Essentials of Atmospheric and Oceanic Dynamics

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711 g
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246x189x20 mm
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Geoffrey K. Vallis is a Professor of Applied Mathematics at the University of Exeter. Prior to taking up his position there, he taught for many years at Princeton University, New Jersey. He has carried out research in the atmospheric sciences, oceanography and the planetary sciences, and has published over 100 peer-reviewed journal articles. He is the recipient of various prizes and awards, including the Adrian Gill Prize (Royal Meteorological Society) and the Stanislaw M. Ulam Distinguished Scholar award (Los Alamos National Laboratory). He is the author of Atmospheric and Oceanic Fluid Dynamics: Fundamentals and Large-Scale Circulation (2nd Edition, Cambridge, 2017).
Part I. Geophysical Fluid Dynamics: 1. Fluid fundamentals; 2. Equations for a rotating planet; 3. Dynamics on a rotating planet; 4. Shallow water equations; 5. Geostrophic theory; 6. Rossby waves; 7. Gravity waves; 8. Instability; 9. Waves and mean-flows; 10. Turbulence; Part II. Atmospheres: 11. The Hadley cell and the tropics; 12. Midlatitudes and the stratosphere; 13. Planetary atmospheres; Part III. Oceans: 14. Wind-driven gyres; 15. The thermocline and overturning circulation; 16. The equatorial ocean and El Niño; References; Index.
A concise introduction to atmosphere-ocean dynamics at the intermediate-advanced undergraduate level, taking the reader from basic dynamics to cutting-edge topics.

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