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278 bytes added ,  15:22, 14 March 2007
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Ampere's Law:
 
Ampere's Law:
   −
{| class="wikitable" style="margin: 1em auto 1em auto"|<math>\boldsymbol{\nabla \times B} - \mu_0\epsilon_0\frac{\partial \boldsymbol{E}}{\partial t}= 0 </math>|align="right" width="200"| (4) |}
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<math>\boldsymbol{\nabla \times B} - \mu_0\epsilon_0\frac{\partial \boldsymbol{E}}{\partial t}= 0 </math>
 +
 
 +
Need to add possibly derivation of wave equation and definitely Maxwell's equation in presence
 +
 
 +
Gauss' Law:
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<math>\boldsymbol{\nabla \cdot D} = \rho </math>
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Gauss' Law for Magnetism:
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<math>\boldsymbol{\nabla \cdot } = 0</math>
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Faradays's Law:
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<math>\boldsymbol{\nabla \times E} + \frac{\partial \boldsymbol{B}}{\partial t}= 0</math>
 +
 
 +
Ampere's Law:
 +
 
 +
<math>\boldsymbol{\nabla \times B} - \mu_0\epsilon_0\frac{\partial \boldsymbol{E}}{\partial t}= 0 </math>
   −
Need to add possibly derivation of wave equation and definitely Maxwell's equation in prescence
      
{| class="wikitable" style="margin: 1em auto 1em auto"
 
{| class="wikitable" style="margin: 1em auto 1em auto"
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