Chapters covered in Nootan Solutions for फिज़िक्स पार्ट १ अँड २ [इंग्रजी] इयत्ता १२ आयएससी
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 1: Electric Charges and Fields
Concepts covered in Electric Charges and Fields are Applications of Gauss' Theorem > Electric Field due to an Infinite Line of Charge, Applications of Gauss' Theorem > Electric Field due to an Infinite Plane Sheet of Charge, Applications of Gauss' Theorem > Electric Field due to a Point Charge, Applications of Gauss' Theorem > Electric Field due to a Uniformly Charged Sphere, Applications of Gauss' Theorem > Electric Field due to a Uniformly Charged Thin Spherical Shell, Applications of Gauss' Theorem > Electric Field due to Two Infinite Parallel Sheets of Charge, Applications of Gauss' Theorem > Electric Field Intensity Just Outside a Charged Conductor, Area Vector, Charging by Conduction, Charging by Friction, Charging by Induction, Conductors and Insulators, Coulomb's Law in Vector Form, Coulomb's Law (Scalar Form): Force Between Two Point-Charges, Effect of a Uniform Electric Field on the Motion of a Charged Particle, Electric Charge, Electric Dipole, Electric Field, Electric Field due to an Electric Dipole, Electric Field Intensity Due to a Point-Charge, Electric Lines of Force, Equilibrium of a Charged Body in a Uniform Electric Field, Equilibrium of System of Charges, Flux of a Vector Field, Forces Between Multiple Charges: Superposition Principle, Gaussian Surface and its Properties, Gauss' Theorem, Intensity of Electric Field, Intensity of Electric Field due to a Continuous Charge Distribution, Introduction to Gauss' Theorem of Electrostatics, Mechanism of Charging of an Object, Motion of an Electric Dipole in a Uniform Electric Field, Overview: Gauss' Theorem, Properties of Electric Charge, Simple Atomic Structure.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 2: Gauss' Theorem
Concepts covered in Gauss' Theorem are Applications of Gauss' Theorem > Electric Field due to an Infinite Line of Charge, Applications of Gauss' Theorem > Electric Field due to an Infinite Plane Sheet of Charge, Applications of Gauss' Theorem > Electric Field due to a Point Charge, Applications of Gauss' Theorem > Electric Field due to a Uniformly Charged Sphere, Applications of Gauss' Theorem > Electric Field due to a Uniformly Charged Thin Spherical Shell, Applications of Gauss' Theorem > Electric Field due to Two Infinite Parallel Sheets of Charge, Applications of Gauss' Theorem > Electric Field Intensity Just Outside a Charged Conductor, Area Vector, Charging by Conduction, Charging by Friction, Charging by Induction, Conductors and Insulators, Coulomb's Law in Vector Form, Coulomb's Law (Scalar Form): Force Between Two Point-Charges, Effect of a Uniform Electric Field on the Motion of a Charged Particle, Electric Charge, Electric Dipole, Electric Field, Electric Field due to an Electric Dipole, Electric Field Intensity Due to a Point-Charge, Electric Lines of Force, Equilibrium of a Charged Body in a Uniform Electric Field, Equilibrium of System of Charges, Flux of a Vector Field, Forces Between Multiple Charges: Superposition Principle, Gaussian Surface and its Properties, Gauss' Theorem, Intensity of Electric Field, Intensity of Electric Field due to a Continuous Charge Distribution, Introduction to Gauss' Theorem of Electrostatics, Mechanism of Charging of an Object, Motion of an Electric Dipole in a Uniform Electric Field, Overview: Gauss' Theorem, Properties of Electric Charge, Simple Atomic Structure.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 3: Electric Potential
