A block of mass m = 16.8 kg is sliding on a surface with initial velocity v = 23.2 m/s. The block has a coefficient of kinetic friction uk respect to the surface and is being pushed by a force of magnitude F in the direction of its motion. Due to kinetic friction, the block is slowing down. 0.426 with 54.3 N How long will it take for the block to come to a stop?

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter5: More Applications Of Newton’s Laws
Section: Chapter Questions
Problem 64P: If a single constant force acts on an object that moves on a straight line, the objects velocity is...
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A block of mass m =
16.8 kg is sliding on a surface with initial velocity v =
23.2 m/s. The block has a coefficient of kinetic friction uk
respect to the surface and is being pushed by a force of magnitude F
in the direction of its motion. Due to kinetic friction, the block is slowing down.
How long will it take for the block to come to a stop?
0.426 with
54.3 N
Transcribed Image Text:F M A block of mass m = 16.8 kg is sliding on a surface with initial velocity v = 23.2 m/s. The block has a coefficient of kinetic friction uk respect to the surface and is being pushed by a force of magnitude F in the direction of its motion. Due to kinetic friction, the block is slowing down. How long will it take for the block to come to a stop? 0.426 with 54.3 N
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