13. Charge of negative charge density is distributed uniformly along the wire as shown. Write an integral expression for the electric potential at point P in terms of one variable and with the proper limits of integration. Point P is 4 m over from the rod and 1 m up from the end of the rod. Do not solve the integral. 1m P 4 m 7m
13. Charge of negative charge density is distributed uniformly along the wire as shown. Write an integral expression for the electric potential at point P in terms of one variable and with the proper limits of integration. Point P is 4 m over from the rod and 1 m up from the end of the rod. Do not solve the integral. 1m P 4 m 7m
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![13. Charge of negative charge density is distributed uniformly along the wire as shown. Write
an integral expression for the electric potential at point P in terms of one variable and with
the proper limits of integration. Point P is 4 m over from the rod and 1 m up from the end of
the rod. Do not solve the integral.
1m
P
4 m
7m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0a6878de-8200-48ed-837b-864fc15b0c65%2F4c944ff6-4f0e-4558-a4bb-819d80287d5a%2Fl655dmz_processed.png&w=3840&q=75)
Transcribed Image Text:13. Charge of negative charge density is distributed uniformly along the wire as shown. Write
an integral expression for the electric potential at point P in terms of one variable and with
the proper limits of integration. Point P is 4 m over from the rod and 1 m up from the end of
the rod. Do not solve the integral.
1m
P
4 m
7m
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