Volume of Solution given Normality Solution

STEP 0: Pre-Calculation Summary
Formula Used
Volume of Solution = Number of Equivalents/Normality
V = nequiv./N
This formula uses 3 Variables
Variables Used
Volume of Solution - (Measured in Cubic Meter) - The Volume of Solution gives the volume of the solution in liters.
Number of Equivalents - The Number of Equivalents is a number that defines how many electrons or ions may be transferred in a chemical reaction.
Normality - (Measured in Mole per Cubic Meter) - Normality is the weight of solute dissolved in a liter of solution.
STEP 1: Convert Input(s) to Base Unit
Number of Equivalents: 16 --> No Conversion Required
Normality: 12 Equivalents per Liter --> 12000 Mole per Cubic Meter (Check conversion here)
STEP 2: Evaluate Formula
Substituting Input Values in Formula
V = nequiv./N --> 16/12000
Evaluating ... ...
V = 0.00133333333333333
STEP 3: Convert Result to Output's Unit
0.00133333333333333 Cubic Meter -->1.33333333333333 Liter (Check conversion here)
FINAL ANSWER
1.33333333333333 1.333333 Liter <-- Volume of Solution
(Calculation completed in 00.004 seconds)

Credits

Created by Shivam Sinha
National Institute Of Technology (NIT), Surathkal
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Verified by Akshada Kulkarni
National Institute of Information Technology (NIIT), Neemrana
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23 Number of Equivalents and Normality Calculators

Normality of substance 1 at Equivalence point
Go Normality of Solution 1 = Normality of Solution 2*(Volume of Solution 2/Volume of Solution 1)
Normality of substance 2 at Equivalence point
Go Normality of Solution 2 = Normality of Solution 1*(Volume of Solution 1/Volume of Solution 2)
Volume of Substance 1 at Equivalence Point
Go Volume of Solution 1 = Normality of Solution 2*(Volume of Solution 2/Normality of Solution 1)
Volume of substance 2 at equivalence point
Go Volume of Solution 2 = Normality of Solution 1*(Volume of Solution 1/Normality of Solution 2)
Equivalent Mass given Molality and Normality
Go Equivalent Weight = Molarity*(Molar Mass/Normality)
Normality given Molality and Equivalent Mass
Go Normality = Molarity*(Molar Mass/Equivalent Weight)
Number of Moles of Solute given Number of Equivalents of Solute
Go Number of Moles of Solute = Number of Equivalents/N Factor
Number of Equivalents of Solute using Valency Factor
Go Number of Equivalents = Number of Moles of Solute*N Factor
Valency Factor given Number of Equivalents of Solute
Go N Factor = Number of Equivalents/Number of Moles of Solute
Number of Equivalents of Solute
Go Number of Equivalents = Mass of Solute/Equivalent Weight
Number of Equivalents of Solute given Normality
Go Number of Equivalents = Normality*Volume of Solution
Volume of Solution given Normality
Go Volume of Solution = Number of Equivalents/Normality
Normality
Go Normality = Equivalent of Solute/Liters of Solution
Number of Equivalents given Molarity and Normality
Go Number of Equivalents = Normality/Molarity
Normality given Molarity and Number of Equivalents
Go Normality = Molarity*Number of Equivalents
Normality given Molarity and Valency Factor
Go Normality = Molarity*N Factor
Valency Factor using Molarity and Normality
Go N Factor = Normality/Molarity
Basicity given Molarity and Normality
Go Basicity = Normality/Molarity
Normality given Molarity and Basicity
Go Normality = Molarity*Basicity
Acidity given Molarity and Normality
Go Acidity = Normality/Molarity
Normality given Molarity and Acidity
Go Normality = Molarity*Acidity
Normality using Volume Strength of Hydrogen Peroxide
Go Normality = Volume Strength/5.6
Volume Strength using Normality
Go Volume Strength = 5.6*Normality

Volume of Solution given Normality Formula

Volume of Solution = Number of Equivalents/Normality
V = nequiv./N

What is number of equivalents?

The number of equivalents is the ratio of the molar mass of the compound to the n-factor of the reaction. The number of equivalents is a number that defines how many electrons or ions may be transferred in a chemical reaction.

What is normality?

Normality is described as the number of gram or mole equivalents of solute present in one liter of a solution. When we say equivalent, it is the number of moles of reactive units in a compound. Normality in chemistry is one of the expressions used to measure the concentration of a solution. It is abbreviated as ‘N’ and is sometimes referred to as the equivalent concentration of a solution. It is mainly used as a measure of reactive species in a solution and during titration reactions or particularly in situations involving acid-base chemistry.

How to Calculate Volume of Solution given Normality?

Volume of Solution given Normality calculator uses Volume of Solution = Number of Equivalents/Normality to calculate the Volume of Solution, The Volume of solution given normality formula is defined as the ratio of the number of equivalents of solute to the normality of the solution. Volume of Solution is denoted by V symbol.

How to calculate Volume of Solution given Normality using this online calculator? To use this online calculator for Volume of Solution given Normality, enter Number of Equivalents (nequiv.) & Normality (N) and hit the calculate button. Here is how the Volume of Solution given Normality calculation can be explained with given input values -> 1333.333 = 16/12000.

FAQ

What is Volume of Solution given Normality?
The Volume of solution given normality formula is defined as the ratio of the number of equivalents of solute to the normality of the solution and is represented as V = nequiv./N or Volume of Solution = Number of Equivalents/Normality. The Number of Equivalents is a number that defines how many electrons or ions may be transferred in a chemical reaction & Normality is the weight of solute dissolved in a liter of solution.
How to calculate Volume of Solution given Normality?
The Volume of solution given normality formula is defined as the ratio of the number of equivalents of solute to the normality of the solution is calculated using Volume of Solution = Number of Equivalents/Normality. To calculate Volume of Solution given Normality, you need Number of Equivalents (nequiv.) & Normality (N). With our tool, you need to enter the respective value for Number of Equivalents & Normality and hit the calculate button. You can also select the units (if any) for Input(s) and the Output as well.
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