2. A carousel is initially at rest. At t= 0 it is given a constant angular acceleration a = 0.060 rad/s², which increases its angular velocity for 8 s. At t = 8 s: a) What is the angular velocity of the carousel? 06-8=.48 rud/ b) What is the linear velocity of a child riding the carousel who is located 2.5 m from the center of the ride? Verw v=.48.2.5 1.2 m/ c) What is the linear (tangential) acceleration of the child? d) What is the centripetal (radial) acceleration of the child? q₂ = .576 m/² 1.2 2.5 e) What is the magnitude of the total acceleration of the child?

College Physics
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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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2. A carousel is initially at rest. At t= 0 it is given a constant angular acceleration a = 0.060
rad/s², which increases its angular velocity for 8 s. At t = 8 s:
a) What is the angular velocity of the carousel?
06-8=.48 rud/
b) What is the linear velocity of a child riding the carousel who is located 2.5 m from the center
of the ride?
Verw
V=.48.25
1.2 m/
c) What is the linear (tangential) acceleration of the child?
=
d) What is the centripetal (radial) acceleration of the child?
a₂:
3.576/2
2
1.2
2.5
e) What is the magnitude of the total acceleration of the child?
Transcribed Image Text:2. A carousel is initially at rest. At t= 0 it is given a constant angular acceleration a = 0.060 rad/s², which increases its angular velocity for 8 s. At t = 8 s: a) What is the angular velocity of the carousel? 06-8=.48 rud/ b) What is the linear velocity of a child riding the carousel who is located 2.5 m from the center of the ride? Verw V=.48.25 1.2 m/ c) What is the linear (tangential) acceleration of the child? = d) What is the centripetal (radial) acceleration of the child? a₂: 3.576/2 2 1.2 2.5 e) What is the magnitude of the total acceleration of the child?
Expert Solution
Step 1

Initial angular velocity (ωo) = 0 radsangular acceleration (α) = 0.06 rads2time (t) = 8 sec 

 

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