Φ OlymPhyXby SciParaTodos
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Intelligent Olympiad Training

Master physics.
Train like an Olympian.

A bilingual, adaptive training environment for serious Physics Olympiad preparation — with guided problem solving, interactive simulations and your AI coach, Phi.

7Physics areas
∞Adaptive practice
24/7Phi AI Coach
Interactive session
TODAY'S TRAINING

Conservation of Momentum

4/5
01Predict 02Model 03Solve 04Reflect
⚡ Mechanics⏱ 18 min
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PHI · AI COACH

What would you like to master today?

Ask about a concept, request a training recommendation, or tell me which Olympiad you are preparing for.

ADAPTIVE LEARNING PATH

Build your Olympiad mastery map

Progress unlocks as your conceptual understanding, problem-solving performance and timed practice improve.

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02

Waves & Oscillations

SHM, wave propagation, interference and resonance.

12 skills→
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03

Electromagnetism

Fields, circuits, induction and Maxwell foundations.

16 skills→
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04

Thermodynamics

Thermal physics, ideal gases and thermodynamic processes.

10 skills→
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05

Optics

Geometric and wave optics with interactive ray models.

9 skills→
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06

Modern Physics

Relativity, quantum foundations and atomic physics.

11 skills→
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07

Experimental Physics

Measurement, uncertainty, data analysis and experimental design.

10 skills→
OLYMPIAD ARENA

Train against the standard of real competitions.

IPhOOIbFNationalMock exams
PROBLEM ARENA

Train for depth, not repetition.

Olympiad-style problems with progressive hints, multiple solution strategies, timed attempts and post-solution reflection.

  • ✓Socratic hint system
  • ✓Timed challenges and mock exams
  • ✓Historical Olympiad problem bank
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OLYMPIAD CHALLENGE

Rotating Disk & Sliding Mass

Mechanics
Olympiad training◆ 4/5⏱ 12 minNo calculator

A small mass is placed on a rotating horizontal disk. Determine the maximum angular velocity before slipping begins...

μsmg = mω2rωmax = √(μsg / r)
PHYSICS LAB

Experiment first. Formalize second.

Manipulate physical systems, make predictions, measure outcomes and then derive the mathematics behind what you observe.

Angle45°
Speed20 m/s
GUIDED EXPERIMENT

Projectile Motion

Phi asks you to predict the range before changing the angle, then helps you connect the observation to the analytical result.

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Before moving the slider: which angle do you predict will maximize the range?

Open guided lab →
OLYMPHYX

Ready to train with purpose?

Your next session adapts to your current mastery, not just your place in a syllabus.

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