Answer:
Step-by-step explanation:
a. We assume the appropriate equation for ballistic motion is ...
h = -4.9t^2 +1
Then h = 0 when ...
0 = -4.9t^2 +1
49t^2 = 10 . . . . . add 4.9t^2, multply by 10
7t = √10 . . . . . . . take the square root
t = (√10)/7 . . . . . . divide by the coefficient of t
The marble will be in the air about (√10)/7 ≈ 0.451754 seconds.
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b. The average velocity is the ratio of distance to time:
v = (1 m)/((√10)/7 s) = 0.7√10 m/s ≈ 2.214 m/s
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c. Under the influence of gravity, the velocity is linearly increasing over the time period, so its instantaneous value when the marble hits the ground will be twice the average value:
When it hits, the marble's velocity is 1.4√10 m/s ≈ 4.427 m/s.