A rectangular coil with 65 turns of metal wire and a total resistance of 10.0 2 initially lies in the yz-plane at time t = 0 and rotates about the y-axis with a constant angular speed of 21.0 rad/s. The coil has a width along the z-direction of 0.200 m and a height along the y-direction of 0.100 m. The coil is in the presence of a uniform magnetic field with a magnitude of 2.20 T that points in the +x-direction. (a) Calculate the maximum rate of change of magnetic flux through one turn of coil (in Wb/s). Wb/s (b) Calculate the maximum magnitude of emf induced in the entire coil (in V). (c) Calculate the magnitude of the induced emf (in V) in the entire coil at t = 0.0500 s. V (d) Calculate the magnitude of torque (in N. m) exerted by the magnetic field on the coil at the instant when the emf is a maximum. N.m (e) What is the maximum power delivered to the coil (in W)? W (f) What If? If the coil is constructed from aluminum wire, what is the cross-sectional area of the wire (in m²)? The resistivity of aluminum is 2.82 x 10-8. m. m²

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A rectangular coil with 65 turns of metal wire and a total resistance of 10.0 2 initially lies in the yz-plane at time t = 0 and
rotates about the y-axis with a constant angular speed of 21.0 rad/s. The coil has a width along the z-direction of 0.200 m
and a height along the y-direction of 0.100 m. The coil is in the presence of a uniform magnetic field with a magnitude of
2.20 T that points in the +x-direction.
(a) Calculate the maximum rate of change of magnetic flux through one turn of coil (in Wb/s).
Wb/s
(b) Calculate the maximum magnitude of emf induced in the entire coil (in V).
V
(c) Calculate the magnitude of the induced emf (in V) in the entire coil at t = 0.0500 s.
(d) Calculate the magnitude of torque (in N-m) exerted by the magnetic field on the coil at the instant when the emf is a
maximum.
N.m
(e) What is the maximum power delivered to the coil (in W)?
W
(f) What If? If the coil is constructed from aluminum wire, what is the cross-sectional area of the wire (in m²)? The
resistivity of aluminum is 2.82 x 10-80. m.
m²
(g) What If? Suppose the coil now has the same number of turns, dimensions, and resistance, but the maximum current
that the wire can now safely carry is 4.50 A. What now is the maximum angular speed (in rad/s) with which the coil
can be rotated in the same 2.20 T magnetic field?
rad/s
Transcribed Image Text:A rectangular coil with 65 turns of metal wire and a total resistance of 10.0 2 initially lies in the yz-plane at time t = 0 and rotates about the y-axis with a constant angular speed of 21.0 rad/s. The coil has a width along the z-direction of 0.200 m and a height along the y-direction of 0.100 m. The coil is in the presence of a uniform magnetic field with a magnitude of 2.20 T that points in the +x-direction. (a) Calculate the maximum rate of change of magnetic flux through one turn of coil (in Wb/s). Wb/s (b) Calculate the maximum magnitude of emf induced in the entire coil (in V). V (c) Calculate the magnitude of the induced emf (in V) in the entire coil at t = 0.0500 s. (d) Calculate the magnitude of torque (in N-m) exerted by the magnetic field on the coil at the instant when the emf is a maximum. N.m (e) What is the maximum power delivered to the coil (in W)? W (f) What If? If the coil is constructed from aluminum wire, what is the cross-sectional area of the wire (in m²)? The resistivity of aluminum is 2.82 x 10-80. m. m² (g) What If? Suppose the coil now has the same number of turns, dimensions, and resistance, but the maximum current that the wire can now safely carry is 4.50 A. What now is the maximum angular speed (in rad/s) with which the coil can be rotated in the same 2.20 T magnetic field? rad/s
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(d) Calculate the magnitude of torque (in Nm) exerted by the magnetic field on the coil at the instant when the emf is
a maximum.
N.m
(e) What is the maximum power delivered to the coil (in W)?
W
(f) What If? If the coil is constructed from aluminum wire, what is the cross-sectional area of the wire (in m²)? The
resistivity of aluminum is 2.82 x 10-8 Q. m.
m²
(g) What If? Suppose the coil now has the same number of turns, dimensions, and resistance, but the maximum current
that the wire can now safely carry is 4.50 A. What now is the maximum angular speed (in rad/s) with which the coil
can be rotated in the same 2.20 T magnetic field?
rad/s
Transcribed Image Text:(d) Calculate the magnitude of torque (in Nm) exerted by the magnetic field on the coil at the instant when the emf is a maximum. N.m (e) What is the maximum power delivered to the coil (in W)? W (f) What If? If the coil is constructed from aluminum wire, what is the cross-sectional area of the wire (in m²)? The resistivity of aluminum is 2.82 x 10-8 Q. m. m² (g) What If? Suppose the coil now has the same number of turns, dimensions, and resistance, but the maximum current that the wire can now safely carry is 4.50 A. What now is the maximum angular speed (in rad/s) with which the coil can be rotated in the same 2.20 T magnetic field? rad/s
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