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Question 5
Figure 9 shows a small steel ball held at a height, h, above the ground. The ball is released and allowed to fall to the ground. The height h is 1.4 m. Calculate ... show full transcript
Step 1
Answer
To calculate the time taken for the ball to reach the ground, we can use the following formula derived from the kinematic equations:
Substituting the given values:
Thus, the equation becomes:
Calculating this yields:
Taking the square root:
Step 2
Step 3
Step 4
Answer
The force exerted by the floor can be calculated using the formula for force based on the change in momentum:
Given:
The change in momentum is equal to the initial momentum since final momentum is 0:
Thus,
Step 5
Step 6
Answer
The mass of the ball can be calculated using the formula for momentum:
Rearranging gives:
Given that momentum at S is 0.40 kg m/s and the velocity at that point is:
Thus:
To find velocity, more specific height considerations or values are needed. However, for the purpose of the exam, be sure to replace velocity with an appropriate calculation based on drop height or derived formulas from kinematics.
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