The horizontal portion of the wire in Figure P28.76 has a length € = 0.100 m, and position P is a perpendicular distance d = 30.0 mm above the center of the horizontal portion. The wire carries a 45.0-A current, and the two slanted portions of the wire are extremely long. Calculate the magnitude of the magnetic field at P. ●*.

Delmar's Standard Textbook Of Electricity
7th Edition
ISBN:9781337900348
Author:Stephen L. Herman
Publisher:Stephen L. Herman
Chapter20: Capacitance In Ac Circuits
Section: Chapter Questions
Problem 3RQ: How many degrees are the current and voltage out of phase in a pure capacitive circuit?
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Please provide a thorough process on how to solve this, the answer must be 2.8x10^{-4}T.

76. The horizontal portion of the wire in Figure P28.76 has a
length € = 0.100 m, and position P is a perpendicular distance
d = 30.0 mm above the center of the horizontal portion. The
wire carries a 45.0-A current, and the two slanted portions of
the wire are extremely long. Calculate the magnitude of the
magnetic field at P. ..
Figure P28.76
Transcribed Image Text:76. The horizontal portion of the wire in Figure P28.76 has a length € = 0.100 m, and position P is a perpendicular distance d = 30.0 mm above the center of the horizontal portion. The wire carries a 45.0-A current, and the two slanted portions of the wire are extremely long. Calculate the magnitude of the magnetic field at P. .. Figure P28.76
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