Mole Fraction using Molarity Solution

STEP 0: Pre-Calculation Summary
Formula Used
Mole Fraction of Solute = (Molarity*Molar Mass of Solvent*1000)/(1000*Density of water*Molar Mass of Solute)
xsolute = (Mol*Msolvent*1000)/(1000*ρ*M1)
This formula uses 5 Variables
Variables Used
Mole Fraction of Solute - Mole Fraction of Solute is the ration of the number of moles of the solute to the total number of moles of the solute and solvent.
Molarity - (Measured in Mole per Cubic Meter) - Molarity of a given solution is defined as the total number of moles of solute per litre of solution.
Molar Mass of Solvent - (Measured in Kilogram) - The Molar Mass of Solvent is the molar mass of the medium in which the solute is dissolved.
Density of water - (Measured in Kilogram per Cubic Meter) - Density of Water is the weight of the water per its unit volume, which depends on the temperature.
Molar Mass of Solute - (Measured in Kilogram) - The Molar Mass of Solute is the molar mass of the substance dissolved in the solution.
STEP 1: Convert Input(s) to Base Unit
Molarity: 55.5 Mole per Liter --> 55500 Mole per Cubic Meter (Check conversion here)
Molar Mass of Solvent: 25 Gram --> 0.025 Kilogram (Check conversion here)
Density of water: 997 Gram per Liter --> 997 Kilogram per Cubic Meter (Check conversion here)
Molar Mass of Solute: 40 Gram --> 0.04 Kilogram (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
xsolute = (Mol*Msolvent*1000)/(1000*ρ*M1) --> (55500*0.025*1000)/(1000*997*0.04)
Evaluating ... ...
xsolute = 34.7918756268806
STEP 3: Convert Result to Output's Unit
34.7918756268806 --> No Conversion Required
FINAL ANSWER
34.7918756268806 34.79188 <-- Mole Fraction of Solute
(Calculation completed in 00.005 seconds)

Credits

Created by Anirudh Singh
National Institute of Technology (NIT), Jamshedpur
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22 Concentration Terms Calculators

Molarity using Mole Fraction
Go Molarity = (Mole Fraction of Solute*Density of water*1000)/(Mole Fraction of Solvent*Molar Mass of Solvent+Mole Fraction of Solute*Molar Mass of Solute)
Mole Fraction of Solute given Molarity
Go Mole Fraction of Solute in terms of Molarity = (Molarity*Molar Mass of Solvent*1000)/((Density of Solution*1000)-(Molarity*Molar Mass of Solute))
Molarity given Molality of Solution
Go Molarity when Molality of Solution is given = (Molality*Density of Solution*1000)/(1000+( Molality*Molar Mass of Solute))
Mole Fraction of Solvent
Go Mole Fraction of Solvent = Number of Moles of Solvent in Solution/(Number of Moles of Solute in Solution+Number of Moles of Solvent in Solution)
Mole Fraction of Solute
Go Mole Fraction of Solute = Number of Moles of Solute in Solution/(Number of Moles of Solute in Solution+Number of Moles of Solvent in Solution)
Mole Fraction using Molarity
Go Mole Fraction of Solute = (Molarity*Molar Mass of Solvent*1000)/(1000*Density of water*Molar Mass of Solute)
Mole Fraction using Molality
Go Mole Fraction of Solute = (Molality*Molar Mass of Solvent)/(1000+Molality*Molar Mass of Solvent)
Mole Fraction of Component 1 in Binary Solution
Go Mole fraction of component 1 = Moles of Component 1/(Moles of Component 1+Moles of component 2)
Molarity using Molality
Go Molarity = Density of water/((1/Molality)+(Molecular Mass Solute/1000))
Molarity of Substance
Go Molarity = Mass of Solute/(Molecular Mass Solute*Volume of Solution)
Molarity given Normality and Equivalent Mass
Go Molarity = Normality*(Equivalent Weight/Molar Mass in Kilogram)
Mole Fraction of Solvent given Molality
Go Mole Fraction of Solvent = 1000/(1000+(Molality*Molar Mass of Solvent))
Number of Moles of Solute using Molarity
Go Number of Moles of Acid or Base = Molarity*Volume of Solution
Molarity
Go Molarity = Number of Moles of Solute/Volume of Solution
Number of Moles of Solute using Molality
Go Number of Moles of Solute = Molality*Mass of Solvent
Mass of Solvent using Molality
Go Mass of Solvent = Number of Moles of Solute/Molality
Molarity given Normality and Number of Equivalents
Go Molarity = Normality/Number of Equivalents
Molarity using Normality and Valency Factor
Go Molarity = Normality/N Factor
Molarity given basicity and normality
Go Molarity = Normality/Basicity
Molarity given Acidity and Normality
Go Molarity = Normality/Acidity
Molarity using Volume Strength of Hydrogen Peroxide
Go Molarity = Volume Strength/11.2
Volume Strength using Molarity
Go Volume Strength = 11.2*Molarity

