2. Magnetic Field due to parallel current-carrying conductors. A long, straight wire carrying a current of 1.7 A in the positive z direction lies along the line x = - 3 cm, y = 0. A similar wire carrying a current of 1.7 A in the positive z direction lies along the line x = 3 cm, y = 0 as shown below. Find the magnetic field at a point P on the y axis at y= 6 cm. I= 1.7A I-1.7 A X, cm
2. Magnetic Field due to parallel current-carrying conductors. A long, straight wire carrying a current of 1.7 A in the positive z direction lies along the line x = - 3 cm, y = 0. A similar wire carrying a current of 1.7 A in the positive z direction lies along the line x = 3 cm, y = 0 as shown below. Find the magnetic field at a point P on the y axis at y= 6 cm. I= 1.7A I-1.7 A X, cm
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
Transcribed Image Text:2. Magnetic Field due to parallel current-carrying conductors. A long, straight wire
carrying a current of 1.7 A in the positive z direction lies along the line x = - 3 cm, y =
0. A similar wire carrying a current of 1.7 A in the positive z direction lies along the
line x = 3 cm, y = 0 as shown below. Find the magnetic field at a point P on the y axis
at y= 6 cm.
I=1.7 A
I-1.7 A
x, cm
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