Introduction to Mathematical Fluid Dynamics
(eBook)

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Published
Dover Publications, 2012.
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Available Online
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eBook
Language
English
ISBN
9780486138947
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APA Citation (style guide)

Richard E. Meyer., & Richard E. Meyer|AUTHOR. (2012). Introduction to Mathematical Fluid Dynamics. Dover Publications.

Chicago / Turabian - Author Date Citation (style guide)

Richard E. Meyer and Richard E. Meyer|AUTHOR. 2012. Introduction to Mathematical Fluid Dynamics. Dover Publications.

Chicago / Turabian - Humanities Citation (style guide)

Richard E. Meyer and Richard E. Meyer|AUTHOR, Introduction to Mathematical Fluid Dynamics. Dover Publications, 2012.

MLA Citation (style guide)

Richard E. Meyer, and Richard E. Meyer|AUTHOR. Introduction to Mathematical Fluid Dynamics. Dover Publications, 2012. Web.

Note! Citation formats are based on standards as of July 2010. Citations contain only title, author, edition, publisher, and year published. Citations should be used as a guideline and should be double checked for accuracy.
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Grouped Work IDcd005aa4-a19c-846d-5e4c-169d1a75b23a
Full titleintroduction to mathematical fluid dynamics
Authormeyer richard e
Grouping Categorybook
Last Update2020-06-23 12:36:57PM
Last Indexed2020-10-19 05:14:31AM

Hoopla Extract Information

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    [synopsis] => Fluid dynamics, the behavior of liquids and gases, is a field of broad impact that encompasses aspects of physics, engineering, oceanography, and meteorology. Full understanding demands fluency in higher mathematics, the only language of fluid dynamics. This introductory text is geared toward advanced undergraduate and graduate students in applied mathematics, engineering, and the physical sciences. It assumes a knowledge of calculus and vector analysis. Author Richard E. Meyer notes, "This core of knowledge concerns the relation between inviscid and viscous fluids, and the bulk of this book is devoted to a discussion of that relation." Dr. Meyer develops basic concepts from a semi-axiomatic foundation, observing that such treatment helps dispel the common impression that the entire subject is built on a quicksand of assorted intuitions. His topics include kinematics, momentum principle and ideal fluid, Newtonian fluid, fluids of small viscosity, some aspects of rotating fluids, and some effects of compressibility. Each chapter concludes with a set of problems.
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