Commit 8c6e308b authored by Claude Meny's avatar Claude Meny

Update textbook.en.md

parent 568b0695
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...@@ -319,7 +319,7 @@ S.I. : $`A \cdot m`$ ...@@ -319,7 +319,7 @@ S.I. : $`A \cdot m`$
EN : $`\vec{dH_M}=\dfrac{1}{4\pi}\cdot\dfrac{I\cdot\vec{dl}_P\times\vec{PM}}{||\vec{PM}||^3}`$ EN : $`\vec{dH_M}=\dfrac{1}{4\pi}\cdot\dfrac{I\cdot\vec{dl}_P\times\vec{PM}}{||\vec{PM}||^3}`$
$`\vec{dH_M}`$ : magnetic field vector (S.I. unit : $À\cdot m^{-1}`$ or $`A/m`$) $`\vec{dH_M}`$ : magnetic field vector (S.I. unit : $`A\cdot m^{-1}`$ or $`A/m`$)
$`\vec{dB_M}`$ : flux density or magnetic field induction vector (S.I. unit : $`T`$) $`\vec{dB_M}`$ : flux density or magnetic field induction vector (S.I. unit : $`T`$)
$`\vec{dH}=\dfrac{1}{4\pi}\cdot\dfrac{I\cdot\vec{dl}\times\vec{r}}{r^3}=\dfrac{1}{4\pi}\cdot\dfrac{I\cdot\vec{dl}\times\vec{e_r}}{r^2}`$ $`\vec{dH}=\dfrac{1}{4\pi}\cdot\dfrac{I\cdot\vec{dl}\times\vec{r}}{r^3}=\dfrac{1}{4\pi}\cdot\dfrac{I\cdot\vec{dl}\times\vec{e_r}}{r^2}`$
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