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<h1>Welcome to Numerical tours of Computational Mechanics using FEniCS<a class="headerlink" href="#welcome-to-numerical-tours-of-computational-mechanics-using-fenics" title="Permalink to this headline"></a></h1>
<p>Contents:</p>
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<ul>
<li class="toctree-l1"><a class="reference internal" href="intro.html">Introduction</a><ul>
<li class="toctree-l2"><a class="reference internal" href="intro.html#what-is-it-about">What is it about ?</a></li>
<li class="toctree-l2"><a class="reference internal" href="intro.html#how-do-i-get-started">How do I get started ?</a></li>
<li class="toctree-l2"><a class="reference internal" href="intro.html#about-the-author">About the author</a></li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="linear_problems.html">Linear problems in solid mechanics</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/elasticity/2D_elasticity.py.html">2D linear elasticity</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/elasticity/orthotropic_elasticity.py.html">Orthotropic linear elasticity</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/elasticity/axisymmetric_elasticity.html">Axisymmetric formulation for elastic structures of revolution</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/thermoelasticity/thermoelasticity.html">Linear thermoelasticity (weak coupling)</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/thermoelasticity/thermoelasticity_transient.html">Thermo-elastic evolution problem (full coupling)</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/modal_analysis_dynamics/cantilever_modal.py.html">Modal analysis of an elastic structure</a></li>
</ul>
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<li class="toctree-l1"><a class="reference internal" href="homogenization.html">Homogenization of heterogeneous materials</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/periodic_homog_elas/periodic_homog_elas.html">Periodic homogenization of linear elastic materials</a></li>
</ul>
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<li class="toctree-l1"><a class="reference internal" href="nonlinear_problems.html">Nonlinear problems in solid mechanics</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/2D_plasticity/vonMises_plasticity.py.html">Elasto-plastic analysis of a 2D von Mises material</a></li>
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<li class="toctree-l1"><a class="reference internal" href="beams_and_plates.html">Beams and plates</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/timoshenko/beam_buckling.html">Eulerian buckling of a beam</a></li>
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<li class="toctree-l2"><a class="reference internal" href="demo/reissner_mindlin/reissner_mindlin_quads.py.html">Reissner-Mindlin plate with Quadrilaterals</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/reissner_mindlin/reissner_mindlin_dg.py.html">Reissner-Mindlin plate with a Discontinuous-Galerkin approach</a></li>
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<li class="toctree-l1"><a class="reference internal" href="tips_and_tricks.html">Tips and Tricks</a><ul>
<li class="toctree-l2"><a class="reference internal" href="tips_and_tricks.html#efficient-projection-on-dg-or-quadrature-spaces">Efficient projection on DG or Quadrature spaces</a></li>
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          <h3>Table Of Contents</h3>
          <ul>
<li class="toctree-l1"><a class="reference internal" href="intro.html">Introduction</a><ul>
<li class="toctree-l2"><a class="reference internal" href="intro.html#what-is-it-about">What is it about ?</a></li>
<li class="toctree-l2"><a class="reference internal" href="intro.html#how-do-i-get-started">How do I get started ?</a></li>
<li class="toctree-l2"><a class="reference internal" href="intro.html#about-the-author">About the author</a></li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="linear_problems.html">Linear problems in solid mechanics</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/elasticity/2D_elasticity.py.html">2D linear elasticity</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/elasticity/orthotropic_elasticity.py.html">Orthotropic linear elasticity</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/elasticity/axisymmetric_elasticity.html">Axisymmetric formulation for elastic structures of revolution</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/thermoelasticity/thermoelasticity.html">Linear thermoelasticity (weak coupling)</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/thermoelasticity/thermoelasticity_transient.html">Thermo-elastic evolution problem (full coupling)</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/modal_analysis_dynamics/cantilever_modal.py.html">Modal analysis of an elastic structure</a></li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="homogenization.html">Homogenization of heterogeneous materials</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/periodic_homog_elas/periodic_homog_elas.html">Periodic homogenization of linear elastic materials</a></li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="nonlinear_problems.html">Nonlinear problems in solid mechanics</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/2D_plasticity/vonMises_plasticity.py.html">Elasto-plastic analysis of a 2D von Mises material</a></li>
</ul>
</li>
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<li class="toctree-l1"><a class="reference internal" href="beams_and_plates.html">Beams and plates</a><ul>
<li class="toctree-l2"><a class="reference internal" href="demo/timoshenko/beam_buckling.html">Eulerian buckling of a beam</a></li>
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<li class="toctree-l2"><a class="reference internal" href="demo/reissner_mindlin/reissner_mindlin_quads.py.html">Reissner-Mindlin plate with Quadrilaterals</a></li>
<li class="toctree-l2"><a class="reference internal" href="demo/reissner_mindlin/reissner_mindlin_dg.py.html">Reissner-Mindlin plate with a Discontinuous-Galerkin approach</a></li>
</ul>
</li>
<li class="toctree-l1"><a class="reference internal" href="tips_and_tricks.html">Tips and Tricks</a><ul>
<li class="toctree-l2"><a class="reference internal" href="tips_and_tricks.html#efficient-projection-on-dg-or-quadrature-spaces">Efficient projection on DG or Quadrature spaces</a></li>
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