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Life science application support in an interoperable e-science environment.

, , , , , and . CBMS, page 1-8. IEEE Computer Society, (2009)

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Supporting Scientific Biological Applications with Seamless Database Access in Interoperable e-Science Infrastructures., , , , and . BIOINFORMATICS, page 203-206. INSTICC Press, (2010)Automated Optimization Methods for Scientific Workflows in e-Science Infrastructures.. University of Bonn, (2014)Enhancing the performance of scientific workflow execution in e-science environments by harnessing the standards based parameter sweep model., , , , and . XSEDE, page 56:1-56:7. ACM, (2013)Scientific workflow optimization for improved peptide and protein identification., , , and . BMC Bioinformatics, (2015)Life science application support in an interoperable e-science environment., , , , , and . CBMS, page 1-8. IEEE Computer Society, (2009)A UNICORE Plugin for HPC-Enabled Scientific Workflows in Taverna 2.2., , and . SERVICES, page 220-223. IEEE Computer Society, (2011)UNICORE 6 - Recent and Future Advancements., , , , , , , , , and 15 other author(s). Annales des Télécommunications, 65 (11-12): 757-762 (2010)On specifying and sharing scientific workflow optimization results using research objects., , , , , , and . WORKS@SC, page 28-37. ACM, (2013)A new optimization phase for scientific workflow management systems., , , , and . Future Generation Comp. Syst., (2014)Enhanced Resource Management Enabling Standard Parameter Sweep Jobs for Scientific Applications., , , , , , and . ICPP, page 783-790. IEEE Computer Society, (2013)