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Ideal Gas Model - Thermal Properties of Matter - Exam

Exams, Thermal Analysis

Post: February 20th, 2013
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This is the Exam of Thermal Properties of Matter which includes Thermodynamic Quantity, Einstein’s Theory, Ehrenfest Classification, Phase Transitions, Thermodynamic Potential, Clausius-Clapeyron Equation, Molar Volume of Solid etc. Key important points are: Ideal Gas Model, Laws of Thermodynamics, Van-Der-Waals Gas Model, Equipartition Theorem, Lambda Phase Transitions, Specific Heat of Paramagnetic Solids, Schottky Anomaly, Definitions of Entropy
This is the Exam of Thermal Properties of Matter which includes Thermodynamic Quantity, Einstein’s Theory, Ehrenfest Classification, Phase Transitions, Thermodynamic Potential, Clausius-Clapeyron Equation, Molar Volume of Solid etc. Key important points are: Ideal Gas Model, Laws of Thermodynamics, Van-Der-Waals Gas Model, Equipartition Theorem, Lambda Phase Transitions, Specific Heat of Paramagnetic Solids, Schottky Anomaly, Definitions of Entropy
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Contents
LANCASTER UNIVERSITY 2010 EXAMINATIONS Part II PHYSICS - Paper 2.D • Candidates should answer all those sections identified with the modules for which they are registered. • An indication of mark weighting is given by the numbers in square brackets following each part. • Use a separate answer book for each section. PHYSICAL CONSTANTS Planck’s constant h h ¯ Boltzmann’s constant kB Mass of electron me Mass of proton mp Electronic charge e Speed of light c Avogadro’s number NA Permittivity of the vacuum ǫ0 Permeability of the vacuum µ0 Gravitational constant G Bohr magneton µB Bohr radius a0 Gas constant R Acceleration due to gravity g 1 standard atmosphere Mass of Earth Radius of Earth Density of iron = = = = = = = = = = = = = = = = = = = 6.63 × 10−34 J s 1.05 × 10−34 J s 1.38 × 10−23 J K−1 9.11 × 10−31 kg 1.67 × 10−27 kg 1.60 × 10−19 C 3.00 × 108 m s−1 6.02 × 1023 mol−1 8.85 × 10−12 F m−1 4π × 10−7 H m−1 6.67 × 10−11 N m2 kg−..

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