Partition Coefficient of Solute 1 given Relative Retention Formula

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Partition Coefficient of Comp 1 is described as the concentration ratio of a chemical amidst the two media at equilibrium. Check FAQs
KC1=(K2α)
KC1 - Partition Coefficient of Comp 1?K2 - Partition Coefficient of Solute 2?α - Relative Retention?

Partition Coefficient of Solute 1 given Relative Retention Example

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Here is how the Partition Coefficient of Solute 1 given Relative Retention equation looks like with Values.

Here is how the Partition Coefficient of Solute 1 given Relative Retention equation looks like with Units.

Here is how the Partition Coefficient of Solute 1 given Relative Retention equation looks like.

1.6667Edit=(15Edit9Edit)
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Partition Coefficient of Solute 1 given Relative Retention Solution

Follow our step by step solution on how to calculate Partition Coefficient of Solute 1 given Relative Retention?

FIRST Step Consider the formula
KC1=(K2α)
Next Step Substitute values of Variables
KC1=(159)
Next Step Prepare to Evaluate
KC1=(159)
Next Step Evaluate
KC1=1.66666666666667
LAST Step Rounding Answer
KC1=1.6667

Partition Coefficient of Solute 1 given Relative Retention Formula Elements

Variables
Partition Coefficient of Comp 1
Partition Coefficient of Comp 1 is described as the concentration ratio of a chemical amidst the two media at equilibrium.
Symbol: KC1
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Partition Coefficient of Solute 2
The Partition Coefficient of Solute 2 is described as the concentration ratio of a chemical amidst the two media at equilibrium.
Symbol: K2
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.
Relative Retention
The Relative Retention is the ratio of adjusted retention times for any two components.
Symbol: α
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other formulas in Relative and Adjusted Retention category

​Go Mobile Phase Travel Time given Capacity Factor
tCP=trk'+1
​Go Mobile Phase Travel Time through Column
tC=(tr-tr')
​Go Molar Concentration of Third Component in First Phase
CP1=(kDC'Cs2)
​Go Molar Concentration of Third Component in Second Phase
CP2=(C1kDC')

How to Evaluate Partition Coefficient of Solute 1 given Relative Retention?

Partition Coefficient of Solute 1 given Relative Retention evaluator uses Partition Coefficient of Comp 1 = (Partition Coefficient of Solute 2/Relative Retention) to evaluate the Partition Coefficient of Comp 1, The Partition coefficient of solute 1 given relative retention formula is defined as the ratio of the partition coefficient of solute 2 to the relative retention. Partition Coefficient of Comp 1 is denoted by KC1 symbol.

How to evaluate Partition Coefficient of Solute 1 given Relative Retention using this online evaluator? To use this online evaluator for Partition Coefficient of Solute 1 given Relative Retention, enter Partition Coefficient of Solute 2 (K2) & Relative Retention (α) and hit the calculate button.

FAQs on Partition Coefficient of Solute 1 given Relative Retention

What is the formula to find Partition Coefficient of Solute 1 given Relative Retention?
The formula of Partition Coefficient of Solute 1 given Relative Retention is expressed as Partition Coefficient of Comp 1 = (Partition Coefficient of Solute 2/Relative Retention). Here is an example- 1.666667 = (15/9).
How to calculate Partition Coefficient of Solute 1 given Relative Retention?
With Partition Coefficient of Solute 2 (K2) & Relative Retention (α) we can find Partition Coefficient of Solute 1 given Relative Retention using the formula - Partition Coefficient of Comp 1 = (Partition Coefficient of Solute 2/Relative Retention).
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