A package is oscillating on a spring scale with a period of 4.60 s. At time t = 0.00 s the package has zero speed and is at x = 8.30 cm. At what time after t = 0.00 s will the package fırst be at x = 4.15 cm? Hint: Graph the motion and try to answer the problem with that. You can also do this algebraically from the position equation, but a graphical solution is quicker and more illuminating. The clue is that the position x = 4.15 cm is half the amplitude. 0.575 s 1.15 s O 1.30 s 0.767 s

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
Chapter12: Oscillatory Motion
Section12.2: Analysis Model: Particle In Simple Harmonic Motion
Problem 12.4QQ: An object of mass m is hung from a spring and set into oscillation. The period of the oscillation is...
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A package is oscillating on a spring scale with a period of 4.60 s. At time t = 0.00 s the package has zero speed and is at x = 8.30 cm. At what
time after t = 0.00 s will the package fırst be at x = 4.15 cm?
Hint: Graph the motion and try to answer the problem with that. You can also do this algebraically from the position equation, but a graphical
solution is quicker and more illuminating. The clue is that the position x = 4.15 cm is half the amplitude.
0.575 s
1.15 s
O 1.30 s
O 0.767 s
Transcribed Image Text:A package is oscillating on a spring scale with a period of 4.60 s. At time t = 0.00 s the package has zero speed and is at x = 8.30 cm. At what time after t = 0.00 s will the package fırst be at x = 4.15 cm? Hint: Graph the motion and try to answer the problem with that. You can also do this algebraically from the position equation, but a graphical solution is quicker and more illuminating. The clue is that the position x = 4.15 cm is half the amplitude. 0.575 s 1.15 s O 1.30 s O 0.767 s
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