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K computer: 8.162 PetaFLOPS massively parallel scalar supercomputer built with over 548k cores., , , , , , , , , and . ISSCC, page 192-194. IEEE, (2012)Data I/O management approach for the post-hoc visualization of big simulation data results., , , , , , and . IJMSSC, 9 (3): 1840006:1-1840006:16 (2018)The K computer: Japanese next-generation supercomputer development project., , , , and . ISLPED, page 371-372. IEEE/ACM, (2011)Characterizing I/O and Storage Activity on the K Computer for Post-Processing Purposes., , , , and . ISCC, page 730-735. IEEE, (2018)An In-Situ Visualization Approach for the K Computer Using Mesa 3D and KVS., , , , and . ISC Workshops, volume 11203 of Lecture Notes in Computer Science, page 310-322. Springer, (2018)The K computer and its failures.. FTXS@HPDC, page 17. ACM, (2016)Extremely Scalable Algorithm for 108-atom Quantum Material Simulation on the Full System of the K Computer., , , , , , and . ScalA@SC, page 33-40. IEEE Computer Society, (2016)Improving the energy efficiencies of power supply and cooling facilities for 10 peta-scale supercomputer., , , , , and . Comput. Sci. Res. Dev., 31 (4): 235-243 (2016)The design of ultra scalable MPI collective communication on the K computer., , , , , , , and . Comput. Sci. Res. Dev., 28 (2-3): 147-155 (2013)First-principles calculations of electron states of a silicon nanowire with 100, 000 atoms on the K computer., , , , , , , , , and 3 other author(s). SC, page 1:1-1:11. ACM, (2011)