A rock falls from a 256-foot cliff. The position of the rock relative to the top of the cliff is given by the function d (t) he time of impact (when the rock hits the ground at the bottom of the cliff). Clearly explain your strategy and show your process steps for solving this 16 t2 . Estimate the velocity at orohlem
A rock falls from a 256-foot cliff. The position of the rock relative to the top of the cliff is given by the function d (t) he time of impact (when the rock hits the ground at the bottom of the cliff). Clearly explain your strategy and show your process steps for solving this 16 t2 . Estimate the velocity at orohlem
Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
Publisher:Erwin Kreyszig
Chapter2: Second-order Linear Odes
Section: Chapter Questions
Problem 1RQ
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Question
Estimate the velocity at the time of impact.

Transcribed Image Text:A rock falls from a 256-foot cliff. The position of the rock relative to the top
of the cliff is given by the function d (t)
16 t?
Estimate the velocity at
the time of impact (when the rock hits the ground at the bottom of the cliff).
Clearly explain your strategy and show your process steps for solving this
problem.
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