Рабочая учебная программа по предмету Термодинамика и статистическая физика Область знаний: 100 000 Гуманитарная область


Requirements for the knowledge, skills and qualifications of students in the subject under study



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65. Termodinamika va statistik fizika (5140200-fizika(rus))

Requirements for the knowledge, skills and qualifications of students in the subject under study

The requirements for the knowledge, skills and qualifications of students in the course of studying the subject “Thermodynamics and Statistical Physics" are:


- must be able to apply to the phenomena of the microcosm the basic physical laws, their place in practice, the essence of physical quantities, dimensions and their comparison, the basic physical laws and principles related to the field of thermodynamics and statistical physics;
- solve and analyze problems at the required general level; calculation of problems and results of experiments in thermodynamics and statistical physics in various systems of units of measurement must have the qualification of applying methods of mathematical calculation;
- must have the skills to apply the laws and formulas of thermodynamics and statistical physics to non-standard questions;


Distribution of the allocated hours for the topics covered and their types of activities.





Topic and its content

Total

Lecture

Practice

individual work

1

Introduction. The problem of statistical physics

14

4

4

6

2

General methods of statistical mechanics

14

4

4

6

3

Statistical and phenomenological thermodynamics

14

4

4

6

4

Systems of variable number of particles

14

4

4

6

5

Statistical theory of ideal systems

14

4

4

6

6

Statistical theory of non-ideal systems

14

4

4

6

7

The fluctuation theory

14

4

4

6

8

Thermodynamics of nonequilibrium processes

14

4

4

6

9

Physical kinetics

16

4

6

6

10

The kinetic equation

16

4

6

6




Total

216

67

68

81

Calendar plan of practical classes of the subject





The theme of the lectures

hours

1

Introduction

2

2

Quasi-connected systems

2

3

Feature of the Gibbs distribution

2

4

Internal energy of the macroscopic system.Thermodynamic process

2

5

The method of thermodynamic potentials.

2

6

The third law of thermodynamics. The particle system variable numbers

2

7

Large statistical sum

2

8

Gibbs ' phase rules . Phase transitions of the second kind

2

9

An ideal monatomic quantum gases. Bose – Einstein and Fermi – Dirac statistics

2

10

The heat capacity of the degenerate electronic gas

2

11

Equilibrium radiation. Einstein and Debye theory




12

Non-ideal monatomic classical gas

2

13

Correlation function and state equations. Equations and energy state

2

14

Plasma

2

15

Small fluctuations in thermodynamic systems. Fluctuations of thermodynamic quantities

2

16

Fluctuation in a photonic gas

2

17

Local equilibria. Linear laws

2

18

Physical characteristics of the Brownian motion

2

19

Equation Smokorowski. The kinetic equation and the classical balance

4

20

The kinetic Bogolyubov equation. Kizilaslan Vlasov equation

4




Total

68

Content and scope of independent education of students.



Chapters and topics included in the working curriculum for independent education.

Tasks and recommendations for independent education.

Term of execution

Volume (hours)

Introduction

Synopsis

1-week




Quasi-connected systems

The study of the laws

2-week

2

Feature of the Gibbs distribution

Making a model

3-week

2

Internal energy of the macroscopic system

Making a model

4-week

2

Thermodynamic process

Synopsis

5-week

2

The method of thermodynamic potentials.

Preparation of the abstract

6-week

2

The third law of thermodynamics

Synopsis

7-week

4

The particle system variable numbers

practical value

8-week

4

Large statistical sum

practical value

9-week

4

Gibbs ' Phase Rules

Preparation of the abstract

10-week

4

Phase transitions of the second kind

Synopsis

11-week

4

An ideal monatomic quantum gases

Preparation of the abstract

12-week

6

Bose – Einstein and Fermi – Dirac statistics

Study of practical significance

13-week

6

The heat capacity of the degenerate electronic gas

Preparation of the abstract

14 - week

6

The equilibrium radiation

Making a model

15 - week

6

Einstein and Debye theory

Making a model

16-week

6

Total:







81



Amount of training load





Type of classes


Dedicated hours


7-semester

8-semester

Total

1

Lecture

20

20

67

2

Practice

22

22

68

3

Self-educational work

30

30

81




Total:

72

72

216



Rating board






70 баллов

30 баллов

Лекция

Практика

Самообразов.

текущий контроль

промежуточный контр.

Итоговый

практика

самообраз.

Лекция

самообраз

кол-во

баллов

всего

кол-во

баллов

всего

кол-во

баллов

всего

кол-во

баллов

всего




Thermodynamics and statistical physics

67

68

81

1

25

25

1

10

10

1

25

25

1

10

10

письменно

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