CUET Physics Syllabus 2025- Download Pdf, Chapter Wise Weightage, Question Papers [2024-2022]

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Chanpreet Kaur

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The NTA has released the official CUET Physics Syllabus 2025 PDF, which is divided into approximately 10 main units, primarily from the NCERT Class 12 Physics Syllabus. As per the previous year’s data the Electrostatics, Current Electricity, and Magnetism covered almost 52% of the questions and hence are the highest-weightage topics, followed by Optics and Electromagnetic Induction. The Electromagnetic Waves and Communication Systems made the least contribution (6-8%) of the paper.

According to the CUET UG exam pattern, the physics question paper will have 50 questions, and all the questions have to be attempted by the candidates in 60 minutes. Most of the questions (85%) are related to theoretical/conceptual and numerical-based concepts, while lesser importance (15%) is given to application-based questions.

The CUET UG 2025 is scheduled to take place in the third week of May 2025. NTA will confirm the date for the examination in the last week of February 2025.

CUET Physics Syllabus Latest Trends

CUET Physics Syllabus PDF Download

CUET Physics 2025 Weightage

Understanding the weightage of different topics in CUET Physics is crucial for efficient preparation. The distribution of questions is generally aligned with NCERT Class 12 topics, but certain areas are tested more frequently than others. Below is an estimated weightage based on past CUET exams and syllabus trends.

Check: CUET 2025 Chapterwise Weightage

Unit Topic Expected Number of Questions Weightage (%)
I Electrostatics 4-5 10%
II Current Electricity 4-5 10%
III Magnetic Effects of Current and Magnetism 5-6 12%
IV Electromagnetic Induction and Alternating Currents 4-5 10%
V Electromagnetic Waves 2-3 6%
VI Optics 6-7 14%
VII Dual Nature of Matter and Radiation 3-4 8%
VIII Atoms and Nuclei 3-4 8%
IX Electronic Devices 4-5 10%
X Communication Systems 2-3 6%

CUET Physics 2025 Important Questions

To help you prepare effectively for CUET Physics 2025, I have compiled a list of important questions based on previous year trends, topic weightage, and difficulty level. The questions are categorized into theory-based, numerical, and conceptual problems to cover the complete syllabus.

CUET Physics Question Type Breakdown (Based on Past Papers)

Question Type Approximate Distribution (%) Nature of Questions
Theoretical/Conceptual 40% Direct concept-based, formula definitions, fact-based questions
Numerical-Based 45% Calculation-based, formula application, problem-solving
Application-Based 15% Real-life application, experimental physics, practical-based

As per the Physics Chapter-wise weightage, Students must focus on preparing Optics, Magnetism, and Electrostatics according to the number of questions anticipated and their weightage.

  • Optics is the most important unit, with a contribution of 14% to the overall weightage, and Magnetism & Moving Charges has a weightage of 12%.
  • Electromagnetic Waves and Communication Systems are the least heavily weighted units, at 6% each.
  • Topics such as Dual Nature of Matter and Atoms & Nuclei carry 8% weightage each, indicating their significance in comprehending classical and modern physics concepts.
  • Current Electricity, Electrostatics, and Electronic Devices each have an equal weightage of 10%, highlighting their significance in circuit analysis and rudimentary theoretical knowledge.
Unit Topic Expected Number of Questions Weightage (%)
Electrostatics Coulomb’s Law, Electric Field 4-5 10%
Current Electricity Kirchhoff’s Laws, Ohm’s Law 4-5 10%
Magnetism & Moving Charges Biot-Savart Law, Ampere’s Law 5-6 12%
Electromagnetic Induction Faraday’s Law, Transformers 4-5 10%
Electromagnetic Waves Spectrum, Displacement Current 2-3 6%
Optics Lens Formula, Wave Optics 6-7 14%
Dual Nature of Matter Photoelectric Effect 3-4 8%
Atoms & Nuclei Bohr’s Model, Nuclear Reactions 3-4 8%
Electronic Devices Semiconductors, Logic Gates 4-5 10%
Communication Systems Modulation, Signal Bandwidth 2-3 6%
CUET 2025 Physics Weightage and no. of Questions

Will class 11 syllabus come in CUET 2025?