Concepts covered in Electric Potential are Acceleration of a Charged Particle Between Two Points in an Electric Field, Capacitance of a Conductor, Capacitance of an Isolated Spherical Conductor, Capacitance of a Parallel-Plate Capacitor with Dielectric Slab between Plates, Charged Body Between Parallel Plates, Combination of Capacitors, Dependence of the Capacitance of a Capacitor, Dielectrics, Effect of Dielectric Insertion on a Capacitor: with and Without a Battery, Electric Field as Gradient of Electric Potential: Relation between E and V, Electric Polarisation of Dielectrics, Electric Potential: A Quantitative Approach, Electric Potential Due to a Point Charge, Electric Potential Energy of an Electric Dipole in an Electrostatic Field, Electric Potential Energy of a System of Charges, Electrostatics of Conductors, Energy Stored in a Charged Capacitor, Equipotential Surfaces, Expression for Capacitance of a Parallel-Plate Capacitor, Force between the Plates of a Charged Parallel-Plate Capacitor, Free and Bound Charges, Introduction to a Capacitor, Introduction to Electric Potential, Potential Difference, Potential due to a Group of Point Charges, Potential Due to an Electric Dipole, Potential Energy of a Charged Conductor, Potential Gradient, Redistribution of Charges: Common Potential, The Parallel Plate Capacitor, Variation of Electric Field and Potential Due to a Charged Sphere, Work Done in Moving a Charge in an Electric Field, Work Done in Rotating an Electric Dipole in an Electric Field.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 4: Capacitors and Dielectrics
Concepts covered in Capacitors and Dielectrics are Acceleration of a Charged Particle Between Two Points in an Electric Field, Capacitance of a Conductor, Capacitance of an Isolated Spherical Conductor, Capacitance of a Parallel-Plate Capacitor with Dielectric Slab between Plates, Charged Body Between Parallel Plates, Combination of Capacitors, Dependence of the Capacitance of a Capacitor, Dielectrics, Effect of Dielectric Insertion on a Capacitor: with and Without a Battery, Electric Field as Gradient of Electric Potential: Relation between E and V, Electric Polarisation of Dielectrics, Electric Potential: A Quantitative Approach, Electric Potential Due to a Point Charge, Electric Potential Energy of an Electric Dipole in an Electrostatic Field, Electric Potential Energy of a System of Charges, Electrostatics of Conductors, Energy Stored in a Charged Capacitor, Equipotential Surfaces, Expression for Capacitance of a Parallel-Plate Capacitor, Force between the Plates of a Charged Parallel-Plate Capacitor, Free and Bound Charges, Introduction to a Capacitor, Introduction to Electric Potential, Potential Difference, Potential due to a Group of Point Charges, Potential Due to an Electric Dipole, Potential Energy of a Charged Conductor, Potential Gradient, Redistribution of Charges: Common Potential, The Parallel Plate Capacitor, Variation of Electric Field and Potential Due to a Charged Sphere, Work Done in Moving a Charge in an Electric Field, Work Done in Rotating an Electric Dipole in an Electric Field.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 5: Electric Resistance and Ohm's Law
Concepts covered in Electric Resistance and Ohm's Law are An Important Deduction, Colour Code of Carbon Resistors, Combinations of Cells, Combinations of Resistances, Commercial Units of Electricity Consumption, Current Density, Current, Drift Velocity Relation, Derivation of Ohm's Law with Current Drift Velocity Relation, Electric cell, Electric Current, Electric Energy and Power, Electric Resistance, Electromotive Force of a Cell, Exceptions of Ohm's Law : Non-Linear V-I Characteristics, Experimental Verification of Ohm’s Law and Ohmic Resistors, Internal Resistance of a Cell, Introduction: D.C. Circuits and Measurements, Introduction Tо Current Electricity, Kirchhoff’s Laws, Mechanism of Flow of Electrons Through the Metal Conductors, Metre Bridge: Slide-Wire Bridge, Mobility of Electrons, Ohm's Law, Ohm's law in Vector Form, Overview: Electric Resistance and Ohm's Law, Potentiometer, Relation between E, V, and r, Specific Resistance or Electrical Resistivity, Terminal Potential Difference, Wheatstone Bridge.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 6: DC Circuits and Measurements
