Commit f9d36a1e authored by Claude Meny's avatar Claude Meny

Update...

Update 12.temporary_ins/90.electromagnetism-in-vacuum/10.maxwell-equations/20.overview/cheatsheet.fr.md
parent 6cc01721
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......@@ -103,12 +103,40 @@ Attention !!! En période très préliminaire d'élaboration et de construction
* *Maxwell-Gauss* :
$`\left.\begin{array}{l}
\overrightarrow{E}=E_{\rho}(\rho)\,\overrightarrow{e_{\rho}}=E\,\overrightarrow{e_{\rho}} \\
2\pi \rho_M\, h\,E= \dfrac{\pi\,\rho_M^2\,h\, \dens^{3D}_0}{\epsilon_0}
\end{array}\right\}
\Longrightarrow`$
**$`\mathbf{\overrightarrow{E}=\dfrac{\rho_M\,\dens^{3D}_0}{2\,\epsilon_0}\,\overrightarrow{e_{\rho}}}`$**
* *Maxwell-flux* :
$`\left.\begin{array}{l}
\overrightarrow{E}=E_{\rho}(\rho)\,\overrightarrow{e_{\rho}}=E\,\overrightarrow{e_{\rho}} \\
2\pi \rho_M\, h\,E= \dfrac{\pi\,\rho_M^2\,h\, \dens^{3D}_0}{\epsilon_0}
\end{array}\right\}
\Longrightarrow`$
**$`\mathbf{\overrightarrow{E}=\dfrac{\rho_M\,\dens^{3D}_0}{2\,\epsilon_0}\,\overrightarrow{e_{\rho}}}`$**
* *Maxwell-Faraday* :
$`\left.\begin{array}{l}
\overrightarrow{E}=E_{\rho}(\rho)\,\overrightarrow{e_{\rho}}=E\,\overrightarrow{e_{\rho}} \\
2\pi \rho_M\, h\,E= \dfrac{\pi\,\rho_M^2\,h\, \dens^{3D}_0}{\epsilon_0}
\end{array}\right\}
\Longrightarrow`$
**$`\mathbf{\overrightarrow{E}=\dfrac{\rho_M\,\dens^{3D}_0}{2\,\epsilon_0}\,\overrightarrow{e_{\rho}}}`$**
* *Maxwell-Ampère* :
$`\left.\begin{array}{l}
\overrightarrow{E}=E_{\rho}(\rho)\,\overrightarrow{e_{\rho}}=E\,\overrightarrow{e_{\rho}} \\
2\pi \rho_M\, h\,E= \dfrac{\pi\,\rho_M^2\,h\, \dens^{3D}_0}{\epsilon_0}
\end{array}\right\}
\Longrightarrow`$
**$`\mathbf{\overrightarrow{E}=\dfrac{\rho_M\,\dens^{3D}_0}{2\,\epsilon_0}\,\overrightarrow{e_{\rho}}}`$**
#### Pourquoi parlons-nous de champ électromagnétique ?
......
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