Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration Formula

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Rate Constant for First Step First Order Reaction is defined as the constant of proportionality for first step reaction in two steps first order irreversible reaction in series. Check FAQs
kI=1k2(τR,max2)
kI - Rate Constant for First Step First Order Reaction?k2 - Rate Constant for Second Step First Order Reaction?τR,max - Time at Maximum Intermediate Concentration?

Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration Example

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Here is how the Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration equation looks like with Values.

Here is how the Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration equation looks like with Units.

Here is how the Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration equation looks like.

0.2785Edit=10.08Edit(6.7Edit2)
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Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration Solution

Follow our step by step solution on how to calculate Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration?

FIRST Step Consider the formula
kI=1k2(τR,max2)
Next Step Substitute values of Variables
kI=10.08s⁻¹(6.7s2)
Next Step Prepare to Evaluate
kI=10.08(6.72)
Next Step Evaluate
kI=0.278458453998663s⁻¹
LAST Step Rounding Answer
kI=0.2785s⁻¹

Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration Formula Elements

Variables
Rate Constant for First Step First Order Reaction
Rate Constant for First Step First Order Reaction is defined as the constant of proportionality for first step reaction in two steps first order irreversible reaction in series.
Symbol: kI
Measurement: First Order Reaction Rate ConstantUnit: s⁻¹
Note: Value should be greater than 0.
Rate Constant for Second Step First Order Reaction
Rate Constant for Second Step First Order Reaction is defined as the constant of proportionality for second step reaction in two steps first order irreversible reaction in series.
Symbol: k2
Measurement: First Order Reaction Rate ConstantUnit: s⁻¹
Note: Value should be greater than 0.
Time at Maximum Intermediate Concentration
Time at Maximum Intermediate Concentration is the instant of time at which maximum concentration of intermediate is achieved.
Symbol: τR,max
Measurement: TimeUnit: s
Note: Value should be greater than 0.

Other formulas in Important Formulas in Potpourri of Multiple Reactions category

​Go Intermediate Concentration for Two Steps First Order Irreversible Reaction in Series
CR=CA0(kIk2-kI)(exp(-kIτ)-exp(-k2τ))
​Go Initial Reactant Concentration for Two Steps First Order Irreversible Reaction in Series
CA0=CR(k2-kI)kI(exp(-kIτ)-exp(-k2τ))
​Go Maximum Intermediate Concentration for First Order Irreversible Reaction in Series
CR,max=CA0(kIk2)k2k2-kI
​Go Initial Reactant Concentration for First Order Rxn in Series for Maximum Intermediate Concentration
CA0=CR,max(kIk2)k2k2-kI

How to Evaluate Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration?

Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration evaluator uses Rate Constant for First Step First Order Reaction = 1/(Rate Constant for Second Step First Order Reaction*(Time at Maximum Intermediate Concentration^2)) to evaluate the Rate Constant for First Step First Order Reaction, The Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration formula is defined as the constant of proportionality for first step reaction in two steps first order irreversible reaction in series for mixed flow reactor at maximum intermediate concentration. Rate Constant for First Step First Order Reaction is denoted by kI symbol.

How to evaluate Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration using this online evaluator? To use this online evaluator for Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration, enter Rate Constant for Second Step First Order Reaction (k2) & Time at Maximum Intermediate Concentration R,max) and hit the calculate button.

FAQs on Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration

What is the formula to find Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration?
The formula of Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration is expressed as Rate Constant for First Step First Order Reaction = 1/(Rate Constant for Second Step First Order Reaction*(Time at Maximum Intermediate Concentration^2)). Here is an example- 0.278458 = 1/(0.08*(6.7^2)).
How to calculate Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration?
With Rate Constant for Second Step First Order Reaction (k2) & Time at Maximum Intermediate Concentration R,max) we can find Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration using the formula - Rate Constant for First Step First Order Reaction = 1/(Rate Constant for Second Step First Order Reaction*(Time at Maximum Intermediate Concentration^2)).
Can the Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration be negative?
No, the Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration, measured in First Order Reaction Rate Constant cannot be negative.
Which unit is used to measure Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration?
Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration is usually measured using the 1 Per Second[s⁻¹] for First Order Reaction Rate Constant. 1 Per Millisecond[s⁻¹], 1 Per Day[s⁻¹], 1 Per Hour[s⁻¹] are the few other units in which Rate Constant for First Step First Order Reaction for MFR at Maximum Intermediate Concentration can be measured.
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