Frictional torque causes a disk to decelerate from an angular speed of 4.10 rad/s at  t = 0  to 1.30 rad/s at  t = 4.70 s.  The equation describing the angular speed of the wheel during this time interval is given by  d? dt = ω0e−bt,  where b and ω0 are constants. (a) What are the values of b and  ω0  during this time interval? b   =  s−1 ω0   =  rad/s (b) What is the magnitude of the angular acceleration of the disk at  t = 4.70 s?  rad/s2 (c) How many revolutions does the disk make during the interval  t = 0  to  t = 4.70 s?  rev

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Chapter1: Units, Trigonometry. And Vectors
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Frictional torque causes a disk to decelerate from an angular speed of 4.10 rad/s at 

t = 0

 to 1.30 rad/s at 

t = 4.70 s.

 The equation describing the angular speed of the wheel during this time interval is given by 

d?
dt
 = ω0e−bt,

 where b and ω0 are constants.

(a) What are the values of b and 
ω0
 during this time interval?
b   =  s−1
ω0   =  rad/s


(b) What is the magnitude of the angular acceleration of the disk at 
t = 4.70 s?

 rad/s2

(c) How many revolutions does the disk make during the interval 
t = 0
 to 
t = 4.70 s?

 rev
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