Concepts covered in DC Circuits and Measurements are An Important Deduction, Colour Code of Carbon Resistors, Combinations of Cells, Combinations of Resistances, Commercial Units of Electricity Consumption, Current Density, Current, Drift Velocity Relation, Derivation of Ohm's Law with Current Drift Velocity Relation, Electric cell, Electric Current, Electric Energy and Power, Electric Resistance, Electromotive Force of a Cell, Exceptions of Ohm's Law : Non-Linear V-I Characteristics, Experimental Verification of Ohm’s Law and Ohmic Resistors, Internal Resistance of a Cell, Introduction: D.C. Circuits and Measurements, Introduction Tо Current Electricity, Kirchhoff’s Laws, Mechanism of Flow of Electrons Through the Metal Conductors, Metre Bridge: Slide-Wire Bridge, Mobility of Electrons, Ohm's Law, Ohm's law in Vector Form, Overview: Electric Resistance and Ohm's Law, Potentiometer, Relation between E, V, and r, Specific Resistance or Electrical Resistivity, Terminal Potential Difference, Wheatstone Bridge.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 7: Moving Charges and Magnetic Field
Concepts covered in Moving Charges and Magnetic Field are Ampere’s Circuital Law, Applications of Ampere’s Circuital Law > Magnetic Field of a Long Straight Solenoid, Applications of Ampere’s Circuital Law > Magnetic Field of a Long Straight Thin Wire, Applications of Ampere’s Circuital Law > Magnetic Field of a Toroidal Solenoid, Applications of Biot-Savart's Law > Magnetic Field at the Axis of a Circular Current-carrying Loop, Applications of Biot-Savart's Law > Magnetic Field at the Centre of a Circular Current-carrying Loop, Applications of Biot-Savart's Law > Magnetic Field Due to a Straight Current-carrying Conductor of Finite Size, Atom as a Magnetic Dipole, Comparison Between Electric and Magnetic Forces, Comparison of Coulomb's Law and Biot-Savart's Law, Concept of Magnetic Field, Conversion of a Galvanometer into an Ammeter, Conversion of a Galvanometer into a Voltmeter, Cyclotron, Definition of Magnetic Field on the Basis of Magnetic Force, Force Between Two Parallel Current-Carrying Conductors : Definition of Ampere, Force on a Current-Carrying Conductor Placed in a Uniform Magnetic Field, Force on a Moving Charge in a Uniform Magnetic Field, Introduction to Magnetic Effect of Current, Lorentz Force, Magnetic Field Due to a Current-carrying Conductor: Biot-savart's Law, Motion of Charged Particles in a Uniform Magnetic Field, Moving Coil Galvanometer, Oersted's Experiment, Overview: Moving Charges and Magnetic Field, Overview: Torque on a Current-Loop : Moving-Coil Galvanometer, Rules to Determine the Direction of Magnetic Field, Sensitivity of a Galvanometer, Torque on a Current-Loop in a Uniform Magnetic Field.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 8: Torque on a Current-Loop : Moving-Coil Galvanometer
Concepts covered in Torque on a Current-Loop : Moving-Coil Galvanometer are Ampere’s Circuital Law, Applications of Ampere’s Circuital Law > Magnetic Field of a Long Straight Solenoid, Applications of Ampere’s Circuital Law > Magnetic Field of a Long Straight Thin Wire, Applications of Ampere’s Circuital Law > Magnetic Field of a Toroidal Solenoid, Applications of Biot-Savart's Law > Magnetic Field at the Axis of a Circular Current-carrying Loop, Applications of Biot-Savart's Law > Magnetic Field at the Centre of a Circular Current-carrying Loop, Applications of Biot-Savart's Law > Magnetic Field Due to a Straight Current-carrying Conductor of Finite Size, Atom as a Magnetic Dipole, Comparison Between Electric and Magnetic Forces, Comparison of Coulomb's Law and Biot-Savart's Law, Concept of Magnetic Field, Conversion of a Galvanometer into an Ammeter, Conversion of a Galvanometer into a Voltmeter, Cyclotron, Definition of Magnetic Field on the Basis of Magnetic Force, Force Between Two Parallel Current-Carrying Conductors : Definition of Ampere, Force on a Current-Carrying Conductor Placed in a Uniform Magnetic Field, Force on a Moving Charge in a Uniform Magnetic Field, Introduction to Magnetic Effect of Current, Lorentz Force, Magnetic Field Due to a Current-carrying Conductor: Biot-savart's Law, Motion of Charged Particles in a Uniform Magnetic Field, Moving Coil Galvanometer, Oersted's Experiment, Overview: Moving Charges and Magnetic Field, Overview: Torque on a Current-Loop : Moving-Coil Galvanometer, Rules to Determine the Direction of Magnetic Field, Sensitivity of a Galvanometer, Torque on a Current-Loop in a Uniform Magnetic Field.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 9: Magnetic Field and Earth's Magnetism
