Microhydrodynamics: Principles and Selected Applications
(eBook)

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Published
Dover Publications, 2013.
Status
Available Online

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Format
eBook
Language
English
ISBN
9780486317670

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Citations

APA Citation, 7th Edition (style guide)

Sangtae Kim., Sangtae Kim|AUTHOR., & Seppo J. Karrila|AUTHOR. (2013). Microhydrodynamics: Principles and Selected Applications . Dover Publications.

Chicago / Turabian - Author Date Citation, 17th Edition (style guide)

Sangtae Kim, Sangtae Kim|AUTHOR and Seppo J. Karrila|AUTHOR. 2013. Microhydrodynamics: Principles and Selected Applications. Dover Publications.

Chicago / Turabian - Humanities (Notes and Bibliography) Citation, 17th Edition (style guide)

Sangtae Kim, Sangtae Kim|AUTHOR and Seppo J. Karrila|AUTHOR. Microhydrodynamics: Principles and Selected Applications Dover Publications, 2013.

MLA Citation, 9th Edition (style guide)

Sangtae Kim, Sangtae Kim|AUTHOR, and Seppo J. Karrila|AUTHOR. Microhydrodynamics: Principles and Selected Applications Dover Publications, 2013.

Note! Citations contain only title, author, edition, publisher, and year published. Citations should be used as a guideline and should be double checked for accuracy. Citation formats are based on standards as of August 2021.

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Grouped Work ID1ed1d9e0-b3f3-9f86-4e9b-503264d98880-eng
Full titlemicrohydrodynamics principles and selected applications
Authorkim sangtae
Grouping Categorybook
Last Update2022-10-18 21:40:45PM
Last Indexed2024-04-13 00:05:57AM

Book Cover Information

Image Sourcehoopla
First LoadedJul 20, 2023
Last UsedDec 16, 2023

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    [synopsis] => Microhydrodynamics concerns the flow and related phenomena pertinent to the motion of small particles suspended in viscous fluids. This text focuses on determining the motion of a particle or particles through a viscous fluid in bounded and unbounded flow. Its central theme is the mobility relation between particle motion and forces. Microhydrodynamics: Principles and Selected Applications functions as a manual that explains methods for solving particulate flows at low-Reynolds number, from analytical to computational methods. The ever-increasing growth in computational power has resulted in a similar growth in the range of solvable problems in microhydrodynamics. Suitable for graduate students in engineering and applied mathematics, this text treats the mathematical foundations and highlights the interplay of both mathematical and physical insights, guiding readers through single particle theory and problems related to multiparticle analyses.
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