Thirty Worlds.
One Lab.
Control orbits, waves, fields, chaos, fire, and living networks. Each scene operates in real time, has its own physics, and adaptive control.
Orbital Mechanics
A multilevel system of planets, satellites, and trajectories with controllable time flow.
Run simulation →Ocean Dynamics
Shader waves, drifting buoy, storm atmosphere, and living water surface.
Run simulation →Gravitational Field
Thousands of particles form disks and streams around dynamic attractors.
Start →Aerodynamics of Fabric
A flexible mesh reacts to gusts, turbulence, and various anchoring schemes.
Start →Swarm Intelligence
Autonomous agents align direction, maintain distance, and avoid a predator.
Start →Double Pendulum
A chaotic system of two connected bodies with controlled gravity and damping.
Start →Magnetic Field
Charged particles move around a dipole along spatial force lines.
Start →Wave Interference
Two coherent sources form moving zones of reinforcement and cancellation.
Start →Fire Spread
Wind, humidity, and reaction determine the shape of a forest fire front.
Start →Neural Impulses
Signals propagate through the space network and form dynamic patterns of activity.
Start →Seismic Waves
Wave fronts propagate through layers of rock and are recorded by a network of sensors.
Start →Quantum Tunneling
A wave packet partially penetrates a potential barrier.
Start →Rocket Landing
Gravity, thrust, and fuel supply determine the success of the final descent.
Start →City Traffic
Traffic density and signal cycle patterns shape transportation flow.
Start →Solar Flare
Magnetic loops eject a plasma stream into interplanetary space.
Start →Black Hole
Accretion disk, photon ring, and relativistic jets.
Start →Polar Aurora
The solar wind ignites moving atmospheric veils above the pole.
Start →Reaction and Diffusion
Chemical self-organization creates spots, waves, and mazes.
Start →Robotic Warehouse
Autonomous platforms optimize routes and order processing.
Start →Tornado Formation
A rotating column of air forms a vortex and picks up fragments.
Start →Particle Collider
Opposing beams accelerate in a ring and generate particle cascades.
Start →Exoplanet Climate
The stellar flux, albedo, and atmosphere determine the temperature of distant worlds.
Start →Coral Reef
An underwater ecosystem reacts to warming, currents, and oxygen levels.
Start →Volcano Eruption
Pressure from magma and gas create a lava fountain and explosive column.
Start →DNA Replication
Molecular complexes unwind the spiral and copy the genetic code.
Start →Fusion Reactor
Magnetic coils confine hot plasma inside a tokamak.
Start →Galaxy Collision
Galactic disks approach, deform, and create tidal tails.
Start →Drone Logistics
An autonomous aerial fleet delivers orders over urban districts.
Start →Protein Folding
A polypeptide chain seeks a stable spatial conformation.
Start →Glacier Dynamics
Snow accumulation, temperature, and friction define the movement of ice mass.
Start →