A proton is released at the origin in a constant electric field of 850 N/C acting in the positive x-direction. Find the change in the electric potential energy associated with the proton after it travels to x 5 2.5 m. (a) 3.4 3 10216 J (b) 23.4 3 10216 J (c) 2.5 3 10216 J (d) 22.5 3 10216 J (e) 21.6 3 10219 J
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Textbook Solutions for College Physics
Question
The immediate cause of many deaths is ventricular fibrillation, an uncoordinated quivering of the heart, as opposed to proper beating. An electric shock to the chest can cause momentary paralysis of the heart muscle, after which the heart will sometimes start organized beating again. A defibrillator is a device that applies a strong electric shock to the chest over a time of a few milliseconds. The device contains a capacitor of a few microfarads, charged to several thousand volts. Electrodes called paddles, about 8 cm across and coated with conducting paste, are held against the chest on both sides of the heart. Their handles are insulated to prevent injury to the operator, who calls Clear! and pushes a button on one paddle to discharge the capacitor through the patients chest. Assume an energy of 300 W ? s is to be delivered from a 30.0-mF capacitor. To what potential difference must it be charged?
Solution
The first step in solving 16 problem number trying to solve the problem we have to refer to the textbook question: The immediate cause of many deaths is ventricular fibrillation, an uncoordinated quivering of the heart, as opposed to proper beating. An electric shock to the chest can cause momentary paralysis of the heart muscle, after which the heart will sometimes start organized beating again. A defibrillator is a device that applies a strong electric shock to the chest over a time of a few milliseconds. The device contains a capacitor of a few microfarads, charged to several thousand volts. Electrodes called paddles, about 8 cm across and coated with conducting paste, are held against the chest on both sides of the heart. Their handles are insulated to prevent injury to the operator, who calls Clear! and pushes a button on one paddle to discharge the capacitor through the patients chest. Assume an energy of 300 W ? s is to be delivered from a 30.0-mF capacitor. To what potential difference must it be charged?
From the textbook chapter Multiple Choice Questions you will find a few key concepts needed to solve this.
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