
Solid State Physics Metastable, Spintronics Materials and Mechanics of Deformable Bodies
Recent Progress
- 236 pages
- English
- PDF
- Available on iOS & Android
Solid State Physics Metastable, Spintronics Materials and Mechanics of Deformable Bodies
Recent Progress
About this book
This book describes the recent evolution of solid-state physics, which is primarily dedicated to examining the behavior of solids at the atomic scale. It also presents various state-of-the-art reviews and original contributions related to solid-state sciences. The book consists of four sections, namely, solid-state behavior, metastable materials, spintronics materials, and mechanics of deformable bodies. The authors' contributions relating to solid-state behavior deal with the performance of solid matters pertaining to quantum mechanics, physical metallurgy, and crystallography. The authors' contributions relating to metastable materials demonstrate the behavior of amorphous/bulk metallic glasses and some nonequilibrium materials. The authors' contributions relating to spintronic materials explain the principles and equations underlying the physics, transport, and dynamics of spin in solid-state systems. The authors' contributions relating to the mechanics of deformable bodies deal with applications of numeric and analytic solutions/models for solid-state structures under deformation. Key Features:Issues in solid-state physics, Lagrangian quantum mechanics,Quantum and thermal behavior of HCP crystals,Thermoelectric properties of semiconductors,Bulk metallic glasses and metastable atomic density determination,Applications of spintronics and Heusler alloys, 2D elastostatic, mathematical modeling and dynamic stiffness methods on deformable bodies.
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Table of contents
- Solid State Physics - Metastable, Spintronics Materials and Mechanics of Deformable Bodies - Recent Progress
- Contents
- Preface
- Section 1 - Solid State Behavior
- Chapter 1 - Issues in Solid-State Physics
- Chapter 2 - Lagrangian Quantum Mechanics: A Fully Relativistic Theory of Atomic Structure
- Chapter 3 - Twin Boundary in hcp Crystals: Quantum and Thermal Behavior
- Chapter 4 - Thermoelectric Properties of Oxide Semiconductors
- Section 2 - Metastable Materials
- Chapter 5 - Insight into Bulk Metallic Glass Technology Development Trajectory: Mapping from Patent Information Analysis
- Chapter 6 - Calculation of the Metastable Atom Densities in Argon and Neon Abnormal Glow Discharges
- Section 3 - Spintronics
- Chapter 7 - Application of Spin-Orbit Coupling in Exotic Graphene Structures and Biology
- Chapter 8 - The Ising Model: Brief Introduction and Its Application
- Chapter 9 - Exchange Bias Effect in Ni-Mn Heusler Alloys
- Chapter 10 - Technological Applications of Porphyrins and Related Compounds: Spintronics and Micro-/Nanomotors
- Section 4 - Mechanics of Solid Deformable Bodies
- Chapter 11 - 2D Elastostatic Problems in Parabolic Coordinates
- Chapter 12 - Boundary Element Mathematical Modelling and Boundary Element Numerical Techniques for Optimization of Micropolar Thermoviscoelastic Problems in Solid Deformable Bodies
- Chapter 13 - Dynamic Stiffness Method for Vibrations of Ship Structures