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Theory and Applications of Nonviscous Fluid Flows
Overview of attention for book
Table of Contents
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Book Overview
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Chapter 1
Introduction
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Chapter 2
Fluid Dynamic Limits of the Boltzmann Equation
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Chapter 3
From Classical Continuum Theory to Euler Equations via N-S-F Equations
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Chapter 4
A Short Presentation of Asymptotic Methods and Modelling
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Chapter 5
Various Forms of Euler Equations and Some Hydro-Aerodynamics Problems
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Chapter 6
Atmospheric Flow Equations and Lee Waves
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Chapter 7
Low Mach Number Flow and Acoustics Equations
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Chapter 8
Turbo-Machinery Fluid Flow
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Chapter 9
Vortex Sheets and Shock Layer Phenomena
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Chapter 10
Rigorous Mathematical Results
Overall attention for this book and its chapters
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Mentioned by
syllabi
1
institution with syllabi
Citations
dimensions_citation
9
Dimensions
Readers on
mendeley
4
Mendeley
Book overview
1. Introduction
2. Fluid Dynamic Limits of the Boltzmann Equation
3. From Classical Continuum Theory to Euler Equations via N-S-F Equations
4. A Short Presentation of Asymptotic Methods and Modelling
5. Various Forms of Euler Equations and Some Hydro-Aerodynamics Problems
6. Atmospheric Flow Equations and Lee Waves
7. Low Mach Number Flow and Acoustics Equations
8. Turbo-Machinery Fluid Flow
9. Vortex Sheets and Shock Layer Phenomena
10. Rigorous Mathematical Results
Summary
Syllabi
Dimensions citations
This data is correct as of December 2015 - for more up to date information, please visit
https://opensyllabus.org/
So far, Altmetric has seen this research output assigned in
1
syllabus from an institution on Open Syllabus Project.
Institution
Syllabi count
Course subject areas covered
Unknown
1
Engineering, Biology