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Update textbook.fr.md

keep-around/0dbbeb91b2a71d8d14379baa737cdd0021c064d9
Claude Meny 6 years ago
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0dbbeb91b2
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      01.curriculum/01.physics-chemistry-biology/04.Niv4/04.electromagnetism/02.electromagnetic-waves-vacuum/02.electromagnetic-waves-vacuum-main/textbook.fr.md

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01.curriculum/01.physics-chemistry-biology/04.Niv4/04.electromagnetism/02.electromagnetic-waves-vacuum/02.electromagnetic-waves-vacuum-main/textbook.fr.md

@ -50,4 +50,4 @@ $`\overrightarrow{rot} \, \left( \overrightarrow{rot}\,\overrightarrow{E} \right
=-\mu_0\;\dfrac{\partial \overrightarrow{j}}{\partial t} +
\mu_0 \epsilon_0 \;\dfrac{\partial^2 \overrightarrow{E}}{\partial t^2}`$
$`\overrightarrow{grad} \left(div \overrightarrow{E}\right) = \overrightarrow{grad} \left \dfrac{\rho}{\epsilon_O}\right)`$
$`\overrightarrow{grad} \left( div \; \overrightarrow{E} \right) = \overrightarrow{grad} \left( \dfrac{\rho}{\epsilon_O} \right)`$
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