A small bead with a mass of 5 grams slides without friction on a thin, rigid wire as shown in the figure. Near the bottom, the wire is shaped into a circular loop-the-loop of radius R = 10 cm. The bead, initially at rest, is released from a height h h R 35 cm. a) Calculate the speed of the bead at point A? b) Calculate the magnitude and direction of the normal force on , the bead at point A?

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 3P: Review. A bead slides without friction around a loop-the-loop (Fig. P7.3). The bead is released from...
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A small bead with a mass of 5 grams slides without friction on
a thin, rigid wire as shown in the figure. Near the bottom, the
wire is shaped into a circular loop-the-loop of radius R
10 cm. The bead, initially at rest, is released from a height h =
35 cm. a) Calculate the speed of the bead at point A? b)
Calculate the magnitude and direction of the normal force on
the bead at point A?
h
R
Transcribed Image Text:A small bead with a mass of 5 grams slides without friction on a thin, rigid wire as shown in the figure. Near the bottom, the wire is shaped into a circular loop-the-loop of radius R 10 cm. The bead, initially at rest, is released from a height h = 35 cm. a) Calculate the speed of the bead at point A? b) Calculate the magnitude and direction of the normal force on the bead at point A? h R
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