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*Garth N. Wells**Finite Element Variational Forms*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 129-136. Vol. 84. Lec 84. Springer, 2012.

*Instant: Just-in-Time Compilation of C/C++ in Python*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 253-268. Vol. 84. Lecture Notes in Computational Science and Engineering 84. Springer, 2012.

*Lessons Learned in Mixed Language Programming*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 363-381. Vol. 84. Springer, 2012. Simula.simula.960.pdf (63.41 MB)

*Simulation of Transitional Flows*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 419-438. Vol. 84. Lecture Notes in Computational Science and Engineering 84. Springer, 2012.

*SyFi and SFC: Symbolic Finite Elements and Form Compilation*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 269-278. Vol. 84. Lecture Notes in Computational Science and Engineering 84. Springer, 2012.

*Tensor Representation of Finite Element Variational Forms*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 157-167. Vol. 84. Lecture Notes in Computational Science and Engineering 84. Springer, 2012.

*UFC: a Finite Element Code Generation Interface*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 279-298. Vol. 84. Lecture Notes in Computational Science and Engineering 84. Springer, 2012.

*UFL: a Finite Element Form Language*." In

*Automated Solution of Differential Equations by the Finite Element Method*, edited by A. Logg, K. Mardal and G. N. Wells, 299-334. Vol. 84. Lecture Notes in Computational Science and Engineering 84. Springer, 2012.

A FEniCS-Based Programming Framework for Modeling Turbulent Flow by the Reynolds-Averaged Navier-Stokes Equations."

"*Advances in Water Resources*34 (2011): 1082-1101.*Automatic Calibration of Depositional Models*." In

*Automated Scientific Computing*, edited by A. Logg, K. Mardal and G. N. Wells. Springer, 2010.

*Building Flexible User Interfaces for Solving PDEs*In

*AIP Conference Proceedings*, Edited by T. E. Simos, G. Psihoyios and C. Tsitouras. Vol. 1281. AIP, 2010. Simula.acdc.54.pdf (279.38 KB)

DOLFIN: Automated Finite Element Computing."

"*ACM Transactions on Mathematical Software*37 (2010). Simula.SC.476.pdf (385.37 KB)Automated Code Generation for Discontinuous Galerkin Methods."

"*SIAM Journal on Scientific Computing*31 (2008): 849-864.*Automated Computational Modelling for Solid Mechanics*In

*IUTAM Symposium on Theoretical, Modelling and Computational Aspects of Inelastic Media*, Edited by D. B. Reddy. Springer, 2008.

*DOLFIN User Manual*. The FEniCS Project, 2007. Logg.2006.7.pdf (786.92 KB)