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Lecture
Specific Heat of Solids
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Related lectures (29)
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Calorimetry: Introduction
Covers the application of thermodynamic principles to calorimetry and introduces calorimetric coefficients and models for solids and ideal gases.
Calorimetric Coefficients: Ideal Gas
Explores calorimetric coefficients for ideal gases, focusing on specific heat capacities and their relationships.
First Principle of Thermodynamics
Explains the conservation of energy in thermodynamic systems during heat and work exchange processes.
Thermal Expansion and Specific Heat
Explores thermal expansion, specific heat, phase changes, and latent heat.
Thermodynamics: Real Gases and Phase Transitions
Discusses the thermodynamic behavior of real gases and phase transitions, including the Joule-Thomson effect and latent heat values.
Experimental Techniques: Specific Heat & ESR
Discusses challenges in determining system entropy and multiple contributions to specific heat.
Diffusion Mechanisms in Solids
Explores diffusion mechanisms in solids, including simple, vacancy, and interstitial mechanisms, cubic and non-cubic structures, and the calculation of diffusion coefficients.
Thermodynamics: Internal Energy and Heat Capacity
Covers internal energy, heat capacity, and their roles in thermodynamics.
Dynamics of Solids: Internal Forces and Moments
Covers the dynamics of solids, focusing on internal forces and moments.