1. Electric force and electric potential. Inside a linear accelerator, a proton (charge + ? = 1.602 × 10−19?) travels in a straight line from one point a to another point b a total distance ? = 0.50?. Along this line, the electric field is uniform with magnitude ? = 1.5 × 107? / ? = 1.5 × 107N / C in the direction from a to b. Determine a) the force on the proton; b) the work carried out on it by the field; c) the potential difference?? − ??.

Physics for Scientists and Engineers, Technology Update (No access codes included)
9th Edition
ISBN:9781305116399
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter25: Electric Potential
Section: Chapter Questions
Problem 25.19P: Given two particles with 2.00-C charges as shown in Figure P25.19 and a particle with charge q =...
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1. Electric force and electric potential. Inside a linear accelerator, a proton (charge + ? = 1.602 × 10−19?) travels in a straight line from one point a to another point b a total distance ? = 0.50?. Along this line, the electric field is uniform with magnitude ? = 1.5 × 107? / ? = 1.5 × 107N / C in the direction from a to b. Determine
a) the force on the proton;
b) the work carried out on it by the field;
c) the potential difference?? − ??.

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