Interactive Demo
Enzyme Dynamics: Induced Fit Lab
Enzyme Dynamics: Induced Fit Lab is a free, interactive learning demo from the Advanced Principles of Biological Systems and Inquiry course on Lykke. It helps you build intuition for Enzyme Catalysis, Photosynthesis, Cellular Respiration, Signal Transduction. Play with it directly in your browser — it features 3 sliders, 2 buttons, direct drag interaction and a live visual canvas. Watch the "clench" lower the energy peak. This demo lives in the “Cellular Energetics and Communication” section of the course.

How to use this demo
- Watch the "clench" lower the energy peak.
- Drag the sliders to change the inputs and watch the visualization update in real time.
- Click and drag directly on the canvas to manipulate the scene.
- Use the “Enzyme On”, “Add Inhibitor” buttons to trigger actions or reset the demo.
- Experiment freely — there's nothing to break, and every change is reversible.
What you'll explore
- Enzyme Catalysis
- Photosynthesis
- Cellular Respiration
- Signal Transduction
- Cell Cycle
- Mitosis
Frequently asked questions
What does the Enzyme Dynamics: Induced Fit Lab demo do?
Temperature 37°C pH Level 7.4 Enzyme On Add Inhibitor Click the canvas to manually inject substrates. Enzyme Dynamics: Induced Fit Lab lets you explore this hands-on instead of only reading about it.
What Advanced Principles of Biological Systems and Inquiry concept does Enzyme Dynamics: Induced Fit Lab teach?
Focuses on how cells capture energy and communicate with one another (Units 3 and 4). It focuses on Enzyme Catalysis, Photosynthesis, Cellular Respiration, Signal Transduction, Cell Cycle, Mitosis from the “Cellular Energetics and Communication” section.
What can I control in Enzyme Dynamics: Induced Fit Lab?
The sliders change the key inputs; you can drag elements directly on the canvas; the “Enzyme On”, “Add Inhibitor” buttons run actions or reset the demo. Every change updates the visualization in real time, so you can see exactly how each variable affects the outcome.
How does Enzyme Dynamics: Induced Fit Lab fit into the Advanced Principles of Biological Systems and Inquiry course?
This course explores the fundamental principles of biology through inquiry-based investigations and rigorous scientific reasoning. Students delve into eight core units ranging from molecular chemistry to ecosystem inter… This demo is the interactive piece for the “Cellular Energetics and Communication” section. Open the full Advanced Principles of Biological Systems and Inquiry course wiki at https://www.getlykke.com/explore/public/advanced-principles-of-biological-systems-and-53db1b67-8b6e-4e74-9503-cb96a59312b8 for notes, flashcards, quizzes and the other demos.
What will I understand better after using Enzyme Dynamics: Induced Fit Lab?
You'll build intuition for Enzyme Catalysis, Photosynthesis, Cellular Respiration, Signal Transduction, Cell Cycle, Mitosis — and, crucially, see how they behave when you change the inputs, which is hard to get from a textbook or lecture on Advanced Principles of Biological Systems and Inquiry alone.
From the Advanced Principles of Biological Systems and Inquiry course
This interactive demo is part of the Cellular Energetics and Communication section. Explore the full Advanced Principles of Biological Systems and Inquiry course wiki on Lykke — with notes, flashcards, quizzes and more interactive demos.
Open the Advanced Principles of Biological Systems and Inquiry course →