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Class 12 Physics

12th Physics Derivations List: Every Derivation You Should Know

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Physics differs from Maths in one useful way: a fairly fixed list of derivations reappears in the public exam every year. Once you know that list, the five-mark section stops being unpredictable.

Below are the derivations worth knowing cold, unit by unit.

Unit 1: Electrostatics

  • Electric field due to a dipole at a point on the axial line and on the equatorial line
  • Torque experienced by a dipole in a uniform electric field
  • Electric field due to an infinitely long charged wire using Gauss law
  • Electric field due to a charged infinite plane sheet
  • Electric field due to a uniformly charged spherical shell, inside and outside
  • Capacitance of a parallel plate capacitor, with and without a dielectric
  • Energy stored in a capacitor and energy density

Unit 2: Current Electricity

  • Expression for drift velocity and the relation between current and drift velocity
  • Wheatstone bridge balance condition using Kirchhoff laws
  • Metre bridge and potentiometer principle
  • Comparison of emf of two cells using a potentiometer

Unit 3: Magnetism and Magnetic Effects of Electric Current

  • Magnetic field at a point on the axis of a circular current loop
  • Magnetic field due to a long straight conductor using Ampere circuital law
  • Magnetic field inside a solenoid and inside a toroid
  • Force between two long parallel current carrying conductors
  • Torque on a current loop in a uniform magnetic field
  • Theory of the moving coil galvanometer
  • Conversion of a galvanometer into an ammeter and a voltmeter

Unit 4: Electromagnetic Induction and Alternating Current

  • Self inductance of a long solenoid
  • Mutual inductance of two coaxial solenoids
  • Energy stored in an inductor
  • Principle and working of an AC generator
  • Impedance of a series LCR circuit and the resonance condition
  • Power in an AC circuit and the power factor
  • Working of a transformer and its energy losses

Unit 5: Electromagnetic Waves

  • Properties of electromagnetic waves and the origin of displacement current

Unit 6: Optics

  • Mirror equation for a spherical mirror
  • Refraction at a single spherical surface
  • Lens maker formula
  • Equivalent focal length of two thin lenses in contact
  • Angle of minimum deviation for a prism
  • Young double slit experiment and the expression for fringe width
  • Condition for constructive and destructive interference
  • Resolving power of a microscope and a telescope
  • Brewster law and Malus law

Optics carries the largest number of derivations of any unit. If you are choosing where to invest, invest here.

Unit 7: Dual Nature of Radiation and Matter

  • Einstein photoelectric equation and its explanation of experimental observations
  • de Broglie wavelength of a particle, including for an accelerated electron

Unit 8: Atomic and Nuclear Physics

  • Radius, velocity and energy of an electron in the nth Bohr orbit
  • Expression for the wavelength of spectral lines and the Rydberg formula
  • Radioactive decay law and the relation between half life and decay constant
  • Mass defect and binding energy per nucleon

Unit 9: Semiconductor Electronics

  • Working of a p-n junction diode under forward and reverse bias
  • Half wave and full wave rectifier with waveforms
  • Transistor characteristics in common emitter configuration
  • Transistor as an amplifier and as a switch
  • De Morgan theorems

How to actually retain a derivation

Reading a derivation five times produces the feeling of knowing it and very little of the ability to write it. Use this instead:

  1. Read it once for the logic. Ask what the starting point is and what the target is. Most derivations are three or four moves, not twenty.
  2. Write down only the skeleton. The starting law, the two or three key substitutions, the final result. Four lines, not the whole page.
  3. Reproduce it from the skeleton the next day, on blank paper, without looking.
  4. Repeat after three days, then after a week. Spaced repetition is what moves a derivation from recognition to recall.

Always draw the diagram. In several of these, the diagram itself carries marks, and an examiner reading a derivation without one has less to award against.

A practical order

If exams are close, work in this order: Optics, then Electrostatics, then Magnetism and Electromagnetic Induction, then Atomic and Nuclear Physics, then Semiconductor Electronics. That sequence front-loads the units with the most derivation-heavy marks.

Chapter-wise Class 12 practice material is available on the Class 12 section.

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