An object, with mass 38 kg and speed 22 m/s relative to an observer, explodes into two pieces, one 3 times as massive as the other; the explosion takes place in deep space. The less massive piece stops relative to the observer. How much kinetic energy is added to the system during the explosion, as measured in the observer's reference frame? Number i ! Units

Advanced Engineering Mathematics
10th Edition
ISBN:9780470458365
Author:Erwin Kreyszig
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Chapter2: Second-order Linear Odes
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An object with a mass of 38 kg and a speed of 22 m/s relative to an observer explodes into two pieces, one of which is three times as massive as the other. The explosion takes place in deep space. The less massive piece stops moving relative to the observer. How much kinetic energy is added to the system during the explosion, as measured in the observer's reference frame?

**Input Fields:**

- **Number**: Input area for the calculated kinetic energy.
- **Units**: Dropdown menu with "J" (Joules) selected as the unit of measurement.
Transcribed Image Text:An object with a mass of 38 kg and a speed of 22 m/s relative to an observer explodes into two pieces, one of which is three times as massive as the other. The explosion takes place in deep space. The less massive piece stops moving relative to the observer. How much kinetic energy is added to the system during the explosion, as measured in the observer's reference frame? **Input Fields:** - **Number**: Input area for the calculated kinetic energy. - **Units**: Dropdown menu with "J" (Joules) selected as the unit of measurement.
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