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E-book
Author Duangkamon Baowan.

Title Modelling and Mechanics of Carbon-based Nanostructured Materials
Published Saint Louis : Elsevier Science, 2017

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Description 1 online resource (388 pages)
Series Micro and Nano Technologies
Micro & nano technologies.
Contents 880-01 Front Cover; Modelling and Mechanics of Carbon-based Nanostructured Materials; Copyright; Contents; Preface; Chapter 1: Geometry and Mechanics of Carbon Nanostructures; 1.1 Background; 1.2 Carbon Nanostructures; 1.2.1 Graphene and C-C Bonding; 1.2.2 Carbon Nanotubes and the Rolled-Up Model; 1.2.3 Goldberg Fullerenes; 1.2.4 Cones; 1.2.5 Euler's Theorem and the Isolated Pentagon; 1.3 Interaction Between Molecular Structures; 1.3.1 Interaction Energy; 1.3.2 Interaction Force; 1.3.3 Lennard-Jones Potential; 1.4 Book Overview; Exercises; Chapter 2: Mathematical Preliminaries; 2.1 Introduction
880-01/(S 3.3.2.1 An alternative approach3.3.3 Interaction of Line With a Spherical Surface; 3.3.4 Interaction of a Plane With a Spherical Surface; 3.3.5 Interaction of Two Concentric Spherical Surfaces; 3.3.6 Interaction of Two Offset Spherical Surfaces; 3.4 Interaction of a Cylindrical Surface; 3.4.1 Cylindrical Coordinate System (r, θ, z); 3.4.2 Interaction of Interior Point With Infinite Cylindrical Surface; 3.4.3 Interaction of an Exterior Point With an InfiniteCylindrical Surface; 3.4.4 Interaction of a Spherical Surface With an InfiniteCylindrical Surface
3.4.5 Interaction Between Parallel Infinite Cylindrical Surfaces3.4.6 Interaction Between an Axial Point and Semiinfinite Cylindrical Surfaces; Chapter 4: Nested Carbon Nanostructures; 4.1 Introduction; 4.2 Atom@Fullerene-Endohedral Fullerene; 4.3 Fullerene@Fullerene-Carbon Onion; 4.4 Fullerene@Carbon Nanotube; 4.5 Carbon Onion@Carbon Nanotube; 4.6 Carbon Nanotube@Carbon Nanotube; 4.7 Nanotube Bundles; 4.7.1 Interaction Potential for Two Nanotubes; 4.7.2 Equilibrium Position for a Bundle of Nanotubes; 4.8 Carbon Nanotube@Nanotube Bundle; 4.9 Fullerene@Nanotube Bundle; Exercises
Summary Modelling and Mechanics of Carbon-based Nanostructured Materials sets out the principles of applied mathematical modeling in the topical area of nanotechnology. It is purposely designed to be self-contained, giving readers all the necessary modeling principles required for working with nanostructures. The unique physical properties observed at the nanoscale are often counterintuitive, sometimes astounding researchers and thus driving numerous investigations into their special properties and potential applications. Typically, existing research has been conducted through experimental studies and molecular dynamics simulations. This book goes beyond that to provide new avenues for study and review
Notes Chapter 5: Acceptance Condition and Suction Energy
Bibliography Includes bibliographical references and index
Notes Print version record
Subject Nanostructured materials -- Mathematical models
TECHNOLOGY & ENGINEERING -- Engineering (General)
TECHNOLOGY & ENGINEERING -- Reference.
Form Electronic book
Author Cox, Barry J
Hilder, Tamsyn A
Hill, James M
Thamwattana, Ngamta
ISBN 9780128124642
0128124644