Question

The figure below shows a cross-section of two long, straight, parallel wires, where the currents are flowing perpendicul...

The figure below shows a cross-section of two long, straight, parallel wires, where the currents are flowing perpendicular to the page. Wire 1 carries a current

I1

directed into the page (in the

−z

direction) and passes through the x-axis at

x = +a.

Wire 2 passes through the x-axis at

x = −2a

and carries an unknown current

I2.

The total magnetic field at the origin due to the current-carrying wires has the magnitude

0I1
(2πa)

. Note that the current

I2

can have either of two possible values.

The cross-sections of two long, straight, parallel wires are depicted on the x axis. The cross-section of the wire labeled I1 contains a cross in the shape of an X, and is located at x = +a. The cross-section of the wire labeled I2 is a solid color, and is located at x = −2a.

(a)

Find the value of I2 with the smaller magnitude, stating it in terms of I1 and giving its direction.

magnitudeI2=

direction ---Select--- to the left to the right upward downward into the page out of the page

(b)

Find the other possible value of I2. (Use the following as necessary: I1.)

magnitudeI2=

direction ---Select--- to the left to the right upward downward into the page out of the page

(c)

What If? For each of the values of

I2,

at what location along the x-axis is the total magnetic field due to both wires equal to zero? Your answers should be in terms of a.value of I2 from part (a)x=

value of I2 from part (b)x=

2 0
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Answer #1

olirection solution (2) Ax B= 2 UoI/ 2T a. - Best magnetic field due to I, =B1 Bi= Moli directed along ty close 2Ta. so magne

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Answer #2

A.

I_2=2I_1

out of page 

B. 

I_2=6I_1

in the page

C. 

x=4a

x=(4a)/7

answered by: Anonymous
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