This comprehensive text describes the atmospheric processes, numerical methods, and computational techniques required for a scientist to successfully study air pollution and meteorology. Computer modeling has become a powerful tool in modern atmospheric sciences, combining the disciplines of meteorology, physics, mathematics, chemistry, computer sciences, and, to a lesser extent, geology, biology, microbiology, and oceanographic sciences. This text presents fundamental equations that have been developed for physical, chemical, and dynamical variables in the atmosphere, and it provides numerical methods to solve these equations. Along with classic methods of simulating dynamical meteorology, the text contains several numerical techniques for simulating gas and aerosol processes not available in any other text. The book has been developed from the author's graduate courses at Stanford University and contains homework and computer programming assignments. It is a valuable textbook for graduate and upper-level undergraduate courses in atmospheric sciences and meteorology departments. It will also be useful for courses in earth sciences, environmental sciences, and applied mathematics.
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'I highly recommend the Jacobson book for graduate students and professionals engaged in atmospheric modeling. They will find themselves frequently reaching for it as a reference. I certainly do.' Daniel J. Jacob, Atmospheric Environment
'It can be thoroughly recommended for those seeking a detailed treatise on the methodology of numerical modelling of atmospheric physical and chemical processes.' Roy Harrison, University of Birmingham
'... thoroughly recommended for those seeking a detailed treatise on the methodology of numerical modelling of atmospheric physical and chemical processes.' Roy Harrison, The Times Higher Education Supplement
'Overall this is a much needed text.' Contemporary Physics
' ... a good, up-to-date overview of the subject. It is a valuable textbook for graduate and upper-level undergraduate courses in atmospheric sciences and meteorology and will also be useful for courses in Earth and environmental sciences.' World Meteorological Organization
This comprehensive text describes the atmospheric processes, numerical methods, and computational techniques required for a scientist to study successfully air pollution and meteorology. Computer modeling has become a powerful tool in modern atmospheric sciences, combining the disciplines of meteorology, physics, mathematics, chemistry, computer sciences, and, to a lesser extent, geology, biology, microbiology, and oceanographic sciences.
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