COLLEGE PHYSICS
COLLEGE PHYSICS
2nd Edition
ISBN: 9781464196393
Author: Freedman
Publisher: MAC HIGHER
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Chapter 8, Problem 99QAP
To determine

The change of the angular speed station with the first wave of evacuees

Expert Solution & Answer
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Answer to Problem 99QAP

The change of the angular speed station with the first wave of evacuees = 1.6×103π rad/s

Explanation of Solution

Given info:

Mass of the station = 1.0*1010 kg

Radius of the station = 1.8 km

Rotation rate of the station = 2π rad/min

Mass of an escape pod = 4.0*105 kg

Formula used:

  L1=I1ω1

  L1= Initial angular momentum

  I1= Initial moment of inertia

  ω1= Initial angular frequency

  L2=I2ω2

  L2= New angular momentum

  I2= New moment of inertia

  ω2= New angular frequency

  I1=12m1r12

  I1= Initial moment of inertia

  m1= Mass of the station

  r1= Radius of the station

  I2=12m1r12m2r12

  I2= Moment of inertia after the first wave of evacuees

  m1= Mass of the station

  r1= Radius of the station

  m2= Mass if the first wave of escape pods

  Δω=ω2ω1

  Δω= change in the angular speed

  ω1= Initial angular speed

  ω2= New angular speed

Calculation:

Initial moment of inertia,

  I1=12m1r12=12×1.0×1010kg×(1.8×103m)2

New moment of inertia,

  I2=12×m1r12m2r12=[12×1.0×1010kg×(1.8× 103m)2][4.0×105×103kg×(1.8× 103m)2]

Applying conservation of angular momentum,

  L1=L2

  I1ω1=I2ω2

  12×1.0×1010kg×(1.8×103m)2×2π60rad/s=[12×1.0×1010kg×(1.8× 103m)2][4.0×105×103kg×(1.8× 103m)2]×ω2

  ω2=109π3×9.2×109

  ω2=3.6×102πrad/s

Change in angular speed,

  Δω=ω2ω1=(3.6×102πrad/s)(2π/60rad/s)=2.67×103rad/s

Conclusion:

The change of the angular speed station with the first wave of evacuees = 1.6×103π rad/s

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Chapter 8 Solutions

COLLEGE PHYSICS

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