The figure below shows two wires carrying currents of I = 5.30 A in opposite directions, separated by a distance d. Assume d = 9.6 cm. a).Find the magnitude (in µT) and direction of the net magnetic field at a point halfway between the wires. b).Find the magnitude (in µT) and direction of the net magnetic field at point P1, 9.6 cm to the right of the wire on the right. c).Find the magnitude (in µT) and direction of the net magnetic field at point P2, 2d = 19.2 cm to the left of the wire on the left.   d). What If? Repeat part (a) for the case where both wires carry currents in the same direction, upward in the figure. Find the magnitude (in µT) and direction of the net magnetic field at a point halfway between the wires.

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The figure below shows two wires carrying currents of I = 5.30 A in opposite directions, separated by a distance d. Assume d = 9.6 cm.
a).Find the magnitude (in µT) and direction of the net magnetic field at a point halfway between the wires.
b).Find the magnitude (in µT) and direction of the net magnetic field at point P1, 9.6 cm to the right of the wire on the right.
c).Find the magnitude (in µT) and direction of the net magnetic field at point P2, 2d = 19.2 cm to the left of the wire on the left.
 
d). What If? Repeat part (a) for the case where both wires carry currents in the same direction, upward in the figure.
Find the magnitude (in µT) and direction of the net magnetic field at a point halfway between the wires.
 
 
The image illustrates the arrangement of two parallel wires carrying electric currents, along with the designated points \( P_1 \) and \( P_2 \).

- **Wire Configuration**: 
  - There are two wires along a horizontal plane. 
  - The left wire carries a current \( I \) directed upwards (indicated by an arrow).
  - The right wire carries a current \( I \) directed downwards (indicated by an arrow).

- **Distance and Points**:
  - Point \( P_2 \) is located to the left of the left wire. The distance from \( P_2 \) to the left wire is \( 2d \).
  - Between the two wires, there is a distance of \( d \).
  - Point \( P_1 \) is located to the right of the right wire. The distance from the right wire to \( P_1 \) is \( d \).

This setup is typical for exploring the magnetic field interactions between and around the wires.
Transcribed Image Text:The image illustrates the arrangement of two parallel wires carrying electric currents, along with the designated points \( P_1 \) and \( P_2 \). - **Wire Configuration**: - There are two wires along a horizontal plane. - The left wire carries a current \( I \) directed upwards (indicated by an arrow). - The right wire carries a current \( I \) directed downwards (indicated by an arrow). - **Distance and Points**: - Point \( P_2 \) is located to the left of the left wire. The distance from \( P_2 \) to the left wire is \( 2d \). - Between the two wires, there is a distance of \( d \). - Point \( P_1 \) is located to the right of the right wire. The distance from the right wire to \( P_1 \) is \( d \). This setup is typical for exploring the magnetic field interactions between and around the wires.
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