Triangular Wire The diagram below depicts a wire carrying a current I = 4.95 A. The wire splits into two channels of resistance R₂ = 8.250 and R₁ = 3.10. The channels re-join, forming a current in the shape of an isosceles triangle with base distance d = 8.9 cm and height L = 12 cm. The loop is entered into a region of space where there is a uniform magnetic field, B = 1.55 x 10-2T, as shown. The loop is placed such that the field lies in the plane of the loop. What is the magnitude of the torque on the circuit about the wire's vertical axis? torque= N R₂R₁ S

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Triangular Wire
The diagram below depicts a wire carrying a current I = 4.95 A. The wire splits into two channels of resistance R₂ = 8.25N and R₁ = 3.1N. The channels re-join, forming a current in the shape of an isosceles triangle with base
distance d = 8.9 cm and height L = 12 cm. The loop is entered into a region of space where there is uniform magnetic field, B = 1.55 x 10-2 T, as shown. The loop is placed such that the field lies in the plane of the loop.
What is the magnitude of the torque on the circuit about the wire's vertical axis?
torque=
N
R₂
S
Transcribed Image Text:Triangular Wire The diagram below depicts a wire carrying a current I = 4.95 A. The wire splits into two channels of resistance R₂ = 8.25N and R₁ = 3.1N. The channels re-join, forming a current in the shape of an isosceles triangle with base distance d = 8.9 cm and height L = 12 cm. The loop is entered into a region of space where there is uniform magnetic field, B = 1.55 x 10-2 T, as shown. The loop is placed such that the field lies in the plane of the loop. What is the magnitude of the torque on the circuit about the wire's vertical axis? torque= N R₂ S
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