Introduction to thermodynamics and kinetic theory of matter:
Gespeichert in:
1. Verfasser: | |
---|---|
Format: | Buch |
Sprache: | English |
Veröffentlicht: |
Weinheim
WILEY-VCH
2006
|
Ausgabe: | 2. ed. , 1. reprint |
Schriftenreihe: | Physics textbook
|
Schlagworte: | |
Online-Zugang: | Inhaltsverzeichnis |
Beschreibung: | XIII, 336 S. graph. Darst. 24 cm |
ISBN: | 9783527405985 3527405984 |
Internformat
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245 | 1 | 0 | |a Introduction to thermodynamics and kinetic theory of matter |c A. I. Burshstein |
250 | |a 2. ed. , 1. reprint | ||
264 | 1 | |a Weinheim |b WILEY-VCH |c 2006 | |
300 | |a XIII, 336 S. |b graph. Darst. |c 24 cm | ||
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Datensatz im Suchindex
_version_ | 1804138029626949632 |
---|---|
adam_text | CONTENTS
PREFACE
xi
1 Gases 1
1.1
Statistics of Molecules
/ 1
Pressure. Statistical distribution. The statistical average.
1.2
Distribution Function
/ 5
1.3
Ideal Gas Equation of State
ƒ 9
1.4
Maxwell Distribution
/12
Summation of probabilities. Statistical weight. Mean values.
Stern experiment. Structure of the flux.
1.5
Barometric Formula
/ 19
1.6
The Boltzmann Distribution
/ 22
1.7
Canonical Distribution
/ 25
1.8
Dielectric Properties of Gases
/ 27
Generalized coordinates and momenta. Probability distribution.
Electric polarization.
1.9
Real Gas
/ 32
Intermolecular interaction. Replusion. Attraction.
Equation of state. Compressibility factor.
1.10
Basic Ideas of Statistical Thermodynamics
/ 47
The Gibbs ensemble. Microcanonical distribution. Gibbs
canonical distribution. Entropy. Fluctuations. Free
energy. Computational scheme. Ideal gas. Identity of
microparticles. Real gas. Free volume theory.
vii
VIU
CONTENTS
1.11
Heat Capacity of
Gases
/ 66
Translational motion. Rotational motion. Vibrational motion.
Equipartition law. Temperature anomalies.
1.12
Harmonic Oscillator Quantization
/ 74
Freezing out of vibrations. Energy quantization. High
temperature limit. Quantum cells. Bohr s postulate.
1.13
Freezing Out of Heat Motions
/ 79
1.14
Gas Paramagnetism
/ 85
Spin j. General case.
1.15
Collisions
/ 91
Relaxation. Velocity-dependent collision rate. The mean collision
rate. Experimental verification. Free path. Poissonian statistics.
Velocity relaxation. Strong and weak collisions.
1.16
Transfer phenomena
/ 105
Local equilibrium. Heat conduction. Viscosity. Diffusion.
Refinement of calculations. Heat transfer. Ultrararefied gas.
Current in gases.
2
Radiation
124
2.1
Phenomenology
/ 124
2.2 Kirchhoff
s
Theorem
/ 126
2.3
Ultraviolet Catastrophe
/130
Heat capacity of radiation. Field quantization. Photon model.
2.4
Photon Model
/ 135
The basic features. Comparison of the models. Photon weight.
2.5
Photon Gas Properties
/ 139
Pressure. Equation of state.
2.6
Einstein Coefficients
/ 142
Absorption and emission. Excitation and deactivation. Rates of
induced transitions. Einstein s relations. Partial rates.
2.7
Stationary Light Transformation
/ 147
3
Crystals
150
3.1
Phenomenology
/150
Types of crystals. Strength. Anisotropy.
CONTENTS
ІХ
3.2
Crystal Lattice Motion
/ 154
Interaction forces. Acoustic vibrations. Density of states.
Optical vibrations. Molecular vibrations.
3.3
Phonon Gas
/ 165
Model. Debye approximation. The lattice heat capacity.
Correlation of vibrations. Heat conduction of the lattice.
3.4
Equation of State
/ 174
Balance of forces. Internal pressure. Motional pressure.
The
Mie-Grüneisen
equation. Heat expansion. Knot of isotherms.
3.5
Real Crystals
/ 189
Point defects. Diffusion. Ion conductivity.
4
Liquids
198
4.1
Phenomenology
/ 198
4.2
Equation of State
/ 200
Internal pressure. Motional pressure. Balance of forces.
Boiling. Melting. Orthometric line. Decomposition of the
equation into components.
4.3
Surface Phenomena
/ 232
Monomolecular surface. Smooth interface.
4.4
Transfer Phenomena
/ 242
Heat conduction. Viscosity. The free volume theory.
4.5
Brownian Motion
/251
Nonstationary diffusion. The
Langevin
equation.
Perrin s experiments.
5
Thermodynamics
257
5.1
First Law
/ 257
Basic concepts. Caloric. Mechanical equivalent of heat. Internal
energy. Reversible and irreversible processes. Ideal gas
5.2
Second Law
/ 268
Carnot cycle. Entropy. Principles of thermodynamics.
