Differential Forms with Applications to the Physical Sciences
(eBook)

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Published
Dover Publications, 2012.
Format
eBook
Status
Available Online

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Language
English
ISBN
9780486139616

Syndetics Unbound

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Citations

APA Citation, 7th Edition (style guide)

Harley Flanders., & Harley Flanders|AUTHOR. (2012). Differential Forms with Applications to the Physical Sciences . Dover Publications.

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

Harley Flanders and Harley Flanders|AUTHOR. 2012. Differential Forms With Applications to the Physical Sciences. Dover Publications.

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

Harley Flanders and Harley Flanders|AUTHOR. Differential Forms With Applications to the Physical Sciences Dover Publications, 2012.

MLA Citation, 9th Edition (style guide)

Harley Flanders, and Harley Flanders|AUTHOR. Differential Forms With Applications to the Physical Sciences Dover Publications, 2012.

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 ID05cd0f01-3ad3-a283-bc59-2a1ce47ff897-eng
Full titledifferential forms with applications to the physical sciences
Authorflanders harley
Grouping Categorybook
Last Update2023-06-21 12:01:05PM
Last Indexed2024-04-17 02:05:32AM

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Image Sourcehoopla
First LoadedFeb 18, 2023
Last UsedSep 17, 2023

Hoopla Extract Information

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    [synopsis] => This excellent text introduces the use of exterior differential forms as a powerful tool in the analysis of a variety of mathematical problems in the physical and engineering sciences. Requiring familiarity with several variable calculus and some knowledge of linear algebra and set theory, it is directed primarily to engineers and physical scientists, but it has also been used successfully to introduce modern differential geometry to students in mathematics. Chapter I introduces exterior differential forms and their comparisons with tensors. The next three chapters take up exterior algebra, the exterior derivative and their applications. Chapter V discusses manifolds and integration, and Chapter VI covers applications in Euclidean space. The last three chapters explore applications to differential equations, differential geometry, and group theory.
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