Title
Dynamics In Atmospheric Physics
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Motion Is Manifest In The Atmosphere In An Almost Infinite Variety Of Ways. In Dynamics In Atmospheric Physics, Dr. Richard Lindzen Describes The Nature Of Motion In The Atmosphere, Develops Fluid Dynamics Relevant To The Atmosphere, And Explores The Role Of Motion In Determining The Climate And Atmospheric Composition. The Author Presents The Material In A Lecture Note Style, And The Emphasis Throughout Is On Describing Phenomena That Are At The Frontiers Of Current Research, But Due Attention Is Given To The Methodology Of Research And To The Historical Background Of These Topics. The Author'S Treatment And Choice Of Topics Is Didactic. Problems At The End Of Each Chapter Will Help Students Assimilate The Material. In General The Discussions Emphasize Physical Concepts, And Throughout Dr. Lindzen Makes A Concerted Effort To Avoid The Notion That Dynamic Meteorology Is Simply The Derivation Of Equations And Their Subsequent Solution. His Desire Is That Interested Students Will Delve Further Into Solution Details. The Book Is Intended As A Text For First Year Graduate Students In The Atmospheric Sciences. Although The Material In The Book Is Self Contained, A Familiarity With Differential Equations Is Assumed; Some Background In Fluid Mechanics Is Helpful.
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This product may contain chemicals known to the State of California to cause cancer, birth defects, or other reproductive harm.
For more information, please visit www.P65Warnings.ca.gov.
- Q: What is the binding style of this book? A: This book is a hardcover. Hardcover bindings provide durability and protection for the pages, making it ideal for extensive use.
- Q: How many pages does this book have? A: This book has three hundred twenty-four pages. It offers a comprehensive exploration of atmospheric physics.
- Q: What are the dimensions of this book? A: The book measures six point five inches in length, one inch in width, and nine point five inches in height. These dimensions make it convenient for reading and storage.
- Q: What is the reading level for this book? A: This book is intended for first year graduate students. It assumes familiarity with differential equations and some background in fluid mechanics.
- Q: Is this book suitable for beginners in atmospheric sciences? A: No, this book is not suitable for beginners. It is designed for graduate students with a foundational understanding of related topics.
- Q: How does Dr. Lindzen present the material in the book? A: Dr. Lindzen presents the material in a lecture note style. This approach emphasizes physical concepts and current research in atmospheric dynamics.
- Q: How should I care for this hardcover book? A: To care for this hardcover book, keep it in a dry place and avoid exposure to direct sunlight. This will help preserve its condition.
- Q: Are there any specific cleaning instructions for this book? A: Yes, avoid using water or cleaning solutions on the book. Instead, dust it gently with a soft cloth to maintain its appearance.
- Q: What if the book arrives damaged? A: If the book arrives damaged, contact the seller for return options. Most sellers offer a return policy for damaged items.
- Q: Is there a warranty for this book? A: No, books typically do not come with a warranty. However, check with the seller for their specific return and exchange policies.
- Q: What type of topics does the book cover? A: The book covers topics in dynamics relevant to the atmosphere and climate. It discusses motion, fluid dynamics, and atmospheric composition.
- Q: Does this book include problems for practice? A: Yes, there are problems at the end of each chapter. These problems are designed to help students assimilate the material covered.
- Q: Is this book a good resource for research? A: Yes, this book is a valuable resource for research in atmospheric sciences. It emphasizes current research and methodologies.
- Q: Who is the author of this book? A: The author of this book is Dr. Richard Lindzen. He is a notable figure in atmospheric physics.
- Q: What makes this book unique in its field? A: This book's unique approach lies in its didactic treatment of complex topics, focusing on physical concepts rather than just equation derivation.