3.) A public bus (with mass 2500 kg) is traveling along H1 highway at a speed of 3 m/s. Suddenly the bus- driver jams on the brakes and the bus comes to a complete stop. a) How much kinetic energy does the bus have initially? b) How much kinetic energy does the bus have when it comes to a complete stop? c) If the brakes exert a force of 1000 N, how much braking distance does the car need to come to a complete stop?

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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
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**Problem Statement:**

A public bus (with mass 2500 kg) is traveling along H1 highway at a speed of 3 m/s. Suddenly, the bus driver jams on the brakes, and the bus comes to a complete stop.

**Questions:**

a) How much **kinetic energy** does the bus have initially?

b) How much **kinetic energy** does the bus have when it comes to a complete stop?

c) If the brakes exert a force of 1000 N, how much **braking distance** does the car need to come to a complete stop?

d) If the car was traveling at double the speed (6 m/s), how much **braking distance** would be required?

**Diagram:**

The diagram features an illustration of a bus with motion lines indicating its movement before coming to a stop.
Transcribed Image Text:**Problem Statement:** A public bus (with mass 2500 kg) is traveling along H1 highway at a speed of 3 m/s. Suddenly, the bus driver jams on the brakes, and the bus comes to a complete stop. **Questions:** a) How much **kinetic energy** does the bus have initially? b) How much **kinetic energy** does the bus have when it comes to a complete stop? c) If the brakes exert a force of 1000 N, how much **braking distance** does the car need to come to a complete stop? d) If the car was traveling at double the speed (6 m/s), how much **braking distance** would be required? **Diagram:** The diagram features an illustration of a bus with motion lines indicating its movement before coming to a stop.
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