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Explain both a and b with correct calculation

The triangular loop of wire shown in the figure carries a current I= 5.00A in the direction shown. The
loop is in a uniform magnetic field that has magnitude B= 3.00T and the same direction as the current
in side PQ of the loop.
A): Find the magnitude of the force exerted by the magnetic field on side PQ of the triangle. PART A:
F=ON
B): Find the magnitude of the force exerted by the magnetic field on side RQ of the triangle. PART B:
F= 12 N
Q
0.600 m
P
1/2-
0.800 m
B
R
Transcribed Image Text:The triangular loop of wire shown in the figure carries a current I= 5.00A in the direction shown. The loop is in a uniform magnetic field that has magnitude B= 3.00T and the same direction as the current in side PQ of the loop. A): Find the magnitude of the force exerted by the magnetic field on side PQ of the triangle. PART A: F=ON B): Find the magnitude of the force exerted by the magnetic field on side RQ of the triangle. PART B: F= 12 N Q 0.600 m P 1/2- 0.800 m B R
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