7. A SHO has an energy of 348 J, has a mass of 2.37 kg, and moves with an amplitude of 0.670 m. What is its period of motion? W = 25+ 0.246 What is its maximum speed? 17.1 What is its speed when it is only 0.450 m from equilibrium? 12.7 What is its possible equation of position vs. time? X=067 Sin (25.ut) What is its possible equation of velocity vs. time? V = 17,1 (08 (25.6€) 4 9

Physics for Scientists and Engineers: Foundations and Connections
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Chapter16: Oscillations
Section: Chapter Questions
Problem 8PQ: The expression x = 8.50 cos (2.40 t + /2) describes the position of an object as a function of time,...
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7. A SHO has an energy of 348 J, has a mass of 2.37 kg, and moves with an
amplitude of 0.670 m.
What is its period of motion?
W = 25+
0.246
What is its maximum speed?
17.1
What is its speed when it is only 0.450 m from equilibrium?
12.7
What is its possible equation of position vs. time?
x=067 Sin (25.ut)
What is its possible equation of velocity vs. time?
V=17,1 (03 (25.4t)
4
9
Transcribed Image Text:7. A SHO has an energy of 348 J, has a mass of 2.37 kg, and moves with an amplitude of 0.670 m. What is its period of motion? W = 25+ 0.246 What is its maximum speed? 17.1 What is its speed when it is only 0.450 m from equilibrium? 12.7 What is its possible equation of position vs. time? x=067 Sin (25.ut) What is its possible equation of velocity vs. time? V=17,1 (03 (25.4t) 4 9
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