Answer:
144 ft
Explanation:
The speed decreases linearly by 32 ft/sec/sec, so will be zero after ...
(96 ft/s)/(32 ft/s²) = 3 s
The average speed over that period is half the initial speed, so the distance covered between the ground and the maximum height is ...
(3 s)(96 ft/s)/2 = 144 ft
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Alternate solution
The relationship between velocity and distance for a constant acceleration is ...
![v_f^(2)- v_i^(2) = 2ad](https://img.qammunity.org/2020/formulas/mathematics/high-school/w2yarg86kgvciizzz4y283jo493h6pjpi8.png)
For an initial velocity of 96 ft/s, a final velocity (at the top of travel) of 0, and the given acceleration, we have ...
![d = (v_f^(2)- v_i^(2))/(2a) = (0-96^(2))/(2(-32))= 144\,\dots\ \text{ft}](https://img.qammunity.org/2020/formulas/mathematics/high-school/2ga4h3i2icthhhg8gc6yl41uiwmhucp1ko.png)