Multiple Choice
A flat rectangular loop of wire is placed between the poles of a magnet,as shown in the figure.It has dimensions w = 0.60 m and L = 1.0 m,and carries a current I = 2.0 A in the direction shown.The magnetic field due to the magnet is uniform and of magnitude 0.80 T.The loop rotates in the magnetic field and at one point the plane of the loop is parallel to the field.At that instant,what is the magnitude of the torque acting on the wire due to the magnetic field?
A) 0.00 N ∙ m
B) 0.40 N ∙ m
C) 0.48 N ∙ m
D) 0.83 N ∙ m
E) 0.96 N ∙ m
Correct Answer:

Verified
Correct Answer:
Verified
Q41: An ideal solenoid 20 cm long is
Q42: For the horseshoe magnet shown in the
Q43: When you double the number of windings
Q44: A proton,moving in a uniform magnetic field,moves
Q45: A proton is to orbit Earth at
Q47: A proton,starting from rest,accelerates through a potential
Q48: When the switch is closed in the
Q49: A proton,moving east,enters a magnetic field.Because of
Q50: Two long parallel wires carry currents of
Q51: A wire in the shape of an