Connect with LearnSmart for Krauskopf: The Physical Universe, 16e
Connect with LearnSmart for Krauskopf: The Physical Universe, 16e
16th Edition
ISBN: 9781259663895
Author: KRAUSKOPF, Konrad B.
Publisher: Mcgraw-hill Higher Education (us)
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Chapter 3, Problem 57E

The two skaters of Exercise 56 are moving in opposite directions when they collide and stick together. Answer the same questions for this case.

(a)

Expert Solution
Check Mark
To determine

The final speed of the system.

Answer to Problem 57E

The final speed of the system is 0.4m/s.

Explanation of Solution

Given info: Mass of the first skater is 40kg, Mass of the another skater is 60kg, and speed of the first skater is 4m/s, speed of the second skater is 2m/s.

Write the expression from conservation of momentum.

m1v1+m2(v2)=(m1+m2)v

Here,

m1 is the mass of the first skater

m2 is the mass of the second skater

v1 is the speed of the first skater

v2 is the speed of the second skater

v is the final speed of the system.

Substitute 40kg for m1, 60kg for m2, 4m/s for v1 and 2m/s for v2 in the above expression to get final speed.

[(40kg)(4m/s)]+[(60kg)(2m/s)]=[(40kg)+(60kg)]vv=0.4m/s

Conclusion:

Therefore, the final speed of the system is 0.4m/s.

(b)

Expert Solution
Check Mark
To determine

The amount of kinetic energy lost.

Answer to Problem 57E

The amount of kinetic energy lost is 432J.

Explanation of Solution

Given info: Mass of the first skater is 40kg, Mass of the another skater is 60kg, and speed of the first skater is 4m/s, speed of the second skater is 2m/s, final speed of the system is 0.4m/s

Write the expression for kinetic energy lost.

(ΔKE)=[12(m1v12+m1v22)][12(m1+m2)v2]

Here,

(ΔKE) is the lost in kinetic energy

m1 is the mass of the first skater

m2 is the mass of the second skater

v1 is the speed of the first skater

v2 is the speed of the second skater

v is the final speed of the system.

Substitute 40kg for m1, 60kg for m2, 4m/s for v1 and 2m/s for v2, 2.8m/s for v in the above expression to get lost in kinetic energy.

(ΔKE)=[12({(40kg)(4m/s)2}+{(60kg)(2m/s)2})][12{(40kg)+(60kg)}(0.4m/s)2]=432J

Conclusion:

The amount of kinetic energy lost is 432J.

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T1. Calculate what is the received frequency when the car drives away from the radar antenna at a speed v of a) 1 m/s ( = 3.6 km/h), b) 10 m/s ( = 36 km/h), c) 30 m /s ( = 108 km/h) . The radar transmission frequency f is 24.125 GHz = 24.125*10^9 Hz, about 24 GHz. Speed ​​of light 2.998 *10^8 m/s.
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Chapter 3 Solutions

Connect with LearnSmart for Krauskopf: The Physical Universe, 16e

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