Maximum Rate of System from Michaelis Menten Kinetics equation Solution

STEP 0: Pre-Calculation Summary
Formula Used
Maximum Rate = (Initial Reaction Rate*(Michaelis Constant+Substrate Concentration))/Substrate Concentration
Vmax = (V0*(KM+S))/S
This formula uses 4 Variables
Variables Used
Maximum Rate - (Measured in Mole per Cubic Meter Second) - The Maximum Rate is defined as the maximum speed achieved by the system at saturated substrate concentration.
Initial Reaction Rate - (Measured in Mole per Cubic Meter Second) - The Initial Reaction Rate is defined as the initial speed at which a chemical reaction takes place.
Michaelis Constant - (Measured in Mole per Cubic Meter) - The Michaelis Constant is numerically equal to the substrate concentration at which the reaction rate is half of the maximum rate of the system.
Substrate Concentration - (Measured in Mole per Cubic Meter) - The Substrate Concentration is the number of moles of substrate per liter solution.
STEP 1: Convert Input(s) to Base Unit
Initial Reaction Rate: 0.45 Mole per Liter Second --> 450 Mole per Cubic Meter Second (Check conversion ​here)
Michaelis Constant: 3 Mole per Liter --> 3000 Mole per Cubic Meter (Check conversion ​here)
Substrate Concentration: 1.5 Mole per Liter --> 1500 Mole per Cubic Meter (Check conversion ​here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vmax = (V0*(KM+S))/S --> (450*(3000+1500))/1500
Evaluating ... ...
Vmax = 1350
STEP 3: Convert Result to Output's Unit
1350 Mole per Cubic Meter Second -->1.35 Mole per Liter Second (Check conversion ​here)
FINAL ANSWER
1.35 Mole per Liter Second <-- Maximum Rate
(Calculation completed in 00.004 seconds)

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Michaelis Menten Kinetics Equation Calculators

Michaelis Constant given Catalytic Rate Constant and Initial Enzyme Concentration
​ LaTeX ​ Go Michaelis Constant = (Substrate Concentration*((Catalytic Rate Constant*Initial Enzyme Concentration)-Initial Reaction Rate))/Initial Reaction Rate
Maximum Rate of System from Michaelis Menten Kinetics equation
​ LaTeX ​ Go Maximum Rate = (Initial Reaction Rate*(Michaelis Constant+Substrate Concentration))/Substrate Concentration
Substrate Concentration from Michaelis Menten Kinetics Equation
​ LaTeX ​ Go Substrate Concentration = (Michaelis Constant*Initial Reaction Rate)/(Maximum Rate-Initial Reaction Rate)
Michaelis Constant from Michaelis Menten kinetics equation
​ LaTeX ​ Go Michaelis Constant = Substrate Concentration*((Maximum Rate-Initial Reaction Rate)/Initial Reaction Rate)

Maximum Rate of System from Michaelis Menten Kinetics equation Formula

​LaTeX ​Go
Maximum Rate = (Initial Reaction Rate*(Michaelis Constant+Substrate Concentration))/Substrate Concentration
Vmax = (V0*(KM+S))/S

What is Michaelis–Menten kinetics model?

In biochemistry, Michaelis–Menten kinetics is one of the best-known models of enzyme kinetics. Biochemical reactions involving a single substrate are often assumed to follow Michaelis–Menten kinetics, without regard to the model's underlying assumptions. The model takes the form of an equation describing the rate of enzymatic reactions, by relating the reaction rate of formation of product to the concentration of a substrate.

How to Calculate Maximum Rate of System from Michaelis Menten Kinetics equation?

Maximum Rate of System from Michaelis Menten Kinetics equation calculator uses Maximum Rate = (Initial Reaction Rate*(Michaelis Constant+Substrate Concentration))/Substrate Concentration to calculate the Maximum Rate, The Maximum rate of system from Michaelis Menten kinetics equation formula is defined as the relation with the initial rate of the system and the concentration of a substrate. Maximum Rate is denoted by Vmax symbol.

How to calculate Maximum Rate of System from Michaelis Menten Kinetics equation using this online calculator? To use this online calculator for Maximum Rate of System from Michaelis Menten Kinetics equation, enter Initial Reaction Rate (V0), Michaelis Constant (KM) & Substrate Concentration (S) and hit the calculate button. Here is how the Maximum Rate of System from Michaelis Menten Kinetics equation calculation can be explained with given input values -> 0.00135 = (450*(3000+1500))/1500.

FAQ

What is Maximum Rate of System from Michaelis Menten Kinetics equation?
The Maximum rate of system from Michaelis Menten kinetics equation formula is defined as the relation with the initial rate of the system and the concentration of a substrate and is represented as Vmax = (V0*(KM+S))/S or Maximum Rate = (Initial Reaction Rate*(Michaelis Constant+Substrate Concentration))/Substrate Concentration. The Initial Reaction Rate is defined as the initial speed at which a chemical reaction takes place, The Michaelis Constant is numerically equal to the substrate concentration at which the reaction rate is half of the maximum rate of the system & The Substrate Concentration is the number of moles of substrate per liter solution.
How to calculate Maximum Rate of System from Michaelis Menten Kinetics equation?
The Maximum rate of system from Michaelis Menten kinetics equation formula is defined as the relation with the initial rate of the system and the concentration of a substrate is calculated using Maximum Rate = (Initial Reaction Rate*(Michaelis Constant+Substrate Concentration))/Substrate Concentration. To calculate Maximum Rate of System from Michaelis Menten Kinetics equation, you need Initial Reaction Rate (V0), Michaelis Constant (KM) & Substrate Concentration (S). With our tool, you need to enter the respective value for Initial Reaction Rate, Michaelis Constant & Substrate Concentration and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Maximum Rate?
In this formula, Maximum Rate uses Initial Reaction Rate, Michaelis Constant & Substrate Concentration. We can use 3 other way(s) to calculate the same, which is/are as follows -
  • Maximum Rate = Catalytic Rate Constant*Initial Enzyme Concentration
  • Maximum Rate = (Initial Reaction Rate*((Enzyme Modifying Factor*Michaelis Constant)+(Enzyme Substrate Modifying Factor*Substrate Concentration)))/Substrate Concentration
  • Maximum Rate = (Initial Reaction Rate*(Apparent Michaelis Constant+Substrate Concentration))/Substrate Concentration
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