Home
Class 11
PHYSICS
If the current flowing in a circular loo...

If the current flowing in a circular loop is in anticlockwise direction then the magnetic induction will be

A

along the direction of current.

B

opposite to the direction of current.

C

directed outwards.

D

directed inwards.

Text Solution

Verified by Experts

The correct Answer is:
D
Promotional Banner

Topper's Solved these Questions

  • MAGNETIC EFFECT OF ELECTRIC CURRENT

    TARGET PUBLICATION|Exercise Critical Thinking Introduction|38 Videos
  • MAGNETIC EFFECT OF ELECTRIC CURRENT

    TARGET PUBLICATION|Exercise Competitive Thinking Introduction|58 Videos
  • FRICTION IS SOLIDS AND LIQUIDS

    TARGET PUBLICATION|Exercise MCQ (EVALUATION TEST)|21 Videos
  • MAGNETISM

    TARGET PUBLICATION|Exercise MCQs|150 Videos

Similar Questions

Explore conceptually related problems

If the current flowing in a circular loop is in clockwise directions, then the magnetic induction will be

If a current flowing in a circular coil is in anticlockwise direction , then direction of magnetic field will be

If current through a circular coil flows in clockwise direction, then the direction of magnetic field at the centre of the circular coil is………………to the plane of the coil, directed……………. .

If a thin uniform wire of length 1m is bent into an equilateral triangle and crries a current of sqrt(2)A in anticlockwise direction, find the net magnetic induction at the centroid

Current I A flowing in a circular coil of radius r. then the magnetic induction at the centre is B. If the current is doubled then the magnetic induction will be

What is the magnetic moment of a current carrying thin circular loop if the radius of the loop is equal to R and the magnetic induction at its centre is equal to B ?

In figure is shown a circular loop carrying current I. Show the direction of the magnetic field with the help of lines of force.

Two identical wires each of length L are bent to form a circular loop and a square loop. If the same current i flows in the two wires, then the ratio of the magnetic inductions at the centre of the circular and square loops is :