1. Two cyclists race against the clock in a 50.0 km cross-country route. Cyclist A travels at a constant speed Of 50.0 km/h. Cyclist B started 15.0 min after cydist A but manages to catch up at the finish line. What is the speed of cyclist B assuming that his speed is constant?

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter4: Motion In Two And Three Dimensions
Section: Chapter Questions
Problem 24P: Clay Matthews, a linebacker for the Green Bay Packers, can reach a speed of 10.0 m/s. At the start...
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Please answer numbers, 1, 2, 3. Thanks

1. Two cyclists race against the clock in a 50.0 km cross-country route. Cyclist A travels
at a constant speed of 50.0 km/h. Cyclist B started 15.0 min after cydist A but manages to
catch up at the finish line. What is the speed of cyclist B assuming that his speed is
constant?
14/26
2. A particle moving with uniform acceleration in a straight line was observed to be moving
at 4.5 m/s. After 10 s, it was moving at 4.5 m/s. After 10 s, it was moving at 6.8 m/s. Find
its acceleration.
14 |GENERAL PHYSICS
3. A car starting from rest passes two successive milestones A and B that are 250 m apart. It
takes 60 s to pass A and another 60 s to pass from A to B. Find the velocities of the car when it
passes milestone A and milestone B. Assume that the acceleration of the car is uniform,
Transcribed Image Text:1. Two cyclists race against the clock in a 50.0 km cross-country route. Cyclist A travels at a constant speed of 50.0 km/h. Cyclist B started 15.0 min after cydist A but manages to catch up at the finish line. What is the speed of cyclist B assuming that his speed is constant? 14/26 2. A particle moving with uniform acceleration in a straight line was observed to be moving at 4.5 m/s. After 10 s, it was moving at 4.5 m/s. After 10 s, it was moving at 6.8 m/s. Find its acceleration. 14 |GENERAL PHYSICS 3. A car starting from rest passes two successive milestones A and B that are 250 m apart. It takes 60 s to pass A and another 60 s to pass from A to B. Find the velocities of the car when it passes milestone A and milestone B. Assume that the acceleration of the car is uniform,
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