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SYLLABUS
UNIT I: ELECTROSTATICS
Chapter–1: Electric Charges and Fields
Electric Charges – Conservation of Charge – Coulomb’s Law: Force between Two Point Charges – Forces between Multiple Charges – Superposition Principle and Continuous Charge Distribution – Electric Field – Electric Field due to a Point Charge – Electric Field Lines – Electric Dipole – Electric Field due to a Dipole – Torque on a Dipole in Uniform Electric Field – Electric Flux – Gauss’s Theorem (Statement) and its Applications to Find Electric Field due to Infinitely Long Straight Wire, Uniformly Charged Infinite Plane Sheet and Uniformly Charged Thin Spherical Shell (Field Inside and Outside).
Chapter–2: Electrostatic Potential and Capacitance
Electric Potential – Potential Difference – Electric Potential due to a Point Charge – Electric Potential due to a Dipole – Electric Potential due to a System of Charges – Equipotential Surfaces – Electrical Potential Energy of a System of Two Point Charges – Electrical Potential Energy of an Electric Dipole in an Electrostatic Field – Conductors and Insulators – Free Charges and Bound Charges Inside a Conductor – Dielectrics and Electric Polarization – Capacitors and Capacitance – Combination of Capacitors in Series and Parallel – Capacitance of a Parallel Plate Capacitor with and without Dielectric Medium – Energy Stored in a Capacitor (Formulae Only, No Derivation).
UNIT II: CURRENT ELECTRICITY
Chapter–3: Current Electricity
Electric Current – Flow of Electric Charges in a Metallic Conductor – Drift Velocity – Mobility and their Relation with Electric Current – Ohm’s Law – V-I Characteristics (Linear and Non-Linear) – Electrical Energy and Power – Electrical Resistivity and Conductivity – Temperature Dependence of Resistance – Internal Resistance of a Cell – Potential Difference and EMF of a Cell – Combination of Cells in Series and Parallel – Kirchhoff’s Rules – Wheatstone Bridge.
UNIT III: MAGNETIC EFFECTS OF CURRENT AND MAGNETISM
Chapter–4: Moving Charges and Magnetism
Concept of Magnetic Field – Oersted’s Experiment – Biot-Savart Law and its Application to Current Carrying Circular Loop – Ampere’s Law and its Applications to Infinitely Long Straight Wire – Straight Solenoid (Qualitative Treatment Only) – Force on a Moving Charge in Uniform Magnetic and Electric Fields – Force on a Current Carrying Conductor in a Uniform Magnetic Field – Force Between Two Parallel Current Carrying Conductors – Definition of Ampere – Torque Experienced by a Current Loop in Uniform Magnetic Field – Current Loop as a Magnetic Dipole and its Magnetic Dipole Moment – Moving Coil Galvanometer – Current Sensitivity and Conversion into Ammeter and Voltmeter.
Chapter–5: Magnetism and Matter
Bar Magnet – Bar Magnet as an Equivalent Solenoid (Qualitative Treatment Only) – Magnetic Field Intensity due to a Magnetic Dipole (Bar Magnet) Along its Axis and Perpendicular to its Axis (Qualitative Treatment Only) – Torque on a Magnetic Dipole (Bar Magnet) in Uniform Magnetic Field (Qualitative Treatment Only) – Magnetic Field Lines – Magnetic Properties of Materials: Para-, Dia- and Ferro-Magnetic Substances with Examples – Magnetization of Materials – Effect of Temperature on Magnetic Properties.
UNIT IV: ELECTROMAGNETIC INDUCTION AND ALTERNATING CURRENT
Chapter–6: Electromagnetic Induction
Electromagnetic Induction – Faraday’s Laws – Induced EMF and Current – Lenz’s Law – Self Induction – Mutual Induction.
Chapter–7: Alternating Current
Alternating Current – Peak and RMS Value of Alternating Current/Voltage – Reactance and Impedance – LCR Series Circuit (Phasors Only) – Resonance – Power in AC Circuits – Power Factor – Wattless Current – AC Generator – Transformer.
UNIT V: ELECTROMAGNETIC WAVES
Chapter–8: Electromagnetic Waves
Basic Idea of Displacement Current – Electromagnetic Waves – Characteristics of Electromagnetic Waves – Transverse Nature of Electromagnetic Waves (Qualitative Idea Only) – Electromagnetic Spectrum: Radio Waves, Microwaves, Infrared, Visible, Ultraviolet, X-rays and Gamma Rays – Elementary Facts about their Uses.
UNIT VI: OPTICS
Chapter–9: Ray Optics and Optical Instruments
Reflection of Light – Spherical Mirrors – Mirror Formula – Refraction of Light – Total Internal Reflection – Optical Fibres – Refraction at Spherical Surfaces – Lenses – Thin Lens Formula – Lens Maker’s Formula – Magnification – Power of a Lens – Combination of Thin Lenses in Contact – Refraction of Light Through a Prism – Optical Instruments – Microscopes – Astronomical Telescopes (Reflecting and Refracting) and their Magnifying Powers.
Chapter–10: Wave Optics
Wave Front and Huygen’s Principle – Reflection and Refraction of Plane Wave at a Plane Surface Using Wave Fronts – Proof of Laws of Reflection and Refraction Using Huygen’s Principle – Interference – Young’s Double Slit Experiment – Expression for Fringe Width (Final Expression Only, No Derivation) – Coherent Sources – Sustained Interference of Light – Diffraction due to a Single Slit – Width of Central Maxima (Qualitative Treatment Only).
UNIT VII: DUAL NATURE OF RADIATION AND MATTER
Chapter–11: Dual Nature of Radiation and Matter
Dual Nature of Radiation – Photoelectric Effect – Hertz and Lenard’s Observations – Einstein’s Photoelectric Equation – Particle Nature of Light – Experimental Study of Photoelectric Effect – Matter Waves – Wave Nature of Particles – de-Broglie Relation.
UNIT VIII: ATOMS AND NUCLEI
Chapter–12: Atoms
Alpha Particle Scattering Experiment – Rutherford’s Model of Atom – Bohr Model of Hydrogen Atom – Expression for Radius of nth Possible Orbit – Velocity and Energy of Electron in nth Orbit – Hydrogen Line Spectra (Qualitative Treatment Only).
Chapter–13: Nuclei
Composition and Size of Nucleus – Nuclear Force – Mass-Energy Relation – Mass Defect – Binding Energy per Nucleon and its Variation with Mass Number – Nuclear Fission – Nuclear Fusion.
UNIT IX: ELECTRONIC DEVICES
Chapter–14: Semiconductor Electronics: Materials, Devices and Simple Circuits
Energy Bands in Conductors, Semiconductors and Insulators (Qualitative Ideas Only) – Intrinsic and Extrinsic Semiconductors – p-type and n-type Semiconductors – p-n Junction – Semiconductor Diode – I-V Characteristics in Forward and Reverse Bias – Application of Junction Diode – Diode as a Rectifier.
• Grasping the underlying conceptual frameworks and derivations clearly, rather than relying on rote formula memorization.
• Developing systematic problem-solving steps and practicing numerical exercises regularly.
• Connecting abstract laws of physics to real-world phenomena to understand how things work.
• Maintaining a positive, persistent attitude when tackling complex, challenging problems.
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Working hours
| Monday | 9:30 am - 6.00 pm |
| Tuesday | 9:30 am - 6.00 pm |
| Wednesday | 9:30 am - 6.00 pm |
| Thursday | 9:30 am - 6.00 pm |
| Friday | 9:30 am - 5.00 pm |
| Saturday | Closed |
| Sunday | Closed |