Andhra Pradesh Board Class 12 Physics Syllabus

Safalta Expert Published by: Sylvester Updated Fri, 09 Sep 2022 07:50 PM IST

Highlights

Andhra Pradesh Board Class 12 Physics Syllabus

In Andhra Pradesh, India, there is a board of education called the Board of Intermediate Education, Andhra Pradesh (BIEAP). It was founded in 1971 and was based in Hyderabad, a part of the combined state of Andhra Pradesh. Following a state reorganisation in 2014, the board is now situated in Vijayawada. The board offers two-year programmes in 85 streams and courses and administers tests.

The Andhra Pradesh Board of Intermediate Education administers the two-year Intermediate Education programme, popularly known as Higher Secondary Classes (HSC)/11th and 12th class. is one of India's state secondary education bodies. 85 streams and courses are currently available through the board. BIEAP offers both general and career groups. Science, humanities, and business studies are general categories.

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Students study both theory and practise in these groups. That makes it easier for them to decide on and pursue graduate-level studies in both professional and general courses. The purpose of vocational organisations is to instruct students and develop skills relevant to their field of study. It will assist them in finding immediate self-employment or pursuing further education.

This blog contains the most recent information on the AP Board Class 12 Physics Syllabus. We've included the most recent information regarding the Andhra Pradesh Board Syllabus for Class 12 Physics below to help students plan their study time. Students will perform better on tests if they study in accordance with the syllabus. The programme is presented in detail. The ideal strategy to study more effectively for the upcoming board exams is to be aware with the most updated AP Board 12th Class Physics Syllabus.


