The figure shows two points A and B in a uniform electric field of magnitude 1200 N/C. B A• 7.0 cm (a) The electric potential at A is –12 V. Find the electric potential at B. (b) You launch a charged particle of mass 1.5 × 10° -6 g from point A at 13 m/s. The particle passes through point B 3.7 ms later. Find the particle's charge. 3.0 ст

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Chapter25: Electric Potential
Section: Chapter Questions
Problem 25.20P: At a certain distance from a charged particle, the magnitude of the electric field is 500 V/m and...
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The figure shows two points A and B in a uniform electric field of magnitude 1200 N/C.
A•
7.0 cm
(a) The electric potential at A is –12 V. Find the electric potential at B.
-6
g from point A at 13 m/s. The particle passes through point B
(b) You launch a charged particle of mass 1.5 × 10
3.7 ms later. Find the particle's charge.
3.0cm
Transcribed Image Text:The figure shows two points A and B in a uniform electric field of magnitude 1200 N/C. A• 7.0 cm (a) The electric potential at A is –12 V. Find the electric potential at B. -6 g from point A at 13 m/s. The particle passes through point B (b) You launch a charged particle of mass 1.5 × 10 3.7 ms later. Find the particle's charge. 3.0cm
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