QUESTION IMAGE
Question
a student releases a marble from the top of a ramp. the marble increases speed steadily and travels 80.0cm in 4.60s. what was the marbles final speed? cm/s
Step1: Use the kinematic equation for uniformly - accelerated motion
The kinematic equation for displacement \(s = v_{0}t+\frac{1}{2}at^{2}\). Since the marble is released from rest (\(v_{0} = 0\)), the equation simplifies to \(s=\frac{1}{2}at^{2}\). First, find the acceleration \(a\).
Substitute \(s = 80.0\space cm\) and \(t = 4.60\space s\)
Step2: Use the equation \(v = v_{0}+at\) to find the final speed
Since \(v_{0} = 0\), the equation for final speed \(v\) is \(v = at\)
Substitute \(a\approx7.56\space cm/s^{2}\) and \(t = 4.60\space s\)
Another way:
Step1: Use the formula for average velocity in uniformly - accelerated motion
The average velocity \(\overline{v}=\frac{s}{t}\), and for uniformly - accelerated motion \(\overline{v}=\frac{v_{0} + v}{2}\). Since \(v_{0}=0\), \(\overline{v}=\frac{v}{2}\)
First, calculate the average velocity \(\overline{v}=\frac{s}{t}\)
Substitute \(s = 80.0\space cm\) and \(t = 4.60\space s\)
Step2: Find the final speed \(v\)
Since \(\overline{v}=\frac{v}{2}\), then \(v = 2\overline{v}\)
Substitute \(\overline{v}\approx17.4\space cm/s\)
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
\(34.8\space cm/s\)