Concepts covered in Magnetic Field and Earth's Magnetism are Classification of Substances According to their Magnetic Behaviour, Current-Carrying Solenoid as an Equivalent to a Bar Magnet, Current Loop as a Magnetic Dipole, Differences in Magnetic Properties of Soft Iron and Steel, Earth’s Magnetic Field, Elements of the Earth's Magnetic Field > Angle of Declination, Elements of the Earth's Magnetic Field > Angle of Dip or Magnetic Inclination, Elements of the Earth's Magnetic Field > Horizontal Component of Earth's Magnetic Field, Explanation of Dia-, Para-, and Ferromagnetism based on the Atomic Model of Magnetism, Hysteresis: Retentivity and Coercivity, Magnetic Dipole Moment of a Revolving Electron, Magnetic Field of a Magnetic Dipole (Small Bar Magnet), Magnetic Lines of Force, Magnetic Materials, Overview: Magnetic Classification of Substances, Overview: Magnetic Field and Earth's Magnetism, Potential Energy of a Magnet in a Magnetic Field, Properties of Dia-, Para-, and Ferromagnetic Substances, Terms Used in Magnetism, Torque on a Magnetic Dipole (Bar Magnet) in a Uniform Magnetic Field.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 10: Magnetic Classification of Substances
Concepts covered in Magnetic Classification of Substances are Classification of Substances According to their Magnetic Behaviour, Current-Carrying Solenoid as an Equivalent to a Bar Magnet, Current Loop as a Magnetic Dipole, Differences in Magnetic Properties of Soft Iron and Steel, Earth’s Magnetic Field, Elements of the Earth's Magnetic Field > Angle of Declination, Elements of the Earth's Magnetic Field > Angle of Dip or Magnetic Inclination, Elements of the Earth's Magnetic Field > Horizontal Component of Earth's Magnetic Field, Explanation of Dia-, Para-, and Ferromagnetism based on the Atomic Model of Magnetism, Hysteresis: Retentivity and Coercivity, Magnetic Dipole Moment of a Revolving Electron, Magnetic Field of a Magnetic Dipole (Small Bar Magnet), Magnetic Lines of Force, Magnetic Materials, Overview: Magnetic Classification of Substances, Overview: Magnetic Field and Earth's Magnetism, Potential Energy of a Magnet in a Magnetic Field, Properties of Dia-, Para-, and Ferromagnetic Substances, Terms Used in Magnetism, Torque on a Magnetic Dipole (Bar Magnet) in a Uniform Magnetic Field.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 11: Electromagnetic Induction
Concepts covered in Electromagnetic Induction are Eddy Currents or Foucault Currents, Electromagnetic Induction, Energy Stored in an Inductor, Examples of the Effects of Self-Induced Current, Explanation of Electromagnetic Induction in Terms of Lorentz Force: Proof of Faraday's Law, Faraday's Laws of Electromagnetic Induction, Induced Current and Induced Charge, Magnetic Flux, Methods of Changing the Magnetic Flux, Motional emf in Rotating a Conducting Rod in a Uniform Magnetic Field, Motion of a Straight Conductor in a Uniform Magnetic Field (Motional EMF), Mutual Inductance, Mutual Induction, Overview: Electromagnetic Induction, Self-Inductance of a Long Solenoid, Self – Induction.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 12: Alternating Current
Concepts covered in Alternating Current are A.C. Generator, Alternating Voltage and Current in a Rotating Coil, Choke Coil, Circuit containing Capacitance and Resistance in Series (C-R Series Circuit), Circuit containing Capacitance Only, Circuit containing Inductance and Capacitance (L-C Circuit), Circuit containing Inductance and Resistance in Series (L-R Series Circuit), Circuit containing Inductance, Capacitance and Resistance in Series (L-C-R Series Circuit), Circuit containing Inductance Only, Circuit containing Resistance Only, Definitions Regarding Alternating Voltage and Current, Electrical Oscillations in L-C Circuit, Frequency Response of AC Circuits, Half Power Points, Bandwidth and Q-Factor, Mean (or Average) Value of Alternating Current (or Voltage), Overview: Alternating Current, Phasors and Phasor Diagrams, Power in AC Circuit, Resonant Circuits, Root-Mean-Square Value of Alternating Current, Transformers, Types of AC Circuits, Utility of Alternating Current in Comparison to Direct Current, Wattless Current.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 13: Electromagnetic Waves
