Number of Moles of Reactant Fed to Constant Volume Batch Reactor Formula

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The Number of Moles of Reactant-A Fed refers to the amount of reactant supplied. Check FAQs
NAo=Vsolution(CA+(AΔn)(NT-N0Vsolution))
NAo - Number of Moles of Reactant-A Fed?Vsolution - Volume of Solution?CA - Concentration of Reactant A?A - Stoichiometric Coefficient of Reactant?Δn - Net Stoichiometric Coefficient?NT - Total Number of Moles?N0 - Total Number of Moles Initially?

Number of Moles of Reactant Fed to Constant Volume Batch Reactor Example

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Here is how the Number of Moles of Reactant Fed to Constant Volume Batch Reactor equation looks like with Values.

Here is how the Number of Moles of Reactant Fed to Constant Volume Batch Reactor equation looks like with Units.

Here is how the Number of Moles of Reactant Fed to Constant Volume Batch Reactor equation looks like.

11.235Edit=10.2Edit(1.1Edit+(3Edit4Edit)(16Edit-15.98Edit10.2Edit))
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Number of Moles of Reactant Fed to Constant Volume Batch Reactor Solution

Follow our step by step solution on how to calculate Number of Moles of Reactant Fed to Constant Volume Batch Reactor?

FIRST Step Consider the formula
NAo=Vsolution(CA+(AΔn)(NT-N0Vsolution))
Next Step Substitute values of Variables
NAo=10.2(1.1mol/m³+(34)(16mol-15.98mol10.2))
Next Step Prepare to Evaluate
NAo=10.2(1.1+(34)(16-15.9810.2))
LAST Step Evaluate
NAo=11.235mol

Number of Moles of Reactant Fed to Constant Volume Batch Reactor Formula Elements

Variables
Number of Moles of Reactant-A Fed
The Number of Moles of Reactant-A Fed refers to the amount of reactant supplied.
Symbol: NAo
Measurement: Amount of SubstanceUnit: mol
Note: Value should be greater than 0.
Volume of Solution
The volume of solution gives the volume of the solution in cubic meter.
Symbol: Vsolution
Measurement: VolumeUnit:
Note: Value should be greater than 0.
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.
Stoichiometric Coefficient of Reactant
Stoichiometric Coefficient of Reactant is the unit less number present before the reactant in a chemical equation.
Symbol: A
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Net Stoichiometric Coefficient
Net Stoichiometric Coefficient is the difference of sum of all product stoichiometric coefficients and sum of all reactant stoichiometric coefficients.
Symbol: Δn
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Total Number of Moles
Total Number of Moles is the total number of moles present in the system.
Symbol: NT
Measurement: Amount of SubstanceUnit: mol
Note: Value should be greater than 0.
Total Number of Moles Initially
Total Number of Moles Initially is the number of moles present in the system before the required process.
Symbol: N0
Measurement: Amount of SubstanceUnit: mol
Note: Value can be positive or negative.

Other formulas in Constant Volume Batch Reactor category

​Go Initial Partial Pressure of Product in Constant Volume Batch Reactor
pR0=pR-(RΔn)(π-π0)
​Go Initial Partial Pressure of Reactant in Constant Volume Batch Reactor
pA0=pA+(AΔn)(π-π0)

How to Evaluate Number of Moles of Reactant Fed to Constant Volume Batch Reactor?

Number of Moles of Reactant Fed to Constant Volume Batch Reactor evaluator uses Number of Moles of Reactant-A Fed = Volume of Solution*(Concentration of Reactant A+(Stoichiometric Coefficient of Reactant/Net Stoichiometric Coefficient)*((Total Number of Moles-Total Number of Moles Initially)/Volume of Solution)) to evaluate the Number of Moles of Reactant-A Fed, The Number of Moles of Reactant Fed to Constant Volume Batch Reactor formula is defined as the number of moles of reactant that were present before reaction in constant volume batch reactor. Number of Moles of Reactant-A Fed is denoted by NAo symbol.

How to evaluate Number of Moles of Reactant Fed to Constant Volume Batch Reactor using this online evaluator? To use this online evaluator for Number of Moles of Reactant Fed to Constant Volume Batch Reactor, enter Volume of Solution (Vsolution), Concentration of Reactant A (CA), Stoichiometric Coefficient of Reactant (A), Net Stoichiometric Coefficient (Δn), Total Number of Moles (NT) & Total Number of Moles Initially (N0) and hit the calculate button.

FAQs on Number of Moles of Reactant Fed to Constant Volume Batch Reactor

What is the formula to find Number of Moles of Reactant Fed to Constant Volume Batch Reactor?
The formula of Number of Moles of Reactant Fed to Constant Volume Batch Reactor is expressed as Number of Moles of Reactant-A Fed = Volume of Solution*(Concentration of Reactant A+(Stoichiometric Coefficient of Reactant/Net Stoichiometric Coefficient)*((Total Number of Moles-Total Number of Moles Initially)/Volume of Solution)). Here is an example- 11.949 = 10.2*(1.1+(3/4)*((16-15.98)/10.2)).
How to calculate Number of Moles of Reactant Fed to Constant Volume Batch Reactor?
With Volume of Solution (Vsolution), Concentration of Reactant A (CA), Stoichiometric Coefficient of Reactant (A), Net Stoichiometric Coefficient (Δn), Total Number of Moles (NT) & Total Number of Moles Initially (N0) we can find Number of Moles of Reactant Fed to Constant Volume Batch Reactor using the formula - Number of Moles of Reactant-A Fed = Volume of Solution*(Concentration of Reactant A+(Stoichiometric Coefficient of Reactant/Net Stoichiometric Coefficient)*((Total Number of Moles-Total Number of Moles Initially)/Volume of Solution)).
Can the Number of Moles of Reactant Fed to Constant Volume Batch Reactor be negative?
No, the Number of Moles of Reactant Fed to Constant Volume Batch Reactor, measured in Amount of Substance cannot be negative.
Which unit is used to measure Number of Moles of Reactant Fed to Constant Volume Batch Reactor?
Number of Moles of Reactant Fed to Constant Volume Batch Reactor is usually measured using the Mole[mol] for Amount of Substance. Millimole[mol], Kilomole[mol], Pound Mole[mol] are the few other units in which Number of Moles of Reactant Fed to Constant Volume Batch Reactor can be measured.
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