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- W1936962430 abstract "Distributed data life cycles consist of data sources, data and computing components as well as data sinks and user facing elements. The complexity of the underlying systems is ever rising with the increasing heterogeneity and distribution of components and environments. Researchers would like to focus on their specific research topic without the need to learn these systems in detail. Accessible data life cycles enable scientists to do better science more efficiently and obtain results, which would not have been possible without these advanced technologies. For this objective, abstraction to hide complexity and automation to avoid manual tasks are a necessity. These are embodied in the three conceptual data life cycle challenges, namely data, computing and utilization. Concepts and technologies to manage these challenges are explored and exemplified on the basis of the general data life cycle and MoSGrid (Molecular Simulation Grid) science gateway. In this context, we especially focus on teaching in drug design and quantum chemistry research use cases. Further cases are presented elucidating various challenges in adapting the concepts and technologies to wind energy data analysis and the XSEDE research infrastructure." @default.
- W1936962430 created "2016-06-24" @default.
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- W1936962430 date "2015-08-01" @default.
- W1936962430 modified "2023-09-28" @default.
- W1936962430 title "Managing Complexity in Distributed Data Life Cycles Enhancing Scientific Discovery" @default.
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- W1936962430 doi "https://doi.org/10.1109/escience.2015.72" @default.
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