Figure shows a square loop of side 5cm
Chapter Electromagnetic Induction. Learn from their 1-to-1 discussion with Filo tutors.
Draw the graph of current induced in the loop as time passes. Take anticlockwise direction of current as positive. Figure shown a square loop of side l being moved towards right at a constant speed v. The width of field is 3 l. Sketch induced emf versus time graph.
Figure shows a square loop of side 5cm
A square metallic wire loop of side 0. The magnetic field field is perpendicular to the plane of the loop, loop is connected to a network of resistances. Draw the graph of current induced in the loop as time passes. Take anticlockwise direction of current as positive. The figure shows a square metal plate of side l from which a square plate of side a has been cut as shown in the figure. The given figure shows a circle inscribed in a square of side 14 cm. What is the area of the shaded region? The right arm of the loop is in a uniform magnetic field of 5 T. The field is perpendicular to the plane of the loop and is going into it. What should be the value of v 0 so that a steady current of 2 mA flows in the loop? The magnetic field lines are perpendicular to the plane of the loop. The resistances of the lead wires BF and AE are negligible.
What is the area of the shaded region? Was this solution helpful?
The figure shows a square loop L of side 5 cm which is connected to a network of resistances. The whole setup is moving towards right with a constant speed of 1 cms At some instant, a part of L is in a uniform magnetic field of 1 T, perpendicular to the plane of the loop. If the resistance of L is 1. Last updated on Nov 2, Get Started.
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Figure shows a square loop of side 5cm
In this tutorial, we show you how to use the magnetic flux formula in physics to find flux through loops, solenoids, coils, and other geometries. One of the most important applications of magnetic flux is in Faraday's law of induction. Below, using the magnetic flux formula some magnetic flux problems are solved for more understanding. Problem 1 : A square loop of side 3 cm is positioned in a uniform magnetic field of magnitude 0. Find the flux passing through the square loop. Problem 3 : A rectangular loop of dimensions 3 cm by 5 cm is placed perpendicular in a uniform magnetic field of magnitude 0.
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