The acceleration of a rocket traveling upward is given by a = (6 + 0.02y) m/s2, where y is in meters. Determine the velocity of the rocket after reaching an altitude of y = 100 %3D %3D m. Initially, v = 0 and y = 0 when t = 0. 24.27 m/s 32.47 m/s 42.37 m/a O 37.42 m/s
The acceleration of a rocket traveling upward is given by a = (6 + 0.02y) m/s2, where y is in meters. Determine the velocity of the rocket after reaching an altitude of y = 100 %3D %3D m. Initially, v = 0 and y = 0 when t = 0. 24.27 m/s 32.47 m/s 42.37 m/a O 37.42 m/s
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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Topic; dynamics of rigid bodies
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
Transcribed Image Text:The acceleration of a rocket traveling upward is given by a = (6 + 0.02y) m/s2, where y
is in meters. Determine the velocity of the rocket after reaching an altitude of y = 100
%3D
m. Initially, v = 0 and y = 0 when t = 0.
%3D
24.27 m/s
32.47 m/s
42.37 m/a
O 37.42 m/s
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