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Titlebook: Computer Simulation of Polymeric Materials; Applications of the Japan Association for‘Chemical Innovation Book 2016 Springer Science+Busin

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楼主: Roosevelt
发表于 2025-3-30 11:21:30 | 显示全部楼层
https://doi.org/10.1007/978-0-387-32833-1d properties. If physical properties can be predicted by computer simulation from information about the chemical structure and composition of materials as well as processing conditions, it may be possible to develop new materials with screening and optimization of various conditions by simulation.
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The Concise Encyclopedia of Statisticsthon, which can be used for the analysis of UDF files and also for visualization. In GOURMET, Python scripts can be automatically loaded and run using action menus. A quick tutorial of UDF, GOURMET, and Python is included in this chapter.
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des detailed processes and tips on simulation that readers cThis book is the first to introduce a mesoscale polymer simulation system called OCTA. With its name derived from "Open Computational Tool for Advanced material technology," OCTA is a unique software product, available without charge, that
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The Concise Encyclopedia of Statisticsome coarse-grained models, including the united atom model, rigid-body model, ideal chain model, and slip-link model, are introduced, along with their suitable targets to study. Furthermore brief instructions on how to adapt a coarse-grained model to a real polymer chain are also described.
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https://doi.org/10.1007/978-0-387-32833-1ulators, together with some simple tutorials. We select two application examples. The first is the phase separation of polymer melts under the effect of hydrodynamics, and the second is the deformation of elastic material with a phase-separated structure.
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https://doi.org/10.1057/9780230608948 graphene during the separation process are evaluated. Techniques described in this chapter will provide a qualitative understanding of the phenomena. Sample files for the simulations and scripts for modeling systems are provided, and they can be used in more realistic simulations.
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