Open processes. Natural variables. Gas of van
der Waals.
5.3
Method of Cycles
/ 285
The Clapeyron-Clausius relation. Thermoelectric cycle.
Heat pumps.
X
CONTENTS
5.4
Cooling of Gases
/ 293
The Joule-Thomson effect. Enthalpy. The sign of the effect.
Inversion curve. Boyle temperature and inversion temperature.
5.5
Free Energy
/ 302
Gibbs-Helmholtz relation. Thermal radiation. Two-phase system.
Surface tension.
5.6
Thermodynamic Potential
/ 312
Chemical potential. Phase equilibrium. Quasithermodynamics.
5.7
Nernst s Principle
/ 323
5.8
Mixtures
/ 326
Gibbs paradox.
Bibliography
331
Index
333
|
adam_txt |
CONTENTS
PREFACE
xi
1 Gases 1
1.1
Statistics of Molecules
/ 1
Pressure. Statistical distribution. The statistical average.
1.2
Distribution Function
/ 5
1.3
Ideal Gas Equation of State
ƒ 9
1.4
Maxwell Distribution
/12
Summation of probabilities. Statistical weight. Mean values.
Stern experiment. Structure of the flux.
1.5
Barometric Formula
/ 19
1.6
The Boltzmann Distribution
/ 22
1.7
Canonical Distribution
/ 25
1.8
Dielectric Properties of Gases
/ 27
Generalized coordinates and momenta. Probability distribution.
Electric polarization.
1.9
Real Gas
/ 32
Intermolecular interaction. Replusion. Attraction.
Equation of state. Compressibility factor.
1.10
Basic Ideas of Statistical Thermodynamics
/ 47
The Gibbs ensemble. Microcanonical distribution. Gibbs'
canonical distribution. Entropy. Fluctuations. Free
energy. Computational scheme. Ideal gas. Identity of
microparticles. Real gas. Free volume theory.
vii
VIU
CONTENTS
1.11
Heat Capacity of
Gases
/ 66
Translational motion. Rotational motion. Vibrational motion.
Equipartition law. Temperature anomalies.
1.12
Harmonic Oscillator Quantization
/ 74
Freezing out of vibrations. Energy quantization. High
temperature limit. Quantum cells. Bohr's postulate.
1.13
Freezing Out of Heat Motions
/ 79
1.14
Gas Paramagnetism
/ 85
Spin j. General case.
1.15
Collisions
/ 91
Relaxation. Velocity-dependent collision rate. The mean collision
rate. Experimental verification. Free path. Poissonian statistics.
Velocity relaxation. Strong and weak collisions.
1.16
Transfer phenomena
/ 105
Local equilibrium. Heat conduction. Viscosity. Diffusion.
Refinement of calculations. Heat transfer. Ultrararefied gas.
Current in gases.
2
Radiation
124
2.1
Phenomenology
/ 124
2.2 Kirchhoff
s
Theorem
/ 126
2.3
Ultraviolet Catastrophe
/130
Heat capacity of radiation. Field quantization. Photon model.
2.4
Photon Model
/ 135
The basic features. Comparison of the models. Photon weight.
2.5
Photon Gas Properties
/ 139
Pressure. Equation of state.
2.6
Einstein Coefficients
/ 142
Absorption and emission. Excitation and deactivation. Rates of
induced transitions. Einstein's relations. Partial rates.
2.7
Stationary Light Transformation
/ 147
3
Crystals
150
3.1
Phenomenology
/150
Types of crystals. Strength. Anisotropy.
CONTENTS
ІХ
3.2
Crystal Lattice Motion
/ 154
Interaction forces. Acoustic vibrations. Density of states.
Optical vibrations. Molecular vibrations.
3.3
Phonon Gas
/ 165
Model. Debye approximation. The lattice heat capacity.
Correlation of vibrations. Heat conduction of the lattice.
3.4
Equation of State
/ 174
Balance of forces. Internal pressure. Motional pressure.
The
Mie-Grüneisen
equation. Heat expansion. Knot of isotherms.
3.5
Real Crystals
/ 189
Point defects. Diffusion. Ion conductivity.
4
Liquids
198
4.1
Phenomenology
/ 198
4.2
Equation of State
/ 200
Internal pressure. Motional pressure. Balance of forces.
Boiling. Melting. Orthometric line. Decomposition of the
equation into components.
4.3
Surface Phenomena
/ 232
Monomolecular surface. Smooth interface.
4.4
Transfer Phenomena
/ 242
Heat conduction. Viscosity. The free volume theory.
4.5
Brownian Motion
/251
Nonstationary diffusion. The
Langevin
equation.
Perrin's experiments.
5
Thermodynamics
257
5.1
First Law
/ 257
Basic concepts. Caloric. Mechanical equivalent of heat. Internal
energy. Reversible and irreversible processes. Ideal gas
5.2
Second Law
/ 268
Carnot cycle. Entropy. Principles of thermodynamics.
