Two long straight current-carrying wires are lined up parallel to one another in vacuum at a distance d. Currents of Ij and I2 flow through the wires, both in the same direction generating the field of BM at a midpoint between them. Write down an expression for BM in terms of the currents running in each of the wires. Assume vacuum permeability µo = 1. Please use "*" for products (e.g. B*A), "/" for ratios (e.g. B/A) and the usual "+" and "-" signs as appropriate. For use 1/(A*B). For Greek letters such as 1 or a use lambda and pi. Please use the "Display response" button to check you entered the answer you expect. BM=

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Two long straight current-carrying wires are lined up parallel to one another in vacuum at a distance d. Currents of I and I2 flow through the
wires, both in the same direction generating the field of BM at a midpoint between them. Write down an expression for BM in terms of the
1. Please use
II * I!
currents running in each of the wires. Assume vacuum permeability Ho
for products (e.g. B*A), "/" for ratios (e.g. B/A) and the
usual "+" and "-" signs as appropriate. For
A*B
1
use 1/(A*B). For Greek letters such as 1 or T use lambda and pi. Please use the "Display
response" button to check you entered the answer you expect.
Вм-
Display response
Transcribed Image Text:Two long straight current-carrying wires are lined up parallel to one another in vacuum at a distance d. Currents of I and I2 flow through the wires, both in the same direction generating the field of BM at a midpoint between them. Write down an expression for BM in terms of the 1. Please use II * I! currents running in each of the wires. Assume vacuum permeability Ho for products (e.g. B*A), "/" for ratios (e.g. B/A) and the usual "+" and "-" signs as appropriate. For A*B 1 use 1/(A*B). For Greek letters such as 1 or T use lambda and pi. Please use the "Display response" button to check you entered the answer you expect. Вм- Display response
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