TS EAMCET Physics Syllabus 2024 (PDF Available): Download Syllabus PDF, Check Important Topics, Topic-Wise Weightage

Updated By Rupsa on 25 Apr, 2024 19:20

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TS EAMCET Physics Syllabus 2024

The TS EAMCET Physics Syllabus 2024 PDF is available for download on this page to help candidates better understand the important topics to study and revise before the exam. The TS EAMCET Physics Syllabus 2024 was announced by the official authority on its website. The syllabus of TS EAMCET is framed based upon the 12th syllabus of the Intermediate Education, Telangana board. Several sections of the TS EAMCET syllabus 2024 hold different weightages. Some of the sections carry high weightage, whereas others have low weightage. The high-weightage topics of the TS EAMCET 2024 Physics Syllabus include thermodynamics, energy and power, rotational motion, etc.

As per the previous data, the TS EAMCET previous year's question papers involved maximum questions from Mechanics, Heat & Thermodynamics, and Wave & Optics. The important topics in the syllabus of TS EAMCET include Thermodynamics, Modern Physics, Electricity and Magnetism, etc. Moreover, the level of difficulty of the Physics section in the TS EAMCET exam averages from moderate to difficult. One can have a better understanding of the same after practising TS EAMCET Previous Year Question Papers. To get complete knowledge of TS EAMCET Physics Syllabus 2024, refer to this page.

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TS EAMCET Physics Syllabus 2024 PDF Download

Students preparing for the Physics section can download the complete TS EAMCET Physics Syllabus 2024 PDF from the link given below. They should cover all the sub topics from the syllabus to ensure they do not miss out on any important topic for the exam.

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TS EAMCET 2024 Physics Syllabus and Sub Topics

There are 30+ chapters included in the Physics syllabus for TS EAMCET. A detailed explanation of the TS EACMET 2024 Physics Syllabus is mentioned in the table below:- 

Name of the topic

Sub Topics

Physical World

  • What is physics?
  • Fundamental Forces in Nature

Units and Measurements

  • Introduction,
  • The International System of Units,
  • Measurement of Length,
  • Measurement of Large Distances,
  • Estimation of Very Small Distances: Size of a Molecule,
  • Range of Lengths,
  • Measurement of Mass,
  • Range of Masses,
  • Measurement of Time,
  • Accuracy,
  • Precision of Instruments and Errors in Measurement,
  • Systematic Errors,
  • Random Errors,
  • Least Count Error,
  • Absolute Error,
  • Relative Error and Percentage Error,
  • Combination of Errors,
  • Significant Figures,
  • Rules for Arithmetic Operations with Significant Figures,
  • Rounding off the Uncertain Digits,
  • Rules for Determining the Uncertainty in the Results of Arithmetic Calculations,
  • Dimensions of Physical Quantities,
  • Dimensional Formulae and Dimensional Equations,
  • Dimensional Analysis and its Applications,
  • Checking the Dimensional Consistency of Equations,
  • Deducing Relation among the Physical Quantities

Motion in a Straight Line

  • Introduction,
  • Position,
  • Path Length and Displacement,
  • Average Velocity and Average Speed,
  • Instantaneous Velocity and Speed,
  • Acceleration,
  • Kinematic Equations for Uniformly Accelerated Motion,
  • Relative velocity

Motion in a Plane

  • Introduction,
  • Scalars and Vectors,
  • Position and Displacement Vectors,
  • Equality of Vectors,
  • Multiplication of Vectors by Real numbers,
  • Addition and Subtraction of Vectors - Graphical Method,
  • Resolution of Vectors,
  • Vector Addition -Analytical Method,
  • Motion in a Plane,
  • Position Vector and Displacement,
  • Velocity,
  • Acceleration,
  • Motion in a Plane with Constant Acceleration,
  • Relative Velocity in Two Dimensions,
  • Projectile Motion,
  • Equation of Path of a Projectile,
  • Time of Maximum Height,
  • Maximum Height of a Projectile,
  • Horizontal Range of Projectile,
  • Uniform Circular Motion

Laws of Motion

  • Introduction,
  • Conservation of Momentum,
  • Equilibrium of a Particle,
  • Common Forces in Mechanics,
  • Friction,
  • Circular Motion,
  • Motion of a Car on a Level Road,
  • Motion of a Car on a Banked Road,
  • Solving Problems in Mechanics.

