(a) Calculate the magnetic field produced by the current in each wire at point B, which is a distance, x = 29.4 cm, above wire 1. Assume standard unit vector directions. Jur ]HT)₁ + ( [ B18 = = μT = HT)₁ (b) What is the magnitude and direction (i.e. angle on -180° to +* 180 *°) of the net magnetic field at point B? B₂: μT at

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(a) Calculate the magnetic field produced by the current in each wire at point B, which
is a distance, x = 29.4 cm, above wire 1. Assume standard unit vector directions.
Jur
]HT)₁ + ( [
B18 =
=
μT
=
HT)₁
(b) What is the magnitude and direction (i.e. angle on -180° to +* 180 *°) of the net magnetic field at point B?
B₂:
μT at
Transcribed Image Text:(a) Calculate the magnetic field produced by the current in each wire at point B, which is a distance, x = 29.4 cm, above wire 1. Assume standard unit vector directions. Jur ]HT)₁ + ( [ B18 = = μT = HT)₁ (b) What is the magnitude and direction (i.e. angle on -180° to +* 180 *°) of the net magnetic field at point B? B₂: μT at
Two long straight wires that are oriented perpendicular
to the plane of the page are placed parallel to each
other, and spaced a distance, d = 70.1 cm, apart.
The two wires carry different currents, I₁ = 83.5 A, and
1₂ = 58.5 A, in opposite directions as shown in the figure.
A
X
B
X
wire 1
d
X
wire 2
Transcribed Image Text:Two long straight wires that are oriented perpendicular to the plane of the page are placed parallel to each other, and spaced a distance, d = 70.1 cm, apart. The two wires carry different currents, I₁ = 83.5 A, and 1₂ = 58.5 A, in opposite directions as shown in the figure. A X B X wire 1 d X wire 2
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