Ship 1 has a mass of 6.50 × 104 kg and a ship 2 is twice as massive. Both have engines that generate the same total force of 9.50 × 106 N. If each ship fires its engine for the same distance, starting from rest and ignoring any change in mass due to whatever is expelled by the engines, calculate the energy of the ship 1 if the engines are fired for 103 m. If each ship fires its engine for the same distance, starting from rest and ignoring any change in mass due to whatever is expelled by the engines, calculate the energy of the ship 2 if the engines are fired for 103 m.

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
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 Ship 1 has a mass of 6.50 × 104 kg and a ship 2 is twice as massive. Both have engines that generate the same total force of 9.50 × 106 N.

If each ship fires its engine for the same distance, starting from rest and ignoring any change in mass due to whatever is expelled by the engines, calculate the energy of the ship 1 if the engines are fired for 103 m.

If each ship fires its engine for the same distance, starting from rest and ignoring any change in mass due to whatever is expelled by the engines, calculate the energy of the ship 2 if the engines are fired for 103 m.

 

 

 

Expert Solution
Step 1

Given

Mass of ship1 = 6.50 × 104 kg

Mass of ship 2 = 2 × 6.50 × 104 kg

Engine force of 9.50 × 106 N.

We have to calculate the energy

A. For the ship 1 if the engines are fired for 103 m.

B. For the ship 2 if the the engines are fired for 103 m.

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