9. What is the direction of the induced current in each scenario below? Acceptable answers are: Clockwise, Counterclockwise, and no induced current. In scenario C, the loop does not cross the wire. In scenario F, the magnetic field only exists in the region outlined by the dashed lines creating a square. A. B. Loop Loop A B C Loop C. D. D E. F. Magnet moving down Loop E Magnet moving S down I Loop Bexternal Area of loop decreasing Current I decreasing in magnitude F I Loop moving down O Loop Be external Angle theta starting at 90 and decreasing to 0 degrees
9. What is the direction of the induced current in each scenario below? Acceptable answers are: Clockwise, Counterclockwise, and no induced current. In scenario C, the loop does not cross the wire. In scenario F, the magnetic field only exists in the region outlined by the dashed lines creating a square. A. B. Loop Loop A B C Loop C. D. D E. F. Magnet moving down Loop E Magnet moving S down I Loop Bexternal Area of loop decreasing Current I decreasing in magnitude F I Loop moving down O Loop Be external Angle theta starting at 90 and decreasing to 0 degrees
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question

Transcribed Image Text:9.
What is the direction of the induced current in each scenario below?
Acceptable answers are: Clockwise, Counterclockwise, and no induced current. In scenario
C, the loop does not cross the wire. In scenario F, the magnetic field only exists in the
region outlined by the dashed lines creating a square.
A.
B.
Loop
Loop
A
B
C
Loop
C.
D.
D
E.
F.
Magnet
moving
down
Loop
E
Magnet
moving S
down
I
Loop
Bexternal
Area of loop
decreasing
Current I
decreasing
in magnitude
F
I
Loop
moving
down
O
Loop Be
external
Angle theta starting at 90
and decreasing to 0 degrees
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