(a)
The equation expressing the conservation of the momentum for the components in the x and y direction.
(a)
Answer to Problem 42P
The the expression for the conservation of momentum along x direction is
The expression for the conservation of momentum along y direction is
Explanation of Solution
Given:
The mass of ball A is
The initial velocity of the ball A is
The mass of ball B is
The final velocity of the ball A is
The deflected angle of ball A is
Formula used:
The expression for law of conservation of momentum is,
Here,
Calculation:
Sketch the representation of the billiard ball before and after collision as shown in Figure 1.
Apply the conservation of momentum along x direction.
Apply the conservation of momentum along y direction.
Conclusion:
Thus, the expression for the conservation of momentum along x direction is
Thus, the expression for the conservation of momentum along y direction is
(b)
The speed and deflected angle of the ball B.
(b)
Answer to Problem 42P
The deflected angle of ball B is
The speed of ball B is
Explanation of Solution
Given:
The mass of ball A is
The initial velocity of the ball A is
The mass of ball B is
The final velocity of the ball A is
The deflected angle of ball A is
Formula used:
The expression for law of conservation of momentum is,
Here,
Calculation:
Refer to part (a).
The expression for the conservation of momentum along x direction is
The expression for the conservation of momentum along y direction is
The speed and deflected angle of ball B using the relation of conservation of momentum along x direction is,
The speed and deflected angle of ball B using the relation of conservation of momentum along y direction is,
Find the deflected angle of ball B using equations (3) and (4).
The speed of the ball B using equation (3) is,
Conclusion:
Thus, the deflected angle of ball B is
Chapter 7 Solutions
Physics: Principles with Applications
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