LED Tt ⠀ Ө B > A very long, rectangular loop of wire can slide without friction on a horizontal surface. Initially the loop has part of its area in a region of uniform magnetic field that has magnitude B = 2.90 T and is perpendicular to the plane of the loop. The loop has dimensions 4.00 cm by 60.0 cm, mass 24.0 g, and resistance R = 5.00 x 10-3 2 The loop is initially at rest; then a constant force Fext -0.180 N is applied to the loop to pull it out of the field. (a) What is the acceleration of the loop when v = 3.00 cm/s? (b) What are the loop's terminal speed and acceleration when the loop is moving at that terminal speed? (c) What is the acceleration of the loop when it i completely out of the magnetic field? X X 4.00 cm x B x × U + X X X × Fext 60.0 cm X

University Physics Volume 2
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Chapter13: Electromagnetic Induction
Section: Chapter Questions
Problem 32P: The magnetic field perpendicular to a single sire loop of diameter 10.0 cm decreases fron 0.50 T to...
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LED
Tt ⠀
Ө
B
>
A very long, rectangular loop of wire can slide without friction on a horizontal surface. Initially the loop has
part of its area in a region of uniform magnetic field that has magnitude B = 2.90 T and is perpendicular to the
plane of the loop. The loop has dimensions 4.00 cm by 60.0 cm, mass 24.0 g, and resistance R = 5.00 x 10-3 2
The loop is initially at rest; then a constant force Fext -0.180 N is applied to the loop to pull it out of the field.
(a) What is the acceleration of the loop when v = 3.00 cm/s? (b) What are the loop's terminal speed and
acceleration when the loop is moving at that terminal speed? (c) What is the acceleration of the loop when it i
completely out of the magnetic field?
X X
4.00 cm
x B x
×
U
+
X
X
X
×
Fext
60.0 cm
X
Transcribed Image Text:LED Tt ⠀ Ө B > A very long, rectangular loop of wire can slide without friction on a horizontal surface. Initially the loop has part of its area in a region of uniform magnetic field that has magnitude B = 2.90 T and is perpendicular to the plane of the loop. The loop has dimensions 4.00 cm by 60.0 cm, mass 24.0 g, and resistance R = 5.00 x 10-3 2 The loop is initially at rest; then a constant force Fext -0.180 N is applied to the loop to pull it out of the field. (a) What is the acceleration of the loop when v = 3.00 cm/s? (b) What are the loop's terminal speed and acceleration when the loop is moving at that terminal speed? (c) What is the acceleration of the loop when it i completely out of the magnetic field? X X 4.00 cm x B x × U + X X X × Fext 60.0 cm X
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