Concepts covered in Electromagnetic Waves are Concept of Electromagnetic Waves, Displacement Current, Electromagnetic Spectrum, Energy Density in Electromagnetic Waves, Field Magnitude Relation in Free Space, Maxwell's Equation, Overview: Electromagnetic Waves, Relation between Conduction and Displacement Current, Transverse Nature of Electromagnetic Waves.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 14: Reflection of Light: Spherical Mirrors
Concepts covered in Reflection of Light: Spherical Mirrors are Applications of Total Internal Reflection, Cause of Refraction, Combination of Lenses and Mirrors, Combined Focal Length of Two Thin Lenses in Contact, Concept of Lenses, Conditions of Image Formation, Converging and Diverging Actions of Lenses, Coordinate Geometry Sign Convention for Measuring Distances and Lengths, Critical Angle, Factors Affecting Focal Length of a Lens, Fundamental Terms Related to Spherical Mirrors, Image Formation by Thin Lenses, Laws of Refraction, Lens Maker's Formula, Linear Magnification by Spherical Lenses, Linear Magnification by Spherical Mirrors, Mirror Formula for Concave Mirror, Mirror Formula for Convex Mirror, Overview: Optical Instruments, Overview: Reflection of Light: Spherical Mirrors, Overview: Refraction and Dispersion of Light through a Prism, Overview: Refraction of Light at a Plane Interface, Overview: Refraction of Light at Spherical Surfaces: Lenses, Physical Significance of Refractive Index, Position and Nature of Image Formed by Spherical Mirrors, Power of a Lens, Ray Diagram for Formation of Image by a Concave Lens, Ray Diagrams for Formation of Image by a Convex Lens, Real and Apparent Depths: Normal Displacement, Refraction at a Convex Spherical Surface, Refraction at Concave Spherical Surface, Refraction of Light, Refraction of Light Through a Rectangular Glass Block, Refraction through Parallel Multiple Media, Relation Between Focal Length and Radius of Curvature of a Spherical Mirror, Reversibility of Light, Rules to Trace the Image Formed by Spherical Mirrors, Sign Convention, Spherical Mirrors, Total Internal Reflection, Uses of Spherical Mirrors.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 15: Refraction of Light at a Plane Interface : Total Internal Reflection : Optical Fibre
Concepts covered in Refraction of Light at a Plane Interface : Total Internal Reflection : Optical Fibre are Applications of Total Internal Reflection, Cause of Refraction, Combination of Lenses and Mirrors, Combined Focal Length of Two Thin Lenses in Contact, Concept of Lenses, Conditions of Image Formation, Converging and Diverging Actions of Lenses, Coordinate Geometry Sign Convention for Measuring Distances and Lengths, Critical Angle, Factors Affecting Focal Length of a Lens, Fundamental Terms Related to Spherical Mirrors, Image Formation by Thin Lenses, Laws of Refraction, Lens Maker's Formula, Linear Magnification by Spherical Lenses, Linear Magnification by Spherical Mirrors, Mirror Formula for Concave Mirror, Mirror Formula for Convex Mirror, Overview: Optical Instruments, Overview: Reflection of Light: Spherical Mirrors, Overview: Refraction and Dispersion of Light through a Prism, Overview: Refraction of Light at a Plane Interface, Overview: Refraction of Light at Spherical Surfaces: Lenses, Physical Significance of Refractive Index, Position and Nature of Image Formed by Spherical Mirrors, Power of a Lens, Ray Diagram for Formation of Image by a Concave Lens, Ray Diagrams for Formation of Image by a Convex Lens, Real and Apparent Depths: Normal Displacement, Refraction at a Convex Spherical Surface, Refraction at Concave Spherical Surface, Refraction of Light, Refraction of Light Through a Rectangular Glass Block, Refraction through Parallel Multiple Media, Relation Between Focal Length and Radius of Curvature of a Spherical Mirror, Reversibility of Light, Rules to Trace the Image Formed by Spherical Mirrors, Sign Convention, Spherical Mirrors, Total Internal Reflection, Uses of Spherical Mirrors.