Mole Fraction using Molarity Formula

Mole Fraction of Solute = (Molarity*Molar Mass of Solvent*1000)/(1000*Density of water*Molar Mass of Solute)
xsolute = (Mol*Msolvent*1000)/(1000*ρ*M1)

What is Stoichiometry?

Stoichiometry is founded on the law of conservation of mass where the total mass of the reactants equals the total mass of the products, leading to the insight that the relations among quantities of reactants and products typically form a ratio of positive integers.

How to Calculate Mole Fraction using Molarity?

Mole Fraction using Molarity calculator uses Mole Fraction of Solute = (Molarity*Molar Mass of Solvent*1000)/(1000*Density of water*Molar Mass of Solute) to calculate the Mole Fraction of Solute, The Mole Fraction using Molarity formula is defined as the ratio of the number of moles of the solute and the total number of moles of solute and solvent. Mole Fraction of Solute is denoted by xsolute symbol.

How to calculate Mole Fraction using Molarity using this online calculator? To use this online calculator for Mole Fraction using Molarity, enter Molarity (Mol), Molar Mass of Solvent (Msolvent), Density of water (ρ) & Molar Mass of Solute (M1) and hit the calculate button. Here is how the Mole Fraction using Molarity calculation can be explained with given input values -> 34.79188 = (55500*0.025*1000)/(1000*997*0.04).

FAQ

What is Mole Fraction using Molarity?
The Mole Fraction using Molarity formula is defined as the ratio of the number of moles of the solute and the total number of moles of solute and solvent and is represented as xsolute = (Mol*Msolvent*1000)/(1000*ρ*M1) or Mole Fraction of Solute = (Molarity*Molar Mass of Solvent*1000)/(1000*Density of water*Molar Mass of Solute). Molarity of a given solution is defined as the total number of moles of solute per litre of solution, The Molar Mass of Solvent is the molar mass of the medium in which the solute is dissolved, Density of Water is the weight of the water per its unit volume, which depends on the temperature & The Molar Mass of Solute is the molar mass of the substance dissolved in the solution.
How to calculate Mole Fraction using Molarity?
The Mole Fraction using Molarity formula is defined as the ratio of the number of moles of the solute and the total number of moles of solute and solvent is calculated using Mole Fraction of Solute = (Molarity*Molar Mass of Solvent*1000)/(1000*Density of water*Molar Mass of Solute). To calculate Mole Fraction using Molarity, you need Molarity (Mol), Molar Mass of Solvent (Msolvent), Density of water (ρ) & Molar Mass of Solute (M1). With our tool, you need to enter the respective value for Molarity, Molar Mass of Solvent, Density of water & Molar Mass of Solute 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 Mole Fraction of Solute?
In this formula, Mole Fraction of Solute uses Molarity, Molar Mass of Solvent, Density of water & Molar Mass of Solute. We can use 2 other way(s) to calculate the same, which is/are as follows -
  • Mole Fraction of Solute = Number of Moles of Solute in Solution/(Number of Moles of Solute in Solution+Number of Moles of Solvent in Solution)
  • Mole Fraction of Solute = (Molality*Molar Mass of Solvent)/(1000+Molality*Molar Mass of Solvent)
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