Few areas of physics demand more from a textbook than thermal physics. The subject spans classical laws established in the nineteenth century and quantum phenomena at the frontier of modern condensed matter and ultracold physics — and a complete treatment requires mathematical rigour, physical clarity, and careful connections between the macroscopic and microscopic descriptions.
Many students reach upper-level thermodynamics and statistical mechanics courses only to find that standard resources present results without showing the reasoning behind them. Formulas appear, distributions are stated, and the connection between observable behaviour and the underlying probabilistic machinery remains unclear. When classical thermodynamics, kinetic theory, statistical mechanics, and quantum statistics are drawn from separate sources — each with different notation and different levels of rigour — the unified logical structure of the subject is lost.
Fundamentals of Thermal Physics offers a self-contained journey through the full arc of thermal physics — from the Zeroth Law and the operational definition of temperature through quantum distribution functions, the thermodynamics of metals and radiation, and the physics of quantum gas condensation. Every major result is derived from first principles, and every derivation shows the complete algebraic steps so the reader can follow the argument rather than take the conclusion on faith.
What this textbook helps you explore and understand:
Topics covered: all four laws of thermodynamics; ideal gases and kinetic theory; heat engine cycle analysis; entropy, free energies, and irreversibility; Maxwell relations and phase transitions; the Boltzmann entropy and canonical ensemble; molecular partition functions; quantum distribution functions and the grand canonical ensemble; electronic properties of metals; Planck radiation and Stefan-Boltzmann law; quantum gas condensation; lattice heat capacity; the Third Law and absolute zero.
Designed for: upper-level undergraduate students in physics, chemistry, and engineering. Equally valuable as a graduate-level reference for students in condensed matter physics, physical chemistry, and materials science who want thermodynamics and quantum statistical mechanics presented in complete, self-consistent detail.
If the standard presentations have left you with formulas but not understanding, this is the resource that walks through every argument from the beginning. Get your copy and begin developing the knowledge needed to approach thermal physics with genuine clarity and confidence — from the First Law to the quantum frontier.
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Paperback. Zustand: new. Paperback. Few areas of physics demand more from a textbook than thermal physics. The subject spans classical laws established in the nineteenth century and quantum phenomena at the frontier of modern condensed matter and ultracold physics - and a complete treatment requires mathematical rigour, physical clarity, and careful connections between the macroscopic and microscopic descriptions.Many students reach upper-level thermodynamics and statistical mechanics courses only to find that standard resources present results without showing the reasoning behind them. Formulas appear, distributions are stated, and the connection between observable behaviour and the underlying probabilistic machinery remains unclear. When classical thermodynamics, kinetic theory, statistical mechanics, and quantum statistics are drawn from separate sources - each with different notation and different levels of rigour - the unified logical structure of the subject is lost.Fundamentals of Thermal Physics offers a self-contained journey through the full arc of thermal physics - from the Zeroth Law and the operational definition of temperature through quantum distribution functions, the thermodynamics of metals and radiation, and the physics of quantum gas condensation. Every major result is derived from first principles, and every derivation shows the complete algebraic steps so the reader can follow the argument rather than take the conclusion on faith.What this textbook helps you explore and understand: Build a firm foundation through all four laws of thermodynamics, seeing exactly how entropy, free energies, and thermodynamic potentials arise from fundamental principlesAnalyse thermodynamic processes and real engine cycles - Carnot, Otto, Diesel, Brayton, and Rankine - using a consistent, rigorous frameworkApply kinetic theory to derive macroscopic gas properties from molecular motion and understand classical speed distributions from statistical principlesWork with thermodynamic potentials, Maxwell relations, phase diagrams, and stability criteria through fully solved examples and complete answer keysConnect the macroscopic entropy to the microscopic count of states, and derive thermodynamic quantities from canonical and grand canonical partition functionsUnderstand quantum statistical mechanics and apply it to electrons in metals, photon radiation, phonons in solids, and ultracold trapped gasesConsult appendices of physical constants, mathematical tables, thermodynamic data, and a complete glossary for fully self-contained study Topics covered: all four laws of thermodynamics; ideal gases and kinetic theory; heat engine cycle analysis; entropy, free energies, and irreversibility; Maxwell relations and phase transitions; the Boltzmann entropy and canonical ensemble; molecular partition functions; quantum distribution functions and the grand canonical ensemble; electronic properties of metals; Planck radiation and Stefan-Boltzmann law; quantum gas condensation; lattice heat capacity; the Third Law and absolute zero.Designed for: upper-level undergraduate students in physics, chemistry, and engineering. Equally valuable as a graduate-level reference for students in condensed matter physics, physical chemistry, and materials science who want thermodynamics and quantum statistical mechanics presented in complete, self-consistent detail.If the standard presentations have left you with formulas but not understanding, this is the resource that walks through every argument from the beginning. Get your copy and begin developing the knowledge needed to approach thermal p Shipping may be from our UK warehouse or from our Australian or US warehouses, depending on stock availability. Bestandsnummer des Verkäufers 9798189870606
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