Physics Home Tutor in Delhi for Class XII
Physics Home Tuition in Dwarka, Janakpuri, Vikaspuri, Delhi for Class XII
Physics is one of the important subject for the board exam students and NEET & aspirants. This is only one subject having lots of theoretical concepts, mathematical concepts, derivations and a a part of it lots of numerical problems. Students have to master in all. This would be done by well qualified and experienced trusted tutor. The dream of your beloved son/daughter should be in the hand of a tutor whom you can trust. There is only one of the name TUTORWALLA, who provide polished tutor in their subject and can trust on closed eye, provide Physics home tutor in Delhi
Dr. Anil Kumar Sharma M.Sc., M.Ed., Ph.D.(Physics)
Dr. Anil Kumar Sharma is the name of trust, well Physics educator & having 30+ years experience of teaching in Delhi. From his teaching methodology numerous students are Doctors, Engineers and serving in other fields
His simple methodology is study the trusted Book NCERT( Download Book) apart simple explanation, remove Physics Phobia by developing confidence.

Sample Papers section
Students are advised to do all latest sample papers–
| Unit | Chapter | Key Topics | Marks |
| Unit I: Electrostatics | Chapter 1: Electric Charges and Fields | Electric charges, conservation of charge, Coulomb’s law (force between point charges), superposition principle, continuous charge distribution, electric field (due to point charge & dipole), electric dipole torque, electric flux, Gauss’s theorem & applications (infinitely long straight wire, infinite plane sheet, thin spherical shell – inside & outside field). | 16 |
| Chapter 2: Electrostatic Potential and Capacitance | Electric potential & potential difference, potential due to point charge, dipole & system of charges, equipotential surfaces, potential energy (two point charges & dipole), conductors & insulators, dielectrics, electric polarization, capacitors (series & parallel), parallel plate capacitor with/without dielectric, energy stored in capacitor. | ||
| Unit II: Current Electricity | Chapter 3: Current Electricity | Electric current, drift velocity, mobility, Ohm’s law, V-I characteristics (linear & non-linear), electrical energy & power, resistivity & conductivity, temperature dependence, internal resistance of cell, potential difference & EMF, combination of cells (series & parallel), Kirchhoff’s rules, Wheatstone bridge. | |
| Unit III: Magnetic Effects of Current and Magnetism | Chapter 4: Moving Charges and Magnetism | Magnetic field concept, Oersted’s experiment, Biot–Savart law (application to circular loop), Ampere’s law (applications to straight wire, solenoid), force on moving charge, force on current-carrying conductor, force between two parallel conductors (ampere definition), torque on current loop, current loop as magnetic dipole, moving coil galvanometer (conversion to ammeter/voltmeter). | 17 |
| Chapter 5: Magnetism and Matter | Bar magnet as equivalent solenoid, magnetic field due to bar magnet (axis & equator – qualitative), torque on magnetic dipole, magnetic field lines, magnetic materials (para, dia, ferro), magnetization, effect of temperature on magnetic properties. | ||
| Unit IV: Electromagnetic Induction and Alternating Currents | Chapter 6: Electromagnetic Induction | Faraday’s laws, induced EMF, Lenz’s law, self & mutual induction. | |
| Chapter 7: Alternating Current | AC basics, peak & RMS values, reactance & impedance, LCR series circuit (phasors only), resonance, AC power, power factor, wattless current, AC generator, transformer. | ||
| Unit V: Electromagnetic Waves | Chapter 8: Electromagnetic Waves | Displacement current, properties of EM waves, transverse nature (qualitative), electromagnetic spectrum (radio to gamma rays) & uses. | 18 |
| Unit VI: Optics | Chapter 9: Ray Optics and Optical Instruments | Reflection, spherical mirrors, mirror formula, refraction, total internal reflection, optical fibers, refraction at spherical surfaces, lenses (thin lens formula, lens maker’s formula, magnification, power, combination), prism refraction, microscopes & telescopes (magnifying power). | |
| Chapter 10: Wave Optics | Wavefront & Huygen’s principle, reflection & refraction using wavefronts, interference (Young’s double slit, fringe width formula), coherent sources, diffraction at a single slit (qualitative). | ||
| Unit VII: Dual Nature of Radiation and Matter | Chapter 11: Dual Nature of Radiation and Matter | Dual nature of light, photoelectric effect (Hertz & Lenard’s observations), Einstein’s equation, experimental study of photoelectric effect, de Broglie relation, matter waves. | 12 |
| Unit VIII: Atoms and Nuclei | Chapter 12: Atoms | Alpha particle scattering, Rutherford’s model, Bohr’s model (radius, velocity, energy of nth orbit), hydrogen spectrum (qualitative). | |
| Chapter 13: Nuclei | Nucleus composition & size, nuclear force, mass-energy relation, mass defect, binding energy, variation of binding energy per nucleon, nuclear fission & fusion. | ||
| Unit IX: Electronic Devices | Chapter 14: Semiconductor Electronics | Energy bands (conductors, semiconductors, insulators – qualitative), intrinsic & extrinsic semiconductors (p & n type), p–n junction diode (I-V characteristics), diode as rectifier. | |