Skip to content
Projects
Groups
Snippets
Help
Loading...
Help
Submit feedback
Contribute to GitLab
Sign in
Toggle navigation
Courses
Project
Project
Details
Activity
Releases
Cycle Analytics
Repository
Repository
Files
Commits
Branches
Tags
Contributors
Graph
Compare
Charts
Issues
6
Issues
6
List
Board
Labels
Milestones
Merge Requests
4
Merge Requests
4
CI / CD
CI / CD
Pipelines
Jobs
Schedules
Charts
Wiki
Wiki
Snippets
Snippets
Members
Members
Collapse sidebar
Close sidebar
Activity
Graph
Charts
Create a new issue
Jobs
Commits
Issue Boards
Open sidebar
M3P2
Courses
Commits
b198b2fe
Commit
b198b2fe
authored
Nov 11, 2019
by
Claude Meny
Browse files
Options
Browse Files
Download
Email Patches
Plain Diff
Update textbook.en.md
parent
95c97618
Pipeline
#931
failed with stage
in 22 seconds
Changes
1
Pipelines
1
Hide whitespace changes
Inline
Side-by-side
Showing
1 changed file
with
13 additions
and
5 deletions
+13
-5
textbook.en.md
...ourses/intercambio-curso-electromagnetismo/textbook.en.md
+13
-5
No files found.
10.brainstorming-innovative-courses/intercambio-curso-electromagnetismo/textbook.en.md
View file @
b198b2fe
...
@@ -226,15 +226,23 @@ FR : en coordonnées cartésiennes orthonormées : <br>
...
@@ -226,15 +226,23 @@ FR : en coordonnées cartésiennes orthonormées : <br>
EN : in orthonormal Cartesian coordinate :
<br>
EN : in orthonormal Cartesian coordinate :
<br>
$
`\Delta = \dfrac{\partial^2}{\partial x^2}+\dfrac{\partial^2}{\partial y^2}+\dfrac{\partial^2}{\partial z^2}`
$
$
`\Delta = \dfrac{\partial^2}{\partial x^2}+\dfrac{\partial^2}{\partial y^2}+\dfrac{\partial^2}{\partial z^2}`
$
$
`\Delta = \overrightarrow{grad}\left( div\,\overrightarrow{U}\right) - \overrightarrow{rot}\left(\overrightarrow{rot}\,\overrightarrow{U}\right)`
$
<br>
$
`\Delta
\;\overrightarrow{U}
= \overrightarrow{grad}\left( div\,\overrightarrow{U}\right) - \overrightarrow{rot}\left(\overrightarrow{rot}\,\overrightarrow{U}\right)`
$
<br>
$
`\Delta = \overrightarrow{grad}\:div\,\overrightarrow{U} - \overrightarrow{rot}\:\overrightarrow{rot}\,\overrightarrow{U}`
$
<br>
$
`\Delta
\;\overrightarrow{U}
= \overrightarrow{grad}\:div\,\overrightarrow{U} - \overrightarrow{rot}\:\overrightarrow{rot}\,\overrightarrow{U}`
$
<br>
ES : operador laplaciana vectorial, laplaciana vectorial, laplaciana de un campo vectorial
<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>
FR : opérateur laplacien, laplacien, d'un champ scalaire ou d'un champ vecoriel
<br>
EN : laplacian operator, vectorial laplacian, laplacian of a vector field
EN : laplacian operator, vectorial laplacian, laplacian of a vector field
<br>
in orthonormal Cartesian coordinate :
in orthonormal Cartesian coordinate :
<br>
$
`\Delta\;\overrightarrow{U} = \overrightarrow{e_x}\left(\dfrac{\partial^2\;U_x}{\partial x^2}+\dfrac{\partial^2\;U_x}{\partial y^2}+\dfrac{\partial^2\;U_x}{\partial z^2}\right)
$
`\Delta\;\overrightarrow{U} = \overrightarrow{e_x}\left(\dfrac{\partial^2\;U_x}{\partial x^2}+\dfrac{\partial^2\;U_x}{\partial y^2}+\dfrac{\partial^2\;U_x}{\partial z^2}\right)
+\overrightarrow{e_y}\left(\dfrac{\partial^2\;U_y}{\partial x^2}+\dfrac{\partial^2\;U_y}{\partial y^2}+\dfrac{\partial^2\;U_y}{\partial z^2}\right)
+\overrightarrow{e_y}\left(\dfrac{\partial^2\;U_y}{\partial x^2}+\dfrac{\partial^2\;U_y}{\partial y^2}+\dfrac{\partial^2\;U_y}{\partial z^2}\right)
+\overrightarrow{e_z}\left(\dfrac{\partial^2\;U_z}{\partial x^2}+\dfrac{\partial^2\;U_z}{\partial y^2}+\dfrac{\partial^2\;U_z}{\partial z^2}\right)`
$
+\overrightarrow{e_z}\left(\dfrac{\partial^2\;U_z}{\partial x^2}+\dfrac{\partial^2\;U_z}{\partial y^2}+\dfrac{\partial^2\;U_z}{\partial z^2}\right)`
$
<br>
$
`\Delta\;\overrightarrow{U} = \left \{
\begin{array}{r c l}
\dfrac{\partial^2\;U_x}{\partial x^2}+\dfrac{\partial^2\;U_x}{\partial y^2}+\dfrac{\partial^2\;U_x}{\partial z^2} \\
\dfrac{\partial^2\;U_y}{\partial x^2}+\dfrac{\partial^2\;U_y}{\partial y^2}+\dfrac{\partial^2\;U_y}{\partial z^2} \\
\dfrac{\partial^2\;U_z}{\partial x^2}+\dfrac{\partial^2\;U_z}{\partial y^2}+\dfrac{\partial^2\;U_z}{\partial z^2}
\end{array}
\right.
ES : escalar = número real o complexo + unidad de medida? <br>
ES : escalar = número real o complexo + unidad de medida? <br>
FR : scalaire = nombre réel ou complexe + unité de mesure <br>
FR : scalaire = nombre réel ou complexe + unité de mesure <br>
...
...
Write
Preview
Markdown
is supported
0%
Try again
or
attach a new file
Attach a file
Cancel
You are about to add
0
people
to the discussion. Proceed with caution.
Finish editing this message first!
Cancel
Please
register
or
sign in
to comment