Fem-fenics: Difference between revisions

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The equation being solved is
The equation being solved is


<math> -\mathrm{div}\ ( \nabla u(x, y) ) ) = 1 \qquad \mbox{ in } \Omega</math>
<math>-\mathrm{div}\ ( \nabla u(x, y) ) ) = 1 \qquad \mbox{ in } \Omega</math>


<math> u(x, y) = 0 \qquad \mbox{ on } \Gamma_D </math>
<math>u(x, y) = 0 \qquad \mbox{ on } \Gamma_D </math>


<math> (\nabla u(x, y) )  \cdot \mathbf{n} = 0 \qquad \mbox{ on } \Gamma_N</math>
<math>(\nabla u(x, y) )  \cdot \mathbf{n} = 0 \qquad \mbox{ on } \Gamma_N</math>


A complete description of the problem is avilable on the [http://fenicsproject.org/documentation/dolfin/1.2.0/python/demo/pde/poisson/python/documentation.html Fenics website.]
A complete description of the problem is avilable on the [http://fenicsproject.org/documentation/dolfin/1.2.0/python/demo/pde/poisson/python/documentation.html Fenics website.]

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