Andhra Pradesh Board Class 12 Physics Syllabus

Chapter Name Topics
Waves
  • Introduction
  • Transverse and longitudinal waves
  • Displacement relation in a progressive wave
  • The speed of a travelling wave
  • The Principle of superposition of waves
  • Reflection of waves
  • Beats  
  • Doppler effect
Ray Optics and Optical Instruments
  • Introduction
  • Reflection of Light by Spherical Mirrors
  • Refraction
  • Total Internal Reflection
  • Refraction at Spherical Surfaces and by Lenses
  • Refraction through a Prism
  • Dispersion by a Prism
  • Some Natural Phenomena due to Sunlight
  • Optical Instruments
Wave Optics
  • Introduction
  • Huygens Principle
  • Refraction and reflection of plane waves using Huygens Principle
  • Coherent and Incoherent Addition of Waves
  • Interference of Light Waves and Young’s Experiment
  • Diffraction  
  • Polarisation
Electric Charges and Fields
  • Introduction
  • Electric Charges
  • Conductors and Insulators
  • Charging by Induction
  • Basic Properties of Electric Charge
  • Coulomb’s Law
  • Forces between Multiple Charges
  • Electric Field
  • Electric Field Lines
  • Electric Flux
  • Electric Dipole
  • Dipole in a Uniform External Field
  • Continuous Charge Distribution 
  • Gauss’s Law
  • Application of Gauss’s Law
Electrostatic Potential and Capacitance
  • Introduction
  • Electrostatic Potential
  • Potential due to a point Charge
  • Potential due to an Electric Dipole
  • Potential due to a System of Charges  
  • Equipotential Surfaces
  • Potential Energy of a System of Charges
  • Potential Energy in an External Field 
  • Electrostatics of Conductors
  • Dieletrics and Polarisation
  • Capacitors and Capacitance
  • The Parallel Plate Capacitor
  • Effect of Dielectric on Capacitance
  • Combination of Capacitor
  • Energy Stored in a Capacitor
  • Van de Graaff Generator
Current Electricity
  • Introduction
  • Electric Current
  • Electric Currents in Conductors
  • Ohm’s law
  • Drift of Electrons and the Origin of Resistivity
  • Limitations of Ohm’s Law
  • Resistivity of Various Materials
  • Temperature Dependence of Resistivity
  • Electrical Energy, Power
  • Combination of Resistors- Series and Parallel
  • Cells, emf, Internal Resistance
  • Cells in Series and in Parallel
  • Kirchhoff’s Laws
  • Wheatstone Bridge
  • Meter Bridge 
  • Potentiometer
Moving Charges and Magnetism
  • Introduction
  • Magnetic Force
  • Motion in a Magnetic Field
  • Motion in Combined Electric and Magnetic Fields
  • Magnetic Field due to a Current Element, Biot-Savart Law
  • Magnetic Field on the Axis of a Circular Current Loop
  • Amper’s Circuital Law
  • The Solenoid and the Toroid
  • Force between Two Parallel Currents, the Ampere (Unit)
  • Torque on Current Loop, Magnetic Dipole 
  • The Moving Coil Galvanometer
Magnetism and Matter
  • Introduction
  • The Bar Magnet
  • Magnetism and Gauss’s Law
  • The Earth’s Magnetism
  • Magnetisation and Magnetic Intensity
  • Magnetic Properties of Materials 
  • Permanent Magnets and Electromagnets
Electromagnetic Induction
  • Introduction
  • The Experiments of Faraday and Henry
  • Magnetic Flux
  • Faraday’s Law of Induction
  • Lenz’s Law and Conservation of Energy
  • Motional Electromotive Force
  • Energy Consideration: A Quantitative Study
  • Eddy Currents
  • Inductance
  • AC Generator
Alternating Current
  • Introduction
  • Ac Voltage Applied to a Register
  • Representation of AC Current and Voltage by Rotating Vectors – Phasors
  • AC Voltage Applied to an Inductor
  • AC Voltage Applied to an Capacitor
  • AC Voltage Applied to a Series LCR Circuit
  • Power in AC Circuit: The Power Factor
  • LC Oscillations
  • Transformers
Electromagnetic Waves
  • Introduction
  • Displacement Current
  • Electromagnetic Waves
  • Electromagnetic Spectrum
Dual Nature of Radiation and Matter
  • Introduction
  • Electron Emission
  • Photoelectric Effect
  • Experimental Study of Photoelectric Effect
  • Photoelectric Effect and Wave Theory of Light
  • Einstein’s Photoelectric Equation: Energy Quantum of Radiation
  • Particle Nature of Light: The Photon
  • Wave Nature of Matter
  • Davisson and Germmer Experiment
Atoms
  • Introduction
  • Alpha-Particle Scattering and Rutherford’s Nuclear Model of Atom
  • Atomic Spectra
  • Bohr Model of the Hydrogen Atom
  • The Line Spectra of the Hydrogen Atom
  • DE Broglie’s Explanation of Bohr’s Second Postulate of Quantisation
Nuclei
  • Introduction
  • Atomic Masses and Composition of Nucleus
  • Size of the Nucleus
  • Mass- Energy and Nuclear Binding Energy
  • Nuclear Force
  • Radioactivity
  • Nuclear Energy
Semiconductor Electronics: Materials, Devices and Simple Circuits
  • Introduction
  • Classification of Metals, Conductors and Semiconductors
  • Intrinsic Semiconductor
  • Extrinsic Semiconductor
  • P-nJunction
  • Semiconductor diode
  • Application of Junction Diode as a Rectifier
  • Special Purpose P-n Junction Diodes
  • Junction Transistor
  • Digital Electronics and Logic Gates
  • Integrated Circuits
Communication Systems
  • Introduction
  • Elements of a Communication System 
  • Basic terminology Used in Electronic Communication Systems
  • Bandwidth of Signals
  • Bandwidth of Transmission Medium
  • Propagation of Electromagnetic Waves
  • Modulation and its Necessity
  • Amplitude Modulation
  • Production of Amplitude Modulated Wave
  • Detection of Amplitude Modulated Wave
 

How many chapters are there in AP Board Class 12 Physics Syllabus?

There are 16 chapters in AP Board Class 12 Physics Syllabus.

Why is understanding the AP Board Class 12 Physics curriculum important?

Students can plan their exam approach using the AP Board Class 12 Physics Syllabus. You can utilise any chapter in the book, or even resources that aren't in the textbook, for the Physics exam. You need both textbook practise and sophisticated comprehension as a result. You can find practise questions to aid in your test preparation.

What conditions must be met in order to pass the Class 12 AP Board exam?

In order to pass the AP Board Class 12 exam, pupils must receive at least 35% marks.

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