Work, Energy, and Power

  • Introduction,
  • The Scalar Product,
  • Notions of Work and Kinetic Energy: The Work-Energy Theorem,
  • Work,
  • Kinetic Energy,
  • Work Done by a Variable Force,
  • The Work-Energy Theorem for a Variable Force,
  • The Concept of Potential Energy,
  • The Conservation of Mechanical Energy,
  • The Potential Energy of a Spring,
  • Various Forms of Energy: The Law of Conservation of Energy,
  • Heat,
  • Chemical Energy,
  • Electrical Energy,
  • The Equivalence of Mass and Energy,
  • Nuclear Energy,
  • The Principle of Conservation of Energy,
  • Power,
  • Collisions,
  • Elastic, and Inelastic Collisions,
  • Collisions in one Dimension,
  • Coefficient of Restitution and its Determination,
  • Collisions in Two Dimensions

System of Particles and Rotational Motion

  • Introduction,
  • What Kind of Motion can a Rigid Body Have?,
  • Centre of Mass,
  • Centre of Gravity,
  • Motion of Centre of Mass,
  • Linear Momentum of a System of Particles,
  • Vector Product of Two Vectors,
  • Angular Velocity and its Relation with Linear Velocity,
  • Angular Acceleration,
  • Kinematics of Rotational Motion about a Fixed Axis,
  • Torque and Angular Momentum,
  • Moment of Force (Torque),
  •  Angular Momentum of Particle,
  • Torque and Angular Momentum for a System of Particles,
  • Conservation of Angular Momentum,
  • Equilibrium of a Rigid Body,
  • Principle of Moments,
  • Moment of Inertia,
  • Dynamics of Rotational Motion about a Fixed Axis,
  • Angular Momentum in Case of Rotation about a Fixed Axis,
  • Conservation of Angular Momentum,
  • Rolling Motion,
  • Kinetic Energy of Rolling Motion

Oscillations

  • Introduction,
  • Periodic and Oscillatory Motions,
  • Period and Frequency,
  • Displacement,
  • Simple Harmonic Motion (S.H.M.),
  • Simple Harmonic Motion and Uniform Circular Motion,
  • Velocity and Acceleration in Simple Harmonic Motion,
  • Force Law for Simple Harmonic Motion,
  • Energy in Simple Harmonic Motion,
  • Some Systems Executing Simple Harmonic Motion,
  • Oscillations Due to a Spring,
  • The Simple Pendulum,
  • Damped Simple Harmonic Motion,
  • Forced Oscillations and Resonance

Gravitation

  • Introduction,
  • Universal Law of Gravitation,
  • Acceleration Due to Gravity Below and Above the Surface of Earth,
  • Gravitational Potential Energy,
  • Escape Speed,
  • Earth Satellite,
  • Energy of an Orbiting Satellite,
  • Geostationary and Polar Satellites,
  • Weightlessness

Mechanical Properties of Solids

  • Introduction,
  • Elastic Behaviour of Solids,
  • Stress and Strain,
  • Hooke’s Law,
  • Stress-Strain Curve,
  • Elastic Moduli,
  • Young’s Modulus,
  • Bulk Modulus

Mechanical Properties of Fluids

  • Introduction,
  • Pressure,
  • Pascal’s Law,
  • Variation of Pressure with Depth,
  • Atmosphere Pressure and Gauge Pressure,
  • Hydraulic Machines,
  • Streamline Flow,
  • Bernoulli’s Principle,
  • Speed of Efflux: Torricelli’s Law,
  • Venturi-Meter,
  • Blood Flow and Heart Attack,
  • Dynamic Lift,
  • Viscosity,
  • Variation of Viscosity of Fluids with Temperature,
  • Stokes’ Law,
  • Reynolds Number,
  • Critical Velocity,
  • Surface Tension,
  • Surface Energy,
  • Surface Energy and Surface Tension,
  • Angle of Contact,
  • Drops and Bubbles,
  • Capillary Rise,
  • Detergents and Surface Tension

Thermal Properties of Matter

  • Introduction,
  • Temperature and Heat,
  • Measurement of Temperature,
  • Ideal-Gas Equation and Absolute Temperature,
  • Thermal Expansion,
  • Specific Heat Capacity,
  • Calorimetry,
  • Change of State,
  • Regelation,
  • Latent Heat,
  • Black Body Radiation,
  • Greenhouse Effect,
  • Newton’s Law of Cooling

