The rectangular loop of wire shown in the figure (Figure 1) has a mass of 0.11 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 shown. M Review Cons Part A 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 th yz-plane. Express your answer using two significant figures. ? Figure < 1 of 1> B= 0.024 Submit Previous Answers Request Answer 6,00 cm X Incorrect; Try Again; 5 attempts remaining Part B 30.0 8.00 Find the direction 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 cm
The rectangular loop of wire shown in the figure (Figure 1) has a mass of 0.11 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 shown. M Review Cons Part A 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 th yz-plane. Express your answer using two significant figures. ? Figure < 1 of 1> B= 0.024 Submit Previous Answers Request Answer 6,00 cm X Incorrect; Try Again; 5 attempts remaining Part B 30.0 8.00 Find the direction 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 cm
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![Problem 27.69
<) 18 of 21
The rectangular loop of wire shown in the figure (Figure 1)
has a mass of 0.11 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 shown.
Review | Constant
Part A
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 using two significant figures.
Figure
1 of 1>
B= 0.024
Submit
Previous Answers Request Answer
6.00 cm
X Incorrect; Try Again; 5 attempts remaining
Part B
30.0
8.00 Y
Find the direction 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-
cm
plane
11:25 AM
O Type here to search
OE D . 40)
84'F
7/9/2021](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd1243f13-3781-4b68-b085-e54800a99e31%2F5f61bd41-929e-4303-81ea-2e917807cd61%2F0xkfkul_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 27.69
<) 18 of 21
The rectangular loop of wire shown in the figure (Figure 1)
has a mass of 0.11 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 shown.
Review | Constant
Part A
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 using two significant figures.
Figure
1 of 1>
B= 0.024
Submit
Previous Answers Request Answer
6.00 cm
X Incorrect; Try Again; 5 attempts remaining
Part B
30.0
8.00 Y
Find the direction 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-
cm
plane
11:25 AM
O Type here to search
OE D . 40)
84'F
7/9/2021
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