You are evaluating the performance of a large electromagnet. The magnetic field of the electromagnet is zero at t = 0 and increases as the current through the windings of the electromagnet is increased. You determine the magnetic field as a function of time by measuring the time dependence of the current induced in a small coil that you insert between the poles of the electromagnet, with the plane of the coil parallel to the pole faces as for the loop in (Figure 1). The coil has 4 turns, a radius of 0.700 cm, and a resistance of 0.190 . You measure the current i in the coil as a function of time t. Your results are shown in (Figure 2). Throughout your measurements, the current induced in the coil remains in the same direction. igure < 1 of 2 S N Part A Calculate the magnetic field at the location of the coil for t = 2.00 s. Express your answer to three significant figures and include the appropriate units. O F μA 3 ? Units Request Answer Part B Calculate the magnetic field at the location of the coil for t = 5.00 s. Express your answer to three significant figures and include the appropriate units. " μA Value Units B= Submit B= Value Constants.

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You are evaluating the performance of a large electromagnet.
The magnetic field of the electromagnet is zero at t = 0 and
increases as the current through the windings of the
electromagnet is increased. You determine the magnetic field
as a function of time by measuring the time dependence of the
current induced in a small coil that you insert between the
poles of the electromagnet, with the plane of the coil parallel to
the pole faces as for the loop in (Figure 1). The coil has 4
turns, a radius of 0.700 cm, and a resistance of 0.190.
You measure the current i in the coil as a function of time t.
Your results are shown in (Figure 2). Throughout your
measurements, the current induced in the coil remains in the
same direction.
igure
1 of 2
S
N
▼
Part A
Calculate the magnetic field at the location of the coil for t = 2.00 s.
Express your answer to three significant figures and include the appropriate units.
μA
?
B =
Value
Units
Submit
Request Answer
Part B
Calculate the magnetic field at the location of the coil for t = 5.00 s.
Express your answer to three significant figures and include the appropriate units.
μÃ
W
?
B =
Value
Units
Constants
Transcribed Image Text:You are evaluating the performance of a large electromagnet. The magnetic field of the electromagnet is zero at t = 0 and increases as the current through the windings of the electromagnet is increased. You determine the magnetic field as a function of time by measuring the time dependence of the current induced in a small coil that you insert between the poles of the electromagnet, with the plane of the coil parallel to the pole faces as for the loop in (Figure 1). The coil has 4 turns, a radius of 0.700 cm, and a resistance of 0.190. You measure the current i in the coil as a function of time t. Your results are shown in (Figure 2). Throughout your measurements, the current induced in the coil remains in the same direction. igure 1 of 2 S N ▼ Part A Calculate the magnetic field at the location of the coil for t = 2.00 s. Express your answer to three significant figures and include the appropriate units. μA ? B = Value Units Submit Request Answer Part B Calculate the magnetic field at the location of the coil for t = 5.00 s. Express your answer to three significant figures and include the appropriate units. μà W ? B = Value Units Constants
<HW7
Problem 29.64
You are evaluating the performance of a large electromagnet.
The magnetic field of the electromagnet is zero at t = 0 and
increases as the current through the windings of the
electromagnet is increased. You determine the magnetic field
as a function of time by measuring the time dependence of the
current induced in a small coil that you insert between the
poles of the electromagnet, with the plane of the coil parallel to
the pole faces as for the loop in (Figure 1). The coil has 4
turns, a radius of 0.700 cm, and a resistance of 0.190.
You measure the current i in the coil as a function of time t.
Your results are shown in (Figure 2). Throughout your
measurements, the current induced in the coil remains in the
same direction.
Figure
< 1 of 2
S
N
a
Express your answer to three significant figures and include the appropriate units.
☐
μA
?
B =
Value
Units
Submit
Request Answer
Part C
Calculate the magnetic field at the location of the coil for t = 6.00 s.
Express your answer to three significant figures and include the appropriate units.
☐
μA
?
B =
Value
Units
Submit
< Return to Assignment
Provide Feedback
Request Answer
5 of 5
Constants
Transcribed Image Text:<HW7 Problem 29.64 You are evaluating the performance of a large electromagnet. The magnetic field of the electromagnet is zero at t = 0 and increases as the current through the windings of the electromagnet is increased. You determine the magnetic field as a function of time by measuring the time dependence of the current induced in a small coil that you insert between the poles of the electromagnet, with the plane of the coil parallel to the pole faces as for the loop in (Figure 1). The coil has 4 turns, a radius of 0.700 cm, and a resistance of 0.190. You measure the current i in the coil as a function of time t. Your results are shown in (Figure 2). Throughout your measurements, the current induced in the coil remains in the same direction. Figure < 1 of 2 S N a Express your answer to three significant figures and include the appropriate units. ☐ μA ? B = Value Units Submit Request Answer Part C Calculate the magnetic field at the location of the coil for t = 6.00 s. Express your answer to three significant figures and include the appropriate units. ☐ μA ? B = Value Units Submit < Return to Assignment Provide Feedback Request Answer 5 of 5 Constants
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