2. A 0.025-kg bead slides down a ramp. The ramp is 0.600 m in length and inclined at an angle of 30.0° with the horizontal. The bead starts from rest at the top and experiences a constant friction force of magnitude 0.025 N. The bead continues to move a short distance on the horizontal floor after it leaves the ramp, and then comes to rest. (a)Use energy methods to determine the speed of the bead at the bottom of the ramp. (b)How far does the bead slide on the horizontal floor if it continues to experience a friction force of magnitude 0.025 N?

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
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2. A 0.025-kg bead slides down a ramp. The ramp is 0.600 m in length and
inclined at an angle of 30.0° with the horizontal. The bead starts from rest at the top
and experiences a constant friction force of magnitude 0.025 N. The bead
continues to move a short distance on the horizontal floor after it leaves the ramp,
and then comes to rest. (a)Use energy methods to determine the speed of the bead
at the bottom of the ramp. (b)How far does the bead slide on the horizontal floor if
it continues to experience a friction force of magnitude 0.025 N?
Transcribed Image Text:2. A 0.025-kg bead slides down a ramp. The ramp is 0.600 m in length and inclined at an angle of 30.0° with the horizontal. The bead starts from rest at the top and experiences a constant friction force of magnitude 0.025 N. The bead continues to move a short distance on the horizontal floor after it leaves the ramp, and then comes to rest. (a)Use energy methods to determine the speed of the bead at the bottom of the ramp. (b)How far does the bead slide on the horizontal floor if it continues to experience a friction force of magnitude 0.025 N?
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