2. Loop moving into a Magnetic Field pt. 2. a. At what angle should the normal of the loop's area be to the background magnet field in order to maximize the magnetic flux through the loop? b. At what angle should the normal of the loop's area be to the background magnet field in order to minimize the magnetic flux through the loop? C. If the loop moves completely into the field with its normal at a 60 degree angle with respect to the background magnetic field, calculate the change in the magnetic flux. d. For the loop oriented as in part a, calculate the induced electromotive force after secs. e. If the resistance of the loop is 2 ohms, calculate the induced current. Which way does it flow?

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2. Loop moving into a Magnetic Field pt. 2.
a. At what angle should the normal of the loop's area be to the background magnetic
field in order to maximize the magnetic flux through the loop?
b. At what angle should the normal of the loop's area be to the background magnetic
field in order to minimize the magnetic flux through the loop?
c. If the loop moves completely into the field with its normal at a 60 degree angle
with respect to the background magnetic field, calculate the change in the
magnetic flux.
d. For the loop oriented as in part a, calculate the induced electromotive force after 5
secs.
e. If the resistance of the loop is 2 ohms, calculate the induced current. Which way
does it flow?
Transcribed Image Text:2. Loop moving into a Magnetic Field pt. 2. a. At what angle should the normal of the loop's area be to the background magnetic field in order to maximize the magnetic flux through the loop? b. At what angle should the normal of the loop's area be to the background magnetic field in order to minimize the magnetic flux through the loop? c. If the loop moves completely into the field with its normal at a 60 degree angle with respect to the background magnetic field, calculate the change in the magnetic flux. d. For the loop oriented as in part a, calculate the induced electromotive force after 5 secs. e. If the resistance of the loop is 2 ohms, calculate the induced current. Which way does it flow?
1. Loop moving into a Constant Magnetic Field.
Consider a square loop with side length 1m moving at a rate 0.1 m/s in the +x-direction
into a magnetic field 6m long with constant strength and direction of B = 1 T 2 (into the
page).
Transcribed Image Text:1. Loop moving into a Constant Magnetic Field. Consider a square loop with side length 1m moving at a rate 0.1 m/s in the +x-direction into a magnetic field 6m long with constant strength and direction of B = 1 T 2 (into the page).
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