Thermodynamics

  • Introduction,
  • Thermal Equilibrium,
  • Zeroth Law of Thermodynamics,
  • Heat,
  • Internal Energy and Work,
  • First law of Thermodynamics,
  • Specific Heat Capacity,
  • Thermodynamic State Variables and Equation of State,
  • Thermodynamic Process,
  • Quasi-Static Process,
  • Isothermal Process,
  • Adiabatic Process,
  • Isochoric Process,
  • Isobaric Process,
  • Cyclic Process,
  • Second Law of Thermodynamics,
  • Reversible and Irreversible Processes

Kinetic Theory

  • Introduction,
  • Molecular Nature of Matter,
  • Behavior of Gases,
  • Boyle’s Law,
  • Charles’ Law,
  • Kinetic Theory of an Ideal Gas,
  • Pressure of an Ideal Gas,
  • Kinetic Interpretation of Temperature,
  • Law of Equipartition of Energy,
  • Specific Heat Capacity,
  • Monatomic Gases,
  • Diatomic Gases,
  • Polyatomic Gases,
  • Specific Heat Capacity of Solids,
  • Specific Heat Capacity of Water,
  • Mean Free Path

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

Ray Optics and Optical Instruments

  • Introduction,
  • 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,
  • The Rainbow,
  • 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,
  • The Single Slit,
  • Seeing the Single Slit Diffraction Pattern,
  • Resolving Power of Optical Instruments,
  • The Validity of Ray Optics

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,
  • Field Due to an Infinitely Long Straight Uniformly Charged Wire,
  • Field Due to a Uniformly Charged Infinite Plane Sheet

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,
  • Dielectrics and Polarisation,
  • Capacitors and Capacitance,
  • The Parallel Plate Capacitor,
  • Effect of Dielectric on Capacitance,
  • Combination of Capacitors,
  • Energy Stored in a Capacitor

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,
  • Temperature Dependence of Resistivity,
  • Electrical Energy,
  • Power,
  • Cells,
  • EMF,
  • Internal Resistance,
  • Cells in Series and in Parallel,
  • Kirchhoff’s Rules,
  • 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,
  • Ampere’s Circuital Law,
  • The Solenoid and the Toroid,
  • Force Between Two Parallel Currents,
  • The Ampere,
  • Torque on Current Loop,
  • Magnetic Dipole,
  • The Moving Coil Galvanometer

Magnetism and Matter

  • Introduction,
  • The Bar Magnet,
  • The Magnetic Field Lines,
  • Bar Magnet as a Equivalent Solenoid,
  • The Dipole in a Uniform Magnetic Field,
  • The Electrostatic Analog,
  • 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 Resistor,
  • Representation of AC Current and Voltage by Rotating Vectors — Phasors,
  • AC Voltage Applied to an Inductor,
  • AC Voltage Applied to a 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 Germer 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 Materials: Metals,
  • Semiconductors and Insulators,
  • Intrinsic Semiconductor,
  • Extrinsic Semiconductor,
  • p-n Junction,
  • Semiconductor Diode,
  • Application of Junction Diode as a Rectifier,
  • Special Purpose p-n Junction Diodes,
  • Zener Diode,
  • Optoelectronic Junction Devices,
  • Junction Transistor,
  • Transistor Structure and Action,
  • Basic Transistor Circuit Configurations and Transistor Characteristics,
  • Transistor as a Device,
  • Transistor as an Amplifier (CE Configuration),
  • Feedback Amplifier and Transistor Oscillator
  • 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

Quick Link: TS EAMCET Exam Pattern 2024

TS EAMCET 2024 Physics Syllabus Topic Wise Weightage

The weightage of topics in the TS EAMCET Physics Syllabus 2024 varies differently. To prepare for the TS EAMCET exam hassle-free, the candidates should study as per the weightage of the syllabus and denote time to each topic respectively. Moreover, the table below explains the weightage of the topics in the TS EAMCET 2024 Physics Syllabus:-