Open processes. Natural variables. Gas of van
der Waals.
5.3
Method of Cycles
/ 285
The Clapeyron-Clausius relation. Thermoelectric cycle.
Heat pumps.
X
CONTENTS
5.4
Cooling of Gases
/ 293
The Joule-Thomson effect. Enthalpy. The sign of the effect.
Inversion curve. Boyle temperature and inversion temperature.
5.5
Free Energy
/ 302
Gibbs-Helmholtz relation. Thermal radiation. Two-phase system.
Surface tension.
5.6
Thermodynamic Potential
/ 312
Chemical potential. Phase equilibrium. Quasithermodynamics.
5.7
Nernst's Principle
/ 323
5.8
Mixtures
/ 326
Gibbs' paradox.
Bibliography
331
Index
333 |
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author | Burštejn, Anatolij Izrailevič 1935- |
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ctrlnum | (OCoLC)255245862 (DE-599)BVBBV035078451 |
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dewey-hundreds | 500 - Natural sciences and mathematics |
dewey-ones | 536 - Heat |
dewey-raw | 536.7 |
dewey-search | 536.7 |
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dewey-tens | 530 - Physics |
discipline | Physik |
discipline_str_mv | Physik |
edition | 2. ed. , 1. reprint |
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genre_facet | Lehrbuch |
id | DE-604.BV035078451 |
illustrated | Illustrated |
index_date | 2024-07-02T22:06:21Z |
indexdate | 2024-07-09T21:21:42Z |
institution | BVB |
isbn | 9783527405985 3527405984 |
language | English |
oai_aleph_id | oai:aleph.bib-bvb.de:BVB01-016746734 |
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owner_facet | DE-355 DE-BY-UBR DE-11 DE-703 |
physical | XIII, 336 S. graph. Darst. 24 cm |
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spelling | Burštejn, Anatolij Izrailevič 1935- Verfasser (DE-588)1089232500 aut Introduction to thermodynamics and kinetic theory of matter A. I. Burshstein 2. ed. , 1. reprint Weinheim WILEY-VCH 2006 XIII, 336 S. graph. Darst. 24 cm txt rdacontent n rdamedia nc rdacarrier Physics textbook Statistische Mechanik - Lehrbuch Thermodynamik - Lehrbuch Thermodynamik (DE-588)4059827-5 gnd rswk-swf Statistische Mechanik (DE-588)4056999-8 gnd rswk-swf Kinetische Theorie (DE-588)4030669-0 gnd rswk-swf (DE-588)4123623-3 Lehrbuch gnd-content Statistische Mechanik (DE-588)4056999-8 s DE-604 Kinetische Theorie (DE-588)4030669-0 s Thermodynamik (DE-588)4059827-5 s 1\p DE-604 Digitalisierung UB Regensburg application/pdf http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016746734&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA Inhaltsverzeichnis 1\p cgwrk 20201028 DE-101 https://d-nb.info/provenance/plan#cgwrk |
spellingShingle | Burštejn, Anatolij Izrailevič 1935- Introduction to thermodynamics and kinetic theory of matter Statistische Mechanik - Lehrbuch Thermodynamik - Lehrbuch Thermodynamik (DE-588)4059827-5 gnd Statistische Mechanik (DE-588)4056999-8 gnd Kinetische Theorie (DE-588)4030669-0 gnd |
subject_GND | (DE-588)4059827-5 (DE-588)4056999-8 (DE-588)4030669-0 (DE-588)4123623-3 |
title | Introduction to thermodynamics and kinetic theory of matter |
title_auth | Introduction to thermodynamics and kinetic theory of matter |
title_exact_search | Introduction to thermodynamics and kinetic theory of matter |
title_exact_search_txtP | Introduction to thermodynamics and kinetic theory of matter |
title_full | Introduction to thermodynamics and kinetic theory of matter A. I. Burshstein |
title_fullStr | Introduction to thermodynamics and kinetic theory of matter A. I. Burshstein |
title_full_unstemmed | Introduction to thermodynamics and kinetic theory of matter A. I. Burshstein |
title_short | Introduction to thermodynamics and kinetic theory of matter |
title_sort | introduction to thermodynamics and kinetic theory of matter |
topic | Statistische Mechanik - Lehrbuch Thermodynamik - Lehrbuch Thermodynamik (DE-588)4059827-5 gnd Statistische Mechanik (DE-588)4056999-8 gnd Kinetische Theorie (DE-588)4030669-0 gnd |
topic_facet | Statistische Mechanik - Lehrbuch Thermodynamik - Lehrbuch Thermodynamik Statistische Mechanik Kinetische Theorie Lehrbuch |
url | http://bvbr.bib-bvb.de:8991/F?func=service&doc_library=BVB01&local_base=BVB01&doc_number=016746734&sequence=000002&line_number=0001&func_code=DB_RECORDS&service_type=MEDIA |
work_keys_str_mv | AT burstejnanatolijizrailevic introductiontothermodynamicsandkinetictheoryofmatter |