A sliding bar is moving to the left along a conductive rail of width W in the presence of a magnetic field B at the velocity of 1m/s as shown: rail Vemf W The field is expressed as B=-6a, -3a, (Tesla)...


A sliding bar is moving to the left along a conductive rail of width W in the presence of a magnetic field B at<br>the velocity of 1m/s as shown:<br>rail<br>Vemf<br>W<br>The field is expressed as B=-6a, -3a, (Tesla) and dS is oriented out of the page.<br>Find Vemf ?<br>Select one:<br>a. None of these<br>O b. -6W<br>)ו<br>

Extracted text: A sliding bar is moving to the left along a conductive rail of width W in the presence of a magnetic field B at the velocity of 1m/s as shown: rail Vemf W The field is expressed as B=-6a, -3a, (Tesla) and dS is oriented out of the page. Find Vemf ? Select one: a. None of these O b. -6W )ו
rail<br>V emf<br>W<br>The field is expressed as B=-6ax -3a, (Tesla) and dS is oriented out of the page.<br>Find Vemf ?<br>Select one:<br>O a.<br>None of these<br>O b. -6W<br>O c. -3 W<br>O d. -12 W<br>

Extracted text: rail V emf W The field is expressed as B=-6ax -3a, (Tesla) and dS is oriented out of the page. Find Vemf ? Select one: O a. None of these O b. -6W O c. -3 W O d. -12 W

Jun 11, 2022
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