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The Substrate Concentration is the number of moles of substrate per liter solution. Check FAQs
S=ES(KM(1+(IKi)))([E0])-ES
S - Substrate Concentration?ES - Enzyme Substrate Complex Concentration?KM - Michaelis Constant?I - Inhibitor Concentration?Ki - Enzyme Inhibitor Dissociation Constant?[E0] - Initial Enzyme Concentration?

Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration Example

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Here is how the Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration equation looks like with Values.

Here is how the Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration equation looks like with Units.

Here is how the Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration equation looks like.

0.4912Edit=10Edit(3Edit(1+(9Edit19Edit)))(100Edit)-10Edit
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Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration Solution

Follow our step by step solution on how to calculate Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration?

FIRST Step Consider the formula
S=ES(KM(1+(IKi)))([E0])-ES
Next Step Substitute values of Variables
S=10mol/L(3mol/L(1+(9mol/L19mol/L)))(100mol/L)-10mol/L
Next Step Convert Units
S=10000mol/m³(3000mol/m³(1+(9000mol/m³19000mol/m³)))(100000mol/m³)-10000mol/m³
Next Step Prepare to Evaluate
S=10000(3000(1+(900019000)))(100000)-10000
Next Step Evaluate
S=491.228070175439mol/m³
Next Step Convert to Output's Unit
S=0.491228070175439mol/L
LAST Step Rounding Answer
S=0.4912mol/L

Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration Formula Elements

Variables
Substrate Concentration
The Substrate Concentration is the number of moles of substrate per liter solution.
Symbol: S
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Enzyme Substrate Complex Concentration
The Enzyme Substrate Complex Concentration is defined as the concentration of intermediate formed from the reaction of enzyme and substrate.
Symbol: ES
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Michaelis Constant
The Michaelis Constant is numerically equal to the substrate concentration at which the reaction rate is half of the maximum rate of the system.
Symbol: KM
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Inhibitor Concentration
The Inhibitor concentration is defined as the number of moles of inhibitor present per liter of solution of the system.
Symbol: I
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Enzyme Inhibitor Dissociation Constant
The Enzyme Inhibitor Dissociation Constant is measured by the method in which the inhibitor is titrated into a solution of enzyme and the heat released or absorbed is measured.
Symbol: Ki
Measurement: Molar ConcentrationUnit: mol/L
Note: Value can be positive or negative.
Initial Enzyme Concentration
The Initial Enzyme Concentration is defined as the concentration of enzyme at the start of the reaction.
Symbol: [E0]
Measurement: Molar ConcentrationUnit: mol/L
Note: Value should be greater than 0.

Other Formulas to find Substrate Concentration

​Go Substrate Concentration of Competitive Inhibition of Enzyme Catalysis
S=V0(KM(1+(IKi)))(k2[E0])-V0
​Go Substrate Concentration in Competitive Inhibition given Maximum Rate of System
S=V0(KM(1+(IKi)))Vmax-V0
​Go Substrate Concentration given Apparent value of Michaelis Menten Constant
S=KmappV0Vmax-V0
​Go Substrate Concentration given Modifying Factor in Michaelis Menten Equation
S=V0(αα')KM((1α')Vmax)-V0

Other formulas in Competitive Inhibitor category

​Go Apparent Value of Michaelis Menten Constant in Presence of Competitive Inhibition
Kmapp=S(Vmax-V0)V0
​Go Dissociation Constant for Competitive Inhibition of Enzyme Catalysis
Ki=I((k2[E0]SV0)-SKM)-1
​Go Dissociation Constant in Competitive Inhibition given Maximum Rate of System
Ki=I((VmaxSV0)-SKM)-1
​Go Dissociation Constant of Enzyme given Modifying Factor of Enzyme
Kei=Iα-1

How to Evaluate Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration?

Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration evaluator uses Substrate Concentration = (Enzyme Substrate Complex Concentration*(Michaelis Constant*(1+(Inhibitor Concentration/Enzyme Inhibitor Dissociation Constant))))/((Initial Enzyme Concentration)-Enzyme Substrate Complex Concentration) to evaluate the Substrate Concentration, The Substrate concentration in competitive inhibition given enzyme substrate complex concentration formula is defined as a plot of the reaction velocity (V0) associated with the concentration [S] of the substrate can then be used to determine values such as Vmax, initial velocity, and Km. Substrate Concentration is denoted by S symbol.

How to evaluate Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration using this online evaluator? To use this online evaluator for Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration, enter Enzyme Substrate Complex Concentration (ES), Michaelis Constant (KM), Inhibitor Concentration (I), Enzyme Inhibitor Dissociation Constant (Ki) & Initial Enzyme Concentration ([E0]) and hit the calculate button.

FAQs on Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration

What is the formula to find Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration?
The formula of Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration is expressed as Substrate Concentration = (Enzyme Substrate Complex Concentration*(Michaelis Constant*(1+(Inhibitor Concentration/Enzyme Inhibitor Dissociation Constant))))/((Initial Enzyme Concentration)-Enzyme Substrate Complex Concentration). Here is an example- 0.000491 = (10000*(3000*(1+(9000/19000))))/((100000)-10000).
How to calculate Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration?
With Enzyme Substrate Complex Concentration (ES), Michaelis Constant (KM), Inhibitor Concentration (I), Enzyme Inhibitor Dissociation Constant (Ki) & Initial Enzyme Concentration ([E0]) we can find Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration using the formula - Substrate Concentration = (Enzyme Substrate Complex Concentration*(Michaelis Constant*(1+(Inhibitor Concentration/Enzyme Inhibitor Dissociation Constant))))/((Initial Enzyme Concentration)-Enzyme Substrate Complex Concentration).
What are the other ways to Calculate Substrate Concentration?
Here are the different ways to Calculate Substrate Concentration-
  • Substrate Concentration=(Initial Reaction Rate*(Michaelis Constant*(1+(Inhibitor Concentration/Enzyme Inhibitor Dissociation Constant))))/((Final Rate Constant*Initial Enzyme Concentration)-Initial Reaction Rate)OpenImg
  • Substrate Concentration=(Initial Reaction Rate*(Michaelis Constant*(1+(Inhibitor Concentration/Enzyme Inhibitor Dissociation Constant))))/(Maximum Rate-Initial Reaction Rate)OpenImg
  • Substrate Concentration=(Apparent Michaelis Constant*Initial Reaction Rate)/(Maximum Rate-Initial Reaction Rate)OpenImg
Can the Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration be negative?
Yes, the Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration, measured in Molar Concentration can be negative.
Which unit is used to measure Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration?
Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration is usually measured using the Mole per Liter[mol/L] for Molar Concentration. Mole per Cubic Meter[mol/L], Mole per Cubic Millimeter[mol/L], Kilomole per Cubic Meter[mol/L] are the few other units in which Substrate Concentration in Competitive Inhibition given Enzyme Substrate Complex Concentration can be measured.
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