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Physics Learning Lab

Choose a pathway to explore simulations, theory primers, and guided activities. Start with the foundations or jump straight into advanced topics—all curated for hands-on learning.

Introductory Physics

Explore foundational mechanics, energy, waves, and electromagnetism with interactive demos and guided problem walkthroughs.

  • Interactive visualizations for Newtonian mechanics
  • Real-world problem sets with guided hints
  • Concept checks and self-paced challenges
Simulate Lenses Light & Optics

Browse each Senior level to access ready-to-teach notes, interactive simulation stubs, and challenge sets. Every topic card keeps the Learn / Simulate / Test flow so you can plug in rich media or classroom activities later.

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Introductory Physics I (Senior 1)

Foundational concepts in motion, forces, energy, and light propagation.

📏 Rectilinear Motion

Explore displacement, velocity, and acceleration with interactive graphs and controls.

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💪 Force

Visualize force vectors, net force calculations, and Newton's laws in action.

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⚖️ Center of Gravity

Investigate stability, equilibrium, and balance with interactive shape manipulation.

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⚡ Work, Power & Energy

Track kinetic and potential energy changes with real-time bar graphs and animations.

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💡 Rectilinear Propagation of Light

Trace light rays through reflection, refraction, and prism interactions.

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Introductory Physics II (Senior 2)

Advanced analysis of motion, fluids, gases, and curved mirror optics.

📊 Quantitative Linear Motion

Analyze uniformly accelerated motion with displacement and velocity graphs.

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🌊 Density & Pressure

Explore pressure variations in fluids with interactive depth controls.

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🏊 Archimedes & Atmospheric Pressure

Investigate buoyancy and atmospheric pressure changes with altitude.

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🫧 Gas Laws

Experiment with Boyle's, Charles's, and Pressure laws using interactive controls.

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🔍 Curved Mirrors

Trace rays through concave and convex mirrors to form images.

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Introductory Physics III (Senior 3)

Advanced topics in motion analysis, thermodynamics, electromagnetism, and communication systems.

📈 Graphs & Motion

Interpret distance-time and velocity-time graphs with real-time plotting and area calculations.

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🌍 Applications of Atmospheric Pressure

Explore pressure variations with altitude and real-world applications.

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🔥 Heat Transfer and Quantity

Investigate heat capacity, specific heat, and energy transfer mechanisms.

⚙️ Laws of Thermodynamics

Explore internal energy, heat-work relations, and thermodynamic processes.

🌀 Electromagnetic Induction

Investigate induced EMF, AC generators, and electromagnetic principles.

⚡ Electric Field Intensity

Visualize electric fields due to point charges and field line patterns.

📡 Telecommunication Channels

Compare analog vs digital signals across different transmission media.

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Introductory Physics I (Senior 4)

Core foundations in optics, motion, gravitation, electricity, and energy systems.

🌈 Light & Optics

Trace reflection, refraction, and refractive index shifts with ray diagrams and prisms.

Light & Optics
🚀 Motion & Dynamics

Model projectile and circular motion to connect forces, velocity, and trajectory design.

🪐 Gravitation

Investigate Kepler’s laws and planetary motion with orbit visualizers and anomaly plots.

⚡ Electric Field & Potential

Visualise Gauss’s law, field strength, and potential maps with configurable charge setups.

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🔥 Thermodynamics

Walk through the laws, heat engines, and Carnot efficiency with animated PV-cycle loops.

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⚙️ Work, Energy & Power

Connect conservation laws with power relations in lift, ramp, and machine scenarios.

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Introductory Physics II (Senior 5)

Bridge classical and modern physics with waves, duality, and communication systems.

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Introductory Physics III (Senior 6)

Advanced applications across sound, nuclear physics, radiation, and diagnostics.

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Advanced Physics

Dive into quantum phenomena, relativity, and computational simulations designed for upper-level coursework and enrichment.

  • Relativity and quantum mechanics visual guides
  • Advanced simulations with adjustable parameters
  • Project-based explorations and capstone prompts
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What's inside:

  • Quantum tunneling and wavefunction visual toolkit
  • Special relativity spacetime diagram explorer
  • Computational labs powered by Python notebooks
  • Weekly challenge problems with solution walkthroughs