No, the CUET 2025 syllabus does not include Class 11 syllabus chapters or topics. The exam, which is conducted for different subjects and languages, should be prepared after completing the Class 12 syllabus only.

CUET Physics 2025 Preparation Strategy

The CUET Physics 2025 exam requires a strategic approach, with the collective information of conceptual clarity, numerical problem-solving, and time management to score high in a 60 minute, 50-question pattern.

  • CUET 2024 indicates that 80% of the questions are NCERT-based, and candidates who attempted 10+ mock tests had an accuracy rate of 25% higher.
  • A good 3-month study plan, with focus on learning concepts, practicing them, and mocking exams, is the secret to getting the highest scores and a 95+ percentile in CUET Physics.

Check the CUET 2025 Preparation Strategies to ace the exam.

CUET Physics Previous Year Papers

CUET Physics Question Paper PDF with Solutions
CUET Physics Question Paper 2023 Click Here
CUET Physics Question Paper 2022 Click Here

CUET Physics 2025 Study Plan (3-Month Strategy)

This 3-month structured study plan ensures a balanced approach to concept learning, problem-solving, and exam practice to maximize CUET Physics scores.

CUET Physics 2025 3-Month Study Plan (Week-Wise)

Phase Weeks Focus Area Key Activities
Phase 1: Concept Building Weeks 1-4 Understand Concepts & NCERT Focus
  • Read & understand NCERT Physics (Class 12) ????
  • Solve NCERT examples and back exercises
  • Prioritize high-weightage topics: Optics, Magnetism, Electrostatics
  • Prepare short notes & formula sheets
Phase 2: Problem-Solving & Application Weeks 5-8 Numerical Practice & Application-Based Learning
  • Start solving numerical problems from reference books & mock tests
  • Focus on formula-based questions from Electrostatics, Current Electricity, and Magnetism
  • Solve 10-15 numerical problems daily
  • Attempt topic-wise tests (at least 2 per week)
Phase 3: Revision & Mock Test Practice Weeks 9-12 Final Preparation & Full-Length Mock Tests
  • Revise important formulas, short notes, and tricky concepts
  • Solve previous years' CUET Physics question papers
  • Attempt full-length CUET Physics mock tests (3-4 per week) under exam conditions.
  • Improve time management & accuracy using mock test analysis.

Additional Preparation Tips:

  • Solve at least 10-15 numerical problems daily to improve problem-solving speed.
  • Take mock tests regularly in Phases 2 & 3 to evaluate weak areas.
  • Make a formula sheet for last-minute revision (especially for Electrostatics, Current Electricity, and Optics).
  • Analyze mistakes after each mock test and work on weak topics immediately.

CUET Physics 2025 Study Timetable

Time Slot Task
6:00 AM - 6:30 AM Quick revision of previous day’s concepts
6:30 AM - 8:30 AM Study a new topic (Concepts + NCERT Exercises)
8:30 AM - 9:00 AM Break
9:00 AM - 10:30 AM Solve numerical problems from important topics
10:30 AM - 12:00 PM Study theory-based topics (Communication Systems, Dual Nature of Matter, EM Waves)
12:00 PM - 1:00 PM Lunch + Relaxation
1:00 PM - 2:30 PM Solve previous years’ CUET questions
2:30 PM - 4:00 PM Take a mock test (Full or Topic-wise)
4:00 PM - 5:00 PM Break + Light Revision
5:00 PM - 7:00 PM Revise formulas and tricky concepts
7:00 PM - 8:00 PM Dinner + Relaxation
8:00 PM - 9:30 PM Attempt quiz-based practice on weaker topics
9:30 PM - 10:00 PM Daily Summary & Next-Day Planning

How to Use This Timetable Effectively?

  • Follow the 80-20 rule: 80% focus on high-weightage topics, 20% on low-weightage.
  • Take small breaks between study sessions for better retention.
  • Solve previous years' CUET Physics papers in the same time constraints as the actual exam.

CUET Physics Mock Test Strategy

Candidates who performed 10+ full-length practice tests scored 25% better than those who did not do so. Time management and precision were aided, according to 80% of top-scoring candidates, through mock tests.

Common mistakes found in mock tests:

  • Spending too much time on numerical questions.
  • Misinterpreting theoretical questions.
  • Not reviewing answers properly before submission.

