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This video covers Thermal Physics – Unit 1 Part 3, explained in a simple and clear way for B.Sc Physics students of different universities.This lecture is specially helpful for:Utkal University.FM University (Fakir Mohan University).Berhampur University.Sambalpur University.Rajendra University.DD University (Dharanidhar University).Ravenshaw University.Sailabala College (Cuttack).Ramadevi Women’s University (Bhubaneswar).Whether you are preparing for BSc 3rd Semester Physics, Honours Paper, or Major Paper, this lecture will help you score better in exams.👉 Don’t forget to Like, Share, and Subscribe to Edumadam for more Physics lectures, notes, and exam preparation videos.
📘 General Keywords
Thermal Physics
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Laws of Thermodynamics (Zeroth, First, Second, Third)
Heat and Work in Physics
Temperature and Heat
Entropy in Physics
Specific Heat Capacity
Heat Transfer (Conduction, Convection, Radiation)
Ideal Gas Law
Kinetic Theory of Gases
Carnot Engine and Efficiency
Thermal Equilibrium
Thermodynamic Processes (Isothermal, Adiabatic, Isobaric, Isochoric)
Thermal Expansion
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🔹 Utkal University
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🔹 FM University (Fakir Mohan)
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🔹 Berhampur University
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🔹 Sambalpur University
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🔹 Rajendra University
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🔹 DD University (Dharanidhar University, Keonjhar)
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🔹 Ravenshaw University (Cuttack)
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SYLLABUS-
CORE PAPER-7
Thermal Physics
Unit1 Introduction to Thermodynamics Recapitulation of Zeroth and First law of
thermodynamics,Second Law of Thermodynamics: Reversible and Irreversible process with examples, Kelvin
Planck and Clausius Statements and their Equivalence, Carnot’s Theorem, Applications of
Second Law of Thermodynamics: Thermodynamic Scale of Temperature and its Equivalence to
Perfect Gas Scale.
Entropy: Concept of Entropy, Clausius Theorem. Clausius Inequality, Seco nd Law of
Thermodynamics in terms of Entropy, Entropy of a perfect gas, Principle of increase of
Entropy, Entropy Changes in Reversible and Irreversible processes with examples,
Entropy of the Principle of Increase of Entropy, Temperature Entropy diagrams for
Carnot’s Cycle, Third Law of Thermodynamics, Unattainability of Absolute Zero.
Unit II
Thermodynamic Potentials: Extensive and Intensive Thermodynamic Variables.
Internal Energy, Enthalpy, Helmholtz Free Energy, Gibbs Free Energy, Their Definitions,
Properties and Applications, Surface Films a nd Variation of Surface T ension with
Temperature, Magnetic Work, Cooling due to adiabatic demagnetization.Phase Transitions: First and second order Phase Transitions with examples,
Clausius Clapeyron Equation and Ehrenfest equations. Maxwells Thermodynamic Relations: Derivations and applications of Maxwells
Relations, Maxwells Relations: (1) Clausius Clapeyron equation (2) Relation between Cp and Cv (3) TdS
Equations, (4) Joule- Kelvin coefficient for Ideal and. Vander Waal Gases (5)
Energy equations (6) Change of Temperature during Adiabatic Process.
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