Description: FREE SHIPPING UK WIDE Classical Mechanics in Geophysical Fluid Dynamics by Osamu Morita This advanced text links classical mechanics to geophysical fluid dynamics, as with the precession of the earth, oceanic tides, and the retreat of the moon from the earth owing to the tidal friction. Now with a new chapter on gravity waves and more on geophysical fluid dynamics. FORMAT Hardcover CONDITION Brand New Publisher Description This new edition of Classical Mechanics in Geophysical Fluid Dynamics describes the motions of rigid bodies and shows how classical mechanics has important applications to geophysics, as in the precessions of the earth, oceanic tides, and the retreat of the moon from the earth owing to the tidal friction. Unlike the more general mechanics textbooks this gives a unique presentation of these applications. The coverage of geophysical fluid dynamics has been revised, with a new chapter on various kinds of gravity waves, a new section on geostrophic turbulence, and new material on the Euler angles, the precession and nutation of a Lagrange top, Rayleigh–BĂ©nard convection, and the Ekman flow.This textbook for senior undergraduate and graduate students outlines and provides links between classical mechanics and geophysical fluid dynamics. It is particularly suitable for geophysics, meteorology, and oceanography students on mechanics and fluid dynamics courses, as well as serving as a general textbook for a course on geophysical fluid dynamics. Author Biography Osamu Morita is a Guest Professor at Fukuoka University with a background in meteorology, physics and of the earth and planetary sciences. Table of Contents 1. Introduction 2. Kinematics 3. Force and Motion 4. Inertial Force 5. Work and Energy 6. Oscillatory Motion 7. Mechanics of Rigid Bodies 8. Momentum and Impulse 9. Angular Momentum Equation 10. Motion of Rigid Bodies 11. Orbital Motion of Planets 12. Introduction to Geophysical Fluid Dynamics 13. Phenomena in Geophysical Fluids: Part I 14. Phenomena in Geophysical Fluids: Part II 15. Phenomena in Geophysical Fluids: Part III Appendices A. Acceleration in Spherical Coordinates B. Vector Analysis C. Useful Constants and Parameters D. Answers to Problems E. Further Reading Long Description This new edition of Classical Mechanics in Geophysical Fluid Dynamics describes the motions of rigid bodies and shows how classical mechanics has important applications to geophysics, as in the precessions of the earth, oceanic tides, and the retreat of the moon from the earth owing to the tidal friction. Unlike the more general mechanics textbooks this gives a unique presentation of these applications. The coverage of geophysical fluid dynamics has been revised, with a new chapter on various kinds of gravity waves, a new section on geostrophic turbulence, and new material on the Euler angles, the precession and nutation of a Lagrange top, Rayleigh-B Details ISBN1032315032 Author Osamu Morita Publisher Taylor & Francis Ltd Year 2022 ISBN-10 1032315032 ISBN-13 9781032315034 Format Hardcover Publication Date 2022-12-13 UK Release Date 2022-12-13 Edition 2nd Place of Publication London Country of Publication United Kingdom AU Release Date 2022-12-13 NZ Release Date 2022-12-13 Illustrations 6 Tables, black and white; 121 Line drawings, black and white; 10 Halftones, black and white; 131 Illustrations, black and white Pages 374 Edition Description 2nd edition DEWEY 532.05 Audience Tertiary & Higher Education Imprint CRC Press Replaces 9780367266493 We've got this At The Nile, if you're looking for it, we've got it. With fast shipping, low prices, friendly service and well over a million items - you're bound to find what you want, at a price you'll love! 30 DAY RETURN POLICY No questions asked, 30 day returns! FREE DELIVERY No matter where you are in the UK, delivery is free. SECURE PAYMENT Peace of mind by paying through PayPal and eBay Buyer Protection TheNile_Item_ID:139331022;
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Format: Hardcover
ISBN-13: 9781032315034
Author: Osamu Morita
Type: NA
Book Title: Classical Mechanics in Geophysical Fluid Dynamics
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