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00) Course Introduction
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00) Course Introduction
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01) Basic Definitions and Concepts
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1-a) System & Properties
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1-b) Reversible Processes
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1-c) Temperature & Pressure
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02) Work Calculations
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2-a) Work Calculations for Closed Systems (Isobaric & Isothermal)
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2-b) Work Calculations for Closed Systems (Adiabatic & Polytropic)
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2-c) GATE Questions
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2-d) ESE Questions
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03) First Law of Thermodynamics
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3-a) First Law for Closed Systems
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3-b) Problems for First Law for Closed Systems
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3-c) Enthalpy & Steady Flow Energy Equation
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3-d) Problems - Enthalpy & SFEE
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3-e) Energy Analysis of Unsteady Flow Processes
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3-f) Mixing of Ideal Gases
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3-g) Carnot Cycle
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3-h) Problems - Carnot Cycle
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04) Entropy & Calculations
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4-a) Introduction & TDS Equations
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4-b) Problems - TDS Equations
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4-c) T-S Diagrams
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4-d) Claussius Inequality & Entropy Principle
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4-e) Entropy Considerations in Heat Engines
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4-f) Heat Engines in Series
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05) Availability & Irreversibilty
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5-a) Available & Unavailable Energy
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5-b) Problems-Available & Unavailable Energy
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5-c) Irreversibility
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06) Pure Substances
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6-a) Basic Concepts
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6-b) Dryness Fraction & Properties Calculations
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07) Real Gas & Ideal Gas
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7-a) Real Gas & Ideal Gas
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08) Thermodynamic Relations
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8-a) Maxwell equations
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8-b) Classius Equation & Joule Thomson Coeffecient
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8-c) Problems-Thermodynamic Relations
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09) Properties of Mixtures
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9-a) Properties of Mixture
Preview - Thermodynamics - GATE/IES
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