Electron Transport Chain — Redox Ladder & Proton-Motive Force (2D)
Interactive 2D energy-ladder diagram of the mitochondrial electron transport chain: watch electron pairs fall down a real standard-reduction-potential staircase from NADH or FADH2 to oxygen, and drive a two-compartment proton-motive-force model — a real leaky-capacitor ODE — that spins an ATP synthase rotor. Apply rotenone, antimycin A or cyanide and see the gradient itself decay.
This 2D companion strips the mitochondrial electron transport chain down to two linked diagrams: a classic redox-potential energy ladder, where electron pairs visibly fall from a low, energy-rich potential at NADH toward a high, energy-poor one at oxygen; and a two-compartment proton-motive-force circuit, where every proton actually pumped at Complexes I, III and IV charges a leaky membrane capacitor whose voltage drives an ATP synthase rotor. Unlike a flattened camera view of a 3D scene, both panels are native 2D representations — an energy-level diagram and a lumped electrochemical circuit — computed from the same standard reduction potentials and ΔG°′ = −nFΔE°′ thermodynamics as the 3D model, but exposing quantities (the proton-motive force itself, and the synthase turnover it sustains) that the 3D scene never calculates. Choose the electron entry point, apply an inhibitor and watch both the ladder and the gradient respond together.
Watch electron pairs fall down a 2D redox-potential energy ladder from NADH or FADH2 to oxygen, pumping protons at Complexes I, III and IV into a real two-compartment proton-motive-force circuit that spins an ATP synthase rotor. Apply rotenone, antimycin A or cyanide and watch the gradient itself decay as the leak term outpaces the blocked chain.
2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install