NEW
Font size
WorksheetsKinematic Physics Classroom Part 2
Total questions: 10
Worksheet time: 3hrs 30mins
If Michael Jordan has a vertical leap of 1.29 m, then what is his takeoff speed and his hang time (total time to move upwards to the peak and then return to the ground)?
vi = 10.06 m/s .... t = 1.03 s
vi = 10.06 m/s .... t = 2.06 s
vi = 5.03 m/s.... t = 1.03 s
vi = 5.03 m/s.... t = 2.06 s
A bullet leaves a rifle with a muzzle velocity of 521 m/s. While accelerating through the barrel of the rifle, the bullet moves a distance of 0.840 m. Determine the acceleration of the bullet (assume a uniform acceleration).
620 m/s/s
1.62 m/s/s
162000 m/s/s
81000 m/s/s
A baseball is popped straight up into the air and has a hang-time of 6.25 s. Determine the height to which the ball rises before it reaches its peak. (Hint: the time to rise to the peak is one-half the total hang-time.)
d = 48 m
d = 96 m
d = 63 m
d = 24 m
The observation deck of tall skyscraper 370 m above the street. Determine the time required for a penny to free fall from the deck to the street below.
t = 37.0 s
t = 75.5 s
t = 8.69 s
t = 4.35
A bullet is moving at a speed of 367 m/s when it embeds into a lump of moist clay. The bullet penetrates for a distance of 0.0621 m. Determine the acceleration of the bullet while moving into the clay. (Assume a uniform acceleration.)
a = -108 m/s/s
a = -1.08 m/s/s
a = -1080000 m/s/s
a = -1080 m/s/s
A stone is dropped into a deep well and is heard to hit the water 3.41 s after being dropped. Determine the depth of the well.
d = 28 m
d = 17 m
d = 34 m
d = 57 m
It was once recorded that a Jaguar left skid marks that were 290 m in length. Assuming that the Jaguar skidded to a stop with a constant acceleration of -3.90 m/s/s, determine the speed of the Jaguar before it began to skid.
v1 = -1131 m/s
v1 = 47.6 m/s
v1 = 65 m/s
v1 = -11.3 m/s
A plane has a takeoff speed of 88.3 m/s and requires 1365 m to reach that speed. Determine the acceleration of the plane and the time required to reach this speed.
a = 2.86 m/s/s .... t = 30.8 s
a = 2.86 m/s/s .... t = 15.4 s
a = 1.43 m/s/s .... t = 30.8 s
a = 1.43 m/s/s .... t = 15.4 s
A dragster accelerates to a speed of 112 m/s over a distance of 398 m. Determine the acceleration (assume uniform) of the dragster.
a = 7.9 m/s/s
a = 4.0 m/s/s
a = 15.8 m/s/s
a = 31.6 m/s/s
With what speed must an object be thrown to reach a height of 91.5 m (equivalent to one football field)? Assume negligible air resistance.
vi = 42.3 m/s
vi = 915 m/s
vi = 84.6 m/s
vi = 21.2 m/s
