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Karnataka Karnataka PUC , 2024, 2025, 2026

Download II Year PUC Physics Syllabus ( 2900 Downloads so far )
PHYSICS
COURSE STRUCTURE
CLASS Second Year PUC, Karnataka (Theory)
One Paper Three Hours Max Marks. 80
Unit Titles Weightage
I Electrostatics 08
II Current Electricity 07
III Magnetic effect of current & Magnetism 08
IV Electromagnetic induction and Alternating Current 08
V Electromagnetic Waves 03
VI Optics 14
VII Dual Nature of Matter 04
VIII Atoms and Nuclei 06
IX Electronic Devices 07
X Communication Systems 05
XI Practical Oriented Questions 10
Total 80


Unit I: Electrostatics
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, statement of Gauss, theorem and its applications to find field due to infinitely long straight wire, uniformly charged infinite plane sheet and uniformly charged thin spherical shell (field inside and outside). Electric potential, potential difference, electric potential due to a point charge, a dipole and system of charges; equipotential surfaces, electrical potential energy of a system of two point charges and of electric dipole in an electrostatic field. Conductors and insulators, free charges and bound charges inside a conductor. Dielectrics and electric polarisation, capacitors and capacitance, combination of capacitors in series and in parallel, capacitance of a parallel plate capacitor with and without dielectric medium between the plates, energy stored in a capacitor. Van de Graaff generator.

Unit II: Current Electricity
Electric current, flow of electric charges in a metallic conductor, drift velocity, mobility and their relation with electric current; Ohm’s law, electrical resistance, V-I characteristics (linear and non-linear), electrical energy and power electrical resistivity and conductivity. Carbon resistors, colour code for carbon resistors; series and parallel combinations of resistors; temperature dependence of resistance.Internal resistance of a cell, potential difference and emf of a cell, combination of cells in series and in parallel.Elementary idea of secondary cells.Kirchoffs’ laws and simple applications. Wheatstone bridge, meter bridge. Potentiometer-Principle and its applications to measure potential difference and for comparing emf of two cells; measurement of internal resistance of a cell.

Unit III: Magnetic Effects of Current and Magnetism
Concept of magnetic field, Oersted’s experiment.Biot-Savart law and its application to current carrying circular loop. Ampere’s law its applications to infinitely long straight wire, straight and toroidal solenoids. Force on a moving charge in uniform magnetic and electric fields. Cyclotron. Force on a current-carrying in uniform magnetic magnetic field. Force between two parallel current-carrying conductors-definition of ampere. Torque experienced by a current loop in uniform magnetic field; moving coil galvanometer-its current sensitivity and conversion to ammeter and voltmeter. Current loop as a magnetic dipole and its magnetic dipole moment.Magnetic dipole moment of a revolving electron. Magnetic field intensity due to a magnetic dipole (bar magnet) along its axis and perpendicular to its axis. Torque on a magnetic dipole (bar magnet) in a uniform magnetic field; bar magnet as an equivalent solenoid. Magnetic field lines; Earth’s magnetic field and magnetic elements.Para-dia and ferro-magnetic substances, with examples.Electromagnets and factors affecting their strengths.Permanent magnets.

Unit IV: Electromagnetic induction and Alternating Currents
Electromagnetic induction; Faraday’s laws, induced emf and current; Lenz’s Law, Eddy currents.Self and mutual induction.Alternating currents, peak and rms value of alternating current/voltage; reactance and impedance; LC oscillations (qualitative treatment only).LCR series circuit, resonance; power in AC circuits, wattless current.AC generator and transformer.

Unit V: Electromagnetic waves
Need for displacement current. Electromagnetic waves and their characteristics (qualitative ideas only).Transverse nature of electromagnetic waves. Electromagnetic spectrum (radio waves, microwaves, infrared, visible ultraviolet, xrays, gamma rays) including elementary facts about their uses.

Unit VI: Optics
Ray Optics (Geometric Optics):
Reflection of light, spherical mirrors, mirror formula. Refraction of light, total internal reflection and its applications, optical fibers, refraction at spherical surfaces, lenses, thin lens formula, lens-maker’s formula. Newton’s relation: Displacement method to find position of images (conjugate points) Magnification, power of a lens, combination of thinlenses in contact, combination of a lens and a mirror. Refraction and dispersion of light through a prism.

Scattering of light-blue colour of the sky and reddish appearance of the sun at sunrise and sunset. Elementary idea of Raman effect. Optical instruments: Human eye, image formation and accommodation, correction of eye defects (myopia, hypermetropia, presbyopia and astigmatism) using lenses. Microscopes and astronomical telescopes (reflecting and refracting) and their magnifying powers.

Wave optics (Physical Optics): Wave front and Huygens principle, reflection and refraction of plane wave at a plane surface using wave fronts. Proof of laws of reflection and refraction using Huygens, principle interference. Young’s double slit experiment and expression for fringe width, coherent sources and sustained interference of light. Diffraction due to a single slit, width of central maximum. Resolving power of microscopes and astronomical telescopes. Polarization, plane polarized light; Brewster’s law, uses of plane polarized light and polaroids.

Unit VII: Dual Nature of Matter and Radiation
Dual nature of radiation.Photoelectric effect, Hertz and Lenard’s observations; Einstein’s photoelectric equation-particle nature of light. Matter waves-waves nature or particles, de Broglie relation. Davisson-Germer experiment (experimental details should be omitted; only conclusion should be explained.

