A conducting rod slides on two parallel conducting bars as shown below. The bars are connected through a 10 ohm resistor which has a voltmeter attached across it. The bars are separated by .15m in the y direction. A force F is applied to therod to keep the rodmoving in the x direction at constant speed of v=6m/s. A uniform B-field of B=3mT is perpendicular to the x-y plane and points into the page as shown. R=3mア R= 10L IN a) Determine the magnetic flux D(x) as a function of x. b) Calculate d®/dt in Wb/s c) Determine the magnitude of EMF measured by the voltmeter. d) Calculate the current through the resistor and its direction (CW or CCW). e) Determine the magnitude of the force required to pull rod. f) Determine the energy density stored in the B-field.
A conducting rod slides on two parallel conducting bars as shown below. The bars are connected through a 10 ohm resistor which has a voltmeter attached across it. The bars are separated by .15m in the y direction. A force F is applied to therod to keep the rodmoving in the x direction at constant speed of v=6m/s. A uniform B-field of B=3mT is perpendicular to the x-y plane and points into the page as shown. R=3mア R= 10L IN a) Determine the magnetic flux D(x) as a function of x. b) Calculate d®/dt in Wb/s c) Determine the magnitude of EMF measured by the voltmeter. d) Calculate the current through the resistor and its direction (CW or CCW). e) Determine the magnitude of the force required to pull rod. f) Determine the energy density stored in the B-field.
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![A conducting rod slides on two parallel conducting bars as shown below. The bars are connected
through a 10 ohm resistor which has a voltmeter attached across it. The bars are separated by .15m in
the y direction. A force F is applied to therod to keep the rodmoving in the x direction at constant
speed of v=6m/s. A uniform B-field of B=3mT is perpendicular to the x-y plane and points into the page
as shown.
R= 3mT
とミ/Sm
R= 10L
IN
a) Determine the magnetic flux D(x) as a function of x.
b) Calculate d®/dt in Wb/s
c) Determine the magnitude of EMF measured by the voltmeter.
d) Calculate the current through the resistor and its direction (CW or CCW).
e) Determine the magnitude of the force required to pull rod.
f) Determine the energy density stored in the B-field.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fd627e045-d503-4693-9754-e0a854927fd5%2F93bf6179-36ef-4593-a00c-d5eacdf251ed%2Fkj3x3yd_processed.png&w=3840&q=75)
Transcribed Image Text:A conducting rod slides on two parallel conducting bars as shown below. The bars are connected
through a 10 ohm resistor which has a voltmeter attached across it. The bars are separated by .15m in
the y direction. A force F is applied to therod to keep the rodmoving in the x direction at constant
speed of v=6m/s. A uniform B-field of B=3mT is perpendicular to the x-y plane and points into the page
as shown.
R= 3mT
とミ/Sm
R= 10L
IN
a) Determine the magnetic flux D(x) as a function of x.
b) Calculate d®/dt in Wb/s
c) Determine the magnitude of EMF measured by the voltmeter.
d) Calculate the current through the resistor and its direction (CW or CCW).
e) Determine the magnitude of the force required to pull rod.
f) Determine the energy density stored in the B-field.
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