HomeMicrobiology & VirologyBacterial Growth Curve: Lag, Log, Stationary & Death

🧫 Bacterial Growth Curve: Lag, Log, Stationary & Death

A real, running Monod-kinetics simulation of bacterial population growth: lag, exponential, stationary and death phases emerge from actual nutrient depletion and waste accumulation, not a pre-drawn curve.

Microbiology & Virology2DModerate60 FPS
bacterial-growth-curve ↗ Open standalone

About the Bacterial Growth Curve

When bacteria are inoculated into fresh liquid medium, their population size over time traces a characteristic four-phase curve: lag, exponential (log), stationary, and death. This simulation does not draw that curve — it computes it, step by step, from a real Monod-kinetics growth model: μ(S) = μmax·S/(Ks+S), where the specific growth rate μ depends on the momentary concentration of a limiting nutrient S. As the population grows, it consumes nutrient (mass-balanced against a yield coefficient) and produces metabolic waste; once the nutrient is nearly exhausted and waste has accumulated, growth rate collapses and the death phase emerges on its own.

⚙ Under the hood

A real, running Monod-kinetics simulation of bacterial population growth: lag, exponential, stationary and death phases emerge from actual nutrient depletion and waste accumulation.

bacteriamonod-equationgrowth-curvemicrobiologypopulation-dynamics

2D · HTML5 Canvas 2D · 60 FPS target · runs fully client-side, no install

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