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OpenCL for HPC with FPGAs: Case study in molecular electrostatics., , , , , and . HPEC, page 1-8. IEEE, (2017)An OpenCL 3D FFT for Molecular Dynamics Simulations on Multiple FPGAs., , , , and . CoRR, (2020)Exploring HPC-based scientific software as a service using CometCloud., , , , , , and . CollaborateCom, page 35-44. ICST / IEEE, (2014)Characterizing and Improving the Performance of Bioinformatics Workloads on the POWER5 Architecture., , , and . IISWC, page 89-97. IEEE Computer Society, (2007)Enabling High-Performance Computing as a Service., , , , , , , , , and 1 other author(s). Computer, 45 (10): 72-80 (2012)Enabling Bioinformatics Algorithms on the Cell/B.E. Processor., , and . Scientific Computing with Multicore and Accelerators, CRC Press / Taylor & Francis, (2010)Evaluating Cell/B.E software cache for ClustalW., , and . ISCAS, page 3793-3796. IEEE, (2010)Particle Mesh Ewald for Molecular Dynamics in OpenCL on an FPGA Cluster., , , , , and . FCCM, page 270. IEEE, (2021)Execution of Complete Molecular Dynamics Simulations on Multiple FPGAs., , , , and . HPEC, page 1-2. IEEE, (2020)A Communication-Efficient Multi-Chip Design for Range-Limited Molecular Dynamics., , , , , and . HPEC, page 1-8. IEEE, (2020)