Check: CUET Mock Test 2025, Check Subject Wise Mock Test CUET 2025

Mock Test Structure

Section Number of Questions Time Allocation
Numerical-Based 15-20 20 minutes
Conceptual & Formula-Based 10-12 10 minutes
Memory-Based (Theory) 8-10 5 minutes
High-Difficulty (Magnetism, Optics, Electromagnetic Induction) 5-8 10 minutes

Can I clear CUET in 1 month?

Yes, it is achievable to clear CUET in 1 month, but it needs a disciplined and strategic study plan. As CUET is NCERT-based, emphasizing high-weightage topics, rapid revision, and practice of mock tests can make a huge difference in your success chances.

CUET Physics 30-Day Study Plan (1 Month Strategy)

This 30-day study plan ensures a balanced approach to concept revision, problem-solving, and exam practice.

1-Month CUET Physics Study Plan

Phase Days Focus Area Key Activities
Phase 1: Rapid Concept Learning Days 1-10 Revise NCERT Concepts & Formulae
  • Read NCERT Physics Class 12 (all chapters)
  • Prioritize high-weightage topics: Optics, Magnetism, Electrostatics, Current Electricity
  • Solve NCERT examples & exercises
  • Prepare short notes & formula sheets
Phase 2: Problem-Solving & Application Days 11-20 Numerical Practice & Speed Improvement
  • Solve numerical problems from Electrostatics, Current Electricity, Magnetism
  • Attempt topic-wise tests (at least 2 per day)
  • Work on time management strategies using short quizzes
  • Revise weak areas based on test analysis
Phase 3: Mock Tests & Full-Length Practice Days 21-30 Final Preparation & Exam Simulation
  • Attempt full-length CUET mock tests (1-2 per day)
  • Revise important formulas, tricky concepts, and common mistakes
  • Solve previous years' CUET Physics question papers
  • Focus on accuracy and reducing negative marking.

CUET Physics 1-Month Study Timetable (Daily Plan)

Time Slot Task
6:00 AM - 6:30 AM Quick revision of formulas & concepts
6:30 AM - 8:30 AM Study new topic (Concepts + NCERT Examples)
8:30 AM - 9:00 AM Break
9:00 AM - 10:30 AM Solve numerical problems from important topics
10:30 AM - 12:00 PM Revise theory-based topics (EM Waves, Communication Systems, Dual Nature of Matter)
12:00 PM - 1:00 PM Lunch + Relaxation
1:00 PM - 2:30 PM Solve previous years' CUET Physics questions
2:30 PM - 4:00 PM Take a mock test (Full or Topic-wise)
4:00 PM - 5:00 PM Break + Light Revision
5:00 PM - 7:00 PM Revise formulas and tricky concepts
7:00 PM - 8:00 PM Dinner + Relaxation
8:00 PM - 9:30 PM Attempt quiz-based practice on weaker topics
9:30 PM - 10:00 PM Daily Summary & Next-Day Planning

With smart planning, daily practice, and consistent mock test evaluation, it is absolutely possible to score 95+ percentile in CUET Physics within 1 month. Discipline, focus, and practice are key.

CUET Physics 2025 Recommended Books

On the basis of CUET 2024 trends, student feedback, and subject weightage analysis, the following books are strongly suggested for CUET Physics 2025 preparation. These books deal with conceptual clarity, numerical practice, MCQs, and previous year's questions, which are important for obtaining high marks in CUET Physics.

Also Check: CUET Books 2025 and Preparation Tips

CUET Physics 2025 Recommended Books (With Features & Benefits)

