NEET-UG Physics Predicted Question Paper 2027
If you’re preparing for the 2027 NEET-UG (Medical) (India) Physics paper, this predicted question paper gives you a realistic, full-length practice sitting. It follows the 2027 exam’s real structure — 45 minutes for 180 marks across 1 section — and covers the current syllabus, so you can rehearse timing, question types and topic spread before the real thing.
Exam intelligence dashboard
= model estimate- Blueprint match90%Strong structure match
- Total marks180marks
- Duration45 min~1 min/question
- Questions modelled451 section
- Syllabus topics11analysed
- Est. topic coverage11/11~99% per topic
- Objective share100%180 marks
- Prediction for2027Admission / entrance test
- Built withGoogle AIintel-1.0
Figures marked ● are model estimates derived from the exam’s published blueprint and syllabus — not measured historical frequencies. How this is built.
2027 paper blueprint
| Section | Type | Questions | Marks |
|---|---|---|---|
| Multiple Choice Questions | Multiple-choice questions | 45 · 4 each | 180 |
| Total · 45 min | 180 | ||
Paper analytics
The real weighting of the NEET-UG Physics paper, straight from its published blueprint.
Marks by question type
- Multiple-choice questions180 marks · 100%
At a glance
- Total
- 180 marks
- Duration
- 45 min
- Sections
- 1
- Questions set
- 45
- You answer
- 45
- Per question
- ~1 min
Topic priority
Model estimateA study-prioritisation model over the 11 syllabus topics, built from the paper’s structure, the syllabus order (foundations first) and the exam type (Admission / entrance test). Under an even-spread model a single paper reaches about 11 of 11 topics (~99% each), so prioritising pays off. These are study estimates, not a record of past questions.
Top priority
4 topics- Kinematics and laws of motionCore
Foundational syllabus topic — study this first; later chapters build on it.
~21 marks focus - Work, energy, power and gravitationCore
Foundational syllabus topic — study this first; later chapters build on it.
~20 marks focus - Rotational motion and properties of matterCore
Foundational syllabus topic — study this first; later chapters build on it.
~19 marks focus - Thermodynamics and kinetic theoryCore
Foundational syllabus topic — study this first; later chapters build on it.
~18 marks focus
High priority
3 topics- Oscillations and wavesCore
Core syllabus area — high study priority.
~17 marks focus - Electrostatics and current electricityCore
Core syllabus area — high study priority.
~16 marks focus - Magnetism and electromagnetic inductionCore
Core syllabus area — high study priority.
~15 marks focus
Medium priority
4 topics- AC and electromagnetic wavesStandard
Standard syllabus topic — cover after the core areas.
~15 marks focus - OpticsStandard
Standard syllabus topic — cover after the core areas.
~13 marks focus - Dual nature, atoms and nucleiStandard
Standard syllabus topic — cover after the core areas.
~13 marks focus - Semiconductor electronicsStandard
Standard syllabus topic — cover after the core areas.
~12 marks focus
Structure & coverage signals
How this paper is built and how widely it samples the syllabus — present-tense structure, not year-over-year trends (we don’t mine past papers).
Objective-heavy paper
Multiple-choice questions carry 180 of 180 marks (100%). Fast, high-yield marks — secure these first.
Broad coverage
The paper is long enough to reach roughly 11 of the 11 topics, so few areas are safe to skip — aim for wide, even preparation.
Why these predictions — the evidence
Each point below is grounded in the exam’s real blueprint or syllabus. We explain the reasoning rather than claiming any question is guaranteed.
Objective (MCQ) questions carry 180 of 180 marks — 100% of the paper.
Source · Exam paper blueprint
The Physics syllabus lists 11 core topics, and the paper draws across them in line with how it is weighted.
Source · Official syllabus topic list
At 45 minutes for 45 answered questions, that is about 1 minutes per question — rehearse to that pace.
Source · Exam paper blueprint
Calibrated as a admission / entrance test: full-syllabus, application-heavy questions with time pressure.
Source · NEET-UG exam format
Generate the 2027 Physics predicted paper
A full NEET-UG Physics paper matched to the real 2027 blueprint — practise online or print.
Your AI study plan
Model estimateA suggested strategy built from the blueprint weighting and syllabus order — adapt it to your own strengths.
Priority chapters
- 1.Kinematics and laws of motion
- 2.Work, energy, power and gravitation
- 3.Rotational motion and properties of matter
- 4.Thermodynamics and kinetic theory
- 5.Oscillations and waves
- 6.Electrostatics and current electricity
- 7.Magnetism and electromagnetic induction
Suggested time & order
Plan roughly 20 hours across the syllabus.
Practice in this order
- 1.Multiple Choice Questions — 180 marks
Last-minute revision checklist
- Nail the Multiple Choice Questions section — it is worth the most (180 marks).
- Re-read your notes on the foundational topics: Kinematics and laws of motion, Work, energy, power and gravitation, Rotational motion and properties of matter, Thermodynamics and kinetic theory.
- Do a timed MCQ set — objective marks (180 marks) are the quickest to secure.
- Practise to ~1 min/question so timing feels automatic.
Turn this into practice
Go beyond the analysis — generate real, exam-style material with MCQForge.
How this prediction is generated
Each predicted paper is assembled from two real inputs: the exam’s published paper structure — its sections, marks, question types and timing — and the official syllabus topic list. Questions are written slot-by-slot to match that blueprint and to read in the exam’s own style, then checked so every multiple-choice item is well-formed and the marks add up. This is structured, exam-style revision material — not a forecast of the exact questions, and it never uses leaked or copyrighted past papers. The analysis on this page — topic priority, coverage estimates and the study plan — is a deterministic model derived from that published blueprint, the official syllabus topic list, and the exam's own format. It is a study-planning aid, not a record of past papers: we do not mine or reproduce previous exams, and we make no claim about which exact questions will appear.
Frequently asked questions
- What’s in the 2027 NEET-UG Physics predicted question paper?
- The Physics paper in the NEET-UG is structured for 45 minutes for 180 marks across 1 section: Multiple Choice Questions (180 marks). A predicted paper mirrors this exact shape so practising it feels like sitting the real exam. It targets the 2027 sitting.
- Is this the real 2027 NEET-UG Physics paper?
- No. MCQForge is an independent study tool. Predicted NEET-UG papers are original practice material — they are not affiliated with, endorsed by, or sourced from the examining authority, do not reproduce real or leaked questions, and make no guarantee about which questions will appear in any sitting.
- How many marks is the 2027 Physics paper?
- 180 marks over 45 minutes. By the blueprint's own weighting, multiple-choice questions account for 180 of 180 marks (100%).
- How do I generate a 2027 Physics predicted paper?
- Choose your exam type (for example a mock, pre-board or the board sitting), then generate a full predicted paper you can practise or print. Each predicted paper is assembled from two real inputs: the exam’s published paper structure — its sections, marks, question types and timing — and the official syllabus topic list. Questions are written slot-by-slot to match that blueprint and to read in the exam’s own style, then checked so every multiple-choice item is well-formed and the marks add up. This is structured, exam-style revision material — not a forecast of the exact questions, and it never uses leaked or copyrighted past papers.
MCQForge is an independent study tool. Predicted NEET-UG papers are original practice material — they are not affiliated with, endorsed by, or sourced from the examining authority, do not reproduce real or leaked questions, and make no guarantee about which questions will appear in any sitting.