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TABLE OF CONTENTS
The foreword 3
Chapter I. Introduction 4
1.1. The subject and problems of physics of atmosphere 4
1.2. Research methods of physics of atmosphere 5
1.3. Features of atmospheric processes 7
1.4. Communication of physics of atmosphere with other sciences. Division into
scientific disciplines 9
1.5. The international cooperation in the field of physics of atmosphere 10
1.6. Practical value of physics of atmosphere 11
Chapter II. The general data on atmosphere 14
2.1. Structure of dry air at the surface of ground. Its change with height 14
2.2. Carbonic gas and ozone in atmosphere 15
2.3. Gas impurity in atmosphere 17
2.4. Atmospheric aerosol 17
2.5. Water evaporation in atmosphere 21
2.6. Characteristics of air humidity, the parity between them 22
2.6. The equation of the condition of damp air. Virtual temperature 24
2.7. The vertical structure of atmosphere 26
2.8. Horizontal heterogeneity of atmosphere. Concept about air weights and fronts
29
Chapter III. Distribution of pressure in atmosphere 33
3.1. The basic equation of the statics of atmosphere 33
3.2. Barometric formulas 35
3.3. Baric step 41
3.4. Application of barometrical formulas 42
3.5. Standard atmosphere 43
3.6. The geopotential. Absolute and relative height. Isobaric surfaces 44
3.7. Baric systems 46
3.8. The daily course of pressure 50
Chapter IV. Bases of the thermodynamics of atmosphere 52
4.1. The basic equations 52
4.2. Adiabatic process 53
4.3. Potential temperature 55
4.4. Potential temperature and entropy 57
4.5. Humid-adiabatic processes 58
4.6. Convection. The stratification of atmosphere in relation to dry-adiabatic and humid-adiabatic movement of the particle of air 61
4.7. The daily course of stratification. Stratification of air weights 63 4.8. Potential stability and instability 65
4.9. Energy of instability. Thermodynamic schedules 67
Chapter V. The radiating mode of atmosphere 70
5.1. Solar radiation. Spectral structure. A solar constant 70
5.2 Basic laws of radiation
5.3. Absorption and dispersion of solar radiation in atmosphere 72
5.4. The law of easing. Characteristics of the transparency of atmosphere 76
5.5. Integrated characteristics of the transparency of atmosphere 79
5.6. Kinds of solar radiation 81
5.7. Reflected solar radiation. Albedo 84
5.8. Long-wave radiation of the terrestrial surface and atmospheres. Effective radiation 86
5.9. Radiating balance of the terrestrial surface and atmosphere 89
Chapter VI. The thermal condition of the terrestrial surface and atmosphere
95
6.1. The equation of thermal balance of the terrestrial surface 95 6.2. Temperatures of the terrestrial surface 96
6.3. Distribution of heat to ground and water 99
6.4. Convectional and turbulent streams of heat. Inflow of heat 102
6.5. The equation of inflow of heat in the turbulent atmosphere 104
6.6. Daily changes of temperature of air in the boundary layer of atmosphere
108
6.7. Inversions of temperature in atmosphere 112
6.8. Distribution of temperature in troposphere and the bottom stratosphere 115
Chapter VII. The water mode of atmosphere 119
7.1. The general data about moisture circulation on the ground 119
7.2. The equation of water steam carry in the turbulent atmosphere 120
7.3. Evaporation in natural conditions. Vaporability 122
7.4. The change of humidity of air in atmosphere 125
7.5. Condensation and sublimation water stream in atmosphere 128
7.6. Fogs. Their classification 132
7.7. Clouds. Classification of clouds 136
7.8. Sludging processes. Classification of atmospheric precipitation 143
7.9. Ground hydrometeors 148
Chapter VIII. Bases of the dynamics of atmosphere 151
8.1. The basic forces operating in atmosphere 151
8.2. The equations of movement of the turbulent atmosphere 155
8.3. Lines of the current and the trajectory 157
8.4. Geostrophic wind. Baric law of the wind 158
8.5. Change of the geostrophic wind with height 160
8.7. Gradient wind in cyclones and anticyclones 163
8.7. Influence of friction on speed and the direction of wind in the boundary layer
of atmosphere 165
8.8. Local circulation 169

Тошкент-2007

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