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|a 6317128803112
|b McGraw-Hill Education LLC
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|a TA347.F5
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|a 620.0015
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|a Jones, Simon.
|u Associate Professor of Mechanical Engineering, Rose-Hulman Institute of Technology.
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|a Finite Element Methods Problem 4.16 :
|b Approximating the solution of a coupled system of differential equation using the weak form, Lagrange polynomials, and the six-step finite element approach. /
|c Simon Jones.
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|a New York, N.Y. :
|b McGraw-Hill Education LLC.,
|c c2022.
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|a 1 online resource (1 video file, approximately 21 mins. 01 secs.):
|b digital, .flv file, sound.
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|a 002101
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|a two-dimensional moving image
|b tdi
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|a computer
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|2 rdamedia
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|3 internet archive
|a online resource
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|a digital
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|a video file
|b MPEG-4
|b Flash
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|a McGraw-Hill's AccessEngineering
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|a Title from title frames.
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|a The approximate solution to a system of coupled second-order linear differential equation representing laminar flow of two fluids is found via the finite element method. The weak forms of the two equations are found, discretized using Lagrange interpolation functions, and subsequently solved using the six-step finite element method.
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|a Mode of access: World Wide Web.
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|a System requirements: Adobe Flash Player.
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|a In English.
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|a Description based on online resource; title from title screen (Internet Archive, viewed December 22, 2022)
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|a Finite element method.
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|a Differential equations.
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|a Lagrange problem.
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|a Internet videos
|2 lcgft
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|a McGraw-Hill Education LLC.
|e publisher.
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|t Introduction to the Finite Element Method, 4th Edition.
|d New York, N.Y. : McGraw-Hill Education, 2022
|z 9781259861901
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|a McGraw-Hill's AccessEngineering.
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|u https://accessengineeringlibrary.uam.elogim.com/content/video/V6317128803112
|z Texto completo
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