1. The acceleration of a particle is directly proportional to time, t, i.e., a= at where a is a constant. At t = 0 s, the position of the particle is -150 mm. Knowing that v = 200 mm/s and x = 75 mm whent = 3 s, determine the position and velocity when t = 5 s.

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter1: Introduction To Statics
Section: Chapter Questions
Problem 1.19P: Plot the earths gravitational acceleration g(m/s2) against the height h (km) above the surface of...
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moments = 0) in order to determine a force or moment requires a complete free body diagram.
Absence of a free body diagram may result in a grade of 'O' for the problem.
%3D
1. The acceleration of a particle is directly proportional to time, t, i.e., a = at where a is a
constant. At t = 0 s, the position of the particle is -150 mm. Knowing that v = 200 mm/s and x =
75 mm whent = 3 s, determine the position and velocity when t = 5 s.
Transcribed Image Text:moments = 0) in order to determine a force or moment requires a complete free body diagram. Absence of a free body diagram may result in a grade of 'O' for the problem. %3D 1. The acceleration of a particle is directly proportional to time, t, i.e., a = at where a is a constant. At t = 0 s, the position of the particle is -150 mm. Knowing that v = 200 mm/s and x = 75 mm whent = 3 s, determine the position and velocity when t = 5 s.
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