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Thermal Capacity of Solids

Class at Faculty of Mathematics and Physics |
NFPL550

Syllabus

Heat capacity under constant volume and pressure, basic thermodynamic relations. Heat capacity of lattice vibrations, Debye and Einstein model, comparison with real materials, anharmonicity. Heat capacity of conduction electrons. Heat capacity of magnetic materials and superconductors, paramagnetic and magnetically ordered state, dimension of the magnetic order, critical phenomena.

Experimental methods of heat capacity measurements, static and dynamic measurement, adiabatic and relaxation method. Practical realization of experiments and the experimental accuracy. Measurement of transuranium samples.

Practical aspects of data treatment, danger and limitations.

Annotation

Basic description of the heat capacity of solids, lattice vibrations, phase transitions, electron specific heat, magnetic excitations. Models and reality, effective analysis of experimental data.

Types of heat capacity measurements, realization of experiments.