In the figure, two blocks, of masses m=1.69 (kg) and M=3.65 (kg), are connected by a light string that passes over a frictionless pulley of moment of inertia I=0.0040 (kg⋅m2) and radius R=0.49 (m). The coefficient of friction for the tabletop is μk=0.11. The blocks are released from rest. Using energy methods, find the angular speed of the pulley ω\omegaω just as the upper block has moved by Δs=0.49 (m). Use g=9.8 (m/s2) and give your answer in (rad/s).

University Physics Volume 2
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ISBN:9781938168161
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Chapter12: Sources Of Magnetic Fields
Section: Chapter Questions
Problem 12.8CYU: Check your Understanding Repeat the calculations from the previous example for I0=0.040A .
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In the figure, two blocks, of masses m=1.69 (kg) and M=3.65 (kg), are connected by a light string that passes over a frictionless pulley of moment of inertia I=0.0040 (kg⋅m2) and radius R=0.49 (m). The coefficient of friction for the tabletop is μk=0.11. The blocks are released from rest. Using energy methods, find the angular speed of the pulley ω\omegaω just as the upper block has moved by Δs=0.49 (m). Use g=9.8 (m/s2) and give your answer in (rad/s).

Vo=0
V
M
M
IR
uk
As
to: initial state
m
t: current state
V
As
m
3
Transcribed Image Text:Vo=0 V M M IR uk As to: initial state m t: current state V As m 3
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