Answer:
2.72 m.
Step-by-step explanation:
Apply conservation of mechanical energy:
![\displaystyle U_i + K_i = U_f + K_f](https://img.qammunity.org/2023/formulas/physics/college/eync89m3diew19gqz4vxjmr2l6545ni3ke.png)
There is zero kinetic energy initially and zero potential energy as the apple hits the ground. Thus:
![\displaystyle U_i = K_f](https://img.qammunity.org/2023/formulas/physics/college/ly0qpl6bsye4lmnyprzhvtwe2juwf74q98.png)
Substitute and solve for h:
![\displaystyle \begin{aligned} mgh_i & = (1)/(2)m{v_f}^2 \\ \\ h_i & = \frac{{v_f}^2}{2g} \\ \\ & = \frac{(7.3\text{ m/s})^2}{2(9.8\text{ m/s$^2$})} \\ \\ & \approx 2.72 \text{ m}\end{aligned}](https://img.qammunity.org/2023/formulas/physics/college/y89ivpjyfcr8ruimtvfzz5i0taonc00q8p.png)
Therefore, the apple fell from an approximate height of 2.72 m.