Book Name Author / Publisher Best For Why Choose This? CUET 2024 Data Insights
NCERT Physics Class 12 (Part 1 & 2) NCERT Concept Building & Theory Officially follows CUET syllabus 80% of CUET 2024 questions were NCERT-basedBest for conceptual clarity 80% of CUET Physics 2024 questions were directly from NCERT
Concepts of Physics (Vol. 1 & 2) H.C. Verma Numerical Problem-Solving & Conceptual Understanding Covers detailed theory + MCQs Best for building problem-solving skills Helpful for numerical-based topics like Electrostatics, Current Electricity, and Optics 45% of CUET Physics 2024 questions were numerical-based
Objective Physics for CUET & JEE D.C. Pandey (Arihant Publications) MCQ Practice & Problem-Solving Provides chapter-wise MCQs with solutions Covers high-weightage topics like Magnetism, Optics, and Current Electricity CUET 2024 included 60% application-based MCQs
Fundamentals of Physics Halliday, Resnick & Walker Advanced Problem-Solving & Application-Based Learning Good for deep understanding of physics principlesUseful for high-difficulty questions ???? 12% of CUET 2024 questions required deep conceptual knowledge
40 Days Crash Course for CUET Physics Arihant Experts Quick Revision & Crash Course Preparation Best for last-minute revisionCovers formulas, short tricks & important questionsIncludes mock tests & solved examples Candidates who revised with structured notes scored 20-30% higher in CUET 2024
CUET Physics Chapter-wise Solved Papers MTG Editorial Board Previous Year Question Practice Includes CUET previous year papersProvides chapter-wise solved examplesHelps in understanding exam pattern 70% of CUET 2024 toppers practiced the previous year papers
  • 80% of CUET Physics questions were directly from NCERT, making it the most important book.
  • 45% of questions were numerical-based, so books like H.C. Verma & D.C. Pandey are crucial.
  • 60% of questions were application-based, requiring practice from objective-based books.
  • Candidates who attempted at least 10+ mock tests using MTG or Arihant solved papers scored 20-30% higher.

CUET Physics 2025 Important Questions (Chapter-Wise)

These questions are selected based on their importance in previous years and the concept clarity needed for CUET.

Unit 1: Electrostatics

Theoretical Questions

  • State and explain Coulomb’s Law.
  • What is Electric Field Intensity? Derive the formula for an electric field due to a point charge.
  • Define Electric Dipole Moment and derive the expression for an electric field due to a dipole at an axial position.

Numerical Questions

  • Two charges +3µC and -2µC are placed 10 cm apart in a vacuum. Find the force between them.
  • A charge Q = 5×10⁻⁶ C is placed in an electric field of 2000 N/C. Calculate the force and acceleration acting on the charge if its mass is 2g.

Unit 2: Current Electricity

Theoretical Questions

  • State Ohm’s Law and derive an expression for drift velocity of electrons.
  • Explain Kirchhoff’s Laws with their applications in circuit analysis.

Numerical Questions

  • A resistor of 5Ω is connected to a battery of 10V. Find the current flowing through it.
  • Calculate the equivalent resistance when three resistors of 4Ω, 6Ω, and 12Ω are connected in parallel.

Unit 3: Magnetism & Moving Charges

Theoretical Questions

  • Derive the expression for magnetic field due to a current-carrying straight conductor using Biot-Savart Law.
  • Explain Ampere’s Circuital Law and derive the formula for magnetic field due to a solenoid.

Numerical Questions

  • A proton moves with velocity 2 × 10⁶ m/s perpendicular to a magnetic field of 0.5 T. Find the force acting on it.
  • Calculate the magnetic dipole moment of a circular coil with 50 turns, radius = 10 cm, and current = 5A.

Unit 4: Electromagnetic Induction

Theoretical Questions

  1. Explain Faraday’s Laws of Electromagnetic Induction.
  2. Define Lenz’s Law and explain its significance.

Numerical Questions

  • A coil of 200 turns is placed in a magnetic field changing from 0.1 T to 0.5 T in 2 seconds. Find the induced EMF.
  • A transformer has primary: 1000 turns, secondary: 250 turns. If input voltage is 240V, calculate the output voltage.

Unit 5: Optics

Theoretical Questions

  • Derive the lens formula for a convex lens.
  • What is Total Internal Reflection? Explain optical fibers.

Numerical Questions

  • An object is placed 30 cm from a convex lens of focal length 15 cm. Find the image position and magnification.
  • A double slit experiment produces fringes with a wavelength 600 nm and slit separation of 0.2 mm. Find the fringe width if the screen is 2m away.

Unit 6: Dual Nature of Matter & Radiation

Theoretical Questions

  • State Einstein’s Photoelectric Equation and explain threshold frequency.
  • Explain the Davisson-Germer Experiment and its significance in proving wave nature of electrons.

