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Number of molecules of product formed in 1 second Solution

STEP 0: Pre-Calculation Summary
Formula Used
Product_molecules_formed_per_second = Quantum efficiency for products*Number of quanta absorbed
dNP / dt = Φp*Ia
This formula uses 2 Variables
Variables Used
Quantum efficiency for products- Quantum efficiency for products is a measure of the efficiency of the use of light for products in a photochemical reaction.
Number of quanta absorbed- Number of quanta absorbed refers to the total number of photons absorbed in a photochemical reaction in a time of 1 second.
STEP 1: Convert Input(s) to Base Unit
Quantum efficiency for products: 100 --> No Conversion Required
Number of quanta absorbed: 100 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
dNP / dt = Φp*Ia --> 100*100
Evaluating ... ...
dNP / dt = 10000
STEP 3: Convert Result to Output's Unit
10000 --> No Conversion Required
FINAL ANSWER
10000 <-- Product molecules formed per second
(Calculation completed in 00.000 seconds)

10+ Stark-Einstein law Calculators

Energy of photochemical reaction in terms of wavelength of substance
energy_in_a_photochemical_reaction = ([Avaga-no]*[hP]*[c])/Wavelength Go
Wavelength of substance given energy of reaction
wavelength = ([Avaga-no]*[hP]*[c])/Energy in a photochemical reaction Go
Number of quanta absorbed in 1 second using quantum efficiency of reactant
number_of_quanta_absorbed = Reactant molecules consumed per second /Quantum efficiency for reactants Go
Number of molecules of reactant consumed in 1 second
Reactant_molecules_consumed_per_second = Quantum efficiency for reactants*Number of quanta absorbed Go
Quantum efficiency for disappearance of reactant
quantum_efficiency_for_reactants = Reactant molecules consumed per second/Number of quanta absorbed Go
Number of quanta absorbed in 1 second using quantum efficiency of products
number_of_quanta_absorbed = Product molecules formed per second /Quantum efficiency for products Go
Frequency of substance given energy of reaction
frequency = Energy in a photochemical reaction/[Avaga-no]*[hP] Go
Energy of photochemical reaction
energy_in_a_photochemical_reaction = [Avaga-no]*[hP]*Frequency Go
Number of molecules of product formed in 1 second
Product_molecules_formed_per_second = Quantum efficiency for products*Number of quanta absorbed Go
Quantum efficiency for formation of product
quantum_efficiency_for_products = Product molecules formed per second/Number of quanta absorbed Go

Number of molecules of product formed in 1 second Formula

Product_molecules_formed_per_second = Quantum efficiency for products*Number of quanta absorbed
dNP / dt = Φp*Ia

What is Stark-Einstein law of photochemical equivalence?

Stark-Einstein law of photochemical equivalence can be stated as follows: Each molecule taking part in a photochemical reaction absorbs one quantum of radiation which causes the reaction. This law is applicable to the primary act of excitation of a molecule by light absorption. This law helps in calculating the quantum efficiency which is a measure of the efficiency of the use of light in a photochemical reaction.

What is Grotthuss-Draper Law?

According to this law, only the light that is absorbed by a molecule can produce a photochemical change in it. This means that it is not sufficient to pass light through a substance to bring about a chemical reaction; but the light must be absorbed by it. Stark-Einstein law of photochemical equivalence provides a quantum mechanical form to Grotthuss-Draper law.

How to Calculate Number of molecules of product formed in 1 second?

Number of molecules of product formed in 1 second calculator uses Product_molecules_formed_per_second = Quantum efficiency for products*Number of quanta absorbed to calculate the Product molecules formed per second, The Number of molecules of product formed in 1 second formula is defined as the moles which are present in gaseous state of the products in a photochemical reaction in a time period of 1 second. Product molecules formed per second is denoted by dNP / dt symbol.

How to calculate Number of molecules of product formed in 1 second using this online calculator? To use this online calculator for Number of molecules of product formed in 1 second, enter Quantum efficiency for products p) & Number of quanta absorbed (Ia) and hit the calculate button. Here is how the Number of molecules of product formed in 1 second calculation can be explained with given input values -> 10000 = 100*100.

FAQ

What is Number of molecules of product formed in 1 second?
The Number of molecules of product formed in 1 second formula is defined as the moles which are present in gaseous state of the products in a photochemical reaction in a time period of 1 second and is represented as dNP / dt = Φp*Ia or Product_molecules_formed_per_second = Quantum efficiency for products*Number of quanta absorbed. Quantum efficiency for products is a measure of the efficiency of the use of light for products in a photochemical reaction & Number of quanta absorbed refers to the total number of photons absorbed in a photochemical reaction in a time of 1 second.
How to calculate Number of molecules of product formed in 1 second?
The Number of molecules of product formed in 1 second formula is defined as the moles which are present in gaseous state of the products in a photochemical reaction in a time period of 1 second is calculated using Product_molecules_formed_per_second = Quantum efficiency for products*Number of quanta absorbed. To calculate Number of molecules of product formed in 1 second, you need Quantum efficiency for products p) & Number of quanta absorbed (Ia). With our tool, you need to enter the respective value for Quantum efficiency for products & Number of quanta absorbed and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
How many ways are there to calculate Product molecules formed per second?
In this formula, Product molecules formed per second uses Quantum efficiency for products & Number of quanta absorbed. We can use 10 other way(s) to calculate the same, which is/are as follows -
  • quantum_efficiency_for_products = Product molecules formed per second/Number of quanta absorbed
  • Product_molecules_formed_per_second = Quantum efficiency for products*Number of quanta absorbed
  • number_of_quanta_absorbed = Product molecules formed per second /Quantum efficiency for products
  • quantum_efficiency_for_reactants = Reactant molecules consumed per second/Number of quanta absorbed
  • Reactant_molecules_consumed_per_second = Quantum efficiency for reactants*Number of quanta absorbed
  • number_of_quanta_absorbed = Reactant molecules consumed per second /Quantum efficiency for reactants
  • energy_in_a_photochemical_reaction = [Avaga-no]*[hP]*Frequency
  • frequency = Energy in a photochemical reaction/[Avaga-no]*[hP]
  • energy_in_a_photochemical_reaction = ([Avaga-no]*[hP]*[c])/Wavelength
  • wavelength = ([Avaga-no]*[hP]*[c])/Energy in a photochemical reaction
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