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Statistical mechanics / R. K. Pathria & Paul D. Beale

By: Contributor(s): Material type: TextTextPublication details: New Delhi : Elsevier, c2022.Edition: 4th edDescription: xxx, 738 p. : ill. ; 25 cmISBN:
  • 9789351073970
Subject(s): Additional physical formats: Print version :: No titleDDC classification:
  • 530.13 23
Contents:
1. The Statistical Basis of Thermodynamics<br>2. Elements of Ensemble Theory<br>3. The Canonical Ensemble<br>4. The Grand Canonical Ensemble<br>5. Formulation of Quantum Statistics<br>6. The Theory of Simple Gases<br>7. Ideal Bose Systems<br>8. Ideal Fermi Systems<br>9. Thermodynamics of the Early Universe<br>10. Statistical Mechanics of Interacting Systems: The Method of Cluster Expansions<br>11. Statistical Mechanics of Interacting Systems: The Method of Quantized Fields<br>12. Phase Transitions: Criticality, Universality, and Scaling<br>13. Phase Transitions: Exact (or Almost Exact) Results for Various Models<br>14. Phase Transitions: The Renormalization Group Approach<br>15. Fluctuations and Nonequilibrium Statistical Mechanics<br>16. Computer Simulations
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Holdings
Item type Current library Call number Copy number Status Date due Barcode Item holds
Books Books Central Library, KUET On Display 530.13 PAT (Browse shelf(Opens below)) 01 Not For Loan 3010059826
Total holds: 0

Previous edition: Amsterdam: Butterworth-Heinemann, 2011.

Includes bibliographical references and index.

1. The Statistical Basis of Thermodynamics<br>2. Elements of Ensemble Theory<br>3. The Canonical Ensemble<br>4. The Grand Canonical Ensemble<br>5. Formulation of Quantum Statistics<br>6. The Theory of Simple Gases<br>7. Ideal Bose Systems<br>8. Ideal Fermi Systems<br>9. Thermodynamics of the Early Universe<br>10. Statistical Mechanics of Interacting Systems: The Method of Cluster Expansions<br>11. Statistical Mechanics of Interacting Systems: The Method of Quantized Fields<br>12. Phase Transitions: Criticality, Universality, and Scaling<br>13. Phase Transitions: Exact (or Almost Exact) Results for Various Models<br>14. Phase Transitions: The Renormalization Group Approach<br>15. Fluctuations and Nonequilibrium Statistical Mechanics<br>16. Computer Simulations

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