🗓️ July 2026: Capacitors to Magnetism (20 Working Days)
Chapter 2: Electrostatic Potential & Capacitance
Jul 9 (Thu): Capacitance & Parallel Plate Capacitor derivation.
Jul 10 (Fri): Effect of dielectrics.
Jul 11 (Sat): Combinations (Series/Parallel) & Energy stored.
Jul 12 (Sun): OFF
Chapter 3: Current Electricity
Jul 13 (Mon): Drift velocity, mobility, and Ohm's law.
Jul 14 (Tue): V-I characteristics (linear/non-linear), electrical energy & power.
Jul 15 (Wed): Internal resistance, EMF, cells in series & parallel.
Jul 16 (Thu): Kirchhoff’s rules.
Jul 17 (Fri): Kirchhoff’s rules (Numericals).
Jul 18 (Sat): Wheatstone bridge.
Jul 19 (Sun): OFF
Jul 20 (Mon): Current Electricity PYQs and conceptual doubts.
Chapter 4: Moving Charges and Magnetism
Jul 21 (Tue): Concept of Magnetic field, Biot-Savart law.
Jul 22 (Wed): Ampere’s law & its applications.
Jul 23 (Thu): Force on a moving charge in magnetic/electric fields (Lorentz).
Jul 24 (Fri): Force on a current-carrying conductor.
Jul 25 (Sat): Force between two parallel conductors (Ampere definition).
Jul 26 (Sun): OFF
Jul 27 (Mon): Torque on a current loop, Magnetic dipole moment.
Jul 28 (Tue): Moving coil galvanometer & conversion to ammeter/voltmeter.
Jul 29 (Wed): Moving Charges & Magnetism PYQs.
Chapter 5: Magnetism and Matter
Jul 30 (Thu): Bar magnet as an equivalent solenoid, magnetic field lines.
Jul 31 (Fri): Magnetic properties of materials (Para, Dia, Ferro).
🗓️ August 2026: EMI, AC & Optics (25 Working Days)
Aug 1 (Sat): Chapter 5 Concepts review & PYQs.
Aug 2 (Sun): OFF
Chapter 6: Electromagnetic Induction
Aug 3 (Mon): Magnetic flux, Faraday’s laws of EMI.
Aug 4 (Tue): Lenz’s law, conservation of energy, Motional EMF.
Aug 5 (Wed): Self-inductance.
Aug 6 (Thu): Mutual inductance.
Aug 7 (Fri): EMI PYQs and numericals.
Chapter 7: Alternating Current
Aug 8 (Sat): AC voltage applied to R, L, and C individually.
Aug 9 (Sun): OFF
Aug 10 (Mon): Series LCR circuit (Phasor diagrams) & Resonance.
Aug 11 (Tue): Power in AC circuits, LC Oscillations (Qualitative idea only).
Aug 12 (Wed): Transformers.
Aug 13 (Thu): AC Generator.
Aug 14 (Fri): Alternating Current PYQs.
Aug 15 (Sat): Independence Day (Holiday)
Aug 16 (Sun): OFF
Chapter 8: Electromagnetic Waves
Aug 17 (Mon): Displacement current, EM spectrum & properties.
Aug 18 (Tue): EM Waves PYQs (Very scoring chapter).
Chapter 9: Ray Optics and Optical Instruments
Aug 19 (Wed): Reflection, Mirror formula, Refraction, TIR & applications.
Aug 20 (Thu): Refraction at spherical surfaces.
Aug 21 (Fri): Lenses and Lens Maker's Formula.
Aug 22 (Sat): Power of a lens, combination of thin lenses.
Aug 23 (Sun): OFF
Aug 24 (Mon): Refraction through a prism and dispersion.
Aug 25 (Tue): Optical instruments: Microscopes.
Aug 26 (Wed): Optical instruments: Telescopes.
Aug 27 (Thu): Ray Optics high-weightage PYQs.
Chapter 10: Wave Optics
Aug 28 (Fri): Wavefront, Huygens principle, proof of reflection/refraction.
Aug 29 (Sat): Interference & Young's Double Slit Experiment (YDSE).
Aug 30 (Sun): OFF
Aug 31 (Mon): Single slit diffraction (Qualitative).
🗓️ September 2026: Modern Physics & Wrap-up (13 Working Days)
Sep 1 (Tue): Wave Optics PYQs & conceptual clarity.
Chapter 11: Dual Nature of Radiation & Matter
Sep 2 (Wed): Electron emission, Photoelectric effect (experimental study).
Sep 3 (Thu): Einstein's equation, Matter waves & De Broglie relation.
Sep 4 (Fri): Dual Nature PYQs.
Chapter 12: Atoms
Sep 5 (Sat): Alpha-particle scattering, Rutherford's & Bohr models.
Sep 6 (Sun): OFF
Sep 7 (Mon): Bohr energy levels, hydrogen spectrum.
Sep 8 (Tue): Atoms PYQs.
Chapter 13: Nuclei
Sep 9 (Wed): Composition of nucleus, mass-energy relation, mass defect.
Sep 10 (Thu): Binding energy per nucleon curve, Nuclear fission & fusion.
Chapter 14: Semiconductor Electronics
Sep 11 (Fri): Energy bands, Intrinsic/Extrinsic, p-n junction formation.
Sep 12 (Sat): Diode I-V characteristics (forward & reverse bias).
Sep 13 (Sun): OFF
Sep 14 (Mon): Diode as a Rectifier (Half-wave and Full-wave).
🎯 Target Day!
Sep 15 (Tue): Grand Revision & Buffer Day.