636-0940/02 – Solisd State Physics (FPF)
Gurantor department | Department of Material Engineering | Credits | 10 |
Subject guarantor | prof. RNDr. Pavol Koštial, Ph.D. | Subject version guarantor | prof. RNDr. Pavol Koštial, Ph.D. |
Study level | postgraduate | Requirement | Choice-compulsory |
Year | | Semester | winter + summer |
| | Study language | Czech |
Year of introduction | 2011/2012 | Year of cancellation | |
Intended for the faculties | FMT | Intended for study types | Doctoral |
Subject aims expressed by acquired skills and competences
Student learn higher level of quantum mechanics
Student learn higher level of statistical physics
Student understand quntum interpretation of chosen experiments in solid state physics
Student obtain knowledge about Fermions, Bosons and eapetialy fotons and fonons
Student will be able to apply methods of statistical physics on simple models
Student learn problems of statistical description of transport phenomena
Teaching methods
Lectures
Summary
In solid state physics students learn quantum mechanics interpretation of chosen problems of experimental physics. It will be described properties of phonons and photons as well as Bosons and Fermions.In the lecture we will present also statistical description of transport phenomena
Compulsory literature:
BEISER, A.: Perspectives of modern physics, Mc-Graw-Hill, NY 1969.
KITTEL, Ch.: Solid state physics, John Willey and sons 1976.
HOLDEN, A.: Nature of solids, Columbia University press 1965.
GOLDSMID, H. J.: Problems in Solid State Physics, Academics Press, 1968.
COLEMAN,R.V.: Solid state physics, Academic press, 1974.ISBN 978-0-45-25-277500-5.
Recommended literature:
FEYMANN. R.P., LEIGHTON, R.B., SANDS, M.: The Feymann Lectures on Physics—Quantum Mechanics. 1965.
SEITZ. F., TURNBULL. D.: Solid state physics. Academic Press, 1958.
Way of continuous check of knowledge in the course of semester
Continual testing
E-learning
Other requirements
no further demands to students
Prerequisities
Subject has no prerequisities.
Co-requisities
Subject has no co-requisities.
Subject syllabus:
Introduction
Chosen parts of quantum mechanics
Chosen parts of statistcal physics
Phase space
Physics of photons
Physics of phonons
Statistics of Bosons
Statistics of Fermions
Big and small statistical summ
General properties of transport ptoprties
Heat transport
Charge transport
Tranasport of momentum of movement
Conditions for subject completion
Occurrence in study plans
Occurrence in special blocks
Assessment of instruction
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