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    1. Naturvetenskap och teknik
    2. Matematik och naturvetenskap
    3. Fysik

    Physics of Matter

    AvGeorge C. King

    Häftad, Engelska, 2023

    Del i serien Manchester Physics Series

    718 kr

    Beställningsvara. Skickas inom 5-8 vardagar. Fri frakt över 249 kr.

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    E-bok

    820 kr

    E-bok

    822 kr

    Beskrivning

    Physics of Matter First year core course introductory textbook on the nature of matter that puts the physics before mathematical description Physics of Matter is an introductory textbook on the nature of matter, based on a description of gases, liquids, liquid crystals and solids in terms of the forces that bind atoms and molecules together and their thermal motion, that discusses the relationship of these phases of matter to heat and the basic principles of thermodynamics. Physics of Matter is unique in its coverage of material and includes topics that have become important in recent times such as graphene and liquid crystals. Material in the book is reinforced by numerous worked examples in the text and problems and solutions at the end of each chapter, the latter ranging in difficulty from simple exercises to challenging problems. The emphasis is on clarity of exposition and explanation, putting the physics before the mathematical with general physical principles that can be more widely applied being stressed. Published in the Manchester Physics Series, which has the reputation of providing insight, depth, and often details on a subject not found in other textbooks, sample topics covered in Physics of Matter include: Characteristics of atoms (sizes and masses) and Avogadro’s number, the forces that bind atoms and molecules together, and the Lennard-Jones potentialThermal energy, temperature, and the Boltzmann law, covering equations of state, the ideal gas equation, and equipartition of energyKinetic theory and transport properties of gases, covering molecular collisions, pressure of an ideal gas, the mean free path and diffusionReal gases, including Van der Waals equation of state, virial expansion, critical constants, and heat capacitiesReversible processes, entropy, the Carnot cycle, the thermodynamic fundamental relationship, and Gibbs free energySolids, including crystal structure, elastic moduli and Einstein’s model of heat capacityLiquids, including liquid flow and Bernoulli’s equation, and liquid crystalsPhysics of Matter is a valuable learning resource for first- and second-year students in physics, chemistry, and engineering, as well as those in adjacent science courses including environmental and biological sciences. The book is written for the subject traditionally called “Properties of Matter.”

    Produktinformation

    • Utgivningsdatum:2023-09-01
    • Mått:187 x 235 x 29 mm
    • Vikt:879 g
    • Format:Häftad
    • Språk:Engelska
    • Serie:Manchester Physics Series
    • Antal sidor:464
    • Förlag:John Wiley & Sons Inc
    • ISBN:9781119468585

    Utforska kategorier

    • Fysik inom Naturvetenskap och teknik

    Mer om författaren

    George C. King is Emeritus Professor of Physics in the School of Physics & Astronomy at the University of Manchester and Fellow of the Institute of Physics. His research interests are the study of atoms and molecules using synchrotron radiation and electron impact excitation, and he is the author of over 200 published papers describing these studies. He has over 40 years teaching experience that includes lecturing a wide range of undergraduate and postgraduate courses.

    Innehållsförteckning

    • Editors' preface to the Manchester Physics Series xvAuthor's preface xvii1 Atoms, the constituents of matter 11.1 The mass of an atom 11.2 The size of an atom 61.3 Atomic structure 112 The forces that bind atoms together 432.1 General characteristics of interatomic forces 432.2 Interatomic potential energy 472.3 Types of interatomic bonding 512.4 Why gases, liquids, and solids 653 Thermal energy of atoms and molecules 693.1 Temperature and the translational kinetic energy of a molecule 693.2 Probability distributions and mean values 723.3 The Maxwell–Boltzmann speed distribution 803.4 Boltzmann's law 863.5 The isothermal atmosphere 913.6 Derivation of the Maxwell–Boltzmann speed distribution 963.7 Equipartition of energy 1003.8 Specific heats of gases 1064 Kinetic theory of gases: transport processes 1174.1 Kinetic theory of gases 1174.2 Molecular collisions and the mean free path 1184.3 The distribution of free paths 1224.4 Diffusion 1254.5 Thermal conduction 1344.6 Viscosity 1404.7 Comparison of transport properties 1424.8 Effusion 1444.9 The random walk 1495 Real gases 1575.1 The van der Waals equation 1585.2 P–V isotherms for a real gas 1635.3 The virial equation 1665.4 Internal energy and specific heats of a van der Waals gas 1695.5 Phase diagrams 1716 The First Law of Thermodynamics 1776.1 Thermodynamic equilibrium 1786.2 Temperature 1806.3 Heat 1856.4 Internal energy 1866.5 Work and Joule's paddle wheel experiment 1886.6 First law of thermodynamics 1916.7 Work done during volume changes 1946.8 Reversible processes 1966.9 Expansion of gases and the first law of thermodynamics 2026.10 The Joule effect; the free expansion of an ideal gas 2036.11 Molar specific heats of an ideal gas 2056.12 Enthalpy 2106.13 The Joule–Kelvin effect 2126.14 Thermochemistry 2177 The second law of thermodynamics 2237.1 Introduction 2237.2 Heat engines 2247.3 The Carnot cycle 2297.4 Entropy 2357.5 Entropy changes in reversible processes 2387.6 Entropy changes in irreversible processes 2417.7 Entropy and the second law 2457.8 The fundamental thermodynamic relationship 2467.9 Phase changes and the Clausius–Clapeyron equation 2477.10 Gibbs free energy 2527.11 Thermodynamic identities 2557.12 A statistical approach to the second law of thermodynamics 2598 Solids 2718.1 Types of solids 2718.2 Crystal structure 2738.3 The crystal lattice, unit cell, and basis 2828.4 X-ray crystallography 2908.5 Experimental techniques of X-ray crystallography 2948.6 Neutron scattering 2988.7 Interatomic forces in solids 2998.8 Vibrations in crystals 3019 The elastic properties of solids 3099.1 Stress, strain, and elastic moduli 3099.2 Poisson's ratio 3159.3 The velocity of sound in a thin wire 3209.4 Torsional stress and strain 3229.5 Elastic moduli and interatomic forces and potential energies 3259.6 The inelastic behaviour of solids 33210 Thermal and transport properties of solids 33910.1 Molar specific heats of solids 33910.2 Thermal conductivity of solids 35010.3 Diffusion in solids 35310.4 Electrical and thermal conductivities of metals 35611 Liquids 36311.1 The structure of liquids 36311.2 Physical properties of liquids 36611.3 The flow of liquids 37411.4 The flow of real liquids 38012 Liquid crystals 38712.1 Liquid crystal phases 38812.2 Thermotropic liquid crystal phases 38912.3 Polarised light 39612.4 Optical properties of liquid crystals 40212.5 Liquid crystal displays 41012.6 Liquid crystals in nature 415Problems 12 415Solutions to problems 417Index 437