A Coq formal proof of the Lax-Milgram theorem
Author:
Affiliation:
1. Inria, France / University of Paris-Sud, France / CNRS, France / University of Paris-Saclay, France
2. Inria, France
3. University of Technology of Compiègne, France
4. University of Paris North, France / CNRS, France
Funder
LabeX Digicosme
Publisher
ACM
Link
https://dl.acm.org/doi/pdf/10.1145/3018610.3018625
Reference4 articles.
1. Wave Equation Numerical Resolution: A Comprehensive Mechanized Proof of a C Program
2. ISBN 0-89871-514-8. ISBN 0-89871-514-8.
3. F. Immler and J. Hölzl . Numerical analysis of ordinary differential equations in isabelle/hol. In L. Beringer and A. P. Felty editors Interactive Theorem Proving - Third International Conference ITP 2012 Princeton NJ USA August 13-15 2012. Proceedings volume 7406 of Lecture Notes in Computer Science pages 377– 392 . Springer 2012. F. Immler and J. Hölzl. Numerical analysis of ordinary differential equations in isabelle/hol. In L. Beringer and A. P. Felty editors Interactive Theorem Proving - Third International Conference ITP 2012 Princeton NJ USA August 13-15 2012. Proceedings volume 7406 of Lecture Notes in Computer Science pages 377–392. Springer 2012.
4. O. C. Zienkiewicz R. L. Taylor and J. Z. Zhu. The finite element method: its basis and fundamentals. Elsevier/Butterworth Heinemann Amsterdam seventh edition 2013. ISBN 978-1-85617-633-0. O. C. Zienkiewicz R. L. Taylor and J. Z. Zhu. The finite element method: its basis and fundamentals. Elsevier/Butterworth Heinemann Amsterdam seventh edition 2013. ISBN 978-1-85617-633-0.
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