FlipIt for College Physics (Algebra Version - Six Months Access)
FlipIt for College Physics (Algebra Version - Six Months Access)
17th Edition
ISBN: 9781319032432
Author: Todd Ruskell
Publisher: W.H. Freeman & Co
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Chapter 8, Problem 73QAP
To determine

  (a)

Average angular acceleration of the merry-go-round.

Expert Solution
Check Mark

Answer to Problem 73QAP

  α=0.042rads2

Explanation of Solution

Given:

Initial angular velocity of roulette wheel =ω0z=0rpm

Final angular velocity of roulette wheel =ωz=18rpm

Time =43s

Formula used:

Equation for constant angular acceleration,

  ωz=ω0z+αt...(1)

( ωz= Angular velocity at time =t, ω0z= Angular velocity at time=0, α= constant angular acceleration, t= time)

Calculation:

Consider the rotational motion of roulette wheel,

Applying the (1) equation,

  ωz=ω0z+αt

Let's substitute the values,

  (18rpm)=(0rpm)+(α)43s

  α=18rpm43s

  α=0.042rads2

Conclusion:

Average angular acceleration of the merry-go-round. =0.042rads2

To determine

  (b)

Angular displacement of the merry-go-round during this time interval.

Expert Solution
Check Mark

Answer to Problem 73QAP

Angular displacement =27rad

Explanation of Solution

Given:

Initial angular velocity of roulette wheel =ω0z=0rpm

Final angular velocity of roulette wheel =ωz=18rpm

Time =43s

Angular acceleration of roulette wheel =α = 0.42rads2

Formula used:

Equation for constant angular acceleration,

  θ=θo+ω0zt+12αt2...(2)

( θ= Angular position at time= t, θo= Angular position at time=0, ω0z= Angular velocity at time=0, α= constant angular acceleration, t= time)

Calculation:

Consider the rotational motion of roulette wheel,

Applying the (2) equation,

  θ=θo+ω0zt+12αt2

Let's substitute the values,

  θ=θo+ω0zt+12αt2

  θ=(0)+(0rpm)(43s)+12(1843rads2)(43s)(43s)

  θ=12*18(43)rad

  θ=387rad

It means merry-go-round goes 1 round and 27 radians in distance.

Accordingly, angular displacement is 27rad.

Conclusion:

Angular displacement of the merry-go-round during this time interval. =27rad

To determine

  (c)

Maximum tangential speed of the child if she rides on the edge of platform

Expert Solution
Check Mark

Answer to Problem 73QAP

Maximum tangential speed = 36ms1

Explanation of Solution

Given:

Initial angular velocity of roulette wheel =ω0z=0rpm

Final angular velocity of roulette wheel =ωz=18rpm

Time =43s

Angular acceleration of roulette wheel =α = 0.42rads2

Radius of the merry-go-round = =2.00m

Formula used:

Equation for maximum tangential speed of an object if it on the edge of disk platform,

  vmaximum=rωmaximum...(1)

( vmaximum= Maximum linear velocity, r= radius of circle, ωmaximum= maximum angular velocity which taken in that given time)

Calculation:

Consider the rotational motion of child,

Applying the (1) equation,

  vmaximum=rωmaximum

Let's substitute the values,

  vmaximum=rωmaximum

  vmaximum=(2.00m)(18rads1)

  vmaximum=36ms1

Conclusion:

Maximum tangential speed of the child if she rides on the edge of platform =36ms1

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Chapter 8 Solutions

FlipIt for College Physics (Algebra Version - Six Months Access)