Numerical Questions

  • Calculate the energy of a photon with a wavelength of 500 nm.
  • A photoelectron is emitted with a kinetic energy of 2.5 eV. Find its velocity.

Is CUET Physics Tough?

The CUET Physics is usually rated tough by students appearing for undergraduate entrance in science and engineering disciplines. However, toughness is based on different parameters, such as a person's conceptual grasp, problem-solving ability, and preparation strategy.

CUET Physics Previous Year Difficulty Analysis

Based on candidate feedback from previous years, the Physics section was considered moderate to difficult. Below is the difficulty level breakdown from student surveys:

Difficulty Level Percentage of Students
Easy 18%
Moderate 57%
Difficult 25%
  • 25% of students found the exam difficult due to numerical-based problems and tricky conceptual questions.
  • 57% of students categorized it as moderate, meaning a well-prepared student could comfortably attempt most of the questions.
  • 18% found it easy, suggesting that strong conceptual knowledge and practice significantly reduce perceived difficulty.

CUET Physics Syllabus Topic Wise

The CUET Physics exam consists of multiple-choice questions (MCQs) on important physics concepts, like Electrostatics, Current Electricity, Magnetism, Optics, Modern Physics, and Electronic Devices. Knowledge of the topic-wise syllabus distribution is essential for proper preparation, as it aids in focusing on high-weightage topics and understanding intricate concepts.

What is the syllabus of Physics in CUET?

The Syllabus of Physics in CUET 2025 is divided into 10 units. A properly organized unit-wise analysis of the CUET Physics syllabus gives a greater insight into the complexity, relevance, and probable question types from each section.

Unit Number Unit Name Topics Covered
I Electrostatics
  • Electric charges and their conservation
  • Coulomb’s law: force between two-point charges
  • Forces between multiple charges
  • Superposition principle
  • Continuous charge distribution
II Current Electricity
  • Electric current
  • Ohm’s law
  • Drift of electrons and origin of resistivity
  • Temperature dependence of resistivity
  • Electrical energy and power
  • Combination of resistors: series and parallel
  • Kirchhoff’s laws
  • Wheatstone bridge
  • Meter bridge
  • Potentiometer
III Magnetic Effects of Current and Magnetism
  • Concept of the magnetic field
  • Biot-Savart law and its application
  • Ampere’s law and its applications
  • Force on a moving charge in a magnetic field
  • Moving coil galvanometer
  • Torque on the current loop
  • Magnetic dipole moment
  • Earth’s magnetic field
  • Magnetic properties of materials
IV Electromagnetic Induction and Alternating Currents
  • Electromagnetic induction
  • Faraday’s laws
  • Lenz’s law
  • Self and mutual induction
  • Alternating currents
  • Peak and RMS value of alternating current
  • Reactance and impedance
  • LC oscillations
  • Transformers
V Electromagnetic Waves
  • Displacement current
  • Electromagnetic waves and their characteristics
  • Electromagnetic spectrum: radio waves, microwaves, infrared, visible, ultraviolet, X-rays, gamma rays
VI Optics
  • Reflection and refraction of light
  • Mirror formula
  • Lens formula
  • Total internal reflection
  • Optical fibers
  • Refraction through a prism
  • Scattering of light
  • Optical instruments: microscopes and astronomical telescopes
  • Wave optics: interference, diffraction, polarization
VII Dual Nature of Matter and Radiation
  • Photoelectric effect
  • Einstein’s photoelectric equation
  • Matter waves
  • Davisson-Germer experiment
VIII Atoms and Nuclei
  • Alpha-particle scattering experiment
  • Bohr model of hydrogen atom
  • Energy levels
  • Composition and size of nucleus
  • Radioactivity
  • Nuclear fission and fusion
IX Electronic Devices
  • Semiconductors
  • Intrinsic and extrinsic semiconductors
  • p-n junction diode
  • Zener diode
  • Junction transistor
  • Logic gates
X Communication Systems
  • Elements of a communication system
  • Bandwidth of signals
  • Modulation and its necessity
  • Amplitude modulation
  • Production and detection of an amplitude-modulated wave

*The article might have information for the previous academic years, which will be updated soon subject to the notification issued by the University/College.

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