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Revision: Magnetism Physics HSC Science (General) 11th Standard Maharashtra State Board

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Definitions [4]

Definition: Magnet

A magnet is a material that produces a magnetic field and can attract magnetic substances such as iron, nickel, cobalt, and some of their alloys.

Definition: Magnetic Field

The region around a magnet in which it can exert a magnetic force is called its magnetic field.

Definition: Magnetic Flux

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

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.

Formulae [1]

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

Theorems and Laws [1]

State Tangent Law in magnetism.

Tangent law states that, if a magnetic field ‘B is applied at right angles to the horizontal component of the earth's field BH, the needle comes to equilibrium at an angle ‘ to the magnetic meridian such that, tan θ = `B/B_H`.

Key Points

Key Takeaways
  • Every ordinary magnet has two poles: north and south.
  • Like poles repel; unlike poles attract.
  • A freely suspended magnet aligns approximately along the north–south direction.
  • Magnetic field lines are closed loops.
  • A broken magnet always produces smaller magnets, each with both poles.
  • Earth behaves approximately like a giant magnet.
  • Near geographic north lies Earth’s magnetic-south region in the simple bar-magnet model.
  • A compass works because its needle aligns with Earth’s magnetic field.
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
Key Points: Bar Magnet and Solenoid Analogy
  • A bar magnet behaves like a solenoid
  • Both produce similar magnetic field patterns
  • Solenoid Relation: M = NIA
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