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An introduction to fluid mechanics
~
Potter, Merle C.
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An introduction to fluid mechanics
Record Type:
Electronic resources : Monograph/item
Title/Author:
An introduction to fluid mechanics/ by Merle C. Potter, Bassem H. Ramadan.
Author:
Potter, Merle C.
other author:
Ramadan, Bassem H.
Published:
Cham :Springer International Publishing : : 2025.,
Description:
xvii, 552 p. :ill., digital ;24 cm.
[NT 15003449]:
Basic Considerations -- Fluid Statics -- Introduction To Fluids In Motion -- The Integral Forms Of The Fundamental Laws -- Dimensional Analysis And Similitude.
Contained By:
Springer Nature eBook
Subject:
Fluid mechanics. -
Online resource:
https://doi.org/10.1007/978-3-031-64820-5
ISBN:
9783031648205
An introduction to fluid mechanics
Potter, Merle C.
An introduction to fluid mechanics
[electronic resource] /by Merle C. Potter, Bassem H. Ramadan. - Sixth edition. - Cham :Springer International Publishing :2025. - xvii, 552 p. :ill., digital ;24 cm.
Basic Considerations -- Fluid Statics -- Introduction To Fluids In Motion -- The Integral Forms Of The Fundamental Laws -- Dimensional Analysis And Similitude.
This textbook can be used for the first required course in fluid mechanics. It can be used in any curriculum: mechanical, civil, chemical, aerospace, or a general required course for all engineers. The course can be taught using the more conventional elemental approach for pipe flow, channel flow, and flow between cylinders. This textbook adopts a judicious approach, minimizing mathematical intricacies to ensure that the book is accessible for all students. The text has been designed to allow students to better understand the fundamentals, aided by numerous examples and home problems. Students often find it quite difficult to understand many concepts encountered in fluid mechanics, such as laminar flow, the entrance region, the separated region, and turbulence. The book ensures that these concepts are presented correctly and in an easy-to-understand format. To mention a few, the turbulent entrance region is only for large Reynolds numbers although not many texts mention this, the separated region and the wake are often confused, and laminar flow and turbulent flow definitions usually lack clarity. This book elucidates derivations and phenomena in a manner that renders them comparably more comprehensible than those presented in other textbooks. This book uses a student-friendly format to ensure easy understanding.
ISBN: 9783031648205
Standard No.: 10.1007/978-3-031-64820-5doiSubjects--Topical Terms:
528155
Fluid mechanics.
LC Class. No.: TA357
Dewey Class. No.: 620.106
An introduction to fluid mechanics
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Basic Considerations -- Fluid Statics -- Introduction To Fluids In Motion -- The Integral Forms Of The Fundamental Laws -- Dimensional Analysis And Similitude.
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This textbook can be used for the first required course in fluid mechanics. It can be used in any curriculum: mechanical, civil, chemical, aerospace, or a general required course for all engineers. The course can be taught using the more conventional elemental approach for pipe flow, channel flow, and flow between cylinders. This textbook adopts a judicious approach, minimizing mathematical intricacies to ensure that the book is accessible for all students. The text has been designed to allow students to better understand the fundamentals, aided by numerous examples and home problems. Students often find it quite difficult to understand many concepts encountered in fluid mechanics, such as laminar flow, the entrance region, the separated region, and turbulence. The book ensures that these concepts are presented correctly and in an easy-to-understand format. To mention a few, the turbulent entrance region is only for large Reynolds numbers although not many texts mention this, the separated region and the wake are often confused, and laminar flow and turbulent flow definitions usually lack clarity. This book elucidates derivations and phenomena in a manner that renders them comparably more comprehensible than those presented in other textbooks. This book uses a student-friendly format to ensure easy understanding.
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EB TA357
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