मराठी

Magnetic Lines of Force

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Estimated time: 9 minutes
Maharashtra State Board: Class 11
CISCE: Class 12

Introduction

Michael Faraday introduced the concept of magnetic lines of force to visualise invisible magnetic fields around magnets and current-carrying conductors.

Equivalently, it is the path along which a free north pole would move if placed in the magnetic field.

Maharashtra State Board: Class 11
CISCE: Class 12

Defintion: Magnetic Line of Force

A magnetic line of force is an imaginary curve in a magnetic field such that the tangent drawn at any point on it gives the direction of the magnetic field at that point.

Maharashtra State Board: Class 11

Definition: Magnetic Flux

Magnetic Flux (ϕ): Total number of magnetic field lines passing through a given area, measured in weber (Wb).

Maharashtra State Board: Class 11

Formula: Magnetic Field Strength

Magnetic Field Strength (B): B = \[\frac {ϕ}{A}\]

where A is the area normal to the field, valid for a uniform field.

SI Unit of B: tesla (T)
Conversion: 1 T = 104 gauss

Maharashtra State Board: Class 11
CISCE: Class 12

Direction Convention

Region Direction of Field Lines
Outside the magnet From North pole → South pole
Inside the magnet From South pole → North pole (completing the loop)

Key Point: Because of this reversal inside the magnet, field lines always form closed loops — they never truly "start" or "end" at a pole.

Maharashtra State Board: Class 11
CISCE: Class 12

Properties of Magnetic Lines of Force

Property Explanation
Closed curves Lines form continuous loops through the magnet and the surrounding space
Never intersect Two directions of field cannot exist at the same point
Density ∝ strength Crowded lines = stronger field; sparse lines = weaker field
Parallel & equidistant Represents a uniform magnetic field
Tend to contract longitudinally Explains attraction between unlike poles
Tend to repel sideways Explains repulsion between like poles
Maximum near poles Field is strongest closest to the poles
Maharashtra State Board: Class 11
CISCE: Class 12

Stretched Spring/Rubber Band Analogy

Think of each magnetic line of force as a stretched elastic band — it wants to contract (pulling unlike poles together), and it pushes sideways against neighbouring bands (repelling like poles apart).

This single analogy explains both attraction and repulsion using the same physical picture.

Maharashtra State Board: Class 11
CISCE: Class 12

Key Points: Magnetic Lines of Force

  • Field lines show field direction (tangent) and strength (density)
  • They form closed loops, never intersect, and are denser near poles
  • Uniform field = parallel, equidistant lines
  • B = ϕ/A; SI units: flux in weber, field strength in tesla
  • Attraction/repulsion explained via the "contracting and laterally repelling" elastic analogy
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