The figure shows wire 1 in cross section; the wire is long and straight, carries a current of 4.01 mA out of the page, and is at distance d, = 2.67 cm from a surface. Wire 2, which is parallel to wire 1 and also long, is at horizontal distance d2 = 5.16 cm from wire 1 and carries a current of 6.96 mA into the page. What is the x component of the magnetic force per unit length on wire 2 due to wire 1? Number Units NAm

College Physics
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Chapter1: Units, Trigonometry. And Vectors
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The figure shows wire 1 in cross-section; the wire is long and straight, carries a current of 4.01 mA out of the page, and is at distance \( d_1 = 2.67 \, \text{cm} \) from a surface. Wire 2, which is parallel to wire 1 and also long, is at a horizontal distance \( d_2 = 5.16 \, \text{cm} \) from wire 1 and carries a current of 6.96 mA into the page. What is the x component of the magnetic force per unit length on wire 2 due to wire 1?

In the diagram, wire 1 is shown at the top with a circle and a dot, indicating the current is out of the page. Wire 2, at the bottom, is represented with a circle and an "X," indicating the current is into the page. A horizontal measure indicates the distance \( d_2 \) between the two wires, and a vertical measure denotes \( d_1 \) from wire 1 to a surface. 

The input fields for the answer are:
- Number
- Units: N/m (Newton per meter)
Transcribed Image Text:The figure shows wire 1 in cross-section; the wire is long and straight, carries a current of 4.01 mA out of the page, and is at distance \( d_1 = 2.67 \, \text{cm} \) from a surface. Wire 2, which is parallel to wire 1 and also long, is at a horizontal distance \( d_2 = 5.16 \, \text{cm} \) from wire 1 and carries a current of 6.96 mA into the page. What is the x component of the magnetic force per unit length on wire 2 due to wire 1? In the diagram, wire 1 is shown at the top with a circle and a dot, indicating the current is out of the page. Wire 2, at the bottom, is represented with a circle and an "X," indicating the current is into the page. A horizontal measure indicates the distance \( d_2 \) between the two wires, and a vertical measure denotes \( d_1 \) from wire 1 to a surface. The input fields for the answer are: - Number - Units: N/m (Newton per meter)
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