A 1.27 kg block B is moving with a speed of 3.09 m/s as it strikes the 0.53 kg sphere A which was at rest. If the coefficient of friction between the block and the floor is μ = 0.25 and the speed of the sphere was 1.28 m/s immediately after impact, compute the time (s) it takes for the block to stop. Round off only on the final answer expressed in 3 decimal places. Add your answer ...

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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When gravitational acceleration is needed, use 9.81
m/s2 or 32.2 ft/s2 whichever is applicable.
Transcribed Image Text:Description When gravitational acceleration is needed, use 9.81 m/s2 or 32.2 ft/s2 whichever is applicable.
A 1.27 kg block B is moving with a speed of 3.09 m/s as it strikes the 0.53 kg sphere A which was at rest. If the coefficient of
friction between the block and the floor is μ = 0.25 and the speed of the sphere was 1.28 m/s immediately after impact, compute
the time (s) it takes for the block to stop. Round off only on the final answer expressed in 3 decimal places.
Add your answer
Transcribed Image Text:A 1.27 kg block B is moving with a speed of 3.09 m/s as it strikes the 0.53 kg sphere A which was at rest. If the coefficient of friction between the block and the floor is μ = 0.25 and the speed of the sphere was 1.28 m/s immediately after impact, compute the time (s) it takes for the block to stop. Round off only on the final answer expressed in 3 decimal places. Add your answer
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