5. As shown in the figure below, a green bead of mass 25 g slides along a straight wire. The length of the wire from point A to point B is 0.600 m, and point A is 0.200 m higher than point B. A constant friction force of magnitude 0.025 N acts on the bead. (a) If the bead is released from rest at point A, what is its speed at point B? (b) A red bead of mass 25 g slides along a curved wire, subject to a friction force with the same constant magnitude as that on the green bead. If the green and red beads are released simultaneously from rest at point A, which bead reaches point B with a higher speed? Explain. (B
5. As shown in the figure below, a green bead of mass 25 g slides along a straight wire. The length of the wire from point A to point B is 0.600 m, and point A is 0.200 m higher than point B. A constant friction force of magnitude 0.025 N acts on the bead. (a) If the bead is released from rest at point A, what is its speed at point B? (b) A red bead of mass 25 g slides along a curved wire, subject to a friction force with the same constant magnitude as that on the green bead. If the green and red beads are released simultaneously from rest at point A, which bead reaches point B with a higher speed? Explain. (B
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
Chapter7: Conservation Of Energy
Section: Chapter Questions
Problem 20P: As shown in Figure P7.20, a green bead of mass 25 g slides along a straight wire. The length of the...
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Transcribed Image Text:5. As shown in the figure below, a green bead of mass 25 g slides along a straight wire. The
length of the wire from point A to point B is 0.600 m, and point A is 0.200 m higher than point
B. A constant friction force of magnitude 0.025 N acts on the bead.
(a) If the bead is released from rest at point A, what is its speed at point B?
(b) A red bead of mass 25 g slides along a curved wire, subject to a friction force with the same
constant magnitude as that on the green bead. If the green and red beads are released
simultaneously from rest at point A, which bead reaches point B with a higher speed?
Explain.
(B
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