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Porting the COSMO dynamical core to heterogeneous platforms using STELLA Library., , , и . PARCO, том 27 из Advances in Parallel Computing, стр. 637-646. IOS Press, (2015)Efficient implementation of quantum materials simulations on distributed CPU-GPU systems., , , , , и . SC, стр. 10:1-10:12. ACM, (2015)Understanding Data Movement in Tightly Coupled Heterogeneous Systems: A Case Study with the Grace Hopper Superchip., , , , , и . CoRR, (2024)Topic 14+16: High-Performance and Scientific Applications and Extreme-Scale Computing - (Introduction)., , , , , , , и . Euro-Par, том 8097 из Lecture Notes in Computer Science, стр. 737-738. Springer, (2013)Abstract: A Novel Hybrid CPU-GPU Generalized Eigensolver for Electronic Structure Calculations Based on Fine Grained Memory Aware Tasks., , , , и . SC Companion, стр. 1338-1339. IEEE Computer Society, (2012)Application Centric Energy-Efficiency Study of Distributed Multi-Core and Hybrid CPU-GPU Systems., , , , , и . SC, стр. 819-829. IEEE Computer Society, (2014)Materials and nano-science - Toward material-specific simulations of high temperature superconductivity.. SC, стр. 63. ACM Press, (2006)Towards a performance portable, architecture agnostic implementation strategy for weather and climate models., , , , , , , и . Supercomput. Front. Innov., 1 (1): 45-62 (2014)Model-Driven Choice of Numerical Methods for the Solution of the Linear Advection Equation., , , и . ICCS, том 108 из Procedia Computer Science, стр. 1542-1551. Elsevier, (2017)Kernelling Method for Identifying Near-Native Protein Decoy Structures., , , и . BIOCOMP, стр. 225-228. CSREA Press, (2010)