2. A m: 2.0 kg box IS attached to spring. The motion. of the box is simple harmonic motion, The period of the mohon for the box is T=L.6 Sec. At t:0x=0.214 m nd U= -3.07 m/sec %3D a) What is co,the angular bWhat is k,the Spring constant of the owhat is A, the amplitude of the motion in meters? frequency ot the motion inc. n Nim? arring d) What is Vmaxy . e)what 1s E, Theenecgy )what is the phase snitt Øinradians? the maximum speed otthe box of the box in Joules? in misec?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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d. H m: 2.0kg box. Is attached tospring. The motion.
of the box
is
Simple har monic
motion,
The perio d.
At t-0x=0.214 m and U= -3.07 m/sec
of the m on foc the boxs T=l6 sec.
a) What is co,the angular frequency ot the motion in cod
bWhat is k,the spring constant of the
lwhat is A, the amplitude ot the motion in meters?
d)What is Vnmaxy the maxımum speed of the box
e)what Is E,-
) what is the phase snitt Ø inradians?
9) Write down the equatien for Xlt).
n Nim?
spring
in ml sec?
+The energy of the box in Joules?
Transcribed Image Text:d. H m: 2.0kg box. Is attached tospring. The motion. of the box is Simple har monic motion, The perio d. At t-0x=0.214 m and U= -3.07 m/sec of the m on foc the boxs T=l6 sec. a) What is co,the angular frequency ot the motion in cod bWhat is k,the spring constant of the lwhat is A, the amplitude ot the motion in meters? d)What is Vnmaxy the maxımum speed of the box e)what Is E,- ) what is the phase snitt Ø inradians? 9) Write down the equatien for Xlt). n Nim? spring in ml sec? +The energy of the box in Joules?
Expert Solution
Step 1

Given:

The mass of the object is 2 kg.

The time period of the oscillation is 1.6 s.

The position of the object is at t =0 s is 0.214 m.

The velocity of the object at t = 0 s is -3.07 m/s.

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