An object with charge q = -6.00 x 10^{-9} C is placed in a region of uniform electric field and is released from rest at point A. After the charge has moved to point B, 0.500 m to the right, it has kinetic energy 3.00 x 10^{-7} J. If the electric potential at point A is +30.0 V, what is the electric potential at point B?

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 25.22P: The three charged particles in Figure P25.22 are at the vertices of an isosceles triangle (where d =...
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An object with charge q =
-6.00 x 10^{-9} C is placed in a
region of uniform electric field
and is released from rest at
point A. After the charge has
moved to point B, 0.500 m to
the right, it has kinetic energy
3.00 x 10^{-7} J. If the electric
potential at point A is +30.0 V,
what is the electric potential at
point B?
Transcribed Image Text:An object with charge q = -6.00 x 10^{-9} C is placed in a region of uniform electric field and is released from rest at point A. After the charge has moved to point B, 0.500 m to the right, it has kinetic energy 3.00 x 10^{-7} J. If the electric potential at point A is +30.0 V, what is the electric potential at point B?
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