A negative ion with a net charge of 4 electron charges and a mass of 9.30 x 10 26 kg is initially traveling in the direction shown in the figure below with an initial speed of 7.00 x 103 m/s. After traveling across the distance x = 3.00 cm the ion comes to rest instantaneously. What is the electric potential of the final position of the ion relative to the electric potential at the ion's initial positiğn. (The electron's final position is a distance x 3.00 cm to the right of its initial position. O -14.2 V O It is impossible to determine because the ion will not come to rest. O 14.2 V O -3.56 V O 3.56 V + + +

Principles of Physics: A Calculus-Based Text
5th Edition
ISBN:9781133104261
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter20: Electric Potential And Capacitance
Section: Chapter Questions
Problem 10P: Three particles with equal positive charges q are at the corners of an equilateral triangle of side...
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A negative ion with a net charge of 4 electron charges and a mass of 9.30 x 10 26 kg is initially
traveling in the direction shown in the figure below with an initial speed of 7.00 x 10³ m/s. After
traveling across the distance x = 3.00 cm the ion comes to rest instantaneously. What is the
electric potential of the final position of the ion relative to the electric potential at the ion's initial
positiğn. (The electron's final position is a distance x = 3.00 cm to the right of its initial position.
O -14.2 V
O It is impossible to determine because the ion will not come to rest.
O 14.2 V
O -3.56 V
O 3.56 V
Transcribed Image Text:A negative ion with a net charge of 4 electron charges and a mass of 9.30 x 10 26 kg is initially traveling in the direction shown in the figure below with an initial speed of 7.00 x 10³ m/s. After traveling across the distance x = 3.00 cm the ion comes to rest instantaneously. What is the electric potential of the final position of the ion relative to the electric potential at the ion's initial positiğn. (The electron's final position is a distance x = 3.00 cm to the right of its initial position. O -14.2 V O It is impossible to determine because the ion will not come to rest. O 14.2 V O -3.56 V O 3.56 V
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