Statistical Mechanics(2nd Edition)

Authors:

Prof K Samatha

Type:Hardcover/ PaperBack / Loose Leaf
Condition: Used/New

In Stock: 2 Left

Shipment time

Expected shipping within 2 - 3 Days
Access to 35 Million+ Textbooks solutions Free
Ask Unlimited Questions from expert AI-Powered Answers 30 Min Free Tutoring Session
7 days-trial

Total Price:

$0

List Price: $9.00 Savings: $9 (100%)
Access to 30 Million+ solutions
Ask 50 Questions from expert AI-Powered Answers 24/7 Tutor Help Detailed solutions for Statistical Mechanics

Price:

$9.99

/month

Book details

ISBN: B0F1G58287

Book publisher: Garuda Publishers

Book Price $0 : Statistical Mechanics Is A Fundamental Branch Of Physics That Provides A Theoretical Framework For Understanding How The Collective Behavior Of A Large Number Of Particles Gives Rise To Thermodynamic Laws. By Employing Probabilistic And Statistical Methods, Statistical Mechanics Explains Key Concepts Such As Entropy, Temperature, And Free Energy, Which Govern The Equilibrium And Dynamics Of Physical Systems. It Introduces Powerful Tools Like Ensemble Theory And Partition Functions To Derive Thermodynamic Quantities And Predict The Behavior Of Gases, Liquids, And Solids. This Second Volume Delves Into Advanced Topics, Expanding Upon Core Principles To Provide A Deeper Understanding Of Equilibrium Statistical Mechanics And Its Wide-ranging Applications. The Book Begins With Liouville’s Theorem, Establishing The Foundation For Phase Space Evolution, Followed By An Exploration Of Partition Functions—a Central Tool For Deriving Thermodynamic Properties. The Thermodynamic Quantities Of An Ideal Monatomic Gas Are Systematically Derived, Including The Classical Partition Function And The Validity Of Classical Approximations. Special Attention Is Given To Gibbs’ Paradox, Highlighting The Role Of Indistinguishability In Statistical Calculations. The Equipartition Theorem And Its Applications Are Discussed In Detail, Leading To The Analysis Of Translational, Rotational, And Vibrational Energies Of Both Diatomic And Polyatomic Molecules. The Influence Of Nuclear Spin On Ortho And Parahydrogen Is Also Examined, Revealing Its Significance In Quantum Statistics. Moving Beyond Ideal Systems, The Book Covers Advanced Topics Such As Bose Einstein Condensation, The Statistical Treatment Of Thermionic Emission, And The Behavior Of Non-ideal Classical Gases. The Discussion Extends To The Virial Expansion, A Key Tool In Understanding Intermolecular Interactions, With Explicit Derivations Of Virial Coefficients At Low Densities. With A Balance Of Theoretical Rigor And Practical Insight, This Book Is Intended For Students And Researchers Seeking To Deepen Their Understanding Of Statistical Mechanics. Through Carefully Selected Topics And Detailed Derivations, It Aims To Provide A Comprehensive Yet Accessible Resource For Exploring The Statistical Foundations Of Thermodynamics.