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Transcript
Quiz 2.2C
Air Resistance and Combination Problems
1. A ball falls straight down through the air under the influence of gravity. There is a retarding
force F on the ball with magnitude given by F = bv, where v is the speed of the ball and b is a
positive constant. The magnitude of the acceleration, a of the ball at any time is equal to which
of the following?
(A) g – b (B) g – bv/m (C) g + bv/m (D) g/b (E) bv/m
2.
A skydiver is falling at terminal velocity before opening her parachute. After opening her
parachute, she falls at a much smaller terminal velocity. How does the total upward force before
she opens her parachute compare to the total upward force after she opens her parachute?
(A) The ratio of the forces is equal to the ratio of the velocities.
(B) The ratio of the forces is equal to the inverse ratio of the velocities.
(C) the upward force with the parachute will depend on the size of the parachute.
(D) The upward force before the parachute will be greater because of the greater velocity.
(E) The upward force in both cases must be the same.
3. A ball is thrown and follows a parabolic path, as shown above. Air friction is negligible. Point Q is
the highest point on the path. Which of the following best indicates the direction of the net
force on the ball at point P ?
Free Responses
Problem 1
2. Two 10.0 kg masses are hanging from the ceiling of an elevator that is accelerating upward at
2.00 m/s2. What is the tension in each rope?
3. A 250.0 kg crate is being pulled across the floor with a rope that makes an angle of 22.0 to the
horizontal. If the force applied is equal to 875 N, what is the coefficient of kinetic friction?
8
7
5
N
2
5
0
.0
k
g
2
2
.0