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Exact(5)
Let t f be the time when the object reaches height zero.
Then it determines the time when the object reaches height zero, and computes the velocity at that time.
Therefore, m h ˙ (t f ) 2 2 = mgh 0. 5. Hence, the result is h ˙ (t f ) = - 2 gh 0. Let t f be the time when the object reaches height zero.
For example, in the cut-free proof of Solution 2, the existentially quantified variable for the time when the object reaches height zero is instantiated by a ground term that denotes exactly when this happens.
In the proof with cuts that formalizes Solution 1, on the other hand, it is instantiated by an eigenvariable, and hence the time when the object reaches height zero is not known.
Similar(55)
Stern's medlar reaches heights of 4.5 6 metres (15 20 feet).
The fully grown receptaculum reaches heights of 8 cm tall.
When a person reaches heights that are unfathomable to the average person, the skeptics emerge.
So, too, does the London Eye, an oversized Ferris wheel that reaches heights of 443 feet.
The species reaches heights up to 10 m.
The next factor to consider is reach height.
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