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Consider a circular loop of wire lying in the plane of the table. Let the current pass through the loop clockwise. - Science

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प्रश्न

Consider a circular loop of wire lying in the plane of the table. Let the current pass through the loop clockwise. Apply the right-hand rule to find out the direction of the magnetic field inside and outside the loop.

संक्षेप में उत्तर

उत्तर

Inside the loop = Pierce inside the table
Outside the loop = Appear to emerge out from the table
For downward direction of current flowing in the circular loop, the direction of magnetic field lines will be as if they are emerging from the table outside the loop and merging in the table inside the loop. Similarly, for upward direction of current flowing in the circular loop, the direction of magnetic field lines will be as if they are emerging from the table outside the loop and merging in the table inside the loop, as shown in the given figure.

 

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अध्याय 13: Magnetic Effects of Electric Current - Intext Questions [पृष्ठ २२९]

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एनसीईआरटी Science [English] Class 10
अध्याय 13 Magnetic Effects of Electric Current
Intext Questions | Q 1 | पृष्ठ २२९

संबंधित प्रश्न

The magnetic field inside a long straight solenoid-carrying current ______.


When is the force experienced by a current-carrying conductor placed in a magnetic field largest?


Observe the following figure:

If the current in the coil A is changed, will some current be induced in the coil B? Explain.


What concealed do you get from the observation that a current-carrying wire deflects a compass needle placed near it?


What is the shape of field lines inside a current-carrying solenoid? What does the pattern of field lines inside a current-carrying solenoid indicate?


The magnetic field associated with a current-carrying straight conductor is in anticlockwise direction. If the conductor was held along the east-west direction, what will be the direction of current through it? Name and state the rule applied to determine the direction of current?

 

 


State Fleming's left-hand rule. Explain it with the help of labelled diagrams.


The force exerted on a current-carrying wire placed in a magnetic field is zero when the angle between the wire and the direction of magnetic field is: 

 45°
 60°
 90°
 180°

 


State condition when magnitude of force on a current carrying conductor placed in a magnetic field is zero?


State the unit of magnetic field in terms of the force experienced by a current carrying conductor placed in a magnetic field


A flat coil ABCD is freely suspended between the pole of U-shaped permanent magnet with the plane of coil parallel to the magnetic field.

What happens when a current is passed in the coil?


 A coil ABCD mounted on an axle is placed between the poles N and S of a permanent magnet as shown in Figure.

  1. In which direction will the coil begin to rotate when current is passed through the coil in direction ABCD by connecting a battery at the ends A and D of the coil?
  2. Why is a commutator necessary for continuous rotation of the coil?
  3. Complete the diagram with commutator, etc. for the flow of current in the coil?

When do you use (i) Fleming's left hand rule, and (ii) Fleming's right hand rule?

A flat coil ABCD is freely suspended between the pole pieces of a U-shaped permanent magnet with the plane of coil parallel to the magnetic field.

When will the couple acting on the coil be

  1. maximum
  2. minimum?

A flat coil ABCD is freely suspended between the pole of a U-shaped permanent magnet with the plane of coil parallel to the magnetic field.

Name an instrument which makes use of the principle stated above.


State whether a magnetic field is associated or not around a moving charge.


State under what conditions force acting on a current carrying conductor which is freely suspended in a magnetic field can be Zero.


The north pole of Earth’s magnet is in the ____________.


The shape of the magnetic field lines produced by a current-carrying conductor is ____________.


The direction of force on a current carrying conductor in a magnetic field is given by ____________.


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