Answer:
elevation = 243[m]
Step-by-step explanation:
This problem can be solved using the principle of energy conservation, where potential energy becomes kinetic energy. At the point where the speed is equal to 69 [m / s] will be taken as the reference point for potential energy, at this point all potential energy will have been transformed into kinetic energy.
![Ek= 0.5*m*v^(2) \\where:\\m = mass = 480[g] = 0.480[kg]\\v = velocity = 69 [m/s]\\Ek=0.5*.480*(69)^(2) \\Ek=1142.64[J]\\](https://img.qammunity.org/2021/formulas/physics/high-school/dffah4vy3260qae0t3pe7qq549lxq9h578.png)
So this kinetic energy will be equal to the potential energy at the beginning.
![Ek=Ep\\Ep=m*g*h\\1142.64=0.480*9.81*h\\h=242.66[m]](https://img.qammunity.org/2021/formulas/physics/high-school/wmxc9vmbdw331vxntlsuc1afiriv3s7xn7.png)
The falcon was originally at 243 [m] above the point (reference point) where he reached the speed given.