Unit VIII: Atoms & Nuclei
Alpha-particles scattering experiment; Rutherford’s model of atom; Bohr model, energy levels, hydrogen spectrum. Continuous and characteristic X-rays.Composition and size of nucleus, atomic masses, isotopes, isobars; isotones.Radio activity alpha, beta and gamma particles/rays and their properties radioactive decay law.
Mass-energy relation, mass defect; binding energy per nucleon and its variation with mass number; nuclear fission and fusion.

Unit IX: Electronic Devices
Energy bands in solids, conductors, insulators and Semiconductors; semiconductor diode - IV characteristics in forward and reverse bias, diode as a rectifier; I-V characteristics of LED, photodiode, solar cell, and zener diode;
Zener diode as a voltage regulator.Junction transistor, transistor action, characteristics of a transistor; transistor as an amplifier (common emitter configuration) and oscillator. Logic gates (OR, AND, NOT, NAND and NOR). Transistor as a switch.

Unit X: Communication systems
Elements of a communication system (block diagram only); bandwidth of signals (speech, TV and digital data); bandwidth of transmission medium.Propagation of electromagnetic waves in the atmosphere, sky and space wave propagation. Need for modulation. Production and detection of an amplitude-modulated wave.

Recommended Textbooks:
1. Physics Part-I, Textbook for Class XI, Published by NCERT
2 . Physics Part-II, Textbook for Class XI, Published by NCERT


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Physics Learning Quiz

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Karnataka PUC Physics
1.Physical World
2.Units and Measurement
Kinematics
3.Motion in a Straight Line
4.Motion in a Plane
5.Laws of Motion
6.Work, Energy and Power
7.Motion of System of Particles and Rotational Motion (Rigid Body)
8.Gravitation
Properties of Bulk Matter
9.Mechanical Properties of Solids
10.Mechanical Properties of Fluids
11.Thermal Properties of Matter
12.Thermodynamics
13.Behaviour of Perfect Gas and Kinetic Theory
14.Oscillations
15.Waves
Electrostatics
16.Electric Charges and Fields
17.Electrostatic Potential and Capacitance
18.Current Electricity
19.Moving Charges (Magnetic Effect of Current) and Magnetism
20.Magnetism and Matter
21.Electromagnetic Induction
22.Alternating Current
23.Electromagnetic Waves
24.Geometric Optics (Ray Optics)
25.Physical Optics (Wave Optics)
26.Dual Nature of Matter and Radiation
27.Atoms
28.Nuclei
29.Electronic Devices
30.Communication Systems
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1.Some Basic Concepts of Chemistry
2.Structure of Atom
3.Classification of Elements and Periodicity in Properties
4.Chemical Bonding and Molecular Structure
5.States of Matter
6.Thermodynamics
7.Equilibrium
8.Redox Reactions
9.Hydrogen
10.The s-block Elements
11.The p-block Elements
Organic Chemistry
12.Organic Chemistry - Some Basic Principles and Techniques
13.Hydrocarbons
14.Environmental Chemistry
15.The Solid State
16.Solutions
17.Electrochemistry
18.Chemical Kinetics
19.Surface Chemistry
20.General Principles and Processes of Isolation of Elements
21.The p-Block Elements
22.The d-and f-Block Elements
23.Coordination Compounds
24.Haloalkanes and Haloarenes
25.Alcohols, Phenols and Ethers
26.Aldehydes, Ketones and Carboxylic Acids
27.Amines
28.Biomolecules
29.Polymers
30.Chemistry in Everyday Life
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1.Sets
2.Relations and Functions-1
3.Trigonometric Functions
4.Principle of Mathematical Induction
5.Complex Numbers and Quadratic Equations
6.Linear Inequalities
7.Permutations and Combinations
8.Binomial Theorem
9.Sequences and Series
10.Straight Lines
11.Conic Sections
12.Introduction to Three Dimensional Geometry
13.Limits and Derivatives
14.Mathematical Reasoning
15.Statistics
16.Probability-1
17.Infinite Series
18.Mathematical Modeling
19.Relations and Functions-2
20.Inverse Trigonometric Functions
21.Matrices
22.Determinants
23.Continuity and Differentiabilitybr /> 24.Application of Derivatives
25.Integrals
26.Application of Integrals
27.Differential Equations
28.Vector Algebra
29.Three Dimensional Geometry
30.Linear Programming
31.Probability-2
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Diversity in the Living World
1.The Living World
2.Biological Classification
3.Plant Kingdom
4.Animal Kingdom
Structural Organisation in Plants and Animals
5.Morphology of Flowering Plants
6.Anatomy of Flowering Plants
7.Structural Organisation in Animals
Cell: Structure and Functions
8.Cell:The Unit of Life
9.Biomolecules
10.Cell Cycle and Cell Division
Plant Physiology
11.Transport in Plants
12.Mineral Nutrition
13.Photosynthesis in Higher Plants
14.Respiration in Plants
15.Plant Growth and Development
Human Physiology
16.Digestion and Absorption
17.Breathing and Exchange of Gases
18.Body Fluids and Circulation
19.Excretory Products and their Elimination
20.Locomotion and Movement
21.Neural Control and Coordination
22.Chemical Coordination and Integration
Reproduction
23.Reproduction in Organisms
24.Sexual Reproduction in Flowering Plants
25.Human Reproduction
26.Reproductive Health
Genetics and Evolution
27.Principles of Inheritance and Variation
28.Molecular Basis of Inheritance
29.Evolution
Biology in Human Welfare
30.Human Health and Disease
31.Strategies for Enhancement in Food Production
32.Microbes in Human Welfare
Biotechnology
33.Biotechnology : Principles and Processes
34.Biotechnology and its Applications
Ecology
35.Organisms and Populations
36.Ecosystem
37.Biodiversity and Conservation
38.Environmental Issues
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