The rectangular loop of wire shown in the figure (Figure 1) has a mass of 0.12 g per centimeter of length and is pivoted about side ab on a frictionless axis. The current in the wire is 9.0 A in the direction Part A shown. Find the magnitude of the magnetic field parallel to the y-axis that will cause the loop to swing up until its plane makes an angle of 30.0° with the yz-plane. Express your answer in teslas. ? B= 176 • 10-3 T Submit Previous Answers Request Answer Figure < 1 of 1 X Incorrect; Ty Again; 6 attempts remaining • Part B 6.00 cm Provide Feedback 30.0 8.00 ст

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Chapter1: Units, Trigonometry. And Vectors
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Item 3
The rectangular loop of wire shown in the figure (Figure 1) has a mass
of 0.12 g per centimeter of length and is pivoted about side ab on a
frictionless axis. The current in the wire is 9.0 A in the direction
Part A
shown.
Find the magnitude of the magnetic field parallel to the y-axis that will cause the loop to swing up until its plane makes an angle of 30.0 ° with the yz-plane.
Express your answer in teslas.
ΑΣφ
?
B = 176 • 10-3
T
Submit
Previous Answers Request Answer
Figure
< 1 of 1>
X Incorrect; Try Again; 6 attempts remaining
Part B
6.00 cm
Provide Feedback
30,0
8.00
cm
Transcribed Image Text:Item 3 The rectangular loop of wire shown in the figure (Figure 1) has a mass of 0.12 g per centimeter of length and is pivoted about side ab on a frictionless axis. The current in the wire is 9.0 A in the direction Part A shown. Find the magnitude of the magnetic field parallel to the y-axis that will cause the loop to swing up until its plane makes an angle of 30.0 ° with the yz-plane. Express your answer in teslas. ΑΣφ ? B = 176 • 10-3 T Submit Previous Answers Request Answer Figure < 1 of 1> X Incorrect; Try Again; 6 attempts remaining Part B 6.00 cm Provide Feedback 30,0 8.00 cm
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