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Molecular Dynamics Simulation Of Nanocomposites Using Biovia Materials Studio Lammps And Gromacs 1st Edition Sumit Sharma

  • SKU: BELL-10849190
Molecular Dynamics Simulation Of Nanocomposites Using Biovia Materials Studio Lammps And Gromacs 1st Edition Sumit Sharma
$ 31.00 $ 45.00 (-31%)

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Molecular Dynamics Simulation Of Nanocomposites Using Biovia Materials Studio Lammps And Gromacs 1st Edition Sumit Sharma instant download after payment.

Publisher: Elsevier
File Extension: PDF
File size: 30.68 MB
Pages: 365
Author: Sumit Sharma
ISBN: 9780128169544, 0128169540
Language: English
Year: 2019
Edition: 1

Product desciption

Molecular Dynamics Simulation Of Nanocomposites Using Biovia Materials Studio Lammps And Gromacs 1st Edition Sumit Sharma by Sumit Sharma 9780128169544, 0128169540 instant download after payment.

Molecular Dynamics Simulation of Nanocomposites using BIOVIA Materials Studio, Lammps and Gromacs presents the three major software packages used for the molecular dynamics simulation of nanocomposites. The book explains, in detail, how to use each of these packages, also providing real-world examples that show when each should be used. The latter two of these are open-source codes which can be used for modeling at no cost. Several case studies how each software package is used to predict various properties of nanocomposites, including metal-matrix, polymer-matrix and ceramic-matrix based nanocomposites. Properties explored include mechanical, thermal, optical and electrical properties.
This is the first book that explores methodologies for using Materials Studio, Lammps and Gromacs in the same place. It will be beneficial for students, researchers and scientists working in the field of molecular dynamics simulation.
Gives a detailed explanation of basic commands and modules of Materials Studio, Lammps and Gromacs
Shows how Materials Studio, Lammps and Gromacs predict mechanical, thermal, electrical and optical properties of nanocomposites
Uses case studies to show which software should be used to solve a variety of nanoscale modeling problems

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