Teaching and Learning of Fluid Mechanics, Volume II
This book is devoted to the teaching and learning of fluid mechanics. Fluid mechanics occupies a privileged position in the sciences; it is taught in various science departments including physics, mathematics, mechanical, chemical and civil engineering and environmental sciences, each highlighting a...
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Format | eBook |
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Language | English |
Published |
Basel, Switzerland
MDPI - Multidisciplinary Digital Publishing Institute
2021
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Subjects | |
Online Access | Get full text |
ISBN | 9783036519999 3036519998 303651998X 9783036519982 |
DOI | 10.3390/books978-3-0365-1999-9 |
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Abstract | This book is devoted to the teaching and learning of fluid mechanics. Fluid mechanics occupies a privileged position in the sciences; it is taught in various science departments including physics, mathematics, mechanical, chemical and civil engineering and environmental sciences, each highlighting a different aspect or interpretation of the foundation and applications of fluids. While scholarship in fluid mechanics is vast, expanding into the areas of experimental, theoretical and computational fluid mechanics, there is little discussion among scientists about the different possible ways of teaching this subject. We think there is much to be learned, for teachers and students alike, from an interdisciplinary dialogue about fluids. This volume therefore highlights articles which have bearing on the pedagogical aspects of fluid mechanics at the undergraduate and graduate level. |
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AbstractList | This book is devoted to the teaching and learning of fluid mechanics. Fluid mechanics occupies a privileged position in the sciences; it is taught in various science departments including physics, mathematics, mechanical, chemical and civil engineering and environmental sciences, each highlighting a different aspect or interpretation of the foundation and applications of fluids. While scholarship in fluid mechanics is vast, expanding into the areas of experimental, theoretical and computational fluid mechanics, there is little discussion among scientists about the different possible ways of teaching this subject. We think there is much to be learned, for teachers and students alike, from an interdisciplinary dialogue about fluids. This volume therefore highlights articles which have bearing on the pedagogical aspects of fluid mechanics at the undergraduate and graduate level. |
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SubjectTerms | active methodology applications of fluids Blasius boundary-layer CFD closure models computational fluid dynamics damped pendulums data assimilation didactic transformation droplet impact education existence Falkner–Skan fluid drag fluid dynamics education fluid mechanics fluid-structure interaction forward sensitivity Hiemenz Homann hydraulic engineering hydraulic teaching inquiry-based instruction Julia Kalman filtering laboratories learning and teaching Leray-Hopf weak solutions measurements fusion n/a Navier-Stokes equations open water tank outcomes competences practical engineering education primary level quasi-geostrophic equations reduced order models science education teaching-learning sequences Technology, Engineering, Agriculture, Industrial processes Technology: general issues undergraduate education variational and sequential methods vortex formation length vortex shedding wake |
Title | Teaching and Learning of Fluid Mechanics, Volume II |
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