A plastic rod has been bent into a circle of radius R= 6.00 cm. It has a charge Q=+100.0 pC uniformly distributed along one quarter of its circumference and a charge Q, =-200.0 pC uniformly distributed along the rest of the circumference. What is the electric potential at point P, on the central axis of the cirele at distance D = 8.00 cm from the centre? Give your answer in volts.
A plastic rod has been bent into a circle of radius R= 6.00 cm. It has a charge Q=+100.0 pC uniformly distributed along one quarter of its circumference and a charge Q, =-200.0 pC uniformly distributed along the rest of the circumference. What is the electric potential at point P, on the central axis of the cirele at distance D = 8.00 cm from the centre? Give your answer in volts.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter26: Electric Potential
Section: Chapter Questions
Problem 80PQ: Figure P26.80 shows a wire with uniform charge per unit length = 2.25 nC/m comprised of two...
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![A plastic rod has been bent into a circle of radius R = 6.00 cm. It has a
charge Q=+100.0 pC uniformly distributed along one quarter of its
circumference and a charge Q, =200.0 pC uniformly distributed along the
rest of the circumference. What is the electric potential at point P, on the
central axis of the circle at distance D = 8.00 cm from the centre? Give
your answer in volts.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff294c5d6-a392-495d-a17e-29839d042503%2Fa8b42c1c-f66d-43e7-8e9b-11016d326301%2Fe4w8oi_processed.png&w=3840&q=75)
Transcribed Image Text:A plastic rod has been bent into a circle of radius R = 6.00 cm. It has a
charge Q=+100.0 pC uniformly distributed along one quarter of its
circumference and a charge Q, =200.0 pC uniformly distributed along the
rest of the circumference. What is the electric potential at point P, on the
central axis of the circle at distance D = 8.00 cm from the centre? Give
your answer in volts.
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