From the picture below Find the magnitude and potential of the induced electromotive force. When B= 1 T, l=0.5 m and v= 10 m/s eind +++ x P 30° VXB 1.1) Set the magnetic field B to have a direction directed towards the paper (as in the figure). 1.2) Set the magnetic field B to be directed away from the paper.

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Electromechanical energy transformation
From the picture below Find the magnitude and potential of the induced
electromotive force. When B= 1 T, l=0.5 m and v= 10 m/s
eind
+++
x
P
30°
VXB
1.1) Set the magnetic field B to have a direction directed towards the paper (as in
the figure).
1.2) Set the magnetic field B to be directed away from the paper.
Transcribed Image Text:From the picture below Find the magnitude and potential of the induced electromotive force. When B= 1 T, l=0.5 m and v= 10 m/s eind +++ x P 30° VXB 1.1) Set the magnetic field B to have a direction directed towards the paper (as in the figure). 1.2) Set the magnetic field B to be directed away from the paper.
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Step 1: Concept

The concept used here is when a conductor is placed in magnetic filed have some velocity then emf is induced in the conductor 

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