d</sub> (refer article of <a title="relation between current and drift velocity" href="https://winnerscience.com/magnetic-materials-2/relation-between-current-and-drift-velocity/">relation between current and drift velocity</a>)</p>
<p style="text-align: justify;">Therefore                                     J=I/A=Anev<sub>d</sub>/A</p>
<p style="text-align: justify;">Or                                                 J=nev<sub>d</sub></p>
<p style="text-align: justify;">The unit of current density is:</p>
<p style="text-align: justify;">Ampere(metre)<sup>-2</sup> or Am<sup>-2</sup></p>
<p style="text-align: justify;">For a particular surface of conductor, the current is the flux of J over the surface S and is given by</p>
<p style="text-align: justify;">I=∫ J.ds</p>
<p style="text-align: justify;">Where ds is elementary surface area vctor of an element taken over the particular surface S and integral is taken over the surface in question.</p>
<p style="text-align: justify;"><strong>Conductance(G). </strong>The inverse of resistance (R) is called conductance of a conductor, that is,</p>
<p style="text-align: justify;">Conductance, G=1/R</p>
<p style="text-align: justify;">The unit of conductance is mho or siemen(symbol S). Its unit is inverse of Resistance that we have discussed in <a title="Ohm's law" href="https://winnerscience.com/magnetic-materials-2/ohms-law-and-its-derivation/">Ohm&#8217;s law</a>.</p>
<p style="text-align: justify;"><strong>Electrical conductivity.</strong> The inverse of resistivity (ρ) of a conductor is called its electrical conductivity(σ) i.e.</p>
<p style="text-align: justify;">σ =1/ ρ</p>
<p style="text-align: justify;">the unit of electrical conductivity is mho m<sup>-1</sup> or siemens/m.</p>
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