Team:NTU-Taida/b02901042

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{{anchor|以自由電荷和自由電流為源頭的表述}}
 
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{| class="wikitable" border="1" cellpadding="8" cellspacing="0"
 
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|+以自由電荷和自由電流為源頭的表述
 
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|-
 
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! 名稱
 
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! [[偏微分方程|微分形式]]
 
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! [[积分|積分形式]]
 
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|-
 
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| 高斯定律
 
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| <math>\nabla \cdot \mathbf{D} = \rho_f</math>
 
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| <math>\iint_{\mathbb{S}}\!\!\!\!\!\!\!\!\!\!\!\!\;\subset\!\supset\mathbf D\cdot\mathrm{d}\mathbf{s} = Q_{f}</math>
 
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|-
 
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| 高斯磁定律
 
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| <math>\nabla \cdot \mathbf{B} = 0</math>
 
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| <math>\iint_{\mathbb{S}}\!\!\!\!\!\!\!\!\!\!\!\!\;\subset\!\supset\mathbf B\cdot\mathrm{d}\mathbf{s} = 0</math>
 
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|-
 
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| 法拉第感應定律
 
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| <math>\nabla \times \mathbf{E} = - \frac{\partial \mathbf{B}} {\partial t}</math>
 
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| <math>\oint_{\mathbb{L}}\ \mathbf{E} \cdot \mathrm{d}\boldsymbol{\ell} = - \frac {\mathrm{d} \Phi_\mathbf{B}}{\mathrm{d} t} </math>
 
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|-
 
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| 馬克士威-安培定律
 
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| <math>\nabla \times \mathbf{H} = \mathbf{J}_f + \frac{\partial \mathbf{D}} {\partial t}</math>
 
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| <math>\oint_{\mathbb{L}}\ \mathbf{H} \cdot \mathrm{d}\boldsymbol{\ell} = I_{f} + \frac {\mathrm{d} \Phi_\mathbf{D}}{\mathrm{d} t}
 
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</math>
 
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|}
 

Latest revision as of 04:49, 21 April 2014

Contents

test

test

test

城市浪人

Template

我是模板

test!!!

LaTex