HomeMaterials ScienceBiodegradable Polymer Hydrolysis — Chain-Length Distribution (2D)

Biodegradable Polymer Hydrolysis — Chain-Length Distribution (2D)

2D statistical-ensemble simulator of random hydrolytic chain scission in a biodegradable polyester: a live bond-state matrix, evolving fragment-length distribution, and Mn / mass-loss strip chart reproduce first-order scission kinetics and PLA-style bulk erosion.

Materials Science2DModerate60 FPS📱 Mobile-adapted⇄ 3D version
2d-biodegradable-polymer-hydrolysis ↗ Open standalone

This 2D companion simulator drives the identical random-scission kinetics as the 3D lattice version but renders it as a statistical ensemble: a bond-state matrix across 400 chains, a live fragment-length distribution histogram, and a Mn / mass-loss strip chart over time — a genuinely distinct, grid-and-plot representation of the same first-order hydrolysis and autocatalytic bulk-erosion physics.

⚙ Under the hood

A 2D statistical-ensemble view of the same random hydrolytic chain-scission process: a live bond-state matrix across 400 chains, an evolving fragment-length histogram, and a Mn / mass-loss strip chart reproduce first-order scission kinetics and the delayed, autocatalytic bulk erosion of PLA/PGA-style polyesters.

polymer sciencebiodegradationhydrolysismaterials sciencechain scissionPLAdistribution

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

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