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Toward high-performance computational chemistry: II. A scalable self-consistent field program., , , , , , , , , и 9 other автор(ы). J. Comput. Chem., 17 (1): 124-132 (1996)High Performance Computational Chemistry: NWChem and Fully Distributed Parallel Applications., , , , , , , , , и 5 other автор(ы). PARA, том 1041 из Lecture Notes in Computer Science, стр. 278-294. Springer, (1995)A64FX performance: experience on Ookami., , , , , , и . CLUSTER, стр. 711-718. IEEE, (2021)Deriving parametric multi-way recursive divide-and-conquer dynamic programming algorithms using polyhedral compilers., , , , , и . CGO, стр. 317-329. ACM, (2020)A domain-specific compiler for a parallel multiresolution adaptive numerical simulation environment., , , , , , и . SC, стр. 468-479. IEEE Computer Society, (2016)Model-Driven SIMD Code Generation for a Multi-resolution Tensor Kernel., , , , и . IPDPS, стр. 1058-1067. IEEE, (2011)On Using Linux Kernel Huge Pages with FLASH, an Astrophysical Simulation Code., , , , , , и . CLUSTER, стр. 539-544. IEEE, (2022)Parallel computing in quantum chemistry - Message passing and beyond for a general ab initio program system., , , и . Future Gener. Comput. Syst., 11 (4-5): 445-450 (1995)Are we ready for broader adoption of ARM in the HPC community: Performance and Energy Efficiency Analysis of Benchmarks and Applications Executed on High-End ARM Systems., , , , , , и . HPC Asia Workshops, стр. 78-86. ACM, (2023)Efficient Execution of Dynamic Programming Algorithms on Apache Spark., , , , , и . CLUSTER, стр. 337-348. IEEE, (2020)