Arav qualified NSEJS in 2025

An Outstanding Physics Olympiad Program to Prepare for NSEJS. This is a foundational step toward INPhO / IPhO. 

Non-Routine NSEJS Program

The Physics Program at Cheenta is primarily designed to prepare students for NSEJS through strong conceptual foundations, deep problem solving, and experiment-based learning. The program also builds readiness for advanced Physics Olympiads such as NSEP and InPhO. Students are encouraged to apply their understanding through participation in science fairs including ISEF and IRIS.
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Physics Olympiad Levels at Cheenta 

A structured pathway from fundamentals to advanced Olympiad problem solving—choose your level
(Level 1 Primary, Level 1 Advanced, Level 2, or Level 3) and progress with guided classes, practice, and mentorship.
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Physics Level 1- Primary Program

This program is useful for introducing children to Physical Sciences and Astronomy using problem-solving and virtual labwork.
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Phyiscs Level 1- Advanced Program

This advanced-level program is useful for developing rigorous analytical skills in theoretical physics and astrophysics through high-intensity Olympiad problem-solving, deeper conceptual mastery, and advanced virtual labwork.
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Physics Olympiad Level 2

Physics Level 2 is designed to deepen core concepts and sharpen Olympiad-style problem solving through structured theory sessions, guided practice, and regular evaluations. Students learn to connect ideas across topics, build multi-step reasoning, and develop the confidence needed for higher-level Physics Olympiad questions.
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Physics Olympiad Level 3

Physics Level 3 (Final Stage) is designed for students aiming at top-tier Olympiad performance, with advanced problem sets, rigorous concept linking, and exam-style training. The course focuses on multi-step reasoning, precision in solutions, and intensive practice through tests, discussions, and mentor feedback.
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Broad Curriculum. Experiments and Problem Solving.

Mechanics Pre Calculus

Graphing a physical Phenomenon, Equation of Motion using vectors for Uniform Acceleration, Relative Motion. 

Kinematics Motion in a Plane

Understanding Motion in Two Dimention, Introduction to trigonometry and Projectile motion, Height and Range in Projectile Motion using Trigonometry, Equation of Trajectory of Projectile, Inclined Projectile. 

Newton Laws Introduction

Idea of Forces, Newton's Laws, Newton's Laws - Cont, Idea of Pseudo Force and Non - Inertial Frame. 

Application of Newton laws

Idea of Contact Forces - Normal and Friction Force, Friction force on an inclined plane and Angle of repose, 

Mechanics - Rotational - 1

Idea of Angular Variables(Angular displacement, acceleration, velocity), Radial and Tangential Parameters, Angular acceleration Torque and Moment of Inertia, Torque and Moment of Inertia of different bodies, Parallal and perpendicular axis theorm. 

Mechanics - Many Particles Physics

Idea of Center of Mass and finding it(Differentiation intro), Work Energy and Conservation Principle 1, Work Energy and Conservation Principle 2, Collisions - 1D Inelastic. 

Simple Harmonic Motion

Idea of Simple Harmonic Motion, Simple Harmonic Motion equation andEnergy conservation and Projection on Circle, Simple Pendulum and Spring mass systems.

Electrostatics

Electrostatics - Columb's Law(Charge, conducturs insulators,Induction), Electric Field and Forces, Field Calculations, Electric Dipoles, Electrostatic Potential Day-1, Electrostatic Potential Day-2(Energy, Equipotential surface). 

Electricity and Magnetism

Capacitors and Capacitance(Equivalant capacitors), Energy Stored in Capacitors and Field Energy, Idea of Current and Voltage, Calculation of Equivalent Resistances'Resistance - Ohm Law and Power, Magnetism due to Current, Ampere Law,Idea of Magnets - Permanent Magnets. 

Fluid Mechanics

Fluids and Pressure, Pascal's Law and Pressure by liquid column Contd, Archimedes's Principle and Law of Floatation, Archimedes's Principle - cont. Equation of Continuity and Bernoulli's Equation, Application of Bernoulli's Equations(Venturimeter) and Viscosity. 

Surface Tension

Recap of Elasticity and Surface Tension, Surface Energy and Pressure in a drop, Contact Angles and Capillary Tube, Viscosity and Poiseuille's Equation, Stroke's Law and Terminal Velocity. 

Wave Motion (Modern Physics)

Wave Motion and Particle duality, Velocity and Energy of Waves Power transmitled along the string, Reflection of waves and Standing waves, Vibration of Strings for close and open ends, Sound Waves and Velocity, Doppler Effect and Problems. 

What Our Students Say

  • Exceptionally good !!!
    Well planned concept developing and Homework section is really commendable. My daughter, Srinja really looks forward to the weekly sessions .
    Thank you Team Cheenta Physics.

    Srinja Mallik's Parent 
    (Class 7, India)

  • We find the Physics classes really helpful and challenging while the student (Prarthana Marwaha) is in class 9 and initially found the chapters challenging now she has adjusted to some extent and is able to understand the concepts. We find her interest level towards physics increasing and she is becoming more confident in solving problems earlier she would focus on theory. She likes and appreciates the way Uma ma'am teaches and generally eagerly awaits these sessions.

    Prarthana Marwaha's Father

  • The physics classes are very interesting and informative. Besides classes, homeworks are also given as a practice, which is very helpful.

    Srishruti Sreeram (Class 8, India)

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The Story of Motion - Concepts from Cheenta Physics Olympiad Program

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