20f7: A 4kg circular ring, shown in the figure, rolls down the inclined plane without slipping with an initial angular velocity of 10 rad/s @ s=0. Find the translational and angular velocity of the ring after it has traveled the distance s = 2m. μ = 0.25, k = 0.2. For a ring: IG : mr². =

Elements Of Electromagnetics
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2of7: A 4kg circular ring, shown in the figure, rolls down the inclined
plane without slipping with an initial angular velocity of 10 rad/s @
s=0. Find the translational and angular velocity of the ring after it has
traveled the distance s = 2m. µs = 0.25, µk = 0.2. For a ring: IG =
mr2.
G
0.25m
i
Ref
f
30°
O a. v=4m/s, w=4 rad/s
O b. v=16m/s, w=4 rad/s
O . v=4m/s, w=16 rad/s
O d. v=16m/s, w=16 rad/s
Transcribed Image Text:2of7: A 4kg circular ring, shown in the figure, rolls down the inclined plane without slipping with an initial angular velocity of 10 rad/s @ s=0. Find the translational and angular velocity of the ring after it has traveled the distance s = 2m. µs = 0.25, µk = 0.2. For a ring: IG = mr2. G 0.25m i Ref f 30° O a. v=4m/s, w=4 rad/s O b. v=16m/s, w=4 rad/s O . v=4m/s, w=16 rad/s O d. v=16m/s, w=16 rad/s
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