Final Intensity using Stern Volmer Equation Formula

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Final Intensity flux of radiant energy is the power transferred per unit area, where the area is measured on the plane perpendicular to the direction of propagation of the energy. Check FAQs
It=Io1+(ζoKq[Q])
It - Final Intensity?Io - Initial Intensity?ζo - Singlet Life time given Degree of Exciplex?Kq - Quenching Constant?[Q] - Quencher Concentration given Degree of Exciplex?

Final Intensity using Stern Volmer Equation Example

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With units
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Here is how the Final Intensity using Stern Volmer Equation equation looks like with Values.

Here is how the Final Intensity using Stern Volmer Equation equation looks like with Units.

Here is how the Final Intensity using Stern Volmer Equation equation looks like.

60.9756Edit=500Edit1+(0.8Edit6Edit1.5Edit)
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Final Intensity using Stern Volmer Equation Solution

Follow our step by step solution on how to calculate Final Intensity using Stern Volmer Equation?

FIRST Step Consider the formula
It=Io1+(ζoKq[Q])
Next Step Substitute values of Variables
It=500W/m²1+(0.8s6rev/s1.5)
Next Step Convert Units
It=500W/m²1+(0.8s6Hz1.5)
Next Step Prepare to Evaluate
It=5001+(0.861.5)
Next Step Evaluate
It=60.9756097560976W/m²
LAST Step Rounding Answer
It=60.9756W/m²

Final Intensity using Stern Volmer Equation Formula Elements

Variables
Final Intensity
Final Intensity flux of radiant energy is the power transferred per unit area, where the area is measured on the plane perpendicular to the direction of propagation of the energy.
Symbol: It
Measurement: IntensityUnit: W/m²
Note: Value can be positive or negative.
Initial Intensity
Initial Intensity flux of radiant energy is the power transferred per unit area, where the area is measured on the plane perpendicular to the direction of propagation of the energy.
Symbol: Io
Measurement: IntensityUnit: W/m²
Note: Value can be positive or negative.
Singlet Life time given Degree of Exciplex
Singlet Life time given Degree of Exciplex of a population is the time measured for the number of excited molecules to decay exponentially to N/e of the original population .
Symbol: ζo
Measurement: TimeUnit: s
Note: Value can be positive or negative.
Quenching Constant
Quenching Constant is the measure of quenching which decreases fluoroscene intensity.
Symbol: Kq
Measurement: FrequencyUnit: rev/s
Note: Value can be positive or negative.
Quencher Concentration given Degree of Exciplex
Quencher Concentration given Degree of Exciplex is the concentration of substance that decreases fluoroscence intensity.
Symbol: [Q]
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Emission Spectroscopy category

​Go Collisional Energy Transfer
Rcollision =Kq[Q][MS1]
​Go Degree of Exciplex Formation
α=Keq[Q]1+(Keq[Q])
​Go Difference in Acidity between Ground and Excited State
Δpka=pKaExcited-pKaground
​Go Equilibrium Constant for Exciplex Formation
Keq=11-α-1

How to Evaluate Final Intensity using Stern Volmer Equation?

Final Intensity using Stern Volmer Equation evaluator uses Final Intensity = Initial Intensity/(1+(Singlet Life time given Degree of Exciplex*Quenching Constant*Quencher Concentration given Degree of Exciplex)) to evaluate the Final Intensity, Final Intensity using Stern Volmer Equation in a purely dynamic fluorescence quenching process is the product of the bimolecular quenching rate constant and the fluorescence lifetime in absence of added quencher. Final Intensity is denoted by It symbol.

How to evaluate Final Intensity using Stern Volmer Equation using this online evaluator? To use this online evaluator for Final Intensity using Stern Volmer Equation, enter Initial Intensity (Io), Singlet Life time given Degree of Exciplex o), Quenching Constant (Kq) & Quencher Concentration given Degree of Exciplex ([Q]) and hit the calculate button.

FAQs on Final Intensity using Stern Volmer Equation

What is the formula to find Final Intensity using Stern Volmer Equation?
The formula of Final Intensity using Stern Volmer Equation is expressed as Final Intensity = Initial Intensity/(1+(Singlet Life time given Degree of Exciplex*Quenching Constant*Quencher Concentration given Degree of Exciplex)). Here is an example- 494.6577 = 500/(1+(0.8*6*1.5)).
How to calculate Final Intensity using Stern Volmer Equation?
With Initial Intensity (Io), Singlet Life time given Degree of Exciplex o), Quenching Constant (Kq) & Quencher Concentration given Degree of Exciplex ([Q]) we can find Final Intensity using Stern Volmer Equation using the formula - Final Intensity = Initial Intensity/(1+(Singlet Life time given Degree of Exciplex*Quenching Constant*Quencher Concentration given Degree of Exciplex)).
Can the Final Intensity using Stern Volmer Equation be negative?
Yes, the Final Intensity using Stern Volmer Equation, measured in Intensity can be negative.
Which unit is used to measure Final Intensity using Stern Volmer Equation?
Final Intensity using Stern Volmer Equation is usually measured using the Watt per Square Meter[W/m²] for Intensity. Watt per Square Centimeter[W/m²], Watt per Square Millimeter[W/m²], Kilowatt per Square Meter[W/m²] are the few other units in which Final Intensity using Stern Volmer Equation can be measured.
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