Assuming the speed of sound at a certain temperature is 343m/s. Compute the distance of the source of sound from a barrier if the echo of the sound is heard after 3.00 seconds. hon
Assuming the speed of sound at a certain temperature is 343m/s. Compute the distance of the source of sound from a barrier if the echo of the sound is heard after 3.00 seconds. hon
College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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
Transcribed Image Text:1. Assuming the speed of sound at a certain temperature is
343m/s. Compute the distance of the source of sound from a
barrier if the echo of the sound is heard after 3.00 seconds.
2. A woman on a bicycle climbs a hill at 4.00 m/s and then
returns down the same hill at 8.00 m/s. What is her average
speed for the entire trip?
3. An airplane accelerates on a runway at 4.00 m/s² for 30.0 s
until it finally lifts off the ground. Determine the distance
traveled before take-off.
4. A bike accelerates uniformly from rest to a speed of 8.00 m/s
over a distance of 40.0 m. Determine the acceleration of the
bike.
5. A car traveling at 30.5 m/s skids to a stop in 3.20 s. Determine
the skidding distance of the
acceleration.
car assuming uniform
6. A bus travels 504.0 m between two stops. It starts from rest
and accelerates at 1.50m/s² until it reaches a velocity of 9.00
m/s. The bus continues at this velocity and then slows down at
2.00m/s? until it comes to halt. Find the total time required for
the journey.
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