Nootan ISC Class 12 Physics (Theory) (12th) 15: Refraction of Light at a Plane Interface : Total Internal Reflection : Optical Fibre exercises
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 16: Refraction of Light at Spherical Surfaces : Lenses
Concepts covered in Refraction of Light at Spherical Surfaces : Lenses are Applications of Total Internal Reflection, Cause of Refraction, Combination of Lenses and Mirrors, Combined Focal Length of Two Thin Lenses in Contact, Concept of Lenses, Conditions of Image Formation, Converging and Diverging Actions of Lenses, Coordinate Geometry Sign Convention for Measuring Distances and Lengths, Critical Angle, Factors Affecting Focal Length of a Lens, Fundamental Terms Related to Spherical Mirrors, Image Formation by Thin Lenses, Laws of Refraction, Lens Maker's Formula, Linear Magnification by Spherical Lenses, Linear Magnification by Spherical Mirrors, Mirror Formula for Concave Mirror, Mirror Formula for Convex Mirror, Overview: Optical Instruments, Overview: Reflection of Light: Spherical Mirrors, Overview: Refraction and Dispersion of Light through a Prism, Overview: Refraction of Light at a Plane Interface, Overview: Refraction of Light at Spherical Surfaces: Lenses, Physical Significance of Refractive Index, Position and Nature of Image Formed by Spherical Mirrors, Power of a Lens, Ray Diagram for Formation of Image by a Concave Lens, Ray Diagrams for Formation of Image by a Convex Lens, Real and Apparent Depths: Normal Displacement, Refraction at a Convex Spherical Surface, Refraction at Concave Spherical Surface, Refraction of Light, Refraction of Light Through a Rectangular Glass Block, Refraction through Parallel Multiple Media, Relation Between Focal Length and Radius of Curvature of a Spherical Mirror, Reversibility of Light, Rules to Trace the Image Formed by Spherical Mirrors, Sign Convention, Spherical Mirrors, Total Internal Reflection, Uses of Spherical Mirrors.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 17: Refraction and Dispersion of Light through a Prism
Concepts covered in Refraction and Dispersion of Light through a Prism are Applications of Total Internal Reflection, Cause of Refraction, Combination of Lenses and Mirrors, Combined Focal Length of Two Thin Lenses in Contact, Concept of Lenses, Conditions of Image Formation, Converging and Diverging Actions of Lenses, Coordinate Geometry Sign Convention for Measuring Distances and Lengths, Critical Angle, Factors Affecting Focal Length of a Lens, Fundamental Terms Related to Spherical Mirrors, Image Formation by Thin Lenses, Laws of Refraction, Lens Maker's Formula, Linear Magnification by Spherical Lenses, Linear Magnification by Spherical Mirrors, Mirror Formula for Concave Mirror, Mirror Formula for Convex Mirror, Overview: Optical Instruments, Overview: Reflection of Light: Spherical Mirrors, Overview: Refraction and Dispersion of Light through a Prism, Overview: Refraction of Light at a Plane Interface, Overview: Refraction of Light at Spherical Surfaces: Lenses, Physical Significance of Refractive Index, Position and Nature of Image Formed by Spherical Mirrors, Power of a Lens, Ray Diagram for Formation of Image by a Concave Lens, Ray Diagrams for Formation of Image by a Convex Lens, Real and Apparent Depths: Normal Displacement, Refraction at a Convex Spherical Surface, Refraction at Concave Spherical Surface, Refraction of Light, Refraction of Light Through a Rectangular Glass Block, Refraction through Parallel Multiple Media, Relation Between Focal Length and Radius of Curvature of a Spherical Mirror, Reversibility of Light, Rules to Trace the Image Formed by Spherical Mirrors, Sign Convention, Spherical Mirrors, Total Internal Reflection, Uses of Spherical Mirrors.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 18: Optical Instruments
