Multiple-Concept Example 4 deals with the concepts that are important in this problem. As illustrated in the figure, a negatively harged particle is released from rest at point B and accelerates until it reaches point A. The mass and charge of the particle are 1.37 x 0-4 kg and -6.26 x 10-5 C, respectively. Only the gravitational force and the electrostatic force act on the particle, which moves on a orizontal straight line without rotating. The electric potential at A is 36.0 V greater than that at B; in other words, VA - VB = 36.0 V. What is the translational speed of the particle at point A? Number i Units B UB=0 m/s

Physics for Scientists and Engineers: Foundations and Connections
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ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter23: Electric Forces
Section: Chapter Questions
Problem 28PQ: A 1.75-nC charged particle located at the origin is separated by a distance of 0.0825 m from a...
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Multiple-Concept Example 4 deals with the concepts that are important in this problem. As illustrated in the figure, a negatively
charged particle is released from rest at point B and accelerates until it reaches point A. The mass and charge of the particle are 1.37 x
10-4 kg and -6.26 x 10-5 C, respectively. Only the gravitational force and the electrostatic force act on the particle, which moves on a
horizontal straight line without rotating. The electric potential at A is 36.0 V greater than that at B; in other words, VA - VB = 36.0 V.
What is the translational speed of the particle at point A?
Number i
Units
A
VB = 0 m/s
Transcribed Image Text:Multiple-Concept Example 4 deals with the concepts that are important in this problem. As illustrated in the figure, a negatively charged particle is released from rest at point B and accelerates until it reaches point A. The mass and charge of the particle are 1.37 x 10-4 kg and -6.26 x 10-5 C, respectively. Only the gravitational force and the electrostatic force act on the particle, which moves on a horizontal straight line without rotating. The electric potential at A is 36.0 V greater than that at B; in other words, VA - VB = 36.0 V. What is the translational speed of the particle at point A? Number i Units A VB = 0 m/s
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