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Reaction Rate is the rate at which a reaction occurs to achieve the desire product. Check FAQs
r=k3CA(CB)2
r - Reaction Rate?k3 - Rate Constant for Third Order Reaction?CA - Concentration of Reactant A?CB - Concentration of Reactant B?

Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations Example

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Here is how the Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations equation looks like with Values.

Here is how the Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations equation looks like with Units.

Here is how the Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations equation looks like.

0.0148Edit=0.0002Edit1.1Edit(8.2Edit)2
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Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations Solution

Follow our step by step solution on how to calculate Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations?

FIRST Step Consider the formula
r=k3CA(CB)2
Next Step Substitute values of Variables
r=0.0002m⁶/(mol²*s)1.1mol/m³(8.2mol/m³)2
Next Step Prepare to Evaluate
r=0.00021.1(8.2)2
Next Step Evaluate
r=0.0147928mol/m³*s
LAST Step Rounding Answer
r=0.0148mol/m³*s

Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations Formula Elements

Variables
Reaction Rate
Reaction Rate is the rate at which a reaction occurs to achieve the desire product.
Symbol: r
Measurement: Reaction RateUnit: mol/m³*s
Note: Value can be positive or negative.
Rate Constant for Third Order Reaction
Rate Constant for Third Order Reaction is defined as the average rate of the reaction per concentration of the reactant having power raised to 3.
Symbol: k3
Measurement: Third Order Reaction Rate ConstantUnit: m⁶/(mol²*s)
Note: Value can be positive or negative.
Concentration of Reactant A
Concentration of Reactant A refers to the amount of reactant A present in the solvent at any given point of time during the process.
Symbol: CA
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value can be positive or negative.
Concentration of Reactant B
Concentration of Reactant B refers to the amount of reactant B present in the solvent at any given point of time during the process.
Symbol: CB
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value can be positive or negative.

Other Formulas to find Reaction Rate

​Go Reaction Rate of Second Order Irreversible Reaction
r=k2CACB
​Go Reaction Rate of Second Order Irreversible Reaction with Equal Reactant Concentrations
r=k2(CA)2

Other formulas in Third Order Irreversible Reaction category

​Go Rate Constant for First Order Irreversible Reaction
K1st order=-ln(1-XA)t
​Go Rate Constant for First Order Irreversible Reaction using log10
K1st order=-2.303log10(1-XA)t
​Go Reaction Time for First Order Irreversible Reaction
t=-ln(1-XA)K1st order
​Go Reaction Time for First Order Irreversible Reaction using log10
t=-2.303log10(1-XA)K1st order

How to Evaluate Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations?

Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations evaluator uses Reaction Rate = Rate Constant for Third Order Reaction*Concentration of Reactant A*(Concentration of Reactant B)^2 to evaluate the Reaction Rate, The Reaction Rate of Third Order Irreversible Reaction With Two Equal Reactant Concentrations formula is defined as the speed at which a chemical reaction takes place considering concentration of three reactants any of two having equal concentration. Reaction Rate is denoted by r symbol.

How to evaluate Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations using this online evaluator? To use this online evaluator for Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations, enter Rate Constant for Third Order Reaction (k3), Concentration of Reactant A (CA) & Concentration of Reactant B (CB) and hit the calculate button.

FAQs on Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations

What is the formula to find Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations?
The formula of Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations is expressed as Reaction Rate = Rate Constant for Third Order Reaction*Concentration of Reactant A*(Concentration of Reactant B)^2. Here is an example- 0.014793 = 0.0002*1.1*(8.2)^2.
How to calculate Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations?
With Rate Constant for Third Order Reaction (k3), Concentration of Reactant A (CA) & Concentration of Reactant B (CB) we can find Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations using the formula - Reaction Rate = Rate Constant for Third Order Reaction*Concentration of Reactant A*(Concentration of Reactant B)^2.
What are the other ways to Calculate Reaction Rate?
Here are the different ways to Calculate Reaction Rate-
  • Reaction Rate=Rate Constant for Second Order Reaction*Concentration of Reactant A*Concentration of Reactant BOpenImg
  • Reaction Rate=Rate Constant for Second Order Reaction*(Concentration of Reactant A)^2OpenImg
Can the Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations be negative?
Yes, the Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations, measured in Reaction Rate can be negative.
Which unit is used to measure Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations?
Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations is usually measured using the Mole per Cubic Meter Second[mol/m³*s] for Reaction Rate. Mole per Liter Second[mol/m³*s], Millimole per Liter Second[mol/m³*s] are the few other units in which Reaction Rate of Third Order Irreversible Reaction with Two Equal Reactant Concentrations can be measured.
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