A block of mass 700 g is placed at rest on a relaxed vertical spring of length 20 cm which exerts an upward force of Fy -3 x 105 x s³, where s is the stretch. Write a time step of 0.05 s, calculate the length L of the spring and the y-component of the velocity of the block at t = 0.05 s and t = 0.1 S.

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter2: One Dimensional Motion
Section: Chapter Questions
Problem 17PQ: The position of a particle attached to a vertical spring is given by y=(y0cost)j. The y axis points...
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2. A block of mass 700 g is placed at rest on a relaxed vertical spring of length 20 cm which exerts an
upward force of Fy = -3 x 105 x s³, where s is the stretch. Write a time step of 0.05 s, calculate
the length L of the spring and the y-component of the velocity of the block at t = 0.05 s and t = 0.1
S.
Transcribed Image Text:2. A block of mass 700 g is placed at rest on a relaxed vertical spring of length 20 cm which exerts an upward force of Fy = -3 x 105 x s³, where s is the stretch. Write a time step of 0.05 s, calculate the length L of the spring and the y-component of the velocity of the block at t = 0.05 s and t = 0.1 S.
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