Theoretical Osmotic Pressure given Van't Hoff Factor Formula

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The Theoretical Osmotic Pressure is the theoretically obtained osmotic pressure of the solution. Check FAQs
πtheoretical=πexpi
πtheoretical - Theoretical Osmotic Pressure?πexp - Experimental Osmotic Pressure?i - Van't Hoff Factor?

Theoretical Osmotic Pressure given Van't Hoff Factor Example

With values
With units
Only example

Here is how the Theoretical Osmotic Pressure given Van't Hoff Factor equation looks like with Values.

Here is how the Theoretical Osmotic Pressure given Van't Hoff Factor equation looks like with Units.

Here is how the Theoretical Osmotic Pressure given Van't Hoff Factor equation looks like.

15Edit=15.12Edit1.008Edit
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Theoretical Osmotic Pressure given Van't Hoff Factor Solution

Follow our step by step solution on how to calculate Theoretical Osmotic Pressure given Van't Hoff Factor?

FIRST Step Consider the formula
πtheoretical=πexpi
Next Step Substitute values of Variables
πtheoretical=15.12atm1.008
Next Step Convert Units
πtheoretical=1.5E+6Pa1.008
Next Step Prepare to Evaluate
πtheoretical=1.5E+61.008
Next Step Evaluate
πtheoretical=1519875Pa
LAST Step Convert to Output's Unit
πtheoretical=15atm

Theoretical Osmotic Pressure given Van't Hoff Factor Formula Elements

Variables
Theoretical Osmotic Pressure
The Theoretical Osmotic Pressure is the theoretically obtained osmotic pressure of the solution.
Symbol: πtheoretical
Measurement: PressureUnit: atm
Note: Value should be greater than 0.
Experimental Osmotic Pressure
The Experimental Osmotic Pressure is the experimentally obtained osmotic pressure of a solution.
Symbol: πexp
Measurement: PressureUnit: atm
Note: Value can be positive or negative.
Van't Hoff Factor
A Van't Hoff Factor is the ratio of observed colligative property to theoretical colligative property.
Symbol: i
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.

Other formulas in Van't Hoff Factor category

​Go Degree of Dissociation given Van't Hoff Factor
α=i-1Nions-1
​Go Degree of Association given Van't Hoff Factor
β=iβ-1(1Nions)-1
​Go Observed or Experimental Value of Colligative Property given Van't Hoff Factor
Colligative Propertyexp=iColligative Propertytheoretical
​Go Van't Hoff Factor given Colligative Property
i=Colligative PropertyexpColligative Propertytheoretical

How to Evaluate Theoretical Osmotic Pressure given Van't Hoff Factor?

Theoretical Osmotic Pressure given Van't Hoff Factor evaluator uses Theoretical Osmotic Pressure = Experimental Osmotic Pressure/Van't Hoff Factor to evaluate the Theoretical Osmotic Pressure, The Theoretical Osmotic Pressure given Van't Hoff Factor is the theoretically obtained Osmotic Pressure of the solution. Theoretical Osmotic Pressure is denoted by πtheoretical symbol.

How to evaluate Theoretical Osmotic Pressure given Van't Hoff Factor using this online evaluator? To use this online evaluator for Theoretical Osmotic Pressure given Van't Hoff Factor, enter Experimental Osmotic Pressure exp) & Van't Hoff Factor (i) and hit the calculate button.

FAQs on Theoretical Osmotic Pressure given Van't Hoff Factor

What is the formula to find Theoretical Osmotic Pressure given Van't Hoff Factor?
The formula of Theoretical Osmotic Pressure given Van't Hoff Factor is expressed as Theoretical Osmotic Pressure = Experimental Osmotic Pressure/Van't Hoff Factor. Here is an example- 5E-5 = 1532034/1.008.
How to calculate Theoretical Osmotic Pressure given Van't Hoff Factor?
With Experimental Osmotic Pressure exp) & Van't Hoff Factor (i) we can find Theoretical Osmotic Pressure given Van't Hoff Factor using the formula - Theoretical Osmotic Pressure = Experimental Osmotic Pressure/Van't Hoff Factor.
Can the Theoretical Osmotic Pressure given Van't Hoff Factor be negative?
No, the Theoretical Osmotic Pressure given Van't Hoff Factor, measured in Pressure cannot be negative.
Which unit is used to measure Theoretical Osmotic Pressure given Van't Hoff Factor?
Theoretical Osmotic Pressure given Van't Hoff Factor is usually measured using the Standard Atmosphere[atm] for Pressure. Pascal[atm], Kilopascal[atm], Bar[atm] are the few other units in which Theoretical Osmotic Pressure given Van't Hoff Factor can be measured.
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