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Physical Processes in Earth and Environmental Sciences

✍ Scribed by Mike R. Leeder, Marta Pérez-Arlucea


Publisher
Wiley-Blackwell
Year
2006
Tongue
English
Leaves
337
Edition
illustrated edition
Category
Library

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✦ Synopsis


This book provides a sound introduction to the basic physical processes that dominate the workings of the Earth, its atmosphere and hydrosphere. It systematically introduces the physical processes involved in the Earth’s systems without assuming an advanced physics or mathematical background.

Physical Processes in Earth and Environmental Sciences provides an integrated approach to the study of earth, marine and atmospheric environmental sciences, reflecting current trends in undergraduate courses. The text considers the various Earth systems through a basic account of general physical properties, kinematics, forces and dynamics that cause flow transport and deformation. Natural examples of physical processes, rather than abstract physics and maths, are used throughout to illustrate the scientific principles involved.

This important book will be an essential reference for undergraduate students in a range of earth and environmental sciences.

✦ Table of Contents


Physical Processes in Earth and Environmental Sciences......Page 4
Contents......Page 8
Preface......Page 10
Acknowledgments......Page 12
1.1 Comparative planetology......Page 16
1.2 Unique Earth......Page 18
1.3 Earth systems snapshots......Page 20
1.4 Measuring Earth......Page 22
1.5 Whole Earth......Page 25
1.6 Subtle, interactive Earth......Page 29
Further reading......Page 31
2.1 Matters of state......Page 33
2.2 Thermal matters......Page 35
2.3 Quantity of matter......Page 39
2.4 Motion matters: kinematics......Page 41
2.5 Continuity: mass conservation of fluids......Page 48
Further reading......Page 50
3.1 Quantity of motion: momentum......Page 51
3.2 Acceleration......Page 53
3.3 Force, work, energy, and power......Page 55
3.4 Thermal energy and mechanical work......Page 60
3.5 Hydrostatic pressure......Page 64
3.6 Buoyancy force......Page 67
3.7 Inward acceleration......Page 70
3.8 Rotation, vorticity, and Coriolis force......Page 72
3.9 Viscosity......Page 76
3.10 Viscous force......Page 78
3.11 Turbulent force......Page 80
3.12 Overall forces of fluid motion......Page 82
3.13 Solid stress......Page 86
3.14 Solid strain......Page 98
3.15 Rheology......Page 107
Further reading......Page 116
4.1 The origin of large-scale fluid flow......Page 117
4.2 Fluid flow types......Page 120
4.3 Fluid boundary layers......Page 124
4.4 Laminar flow......Page 126
4.5 Turbulent flow......Page 128
4.6 Stratified flow......Page 132
4.7 Particle settling......Page 134
4.8 Particle transport by flows......Page 136
4.9 Waves and liquids......Page 140
4.10 Transport by waves......Page 146
4.11 Granular gravity flow......Page 148
4.12 Turbidity flows......Page 153
4.13 Flow through porous and granular solids......Page 157
4.14 Fractures......Page 159
4.15 Faults......Page 171
4.16 Solid bending, buckling, and folds......Page 187
4.17 Seismic waves......Page 194
4.18 Molecules in motion: kinetic theory, heat conduction, and diffusion......Page 206
4.19 Heat transport by radiation......Page 210
4.20 Heat transport by convection......Page 212
Further reading......Page 217
5.1 Melting, magmas, and volcanoes......Page 218
5.2 Plate tectonics......Page 238
Further reading......Page 251
6.1 Atmosphere......Page 252
6.2 Atmosphere–ocean interface......Page 263
6.3 Atmosphere–land interface......Page 269
6.4 Deep ocean......Page 271
6.5 Shallow ocean......Page 278
6.6 Ocean–land interface: coasts......Page 285
6.7 Land surface......Page 293
Further reading......Page 307
Appendix Brief mathematical refresher or study guide......Page 308
Cookies......Page 313
Index......Page 334

✦ Subjects


Горно-геологическая отрасль;Геофизика;


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