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The Efficiency of Energy Transfer describes the efficiency of energy transfer between two light-sensitive molecules (chromophores). Check FAQs
E=11+(rR0)6
E - Efficiency of Energy Transfer?r - Donor to Acceptor Distance?R0 - Forster Critical Distance?

Efficiency of Energy Transfer using Distances Example

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With units
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Here is how the Efficiency of Energy Transfer using Distances equation looks like with Values.

Here is how the Efficiency of Energy Transfer using Distances equation looks like with Units.

Here is how the Efficiency of Energy Transfer using Distances equation looks like.

0.2077Edit=11+(50Edit40Edit)6
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Efficiency of Energy Transfer using Distances Solution

Follow our step by step solution on how to calculate Efficiency of Energy Transfer using Distances?

FIRST Step Consider the formula
E=11+(rR0)6
Next Step Substitute values of Variables
E=11+(50A40A)6
Next Step Convert Units
E=11+(5E-9m4E-9m)6
Next Step Prepare to Evaluate
E=11+(5E-94E-9)6
Next Step Evaluate
E=0.207697378429086
LAST Step Rounding Answer
E=0.2077

Efficiency of Energy Transfer using Distances Formula Elements

Variables
Efficiency of Energy Transfer
The Efficiency of Energy Transfer describes the efficiency of energy transfer between two light-sensitive molecules (chromophores).
Symbol: E
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Donor to Acceptor Distance
Donor to Acceptor Distance is the distance between the donor and the acceptor molecules.
Symbol: r
Measurement: LengthUnit: A
Note: Value should be greater than 0.
Forster Critical Distance
The Forster Critical Distance is the distance at which the energy transfer efficiency is 50%.
Symbol: R0
Measurement: LengthUnit: A
Note: Value should be greater than 0.

Other Formulas to find Efficiency of Energy Transfer

​Go Efficiency of Energy Transfer using Rate of Energy Transfer
E=KTKT+Knr+Kr
​Go Efficiency of Energy Transfer using Rate of Energy Transfer and Donor Lifetime
E=KT1ζDA
​Go Efficiency of Energy Transfer using Donor Lifetime
E=1-(ζDAζD)
​Go Efficiency of Energy Transfer using Fluorescence Intensity of Donor
E=1-(FDAFD)

Other formulas in Förster resonance energy transfer category

​Go Forster Critical Distance
R0=0.0211((η)-4(Φd)(κ2)(J))16
​Go Donor Lifetime using Rates of Transitions
ζD=1Kr+Knr
​Go Donor Lifetime with FRET using Rate of Energy and Transitions
ζDA=1KT+Kr+Knr
​Go Rate of Energy Transfer using Distances and Donor Lifetime
KT=(1ζD)(R0r)6

How to Evaluate Efficiency of Energy Transfer using Distances?

Efficiency of Energy Transfer using Distances evaluator uses Efficiency of Energy Transfer = 1/(1+(Donor to Acceptor Distance/Forster Critical Distance)^6) to evaluate the Efficiency of Energy Transfer, The Efficiency of Energy Transfer using Distances formula is defined as the quantum yield of the energy-transfer transition, i.e. the probability of energy-transfer event occurring per donor excitation event. Efficiency of Energy Transfer is denoted by E symbol.

How to evaluate Efficiency of Energy Transfer using Distances using this online evaluator? To use this online evaluator for Efficiency of Energy Transfer using Distances, enter Donor to Acceptor Distance (r) & Forster Critical Distance (R0) and hit the calculate button.

FAQs on Efficiency of Energy Transfer using Distances

What is the formula to find Efficiency of Energy Transfer using Distances?
The formula of Efficiency of Energy Transfer using Distances is expressed as Efficiency of Energy Transfer = 1/(1+(Donor to Acceptor Distance/Forster Critical Distance)^6). Here is an example- 0.207697 = 1/(1+(5E-09/4E-09)^6).
How to calculate Efficiency of Energy Transfer using Distances?
With Donor to Acceptor Distance (r) & Forster Critical Distance (R0) we can find Efficiency of Energy Transfer using Distances using the formula - Efficiency of Energy Transfer = 1/(1+(Donor to Acceptor Distance/Forster Critical Distance)^6).
What are the other ways to Calculate Efficiency of Energy Transfer?
Here are the different ways to Calculate Efficiency of Energy Transfer-
  • Efficiency of Energy Transfer=Rate of Energy Transfer/(Rate of Energy Transfer+Rate of Non radiative Transitions+Rate of Radiative Transitions)OpenImg
  • Efficiency of Energy Transfer=Rate of Energy Transfer/(1/Donor Lifetime with FRET)OpenImg
  • Efficiency of Energy Transfer=1-(Donor Lifetime with FRET/Donor Lifetime)OpenImg
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