Concepts covered in Optical Instruments are Applications of Total Internal Reflection, Cause of Refraction, Combination of Lenses and Mirrors, Combined Focal Length of Two Thin Lenses in Contact, Concept of Lenses, Conditions of Image Formation, Converging and Diverging Actions of Lenses, Coordinate Geometry Sign Convention for Measuring Distances and Lengths, Critical Angle, Factors Affecting Focal Length of a Lens, Fundamental Terms Related to Spherical Mirrors, Image Formation by Thin Lenses, Laws of Refraction, Lens Maker's Formula, Linear Magnification by Spherical Lenses, Linear Magnification by Spherical Mirrors, Mirror Formula for Concave Mirror, Mirror Formula for Convex Mirror, Overview: Optical Instruments, Overview: Reflection of Light: Spherical Mirrors, Overview: Refraction and Dispersion of Light through a Prism, Overview: Refraction of Light at a Plane Interface, Overview: Refraction of Light at Spherical Surfaces: Lenses, Physical Significance of Refractive Index, Position and Nature of Image Formed by Spherical Mirrors, Power of a Lens, Ray Diagram for Formation of Image by a Concave Lens, Ray Diagrams for Formation of Image by a Convex Lens, Real and Apparent Depths: Normal Displacement, Refraction at a Convex Spherical Surface, Refraction at Concave Spherical Surface, Refraction of Light, Refraction of Light Through a Rectangular Glass Block, Refraction through Parallel Multiple Media, Relation Between Focal Length and Radius of Curvature of a Spherical Mirror, Reversibility of Light, Rules to Trace the Image Formed by Spherical Mirrors, Sign Convention, Spherical Mirrors, Total Internal Reflection, Uses of Spherical Mirrors.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 19: Wave Nature of Light : Huygens' Principle
Concepts covered in Wave Nature of Light : Huygens' Principle are Overview: Diffraction of Light, Overview: Interference of Light, Overview: Polarisation of Light, Overview: Wave Nature of Light : Huygens' Principle.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 20: Interference of Light
Concepts covered in Interference of Light are Overview: Diffraction of Light, Overview: Interference of Light, Overview: Polarisation of Light, Overview: Wave Nature of Light : Huygens' Principle.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 21: Diffraction of Light
Concepts covered in Diffraction of Light are Overview: Diffraction of Light, Overview: Interference of Light, Overview: Polarisation of Light, Overview: Wave Nature of Light : Huygens' Principle.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 22: Polarisation of Light
Concepts covered in Polarisation of Light are Overview: Diffraction of Light, Overview: Interference of Light, Overview: Polarisation of Light, Overview: Wave Nature of Light : Huygens' Principle.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 23: Photoelectric Effect
Concepts covered in Photoelectric Effect are Overview: Matter Waves, Overview: Photoelectric Effect, Overview: X-Rays.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 24: Matter Waves
Concepts covered in Matter Waves are Overview: Matter Waves, Overview: Photoelectric Effect, Overview: X-Rays.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 25: X-Rays
Concepts covered in X-Rays are Overview: Matter Waves, Overview: Photoelectric Effect, Overview: X-Rays.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 26: Atom, Origin of Spectra : Bohr's Theory of Hydrogen Atom
Concepts covered in Atom, Origin of Spectra : Bohr's Theory of Hydrogen Atom are Overview: Atom, Origin of Spectra : Bohr's Theory of Hydrogen Atom.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 27: Nuclear Structure
