COLLEGE PHYSICS-CONNECT ACCESS
COLLEGE PHYSICS-CONNECT ACCESS
5th Edition
ISBN: 9781260486834
Author: GIAMBATTISTA
Publisher: MCG
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Chapter 7, Problem 7P
To determine

Arrange the situations according to the ascending order of change in momentum.

Expert Solution & Answer
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Answer to Problem 7P

(b)<(a)=(e)<(c)<(d)<(f).

Explanation of Solution

Write the equation for change in momentum when initial and final velocities are in same direction.

    Δp=m(vfvi)        (I)

Here, Δp is the magnitude of change in momentum, m is the mass, vf is the final velocity and vi is the initial velocity.

Write the equation for change in momentum when initial and final velocities are in opposite direction.

    Δp=m(vf+vi)        (II)

Write the equation for change in momentum when initial and final velocities are in perpendicular directions.

    Δp=mvf2+vi2        (III)

Conclusion:

Consider case (a).

Substitute 200 g for m, 10m/s for vf and 10m/s for vi in equation (II).

    Δp=(200 g)(10m/s+10m/s)=4000gm/s

Consider case (b).

Substitute 200 g for m, 10m/s for v1 and 10m/s for v2 in equation (III).

    Δp=(200 g)|(10m/s)2+(10m/s)2|=(200 g)(14.14m/s)=2828gm/s

Consider case (c).

Substitute 200 g for m, 20m/s for vf and 10m/s for vi in equation (II).

    Δp=(200 g)(20m/s+10m/s)=6000gm/s

Consider case (d).

Substitute 400 g for m, 20m/s for vf and 10m/s for vi in equation (II).

    Δp=(400 g)(20m/s+10m/s)=12000gm/s

Consider case (e).

Substitute 400 g for m, 20m/s for vf and 10m/s for vi in equation (I).

    Δp=(400 g)(20m/s10m/s)=4000gm/s

Consider case (f).

Substitute 400 g for m, 30m/s for v1 and 10m/s for v2 in equation (III).

    Δp=(400 g)|(30m/s)2+(10m/s)2|=(400 g)(14.14m/s)=12649gm/s

Thus, the ascending order of change in momentum is (b)<(a)=(e)<(c)<(d)<(f).

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Chapter 7 Solutions

COLLEGE PHYSICS-CONNECT ACCESS

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