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Initial Concentration of Reactant for Series Rxn is the first measured Concentration of a Compound in a Substance is the Initial Concentration. Check FAQs
CA0=CA+k0Δt
CA0 - Initial Concentration of Reactant for Series Rxn?CA - Reactant Concentration for Multiple Rxns?k0 - Rate Constant for Zero Order Rxn?Δt - Time Interval?

Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction Example

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Here is how the Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction equation looks like with Values.

Here is how the Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction equation looks like with Units.

Here is how the Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction equation looks like.

80Edit=44Edit+12Edit3Edit
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Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction Solution

Follow our step by step solution on how to calculate Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction?

FIRST Step Consider the formula
CA0=CA+k0Δt
Next Step Substitute values of Variables
CA0=44mol/m³+12mol/m³*s3s
Next Step Prepare to Evaluate
CA0=44+123
LAST Step Evaluate
CA0=80mol/m³

Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction Formula Elements

Variables
Initial Concentration of Reactant for Series Rxn
Initial Concentration of Reactant for Series Rxn is the first measured Concentration of a Compound in a Substance is the Initial Concentration.
Symbol: CA0
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Reactant Concentration for Multiple Rxns
The Reactant Concentration for Multiple Rxns refers to the amount of reactant present in the solvent at any given point of time during the process.
Symbol: CA
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Rate Constant for Zero Order Rxn
Rate constant for Zero Order Rxn is the 1st step where the value of Rate Constant is Obtained.
Symbol: k0
Measurement: Reaction RateUnit: mol/m³*s
Note: Value should be greater than 0.
Time Interval
A Time Interval is the amount of time required for the change from initial to the final state.
Symbol: Δt
Measurement: TimeUnit: s
Note: Value should be greater than 0.

Other Formulas to find Initial Concentration of Reactant for Series Rxn

​Go Initial Reactant Concentration by Intermediate Conc. for Zero Order followed by First Order Rxn
CA0=CR1K (1-exp(-(k1Δt)))

Other formulas in Zero Order followed by First Order Reaction category

​Go Initial Reactant Concentration using Intermediate Conc. for Zero Order followed by First Order Rxn
Ca0=CR1K (exp(K -k1Δt)-exp(-k1Δt))
​Go Intermediate Concentration for Zero Order followed by First Order with Less Rxn Time
CR=(CA0K )(1-exp(-(k1Δt')))
​Go Intermediate Concentration for Zero Order followed by First Order with Greater Rxn Time
CR=C0K (exp(K -k1Δt'')-exp(-k1Δt''))
​Go Maximum Intermediate Concentration in Zero Order followed by First Order
CR,max=(CA0(1-exp(-K ))K )

How to Evaluate Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction?

Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction evaluator uses Initial Concentration of Reactant for Series Rxn = Reactant Concentration for Multiple Rxns+Rate Constant for Zero Order Rxn*Time Interval to evaluate the Initial Concentration of Reactant for Series Rxn, The Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction formula is defined as a Series Reaction, where in First step, Reactant A is present, where in the Second step, A will be Absent. Initial Concentration of Reactant for Series Rxn is denoted by CA0 symbol.

How to evaluate Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction using this online evaluator? To use this online evaluator for Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction, enter Reactant Concentration for Multiple Rxns (CA), Rate Constant for Zero Order Rxn (k0) & Time Interval (Δt) and hit the calculate button.

FAQs on Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction

What is the formula to find Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction?
The formula of Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction is expressed as Initial Concentration of Reactant for Series Rxn = Reactant Concentration for Multiple Rxns+Rate Constant for Zero Order Rxn*Time Interval. Here is an example- 80 = 44+12*3.
How to calculate Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction?
With Reactant Concentration for Multiple Rxns (CA), Rate Constant for Zero Order Rxn (k0) & Time Interval (Δt) we can find Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction using the formula - Initial Concentration of Reactant for Series Rxn = Reactant Concentration for Multiple Rxns+Rate Constant for Zero Order Rxn*Time Interval.
What are the other ways to Calculate Initial Concentration of Reactant for Series Rxn?
Here are the different ways to Calculate Initial Concentration of Reactant for Series Rxn-
  • Initial Concentration of Reactant for Series Rxn=Intermediate Concentration for Series Rxn/(1/Overall Rate of Reaction*(1-exp(-(Rate Constant for 1st Order 2nd Step*Time Interval))))OpenImg
Can the Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction be negative?
No, the Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction, measured in Molar Concentration cannot be negative.
Which unit is used to measure Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction?
Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction is usually measured using the Mole per Cubic Meter[mol/m³] for Molar Concentration. Mole per Liter[mol/m³], Mole per Cubic Millimeter[mol/m³], Kilomole per Cubic Meter[mol/m³] are the few other units in which Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction can be measured.
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