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|a 2001147c99712_52001.19
|b McGraw-Hill Education LLC
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|b eng
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|a eng
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|k 2013
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|a AS36
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|a 624.1/7
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|a Pitarresi, James M.,
|u Distinguished Teaching Professor and Department Chair, Mechanical Engineering, Binghamton University, State University of New York.
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|a Schaum's Strength of Materials Problem 4.15 /
|c James M. Pitarresi.
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|a New York, N.Y. :
|b McGraw-Hill Education LLC.,
|c c2013.
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|a 1 online resource (1 video file, approximately 1 min. 50 sec.):
|b digital, .flv file, sound
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|a two-dimensional moving image
|b tdi
|2 rdacontent
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|a computer
|b c
|2 rdamedia
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|3 internet archive
|a online resource
|b cr
|2 rdacarrier
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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 Originally produced by James M. Pitarresi, Ph.D. in 2013.
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|a This video demonstrates how to determine the maximum permissible internal pressure in an idealized spherical pressure tank. The tank geometry, yield stress and factor of safety for the material are specified.
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|a System requirements: Adobe Flash Player.
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|a Mode of access: World Wide Web.
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|a In English.
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|a Description based on online resource; title from title screen (Internet Archive, viewed March 29, 2016)
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|a Composite materials.
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|a Pressure hulls.
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|a Internet videos.
|2 lcgft
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|a Short films.
|2 lcgft
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|a McGraw-Hill Education LLC.
|e publisher.
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|t Schaum?s Outline of Strength of Materials, Fifth Edition
|d New York, N.Y. : McGraw-Hill Education, 2013
|z 9780071635073
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830 |
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|a McGraw-Hill's AccessEngineering.
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|u https://accessengineeringlibrary.uam.elogim.com/content/video/V2219503899001
|z Texto completo
|