For Researchers · Ideal Gas Law
Ideal Gas Law for an enzyme kinetics
Built for researchers prototyping or validating an idea. Prototype fast, reproduce exactly, and share a citable, interactive version of your model. Simulate an enzyme kinetics live below — adjust the inputs and watch it respond, right in your browser.
Ideal Gas Law (PV = nRT)Live
pressure · volume · temperature · moles
Pressure
104
kPa (1.03 atm)
Controls
Set moles, temperature, and volume — pressure follows from PV = nRT. Compress the volume or heat the gas and watch the pressure climb.
Presets
Data Inspector
Pressure103.9 kPa
≈ atm1.03
Mean speed vs 300 K1.00x
LawPV = nRT
Governing equation
Reading this result: At 300 K, 1 mol in 24 L, PV = nRT gives about 103.9 kPa (1.03 atm). Mean molecular speed scales with the square root of temperature, so this gas moves about 1.00x as fast as it would at 300 K. Around room temperature the molecules carry moderate kinetic energy. Expanding the volume spreads the molecules out, lowering the collision rate and the pressure.
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- Yes — this version of "Ideal Gas Law for an enzyme kinetics" is framed for researchers prototyping or validating an idea. Prototype fast, reproduce exactly, and share a citable, interactive version of your model.
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