A circular loop with radius R y. and current I is placed in a uniform magnetic field that has strength B and is pointing out of the page. The loop makes an angle of 45.0° with respect to the +x-axis in such a way that the right hemisphere of the loop is above the xy-plane while the left hemisphere is below (see figure). What is the potential energy of the loop and the magnitude of the torque it experiences for this configuration? a. U =- 2.22(IBR) b. U =+ 2. 22(IBR 1. 65(IBR d. U =+ 1. 65(IBR“) t = 2. 22(IBR t = 2. 22(IBR %3D c. U T = 2.67(IBR 2. 67(IBR)

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A circular loop with radius R
y
and current I is placed in a uniform magnetic field that has
strength B and is pointing out of the page. The loop makes
an angle of 45.0° with respect to the +x-axis in such a way
that the right hemisphere of the loop is above the xy-plane
while the left hemisphere is below (see figure). What is the
potential energy of the loop and the magnitude of the torque
it experiences for this configuration?
a. U =- 2.22(IBR´)
T = 2. 22(IBR
b. U =+ 2. 22(IBR)
1. 65(IBR
d. U =+ 1. 65(IBR“)
2. 22(IBR
с. U
T = 2.67 IBR“
=-
T = 2.67(IBR")
Transcribed Image Text:A circular loop with radius R y and current I is placed in a uniform magnetic field that has strength B and is pointing out of the page. The loop makes an angle of 45.0° with respect to the +x-axis in such a way that the right hemisphere of the loop is above the xy-plane while the left hemisphere is below (see figure). What is the potential energy of the loop and the magnitude of the torque it experiences for this configuration? a. U =- 2.22(IBR´) T = 2. 22(IBR b. U =+ 2. 22(IBR) 1. 65(IBR d. U =+ 1. 65(IBR“) 2. 22(IBR с. U T = 2.67 IBR“ =- T = 2.67(IBR")
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