Physics: Principles with Applications
Physics: Principles with Applications
6th Edition
ISBN: 9780130606204
Author: Douglas C. Giancoli
Publisher: Prentice Hall
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Question
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Chapter 11, Problem 42P

(a)

To determine

To Find: The speed of the pulse.

(a)

Expert Solution
Check Mark

Answer to Problem 42P

The speed of the pulse is 77.5 m/s

Explanation of Solution

Given:

Length of the steel cable,  L = 620 m 

Distance, Δx = 2×L

Diameter of steel cable, d = 1.5 cm = 0.015 m

Time taken to return, Δt = 16 s

Formula used:

Speed of the wave pulse is obtained by the following formula

  v = ΔxΔt

Here,

  v is speed of wave pulse.

  Δx is the distance travelled by the pulse.

and Δt is the time taken by the pulse to return.

Calculation:

It is observed that the wave pulse travels twice the length of the cable. Substitute the given values in the above equation,

  v = 2×LΔt = 2×62016 = 77.5 m/s 

Conclusion:

Thus, the speed of the pulse is 77.5 m/s .

(b)

To determine

To Find: The tension in the cable.

(b)

Expert Solution
Check Mark

Answer to Problem 42P

The tension in the cable is 8.3×103 N

Explanation of Solution

Given:

Length of the steel cable, L = 620 m 

Diameter of steel cable, d = 1.5 cm = 0.015 m

Speed of the wave pulse, v = 77.5 m/s

Density of steel, ρ=7.8×103kg/m3

Formula used:

The tension in the cable is calculated by the following formula,

  v = T(mL) 

Here,

  T is tension in the cord,

   m is the mass of cord,

  L is the length of cord.

The expression for the density.

  ρ = massVolume = mA×L = mL×1A

The expression for the Area of cross-section of steel cable.

Area, A = π4×d2

Calculation:

Calculate the area of cross-section of the cable.

  Area A = π4×d2=π4×0.0152=1.77×10-4 m2

Calculate the ratio of mL using the density equation.

  ρ = mL×11.77×10-4 mL = 7.8×103×1.77×10-4 = 1.38 kg/m

Calculate the value of T using the velocity equation.

  v = T1.38 T= 1.38× v 2  = 1.38 ×  (77.5) 2  = 8.3× 10 3  N

Conclusion:

Thus, the tension in the cable is 8.3×103 N .

Chapter 11 Solutions

Physics: Principles with Applications

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