25 sin 14t cm; R = 14 5 V809 cm; wo = 14 rad/s; T = n/7 s; 14 6.1.5 (p. 278) y = 10 cos 14t + O 2 .177 rad - 10.12° C/G| An object stretches a spring 5 cm in equilibrium. It is initially displaced 10 cm above 5. equilibrium and given an upward velocity of .25 m/s. Find and graph its displacement for t > 0. Find the frequency, period, amplitude, and phase angle of the motion.

College Physics
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ISBN:9781938168000
Author:Paul Peter Urone, Roger Hinrichs
Publisher:Paul Peter Urone, Roger Hinrichs
Chapter25: Geometric Optics
Section: Chapter Questions
Problem 28CQ: If you wish to see your entire body in a flat minor (from head to toe), how tall should the minor...
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In the following exercises assume that there's no damping.

25
sin 14t cm; R =
14
5
V809 cm; wo = 14 rad/s; T = n/7 s;
14
6.1.5 (p. 278) y = 10 cos 14t +
O 2 .177 rad - 10.12°
Transcribed Image Text:25 sin 14t cm; R = 14 5 V809 cm; wo = 14 rad/s; T = n/7 s; 14 6.1.5 (p. 278) y = 10 cos 14t + O 2 .177 rad - 10.12°
C/G| An object stretches a spring 5 cm in equilibrium. It is initially displaced 10 cm above
5.
equilibrium and given an upward velocity of .25 m/s. Find and graph its displacement for t > 0.
Find the frequency, period, amplitude, and phase angle of the motion.
Transcribed Image Text:C/G| An object stretches a spring 5 cm in equilibrium. It is initially displaced 10 cm above 5. equilibrium and given an upward velocity of .25 m/s. Find and graph its displacement for t > 0. Find the frequency, period, amplitude, and phase angle of the motion.
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