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Enabling a highly-scalable global address space model for petascale computing., , , and . Conf. Computing Frontiers, page 207-216. ACM, (2010)Scalable implementations of accurate excited-state coupled cluster theories: application of high-level methods to porphyrin-based systems., , , , and . SC, page 72:1-72:10. ACM, (2011)Runtime Techniques to Enable a Highly-Scalable Global Address Space Model for Petascale Computing., , , , and . Int. J. Parallel Program., 40 (6): 633-655 (2012)Performance Tuning of Fock Matrix and Two-Electron Integral Calculations for NWChem on Leading HPC Platforms., , , , , and . PMBS@SC, volume 8551 of Lecture Notes in Computer Science, page 261-280. Springer, (2013)An Evaluation of Two Implementation Strategies for Optimizing One-Sided Atomic Reduction., , and . IPDPS, IEEE Computer Society, (2005)High-performance computing in chemistry: NW Chem., , , , , , , , , and 5 other author(s). Future Gener. Comput. Syst., 12 (4): 273-289 (1996)Advances, Applications and Performance of the Global Arrays Shared Memory Programming Toolkit., , , , , and . Int. J. High Perform. Comput. Appl., 20 (2): 203-231 (2006)Liquid water: obtaining the right answer for the right reasons., , , , , and . SC, ACM, (2009)One-sided Communication on the Myrinet-based SMP Clusters using the GM Message-Passing Library., , and . IPDPS, page 166. IEEE Computer Society, (2001)Theory of zwitterionic molecular-based organic magnets, , , , , , and . CHEMICAL PHYSICS LETTERS, 511 (4-6): 294-298 (2011)