In the figure(Figure 1) the top wire is 1.00 mm -diameter copper wire and is suspended in air due to the two magnetic forces from the bottom two wires. The current is 50.0 A in each of the two bottom wires. Part A Calculate the required current flow in the suspended wire. I= A Submit Request Answer Provide Feedback Figure 1 of 1
In the figure(Figure 1) the top wire is 1.00 mm -diameter copper wire and is suspended in air due to the two magnetic forces from the bottom two wires. The current is 50.0 A in each of the two bottom wires. Part A Calculate the required current flow in the suspended wire. I= A Submit Request Answer Provide Feedback Figure 1 of 1
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
Transcribed Image Text:In the figure(Figure 1) the top wire is 1.00 mm -diameter copper wire and
is suspended in air due to the two magnetic forces from the bottom two
wires. The current is 50.0 A in each of the two bottom wires.
Part A
Calculate the required current flow in the suspended wire.
?
I =
A
Submit
Request Answer
Provide Feedback
Figure
1 of 1
N -3.5 cm-
-|P
fe 3.5 cm
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