An integrated development of modeling-and problem-solving techniques for particles and rigid bodies emphasizing the use of free-body diagrams, vector algebra, and computer simulation. Topics covered include the kinematics and kinetics of translational, rotational, and general plane motion, energy and momentum methods.
Spring | Summer | Fall | ||
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(Session 1) | (Session 2) | |||
2023 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2022 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2021 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2020 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2019 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2018 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2017 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2016 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2015 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2014 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2013 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2012 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2011 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2010 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2009 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2008 |
Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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Engineering Dynamics (4c)
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2007 |
Engineering Dynamics (4c)
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