12-23. A particle is moving along a straight line such that its acceleration is defined as a = (-2v) m/s², where v is in meters per second. If v = 20 m/s when s = 0 and t = 0, determine the particle's position, velocity, and acceleration as functions of time.
12-23. A particle is moving along a straight line such that its acceleration is defined as a = (-2v) m/s², where v is in meters per second. If v = 20 m/s when s = 0 and t = 0, determine the particle's position, velocity, and acceleration as functions of time.
Engineering Fundamentals: An Introduction to Engineering (MindTap Course List)
5th Edition
ISBN:9781305084766
Author:Saeed Moaveni
Publisher:Saeed Moaveni
Chapter9: Mass And Mass-related Variables In Engineering
Section: Chapter Questions
Problem 39P
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
Transcribed Image Text:12-23. A particle is moving along a straight line such that its acceleration is defined as a = (-2v) m/s², where v is in meters per second. If v = 20 m/s when s = 0 and t = 0, determine the particle's position, velocity,
and acceleration as functions of time.
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