The figure shows a long straight wire near a rectangular current loop. What is the direction and magnitude of the total force on the loop? tot = The force is 10.0 cm N 1₁ = 15.0 A 1₂ = 30.0 A 30.0 cm 7.50 cm Things to Prepare 1. All four sides of the rectangular loop with experience a magnetic force from the field produced by wire with current ₁. The total force on the loop is the sum of forces on all four sides. 2. Identify how you would calculate the magnitude and direction of the forces on the 30.0 cm segments of the loop. Do these forces have equal magnitudes? Do they cancel? 3. Identify how you would calculate the magnitude and direction of the forces on the 10.0 cm segments of the loop. Do these forces have equal magnitudes? Do they cancel?

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Chapter24: Magnetic Fields
Section: Chapter Questions
Problem 103A
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. The figure shows a long straight wire near a rectangular current loop. What is the direction and
magnitude of the total force on the loop?
Fto
The force is
tot
=
10.0 cm
N
I₁ = 15.0 A
1₂ = 30.0 A
30.0 cm-
7.50 cm
Things to Prepare
1. All four sides of the rectangular loop with experience a magnetic force from the field produced by
wire with current ₁. The total force on the loop is the sum of forces on all four sides.
2. Identify how you would calculate the magnitude and direction of the forces on the 30.0 cm
segments of the loop. Do these forces have equal magnitudes? Do they cancel?
3. Identify how you would calculate the magnitude and direction of the forces on the 10.0 cm
segments of the loop. Do these forces have equal magnitudes? Do they cancel?
Transcribed Image Text:. The figure shows a long straight wire near a rectangular current loop. What is the direction and magnitude of the total force on the loop? Fto The force is tot = 10.0 cm N I₁ = 15.0 A 1₂ = 30.0 A 30.0 cm- 7.50 cm Things to Prepare 1. All four sides of the rectangular loop with experience a magnetic force from the field produced by wire with current ₁. The total force on the loop is the sum of forces on all four sides. 2. Identify how you would calculate the magnitude and direction of the forces on the 30.0 cm segments of the loop. Do these forces have equal magnitudes? Do they cancel? 3. Identify how you would calculate the magnitude and direction of the forces on the 10.0 cm segments of the loop. Do these forces have equal magnitudes? Do they cancel?
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