# @stem_antics on Instagram

- **Type:** Video
- **Original URL:** https://www.instagram.com/p/DWodk69AHMp
- **Gondola URL:** https://gondola.cc/posts/62451516-stem-antics-instagram
- **Thumbnail:** https://img.gondola.cc/tr:w-,h-,fo-auto/postThumbnails/004f941575.jpg
- **Posted:** 2026-04-02T14:14:01.000+00:00
- **Account Owner:** Stem Antics (@stem_antics) — https://gondola.cc/stem_antics

## Caption

The iodine clock reaction is a classic demonstration of reaction kinetics—how fast chemical reactions proceed and what controls that speed.

At its core, this system couples two competing reactions:
	1.	A slow, rate-determining reaction that generates iodine (I₂) from iodide ions (I⁻), often using an oxidizing agent such as hydrogen peroxide or persulfate.
	2.	A fast “inhibitor” reaction where iodine is immediately reduced back to iodide by a reducing agent, commonly thiosulfate (S₂O₃²⁻).

As long as thiosulfate is present, any iodine formed is rapidly consumed, keeping the solution colorless. Once the thiosulfate is depleted, iodine begins to accumulate. At that point, it forms a deep blue complex with starch—producing the sudden, dramatic color change.

The “clock” behavior emerges because the delay time depends sensitively on initial concentrations and temperature. By varying these parameters, you can experimentally determine rate laws and explore concepts like reaction order, activation energy, and collision theory.

This reaction is widely used in chemistry education because it makes invisible kinetics visible: a clear system that abruptly transitions, revealing the underlying dynamics of competing pathways.

If you were designing this experiment, what variable would you test first—concentration, temperature, or catalyst? Comment your reasoning, remix this with your own setup, and share it with someone learning kinetics.

#STEM #Chemistry #ReactionKinetics #IodineClock #ChemicalReactions

## Stats

- **Views:** 5,913
- **Likes:** 409
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## Tags

reactionkinetics, stem, chemistry, chemicalreactions, iodineclock

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