Concepts covered in Nuclear Structure are Overview: Mass-Energy Equivalence : Nuclear Binding Energy, Overview: Nuclear Fission and Nuclear Fusion : Sources of Energy, Overview: Nuclear Structure, Overview: Radioactivity.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 28: Radioactivity
Concepts covered in Radioactivity are Overview: Mass-Energy Equivalence : Nuclear Binding Energy, Overview: Nuclear Fission and Nuclear Fusion : Sources of Energy, Overview: Nuclear Structure, Overview: Radioactivity.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 29: Mass-Energy Equivalence : Nuclear Binding Energy
Concepts covered in Mass-Energy Equivalence : Nuclear Binding Energy are Overview: Mass-Energy Equivalence : Nuclear Binding Energy, Overview: Nuclear Fission and Nuclear Fusion : Sources of Energy, Overview: Nuclear Structure, Overview: Radioactivity.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 30: Nuclear Fission and Nuclear Fusion : Sources of Energy
Concepts covered in Nuclear Fission and Nuclear Fusion : Sources of Energy are Overview: Mass-Energy Equivalence : Nuclear Binding Energy, Overview: Nuclear Fission and Nuclear Fusion : Sources of Energy, Overview: Nuclear Structure, Overview: Radioactivity.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 31: Semiconductor Electronics
Concepts covered in Semiconductor Electronics are Overview: Semiconductor Electronics.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 32: Junction Diodes
Concepts covered in Junction Diodes are Overview: Junction Diodes.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 33: Junction Transistors
Concepts covered in Junction Transistors are Overview: Junction Transistors.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 34: Logic Gates
Concepts covered in Logic Gates are Overview: Logic Gates.
Nootan Solutions for ISC Class 12 Physics (Theory) (12th) 35: Communication Systems
Concepts covered in Communication Systems are Overview: Communication Systems.
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Our Nootan Physics (Theory) Answer Guide for the ISC Class 12 CISCE covers all 35 chapters. As a result, you will be able to fully prepare for the exam without worrying about missing anything. You rarely get such a benefit, which makes the Physics (Theory) ISC Class 12 CISCE Nootan solutions provided here such an extraordinary advantage that you can always rely on. Consider giving it a try for yourself, and you will find it very comprehensive, professional, and convenient at the same time.
Our CISCE Nootan solutions for Physics (Theory) ISC Class 12 cover everything from Electric Charges and Fields, Gauss' Theorem, Electric Potential, Capacitors and Dielectrics, Electric Resistance and Ohm's Law, DC Circuits and Measurements, Moving Charges and Magnetic Field, Torque on a Current-Loop : Moving-Coil Galvanometer, Magnetic Field and Earth's Magnetism, Magnetic Classification of Substances, Electromagnetic Induction, Alternating Current, Electromagnetic Waves, Reflection of Light: Spherical Mirrors, Refraction of Light at a Plane Interface : Total Internal Reflection : Optical Fibre, Refraction of Light at Spherical Surfaces : Lenses, Refraction and Dispersion of Light through a Prism, Optical Instruments, Wave Nature of Light : Huygens' Principle, Interference of Light, Diffraction of Light, Polarisation of Light, Photoelectric Effect, Matter Waves, X-Rays, Atom, Origin of Spectra : Bohr's Theory of Hydrogen Atom, Nuclear Structure, Radioactivity, Mass-Energy Equivalence : Nuclear Binding Energy, Nuclear Fission and Nuclear Fusion : Sources of Energy, Semiconductor Electronics, Junction Diodes, Junction Transistors, Logic Gates, Communication Systems and the other topics.
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