Ch. 8 - Prob. 11QAPCh. 8 - Prob. 12QAPCh. 8 - Prob. 13QAPCh. 8 - Prob. 14QAPCh. 8 - Prob. 15QAPCh. 8 - Prob. 16QAPCh. 8 - Prob. 17QAPCh. 8 - Prob. 18QAPCh. 8 - Prob. 19QAPCh. 8 - Prob. 20QAPCh. 8 - Prob. 21QAPCh. 8 - Prob. 22QAPCh. 8 - Prob. 23QAPCh. 8 - Prob. 24QAPCh. 8 - Prob. 25QAPCh. 8 - Prob. 26QAPCh. 8 - Prob. 27QAPCh. 8 - Prob. 28QAPCh. 8 - Prob. 29QAPCh. 8 - Prob. 30QAPCh. 8 - Prob. 31QAPCh. 8 - Prob. 32QAPCh. 8 - Prob. 33QAPCh. 8 - Prob. 34QAPCh. 8 - Prob. 35QAPCh. 8 - Prob. 36QAPCh. 8 - Prob. 37QAPCh. 8 - Prob. 38QAPCh. 8 - Prob. 39QAPCh. 8 - Prob. 40QAPCh. 8 - Prob. 41QAPCh. 8 - Prob. 42QAPCh. 8 - Prob. 43QAPCh. 8 - Prob. 44QAPCh. 8 - Prob. 45QAPCh. 8 - Prob. 46QAPCh. 8 - Prob. 47QAPCh. 8 - Prob. 48QAPCh. 8 - Prob. 49QAPCh. 8 - Prob. 50QAPCh. 8 - Prob. 51QAPCh. 8 - Prob. 52QAPCh. 8 - Prob. 53QAPCh. 8 - Prob. 54QAPCh. 8 - Prob. 55QAPCh. 8 - Prob. 56QAPCh. 8 - Prob. 57QAPCh. 8 - Prob. 58QAPCh. 8 - Prob. 59QAPCh. 8 - Prob. 60QAPCh. 8 - Prob. 61QAPCh. 8 - Prob. 62QAPCh. 8 - Prob. 63QAPCh. 8 - Prob. 64QAPCh. 8 - Prob. 65QAPCh. 8 - Prob. 66QAPCh. 8 - Prob. 67QAPCh. 8 - Prob. 68QAPCh. 8 - Prob. 69QAPCh. 8 - Prob. 70QAPCh. 8 - Prob. 71QAPCh. 8 - Prob. 72QAPCh. 8 - Prob. 73QAPCh. 8 - Prob. 74QAPCh. 8 - Prob. 75QAPCh. 8 - Prob. 76QAPCh. 8 - Prob. 77QAPCh. 8 - Prob. 78QAPCh. 8 - Prob. 79QAPCh. 8 - Prob. 80QAPCh. 8 - Prob. 81QAPCh. 8 - Prob. 82QAPCh. 8 - Prob. 83QAPCh. 8 - Prob. 84QAPCh. 8 - Prob. 85QAPCh. 8 - Prob. 86QAPCh. 8 - Prob. 87QAPCh. 8 - Prob. 88QAPCh. 8 - Prob. 89QAPCh. 8 - Prob. 90QAPCh. 8 - Prob. 91QAPCh. 8 - Prob. 92QAPCh. 8 - Prob. 93QAPCh. 8 - Prob. 94QAPCh. 8 - Prob. 95QAPCh. 8 - Prob. 96QAPCh. 8 - Prob. 97QAPCh. 8 - Prob. 98QAPCh. 8 - Prob. 99QAPCh. 8 - Prob. 100QAPCh. 8 - Prob. 101QAPCh. 8 - Prob. 102QAPCh. 8 - Prob. 103QAPCh. 8 - Prob. 104QAPCh. 8 - Prob. 105QAPCh. 8 - Prob. 106QAPCh. 8 - Prob. 107QAPCh. 8 - Prob. 108QAPCh. 8 - Prob. 109QAPCh. 8 - Prob. 110QAPCh. 8 - Prob. 111QAPCh. 8 - Prob. 112QAPCh. 8 - Prob. 113QAPCh. 8 - Prob. 114QAPCh. 8 - Prob. 115QAPCh. 8 - Prob. 116QAPCh. 8 - Prob. 117QAPCh. 8 - Prob. 118QAPCh. 8 - Prob. 119QAPCh. 8 - Prob. 120QAPCh. 8 - Prob. 121QAPCh. 8 - Prob. 122QAPCh. 8 - Prob. 123QAPCh. 8 - Prob. 124QAPCh. 8 - Prob. 125QAPCh. 8 - Prob. 126QAPCh. 8 - Prob. 127QAP
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