A cord connected at one end to a block which can slide on an inclined plane has its other end wrapped around a cylinder resting in a depression at the top of the plane as shown in (Figure 1). Correct Part B Determine the speed of the block after it has traveled 1.80 m along the plane, starting from rest. Assume the coefficient of friction between all surfaces is u = 0.0280. Since the block is much lighter than the cylinder, ignore tension in the string when calculating the normal force on the cylinder. Do not ignore tension in the string when calculating the net torque (including friction) on the cylinder. Figure 1 of 1 M= 33 kg R=0.20 m Express your answer using two significant figures. ? m= 3.0 kg 58° v = m/s 27° Submit Previous Answers Request Answer

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Chapter2: Vectors
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Is there any way you could help me solve for the velocity here when taking friction into account?

eriodic Table
A cord connected at one end to a block which can slide on
an inclined plane has its other end wrapped around a
cylinder resting in a depression at the top of the plane as
shown in (Figure 1).
Correct
Part B
Determine the speed of the block after it has traveled 1.80 m along the plane, starting
from rest. Assume the coefficient of friction between all surfaces is u = 0.0280. Since the
block is much lighter than the cylinder, ignore tension in the string when calculating the
normal force on the cylinder. Do not ignore tension in the string when calculating the net
torque (including friction) on the cylinder.
Figure
1 of 1
M = 33 kg
R=0.20 m
Express your answer using two significant figures.
ΑΣφ
m = 3.0 kg
58°
m/s
27°
Submit
Previous Answers Request Answer
Transcribed Image Text:eriodic Table A cord connected at one end to a block which can slide on an inclined plane has its other end wrapped around a cylinder resting in a depression at the top of the plane as shown in (Figure 1). Correct Part B Determine the speed of the block after it has traveled 1.80 m along the plane, starting from rest. Assume the coefficient of friction between all surfaces is u = 0.0280. Since the block is much lighter than the cylinder, ignore tension in the string when calculating the normal force on the cylinder. Do not ignore tension in the string when calculating the net torque (including friction) on the cylinder. Figure 1 of 1 M = 33 kg R=0.20 m Express your answer using two significant figures. ΑΣφ m = 3.0 kg 58° m/s 27° Submit Previous Answers Request Answer
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