Answer:
The object was dropped at a height of 338.1 meters.
Step-by-step explanation:
According to the statement, the function velocity (
), in meters per second, in term of the initial height of the object (
), in meters, is represented by:
(1)
This formula represents a particular case of a free fall analyzed by means of the Principle of Energy Conservation. If we know that
, then the height of the object before being dropped is:
![h = (v^(2))/(19.6)](https://img.qammunity.org/2022/formulas/mathematics/high-school/nw3ty0295ffgvnvr1j548ci4ylbnhb6f4x.png)
![h = 338.059\,m](https://img.qammunity.org/2022/formulas/mathematics/high-school/k8hm1byospn7hu6vb7ujxedowuud2rc7y8.png)
The object was dropped at a height of 338.1 meters.