Name of the Topic

Weightage

Wave Optics

3%

Electric Charges and Fields

3%

Electromagnetic Induction

3%

Alternating Current

3%

Magnetism and Matter

2%

Electromagnetic Waves

2%

Atoms

2%

Motion in a Straight Line

3%

Atoms

2%

Motion in a Straight Line

3%

Mechanical Properties of Fluids

3%

Thermal Properties of Matter

3%

Physical World

1%

Units and Measurements

2%

Mechanical Properties of Solids

2%

Kinetic Theory

2%

Magnetism and Matter

2%

Electrostatic Potential and Capacitance

4%

Current Electricity

4%

Motion in a Plane

5%

Laws of Motion

5%

Moving Charges and Magnetism

5%

Electromagnetic Waves

2%

Dual Nature of Radiation and Matter

3%

Nuclei

3%

Semiconductor Electronics

3%

Communication Systems

3%

Ray Optics and Optical Instruments

3%

Oscillations

4%

Gravitation

4%

Waves

4%

Work, Energy, and Power

6%

System of Particles and Rotational Motion

6%

Thermodynamics

9%

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Important Topics from TS EAMCET 2024 Physics Syllabus

The candidates need to focus on various important topics TS EAMCET Physics syllabus while preparing for the exam. The table below explains important topics in the TS EAMCET Physics Syllabus 2024:-

Laws of Motion

Rotational Motion

Thermal Properties of Matter

Thermodynamics

Kinetic Energy

Physical World

Waves and Sound

Ray Optics and Optical Instruments

Electrostatic Potential and Capacitance

Moving Charges and Magnetism

Current Electricity

Communication Systems

Semiconductor Electronics

Waves and Sound

Wave Optics

Electrostatic Potential and Capacitance

Ray Optics and Optical Instruments

Current Electricity

Moving Charges and Magnetism

Communication Systems

Nuclei

Thermodynamics

Mechanical Properties of Fluids

Thermal Properties of Matter

Rotational Motion

System of Particles

Laws of Motion

Physical World

Formula-Based Questions

Nuclear Reactors Focal Length

Tension of Wire

Best Books for TS EAMCET Physics Syllabus 2024

The preparation of the TS EAMCET 2024 Physics Syllabus can be made easier if studied from the recommended books. The list of the best books for TS EAMCET 2024 Physics is mentioned below:-

Name of the Books

Name of the author

EAMCET Physics

Andhra & Telangana

Concept of Physics Vol 1 & 2

HC Verma

NCERT Textbook for Physics

NCERT

Fundamentals of Physics

Halliday & Resnick

Understanding Physics

DC Pandey

EAMCET Physics Chapter wise 26 years Solutions & 5 Mock Tests

Arihant Express

Handbook (Keynotes, terms, formulas)

Arihant Express

EAMCET Question Bank Physics

Telegu Academy

EAMCET Physics Andhra and Telangana

Arihant Experts

TS EAMCET Preparation Tips 2024 for Physics

The Physics section in TS EAMCET exam paper comprises a combination of theoretical and formula-based questions. The candidates appearing for TS EAMCET should make a proper preparation strategy to make studying effortless. Some of the recommended TS EAMCET Preparation Strategy 2024 for Physics is mentioned below:-

  • Understand the concepts instead of mugging everything up.
  • Learn the formula and apply it to solve practical questions.
  • Practice as much previous year question papers as you can.
  • Know about your strong as well as weak points by taking TS EAMCET mock test 2024 regularly.
  • Get your basics clear.

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what certificates are required for ts eamcet counselling

-Yash DhamijaUpdated on September 02, 2023 02:40 PM
  • 2 Answers
Anjani Chaand, CollegeDekho Expert

Dear Student,

During TS EAMCET counseling, candidates submit various documents for verification. Here is a list of documents that are commonly required for TS EAMCET counseling:

  • TS EAMCET Hall Ticket and Rank Card
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Anjani Chaand, CollegeDekho Expert

Dear Student,

TS EAMCET counseling takes place in multiple rounds, the number of which is determined by the Telangana State Council of Higher Education (TSCHE) or the conducting authorities. Registration for the first round of counseling closed on July 8, 2023. Candidates can begin registering for the second phase of counseling from July 24-25, 2023. This is done through the official website tseamcet.nic.in Document verification for candidates with booked slots will take place on July 26 and seat allotment on July 28, 2023.

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Dear Student,

"Ranks" in the TS EAMCET (Telangana State Engineering, Agriculture, and Medical Common Entrance Test) show the performance of candidates relative to the highest score. Based on the Marks-vs-Ranks analysis, your rank of 27000 in TS EAMCET 2023 indicates a score in the 60-69 range. Generally, this can be considered a decent rank. However, its competitiveness and the opportunities it presents can vary depending on factors such as the total number of candidates, the difficulty level of the exam, and the availability of seats. Our advice is to aim realistically- for private institutions rather than government ones- and check …

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