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Memory efficient adaptive mesh generation and implementation of multigrid algorithms using Sierpinski curves.

, , , and . IJCSE, 4 (1): 12-21 (2008)

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Option pricing with a direct adaptive sparse grid approach., , , and . J. Computational Applied Mathematics, 236 (15): 3741-3750 (2012)A Safety Argumentation for Fail-Operational Automotive Systems in Compliance with ISO 26262., , , and . ICSRS, page 484-493. IEEE, (2019)Parallelizing a Black-Scholes solver based on finite elements and sparse grids., , , and . IPDPS Workshops, page 1-8. IEEE, (2010)Option Pricing with a Direct Adaptive Sparse Grid Approach, , , and . Journal of Computational and Applied Mathematics, 236 (15): 3741--3750 (Oktober 2011)Parallelizing a Black-Scholes solver based on finite elements and sparse grids., , , and . Concurrency and Computation: Practice and Experience, 26 (9): 1640-1653 (2014)A highly parallel Black-Scholes solver based on adaptive sparse grids., , and . Int. J. Comput. Math., 89 (9): 1212-1238 (2012)Memory efficient adaptive mesh generation and implementation of multigrid algorithms using Sierpinski curves., , , and . IJCSE, 4 (1): 12-21 (2008)A Pricing Framework for the Efficient Evaluation of Financial Derivatives based on Theta Calculus and Adaptive Sparse Grids.. Technical University Munich, (2012)Parallelizing a Black-Scholes solver based on finite elements and sparse grids, , , and . Concurrency and Computation: Practice and Experience, (June 2014)Parallelizing a Black-Scholes Solver based on Finite Elements and Sparse Grids, , , and . IEEE International Parallel & Distributed Processing Symposium, Sonstige, (January 2010)