Computational Finite Element Methods in Nanotechnology

Computational Finite Element Methods in Nanotechnology pdf

作者:

萨汗·穆萨

意见:

1059

语:

英语

评分:

5.0

部门:

技术

页数:

526

部分:

纳米技术

文件大小:

21493740 MB

书籍质量 :

出色的

下载一本书:

66

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由于网站正在更新,下载将暂时停止,直至更新完成 [email protected]

Sarhan Muhammad Musa 是德克萨斯州 Prairie View A&M 大学工程技术系的教授。 他获得了博士学位。 2001 年获得纽约城市大学电气工程博士学位。自 2004 年以来,Moses 教授是德克萨斯州草原景观网络学院的创始人和主任。他是 LTD Sprint 和波音 Welliver 研究员。 摩西教授是几本关于数学和工程的书籍的作者。 他目前的研究兴趣包括电磁计算、智能电网、成像和光谱学、计算纳米技术、网络安全和计算机网络。 EMC(基于 2018 年 2 月 1 日发布的文件)。

书的描述

Computational Finite Element Methods in Nanotechnology pdf 萨汗·穆萨

Computational Finite Element Methods in Nanotechnology demonstrates the capabilities of finite element methods in nanotechnology for a range of fields. Bringing together contributions from researchers around the world, it covers key concepts as well as cutting-edge research and applications to inspire new developments and future interdisciplinary research. In particular, it emphasizes the importance of finite element methods (FEMs) for computational tools in the development of efficient nanoscale systems. The book explores a variety of topics, including: A novel FE-based thermo-electrical-mechanical-coupled model to study mechanical stress, temperature, and electric fields in nano- and microelectronics The integration of distributed element, lumped element, and system-level methods for the design, modeling, and simulation of nano- and micro-electromechanical systems (N/MEMS) Challenges in the simulation of nanorobotic systems and macro-dimensions The simulation of structures and processes such as dislocations, growth of epitaxial films, and precipitation Modeling of self-positioning nanostructures, nanocomposites, and carbon nanotubes and their composites Progress in using FEM to analyze the electric field formed in needleless electrospinning How molecular dynamic (MD) simulations can be integrated into the FEM Applications of finite element analysis in nanomaterials and systems used in medicine, dentistry, biotechnology, and other areas The book includes numerous examples and case studies, as well as recent applications of microscale and nanoscale modeling systems with FEMs using COMSOL Multiphysics® and MATLAB®. A one-stop reference for professionals, researchers, and students, this is also an accessible introduction to computational FEMs in nanotechnology for those new to the field.

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