QUESTION IMAGE
Question
- record the height of the drop ramp and the launch angle of the ramp you designed.
ramp height (cm) launch angle (degree)
- predict which locations the ball will have the most potential energy and the most kinetic energy. explain your reasoning.
enter your notes here...
For potential energy, the formula is $PE = mgh$ (mass × gravity × height). Higher height means more PE, so the ball has the most potential energy at the highest point of the drop ramp (top of the ramp) because height ($h$) is maximum there. For kinetic energy, $KE=\frac{1}{2}mv^{2}$ (½ mass × velocity squared). As the ball moves down the ramp, potential energy converts to kinetic energy, so velocity ($v$) is highest at the lowest point (launch end of the ramp), giving the most kinetic energy there (since velocity is maximum when height is minimum, assuming no energy loss).
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- Most Potential Energy: At the top of the drop ramp (highest height, so \( PE = mgh \) is maximized as \( h \) is largest).
- Most Kinetic Energy: At the launch end of the ramp (lowest height, where potential energy has converted most to kinetic energy, so \( KE=\frac{1}{2}mv^{2} \) is maximized as \( v \) is largest).