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musa sarhan m. (curatore) - computational finite element methods in nanotechnology

Computational Finite Element Methods in Nanotechnology




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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

CRC Press

Pubblicazione: 04/2017
Edizione: 1° edizione





Note Editore

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.




Sommario

Overview of Computational Methods in NanotechnologyOrion Ciftja and Sarhan M. MusaFinite Element Method for Nanotechnology Applications in Nano-/MicroelectronicsJing ZhangModeling, Design, and Simulation of N/MEMS by Integrating Finite Element, Lumped Element, and System Level AnalysesJason Vaughn Clark, Prabhakar Marepalli, and Richa BansalNanorobotic Applications of Finite Element MethodS. Sadeghzadeh, M.H. Korayem, V. Rahneshin, A. Homayooni, and M. MoradiSimulations of Dislocations and Coherent NanostructuresAnandh Subramaniam and Arun KumarContinuum and Atomic-Scale Finite Element Modeling of Multilayer Self-Positioning NanostructuresY. Nishidate and G.P. NikishkovApplication of Finite Element Method for the Design of NanocompositesUfana Riaz and S.M. AshrafFinite Element Modeling of Carbon Nanotubes and Their CompositesMahmoud Nadim NahasFinite Element–Aided Electric Field Analysis of Needleless ElectrospinningHaitao Niu, Xungai Wang, and Tong LinMolecular Dynamic Finite Element Method (MDFEM)Lutz Nasdala, Andreas Kempe, and Raimund RolfesApplication of Biomaterials and Finite Element Analysis (FEA) in Nanomedicine and NanodentistryAndy H. Choi, Jukka P. Matinlinna, Richard C. Conway, and Besim Ben-NissanApplication of Finite Element Analysis for Nanobiomedical StudyViroj WiwanitkitFinite Element Method for Micro and Nano-Systems for BiotechnologyJean Berthier Design of the Nanoinjection Detectors Using Finite Element ModelingOmer G. Memis and Hooman MohseniFinite Element Method (FEM) for Nanotechnology Application in Engineering: Integrated Use of Macro-, Micro-, and Nano-SystemsRadostina Petrova, P. Genova, and M. TzonevaModeling at the Nano Level: Application to Physical ProcessesSerge Lefeuvre and Olga GomonovaAppendix A: Material and Physical ConstantsAppendix B: Symbols and FormulasIndex




Autore

Sarhan M. Musa, Ph.D., is currently an associate professor in the Department of Engineering Technology at Prairie View A&M University, Texas. He has been director of Prairie View Networking Academy, Texas, since 2004. Dr. Musa has published more than 100 papers in peer-reviewed journals and conferences and is the editor of Computational Nanotechnology Modeling and Applications with MATLAB®. He currently serves on the editorial board of the Journal of Modern Applied Science. Dr. Musa is a senior member of the Institute of Electrical and Electronics Engineers (IEEE) and is also a 2010 Boeing Welliver Fellow.










Altre Informazioni

ISBN:

9781138076884

Condizione: Nuovo
Dimensioni: 10 x 7 in Ø 1.00 lb
Formato: Brossura
Illustration Notes:411 b/w images, 27 tables and 498
Pagine Arabe: 640


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