Year: 2011 Language: english Author: Frank M. White Genre: Handbook Publisher: McGraw-Hill Edition: 7th ISBN: 978-0-07-352934-9 Format: PDF Quality: eBook Pages count: 885 Description: White's Fluid Mechanics offers students a clear and comprehensive presentation of the material that demonstrates the progression from physical concepts to engineering applications and helps students quickly see the practical importance of fluid mechanics fundamentals. The wide variety of topics gives instructors many options for their course and is a useful resource to students long after graduation. The book’s unique problem-solving approach is presented at the start of the book and carefully integrated in all examples. Students can progress from general ones to those involving design, multiple steps and computer usage. The book is intended for an undergraduate course in fluid mechanics, and there is plenty of material for a full year of instruction. The author covers the first six chapters and part of Chapter 7 in the introductory semester. The more specialized and applied topics from Chapters 7 to 11 are then covered at our university in a second semester. The informal, student-oriented style is retained and, if it succeeds, has the flavour of an interactive lecture by the author.
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Fluid Mechanics [White 2011, 7ed.]
Year: 2011
Language: english
Author: Frank M. White
Genre: Handbook
Publisher: McGraw-Hill
Edition: 7th
ISBN: 978-0-07-352934-9
Format: PDF
Quality: eBook
Pages count: 885
Description: White's Fluid Mechanics offers students a clear and comprehensive presentation of the material that demonstrates the progression from physical concepts to engineering applications and helps students quickly see the practical importance of fluid mechanics fundamentals. The wide variety of topics gives instructors many options for their course and is a useful resource to students long after graduation. The book’s unique problem-solving approach is presented at the start of the book and carefully integrated in all examples. Students can progress from general ones to those involving design, multiple steps and computer usage.
The book is intended for an undergraduate course in fluid mechanics, and there is plenty of material for a full year of instruction.
The author covers the first six chapters and part of Chapter 7 in the introductory semester.
The more specialized and applied topics from Chapters 7 to 11 are then covered at our university in a second semester. The informal, student-oriented style is retained and, if it succeeds, has the flavour of an interactive lecture by the author.
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