The motor at the bottom of the illustration pulls the red block (m = 2 kg) downward through the silver chain with a force F =[10t + 3] N, where t is in seconds. If a cord stretches over the black/ gray pulley connecting the red block to the green block (m = 5 kg), determine the following: • The tension in the rope connecting the blocks whent=3s. • An expression for the acceleration of the red block a(t). This expression should depend on time only. An expression for the velocity of the red block v(t). This expression should depend on time only. An expression for the position of the red block s(t). This expression should depend on time only. The red block starts from rest at some initial position So.

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
Chapter4: The Laws Of Motion
Section: Chapter Questions
Problem 39P
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The motor at the bottom of the illustration pulls
the red block (m = 2 kg) downward through the
silver chain with a force F = [10t + 3] N, where t is
in seconds. If a cord stretches over the black/
gray pulley connecting the red block to the green
block (m = 5 kg), determine the following:
Pulley
The tension in the rope connecting the
blocks when t= 3s.
• An expression for the acceleration of the
red block a(t). This expression should
depend on time only.
An expression for the velocity of the red
block v(t). This expression should depend
on time only.
An expression for the position of the red
block s(t). This expression should depend
on time only.
Motor-
The red block starts from rest at some initial
position So.
Transcribed Image Text:The motor at the bottom of the illustration pulls the red block (m = 2 kg) downward through the silver chain with a force F = [10t + 3] N, where t is in seconds. If a cord stretches over the black/ gray pulley connecting the red block to the green block (m = 5 kg), determine the following: Pulley The tension in the rope connecting the blocks when t= 3s. • An expression for the acceleration of the red block a(t). This expression should depend on time only. An expression for the velocity of the red block v(t). This expression should depend on time only. An expression for the position of the red block s(t). This expression should depend on time only. Motor- The red block starts from rest at some initial position So.
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