There are two long, thin wires that carry currents in the positive z direction. Both wires are parallel to the z axis. One wire is in the x-z plane and it carries a current of I = 33 A. This wire is a distance of r, = 6 m from the z axis. The other wire is in the y-z plane and it carries a current of I2 = 37 A. This wire is a distance of r2 = 4 m %3D %3D from the z axis. What is the magnitude of the net magnetic field at the origin in nano Tesla? 1.0 nano Tesla = 10-9 Tesla. Take the magnetic permeability, mo# 4 x 10- T.m/A. Please round your answer to the nearest whole number (integer). Equations: By Ho Ii and H. I2 27 r2 Br Bnet (V B + B) x 10° then %3D

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter30: Magnetic Fields And Forces
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There are two long, thin wires that carry currents in the
positive z direction. Both wires are parallel to the z axis.
One wire is in the x-z plane and it carries a current of
1 = 33 A. This wire is a distance of r, = 6 m from the
z axis. The other wire is in the y-z plane and it carries
a current of I2 = 37 A. This wire is a distance of r2 = 4 m
%3D
from the z axis. What is the magnitude of the net
magnetic field at the origin in nano Tesla? 1.0 nano
Tesla = 10-9 Tesla. Take the magnetic permeability,
mo# 4 x 10 T.m/A. Please round your answer to the
nearest whole number (integer).
Equations: By
Ho Ii
2T T1
and
H. I2
27 T2
Bnet
( B + B
x 10°
then
Transcribed Image Text:There are two long, thin wires that carry currents in the positive z direction. Both wires are parallel to the z axis. One wire is in the x-z plane and it carries a current of 1 = 33 A. This wire is a distance of r, = 6 m from the z axis. The other wire is in the y-z plane and it carries a current of I2 = 37 A. This wire is a distance of r2 = 4 m %3D from the z axis. What is the magnitude of the net magnetic field at the origin in nano Tesla? 1.0 nano Tesla = 10-9 Tesla. Take the magnetic permeability, mo# 4 x 10 T.m/A. Please round your answer to the nearest whole number (integer). Equations: By Ho Ii 2T T1 and H. I2 27 T2 Bnet ( B + B x 10° then
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