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M3P2
Courses
Commits
729b14ee
Commit
729b14ee
authored
Nov 11, 2019
by
Claude Meny
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Update textbook.en.md
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10.brainstorming-innovative-courses/intercambio-curso-electromagnetismo/textbook.en.md
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729b14ee
...
...
@@ -191,11 +191,26 @@ $`\nabla = \overrightarrow{e_x}\,\dfrac{\partial}{\partial x}+\overrightarrow{e_
+\overrightarrow{e_z}\,\dfrac{\partial}{\partial z}`
$
, or more
$
`\overrightarrow{\nabla} = \overrightarrow{e_x}\,\dfrac{\partial}{\partial x}+\overrightarrow{e_y}\,\dfrac{\partial}{\partial y}
+\overrightarrow{e_z}\,\dfrac{\partial}{\partial z} `
$
+\overrightarrow{e_z}\,\dfrac{\partial}{\partial z} `
$
<br>
ES : operador nabla
<br>
FR : opérateur nabla
<br>
EN : nabla operator
$
`\Deltaf = div\,\overrightarrow{grad}\f `
$, $
`\Deltaf = \overrightarrow{\nabla}\cdot\overrightarrow{\nabla}\,f `
$
ES : operador laplaciana escalar, laplaciana escalar, laplaciana de un campo escalar
<br>
FR : opérateur laplacien scalaire, laplacien scalaire, laplacien d'un champ scalaire
<br>
EN : laplacian operator, laplacian of a scalar field
ES :
FR : en coordonnées cartésiennes orthonormées :
EN : in orthonormal Cartesian coordinate :
$
\D
elta =
\d
frac{
\p
artial^2}{
\p
artial x^2}+
\d
frac{
\p
artial^2}{
\p
artial y^2}+
\d
frac{
\p
artial^2}{
\p
artial z^2}
`$
$`
\D
elta =
\o
verrightarrow{grad} div
\,\o
verrightarrow{U} -
\o
verrightarrow{rot}
\,\o
verrightarrow{rot}
\,\o
verrightarrow{U}
`$ <br>
ES : operador laplaciana vectorial, laplaciana vectorial, laplaciana de un campo vectorial <br>
FR : opérateur laplacien, laplacien, d'un champ scalaire ou d'un champ vecoriel <br>
EN : laplacian operator, vectorial laplacian, laplacian of a vector field
$`
\o
verrightarrow{grad} f =
\n
abla f
`$, $`
\o
verrightarrow{
\n
abla}f
`$ better, no? <br>
ES : gradiente <br>
FR : gradient <br>
...
...
@@ -207,7 +222,7 @@ FR : divergence <br>
EN : divergence <br>
$`
div
\;\o
verrightarrow{U}=
\l
im_{V
\l
eftrightarrow0}
\;\d
frac{1}{V}
\;\d
isplaystyle
\o
iint_{S
\l
eftrightarrow V}
\o
verrightarrow{U}
\c
dot
\o
verrightarrow{dS}
`$
$
`rot\
times\overrightarrow{U}`
$, but $
`\overrightarrow{rot}\times
\overrightarrow{U}`
$ better, no?
<br>
$`
rot
\
,\o
verrightarrow{U}
`$, but $`
\o
verrightarrow{rot}
\,
\o
verrightarrow{U}
`$ better, no? <br>
in some English texts : $`
curl
\t
imes
\o
verrightarrow{U}
`$ <br>
$`
\o
verrightarrow{
\n
abla}
\t
imes
\o
verrightarrow{U}
`$ or $`
\o
verrightarrow{
\n
abla}
\l
and
\o
verrightarrow{U}
`$ <br>
ES : rotacional de un vector <br>
...
...
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