By Sarhan M. Musa
Computational Finite point equipment in Nanotechnology demonstrates the functions of finite point equipment in nanotechnology for a number fields. Bringing jointly contributions from researchers worldwide, it covers key ideas in addition to state of the art examine and functions to encourage new advancements and destiny interdisciplinary study. specifically, it emphasizes the significance of finite point tools (FEMs) for computational instruments within the improvement of effective nanoscale platforms.
The e-book explores quite a few issues, together with:
- A novel FE-based thermo-electrical-mechanical-coupled version to review mechanical rigidity, temperature, and electrical fields in nano- and microelectronics
- The integration of disbursed aspect, lumped point, and system-level equipment for the layout, modeling, and simulation of nano- and micro-electromechanical structures (N/MEMS)
- Challenges within the simulation of nanorobotic platforms and macro-dimensions
- The simulation of buildings and methods resembling dislocations, progress of epitaxial motion pictures, and precipitation
- Modeling of self-positioning nanostructures, nanocomposites, and carbon nanotubes and their composites
- Progress in utilizing FEM to investigate the electrical box shaped in needleless electrospinning
- How molecular dynamic (MD) simulations should be built-in into the FEM
- Applications of finite point research in nanomaterials and platforms utilized in medication, dentistry, biotechnology, and different areas
The publication contains a variety of examples and case experiences, in addition to contemporary functions of microscale and nanoscale modeling structures with FEMs utilizing COMSOL Multiphysics® and MATLAB®. A one-stop reference for pros, researchers, and scholars, this is often additionally an obtainable advent to computational FEMs in nanotechnology for these new to the field.
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Extra resources for Computational finite element methods in nanotechnology
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