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His current research interests include computation, mathematics, and theory enabling HPC methods for electron- to fluid-scale modeling. Especially interesting open problems include applications to small nonequilibrium systems, dielectric friction, dispersion, hydration, and its role in nanoscale devices. David’s focus at ORNL is developing more powerful and general libraries and interfaces for modeling these systems at scale.
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论文共 94 篇作者统计合作学者相似作者
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Jackson W. Burns,David M. Rogers
JOURNAL OF CHEMICAL INFORMATION AND MODELINGno. 23 (2023): 7330-7337
High Performance Computingpp.182-201, (2023)
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PASCpp.9:1-9:14, (2023)
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SC '23: Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysispp.1-12, (2023)
Scott Atchley, Chris Zimmer, John R. Lange,David E. Bernholdt,Verónica G. Melesse Vergara, Thomas Beck,Michael J. Brim,Reuben Budiardja,Sunita Chandrasekaran,Markus Eisenbach,Thomas Evans, Matthew Ezell,
SC23: International Conference for High Performance Computing, Networking, Storage and Analysispp.1-16, (2023)
Comput. Phys. Commun. (2023): 108849-108849
Lois Curfman McInnes,Michael Heroux,David E. Bernholdt,Anshu Dubey,Elsa Gonsiorowski,Rinku Gupta, Osni Marques,J. David Moulton,Hai Ah Nam,Boyana Norris,Elaine M. Raybourn, Jim Willenbring,
Computing in Science & Engineeringno. 99 (2023): 1-12
Scott Atchley,Christopher Zimmer ,John Lange,David E. Bernholdt, Verónica G. Melesse Vergara,Thomas Beck,Michael J. Brim,Reuben D. Budiardja,Sunita Chandrasekaran,Markus Eisenbach ,Thomas M. Evans , Matthew Ezell,
SC '23: Proceedings of the International Conference for High Performance Computing, Networking, Storage and Analysispp.52:1-52:16, (2023)
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