QUESTION IMAGE
Question
- an object is dropped from a cliff of unknown height. assume the process of energy transformation is only 67% efficient:
a. what is the height of the cliff if the object is falling at a speed of 18 m/s just before hitting the ground? 3 marks - a
b. how high would the cliff be instead, if the object is falling at 18 m/s, but the efficiency is 100%? 3 marks - a
Step1: Apply energy conservation for part a
The potential energy at the top of the cliff \(U = mgh\) is converted to kinetic energy \(K=\frac{1}{2}mv^{2}\). Given efficiency \(\eta = 0.67\), so \(\eta mgh=\frac{1}{2}mv^{2}\). Cancel out \(m\) (mass of the object), then \(h=\frac{v^{2}}{2g\eta}\). Substitute \(v = 18m/s\), \(g = 9.8m/s^{2}\), \(\eta=0.67\)
Step2: Calculate the value for part a
Step3: Apply energy conservation for part b
When \(\eta = 1\) (100% efficiency), from \(mgh=\frac{1}{2}mv^{2}\). Cancel out \(m\), then \(h=\frac{v^{2}}{2g}\). Substitute \(v = 18m/s\), \(g = 9.8m/s^{2}\)
Step4: Calculate the value for part b
Snap & solve any problem in the app
Get step-by-step solutions on Sovi AI
Photo-based solutions with guided steps
Explore more problems and detailed explanations
a. The height of the cliff is approximately \(24.7m\)
b. The height of the cliff is approximately \(16.5m\)