Time at Max Intermediate in First Order followed by Zero Order Reaction Formula

Fx Copy
LaTeX Copy
Time at Maximum Intermediate Concentration is the instant of time at which maximum concentration of intermediate is achieved. Check FAQs
τR,max=(1kI)ln(kICA0k0)
τR,max - Time at Maximum Intermediate Concentration?kI - Rate Constant for First Step First Order Reaction?CA0 - Initial Reactant Concentration for Multiple Rxns?k0 - Rate Constant for Zero Order Rxn for Multiple Rxns?

Time at Max Intermediate in First Order followed by Zero Order Reaction Example

With values
With units
Only example

Here is how the Time at Max Intermediate in First Order followed by Zero Order Reaction equation looks like with Values.

Here is how the Time at Max Intermediate in First Order followed by Zero Order Reaction equation looks like with Units.

Here is how the Time at Max Intermediate in First Order followed by Zero Order Reaction equation looks like.

3.9112Edit=(10.42Edit)ln(0.42Edit80Edit6.5Edit)
You are here -
HomeIcon Home » Category Engineering » Category Chemical Engineering » Category Chemical Reaction Engineering » fx Time at Max Intermediate in First Order followed by Zero Order Reaction

Time at Max Intermediate in First Order followed by Zero Order Reaction Solution

Follow our step by step solution on how to calculate Time at Max Intermediate in First Order followed by Zero Order Reaction?

FIRST Step Consider the formula
τR,max=(1kI)ln(kICA0k0)
Next Step Substitute values of Variables
τR,max=(10.42s⁻¹)ln(0.42s⁻¹80mol/m³6.5mol/m³*s)
Next Step Prepare to Evaluate
τR,max=(10.42)ln(0.42806.5)
Next Step Evaluate
τR,max=3.91124735730373s
LAST Step Rounding Answer
τR,max=3.9112s

Time at Max Intermediate in First Order followed by Zero Order Reaction Formula Elements

Variables
Functions
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.
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.
Initial Reactant Concentration for Multiple Rxns
The Initial Reactant Concentration for Multiple Rxns refers to the amount of reactant present in the solvent before the considered process.
Symbol: CA0
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Rate Constant for Zero Order Rxn for Multiple Rxns
The Rate Constant for Zero Order Rxn for Multiple Rxns is equal to the rate of the reaction because in this case the rate of reaction is proportional to zero power of the conc of the reactant.
Symbol: k0
Measurement: Reaction RateUnit: mol/m³*s
Note: Value should be greater than 0.
ln
The natural logarithm, also known as the logarithm to the base e, is the inverse function of the natural exponential function.
Syntax: ln(Number)

Other formulas in First Order followed by Zero Order Reaction category

​Go Initial Reactant Concentration for First Order Rxn in Series for Maximum Intermediate Concentration
CA0=CR,max(kIk2)k2k2-kI
​Go Initial Reactant Concentration for First Order Rxn for MFR using Intermediate Concentration
CA0=CR(1+(kIτm))(1+(k2τm))kIτm
​Go Initial Reactant Concentration for First Order Rxn in Series for MFR using Product Concentration
CA0=CS(1+(kIτm))(1+(k2τm))kIk2(τm2)
​Go Initial Reactant Concentration for First Order Rxn in MFR at Maximum Intermediate Concentration
CA0=CR,max((((k2kI)12)+1)2)

How to Evaluate Time at Max Intermediate in First Order followed by Zero Order Reaction?

Time at Max Intermediate in First Order followed by Zero Order Reaction evaluator uses Time at Maximum Intermediate Concentration = (1/Rate Constant for First Step First Order Reaction)*ln((Rate Constant for First Step First Order Reaction*Initial Reactant Concentration for Multiple Rxns)/Rate Constant for Zero Order Rxn for Multiple Rxns) to evaluate the Time at Maximum Intermediate Concentration, The Time at Max Intermediate in First Order followed by Zero Order Reaction formula is defined as the time at which the amount of intermediate formed is maximum in first order reaction followed by zero order reaction. Time at Maximum Intermediate Concentration is denoted by τR,max symbol.

How to evaluate Time at Max Intermediate in First Order followed by Zero Order Reaction using this online evaluator? To use this online evaluator for Time at Max Intermediate in First Order followed by Zero Order Reaction, enter Rate Constant for First Step First Order Reaction (kI), Initial Reactant Concentration for Multiple Rxns (CA0) & Rate Constant for Zero Order Rxn for Multiple Rxns (k0) and hit the calculate button.

FAQs on Time at Max Intermediate in First Order followed by Zero Order Reaction

What is the formula to find Time at Max Intermediate in First Order followed by Zero Order Reaction?
The formula of Time at Max Intermediate in First Order followed by Zero Order Reaction is expressed as Time at Maximum Intermediate Concentration = (1/Rate Constant for First Step First Order Reaction)*ln((Rate Constant for First Step First Order Reaction*Initial Reactant Concentration for Multiple Rxns)/Rate Constant for Zero Order Rxn for Multiple Rxns). Here is an example- 3.911247 = (1/0.42)*ln((0.42*80)/6.5).
How to calculate Time at Max Intermediate in First Order followed by Zero Order Reaction?
With Rate Constant for First Step First Order Reaction (kI), Initial Reactant Concentration for Multiple Rxns (CA0) & Rate Constant for Zero Order Rxn for Multiple Rxns (k0) we can find Time at Max Intermediate in First Order followed by Zero Order Reaction using the formula - Time at Maximum Intermediate Concentration = (1/Rate Constant for First Step First Order Reaction)*ln((Rate Constant for First Step First Order Reaction*Initial Reactant Concentration for Multiple Rxns)/Rate Constant for Zero Order Rxn for Multiple Rxns). This formula also uses Natural Logarithm Function function(s).
Can the Time at Max Intermediate in First Order followed by Zero Order Reaction be negative?
No, the Time at Max Intermediate in First Order followed by Zero Order Reaction, measured in Time cannot be negative.
Which unit is used to measure Time at Max Intermediate in First Order followed by Zero Order Reaction?
Time at Max Intermediate in First Order followed by Zero Order Reaction is usually measured using the Second[s] for Time. Millisecond[s], Microsecond[s], Nanosecond[s] are the few other units in which Time at Max Intermediate in First Order followed by Zero Order Reaction can be measured.
Copied!