De With G. Phases of Matter and their Transitions. Concepts and Principles 2024
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De With G. Phases of Matter and their Transitions. Concepts and Principles 2024
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Description:
Textbook in PDF format
An all-in-one, comprehensive take on matter and its phase properties.
In Phases of Matter and their Transitions, accomplished materials scientist Dr. Gijsbertus de With delivers an accessible textbook for advanced students in the molecular sciences. It offers a balanced and self-contained treatment of the thermodynamic and structural aspects of phases and the transitions between them, covering solids, liquids, gases, and their interfaces.
The book lays the groundwork to describe particles and their interactions from the perspective of classical and quantum mechanics and compares phenomenological and statistical thermodynamics. It also examines materials with special properties, like glasses, liquid crystals, and ferroelectrics. The author has included an extensive appendix with a guide to the mathematics and theoretical models employed in this resource.
Readers will also find:
Thorough introductions to classical and quantum mechanics, intermolecular interactions, and continuum mechanics.
Comprehensive explorations of thermodynamics, gases, liquids, and solids.
Practical discussions of surfaces, including their general aspects for solids and liquids.
Fulsome treatments of discontinuous and continuous transitions, including discussions of irreversibility and the return to equilibrium.
Perfect for advanced students in chemistry and physics, Phases of Matter and their Transitions will also earn a place in the libraries of students of materials science.
Introduction
Classical Mechanics
Quantum Mechanics
Intermolecular Interactions
Continuum Mechanics
Macroscopic Thermodynamics
Microscopic Thermodynamics
Gases
Liquids
Interfaces
Phase Transitions: General Aspects
Discontinuous Phase Transitions: Liquids ↔ Gases
Discontinuous Phase Transitions: Solids ↔ Liquids
Continuous Phase Transitions: Liquids ↔ Gases
The Liquid Crystal Transformation
Dielectric Behavior and the Ferroelectric Transformation
The Glass Transition
Irreversibility and the Return to Equilibrium