COLLEGE PHYICS
COLLEGE PHYICS
5th Edition
ISBN: 9781266793394
Author: GIAMBATTISTA
Publisher: MCG
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Chapter 6, Problem 94P

(a)

To determine

The spring constant of the spring.

(a)

Expert Solution
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Answer to Problem 94P

The spring constant of the spring is 24.83N/m_.

Explanation of Solution

According to law of conservation of energy.

  Uplastic=Uelastic12kx2=mgΔh        (I)

Here, k is the spring constant, x is the displacement, m is the mass, g is the acceleration due to gravity, and Δh is the height.

Rearrange equation (I) to obtain an expression for k.

  k=2mgΔhx2        (II)

Conclusion:

Substitute, 780N for mg, Δh30m for x, and 182m67m for Δh, in equation (II) to find k.

  k=2(780N)(182m67m)(182m67m30m)2=24.83N/m

Therefore, the spring constant of the spring is 24.83N/m_.

(b)

To determine

The speed of the jumper when he reaches height of 92m above the bottom of the gorge.

(b)

Expert Solution
Check Mark

Answer to Problem 94P

The speed of the jumper when he reaches height of 92m above the bottom of the gorge is 23.76m/s_.

Explanation of Solution

Write the expression for potential energy.

  Upotential=mgΔh        (III)

Here, m is the mass, g is the acceleration due to gravity, Δh is the height.

Write the expression for energy of the spring.

  Uspring=12kx2        (IV)

Write the expression for change in energy.

  Δk=UpotentialUelastic        (V)

Write the expression for kinetic energy.

  Δk=12mυ2        (VI)

Here, υ is the speed.

Rearrange equation (VI) to obtain an expression for υ.

  υ=2Δkm        (VII)

Conclusion:

Substitute, 780N for mg, and 182m92m for Δh in equation (III).

  Upotential=(780N)(182m93m)=70200J

Substitute, 24.83N/m for k, and 92m30m for x in equation (IV).

  Uspring=12(24.83N/m)(92m30m)2=47723J

Substitute, 70200J for Upotential, 47723J Uspring in equation (V).

  Δk=70200J47723J=22477J

Substitute, 79.6kg for m, and 22477J for Δk in equation (VII).

  υ=2(22477J)79.6kg=23.76m/s

Therefore, the speed of the jumper when he reaches height of 92m above the bottom of the gorge is 23.76m/s_.

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COLLEGE PHYICS

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