Theoretical Molecular Weight given Initial Vapour Density Solution

STEP 0: Pre-Calculation Summary
Formula Used
Molecular Weight Theoretical = Initial Vapour Density*2
mtheoretical = D*2
This formula uses 2 Variables
Variables Used
Molecular Weight Theoretical - (Measured in Kilogram) - Molecular Weight Theoretical is the mass of the substance during the chemical reaction which is the theoretical value obtained.
Initial Vapour Density - Initial Vapour Density is the density of a vapour substance during the initial stages of reaction.
STEP 1: Convert Input(s) to Base Unit
Initial Vapour Density: 250 --> No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
mtheoretical = D*2 --> 250*2
Evaluating ... ...
mtheoretical = 500
STEP 3: Convert Result to Output's Unit
500 Kilogram -->500000 Gram (Check conversion ​here)
FINAL ANSWER
500000 Gram <-- Molecular Weight Theoretical
(Calculation completed in 00.004 seconds)

Credits

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Created by Akshada Kulkarni
National Institute of Information Technology (NIIT), Neemrana
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Verified by Pragati Jaju
College Of Engineering (COEP), Pune
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24 Relation between Vapour Density and Degree of Dissociation Calculators

Initial Vapour Density using Concentration of Reaction
​ Go Initial Vapour Density = (Equilibrium Vapour Density*Initial Concentration*(1+Degree of Dissociation))/Initial Concentration
Total moles at equilibrium given number of moles of reaction
​ Go Total Moles at Equilibrium = Equilibrium Vapour Density*Volume of Solution*(1+Degree of Dissociation*(Number of Moles-1))
Volume of Equilibrium Mixture of Substances A and B
​ Go Volume at Equilibrium = (1+Degree of Dissociation*(Number of Moles Products at Equilibrium-1))*Volume of Solution
Total Moles at Equilibrium
​ Go Total Moles at Equilibrium = (Initial Vapour Density*Initial Number of Moles)/Equilibrium Vapour Density
Initial Vapour Density
​ Go Initial Vapour Density = (Total Moles at Equilibrium*Equilibrium Vapour Density)/Initial Number of Moles
Initial Total moles
​ Go Initial Number of Moles = (Total Moles at Equilibrium*Equilibrium Vapour Density)/Initial Vapour Density
Initial Total Moles using Total Moles at Equilibrium and Number of Moles of Reaction
​ Go Initial Number of Moles = Total Moles at Equilibrium*(1+Degree of Dissociation*(Number of Moles-1))
Total Moles at Equilibrium using Number of Moles and Initial Total Moles
​ Go Total Moles at Equilibrium = Initial Number of Moles/(1+Degree of Dissociation*(Number of Moles-1))
Initial Vapour Density using Vapour Density at Equilibrium and Number of Moles
​ Go Initial Vapour Density = Equilibrium Vapour Density*(1+Degree of Dissociation*(Number of Moles-1))
Initial Vapour Density when Number of Moles of Products at Equilibrium is Half
​ Go Initial Vapour Density = Equilibrium Vapour Density*(2-Degree of Dissociation)/2
Number of moles of products using degree of dissociation
​ Go Number of Moles = ((Number of Moles at Equilibrium-1)/Degree of Dissociation)+1
Total Moles at Equilibrium using Degree of Dissociation
​ Go Total Moles at Equilibrium = Initial Number of Moles*(1+Degree of Dissociation)
Initial Total Moles using Degree of Dissociation
​ Go Initial Number of Moles = Total Moles at Equilibrium/(1+Degree of Dissociation)
Initial Vapour Density given Degree of Dissociation
​ Go Initial Vapour Density = Equilibrium Vapour Density*(1+Degree of Dissociation)
Initial Vapour Density when Number of Moles is 2
​ Go Initial Vapour Density = Equilibrium Vapour Density*(Degree of Dissociation+1)
Number of Moles of Substance A and B at Equilibrium
​ Go Number of Moles at Equilibrium = 1+Degree of Dissociation*(Number of Moles-1)
Initial Vapour Density given Van't Hoff Factor
​ Go Initial Vapour Density = Van't Hoff Factor*Equilibrium Vapour Density
Van't Hoff Factor using Vapour Densities
​ Go Van't Hoff Factor = Initial Vapour Density/Equilibrium Vapour Density
Molecular Weight of Substance given Initial Vapour Density
​ Go Molecular Weight = Initial Vapour Density*Volume of Solution
Volume of Solution given Initial Vapour Density
​ Go Volume of Solution = Molecular Weight/Initial Vapour Density
Initial Vapour Density given Molecular Weight
​ Go Initial Vapour Density = Molecular Weight/Volume of Solution
Molecular Weight abnormal given Vapour Density at Equilibrium
​ Go Molecular Weight Abnormal = Equilibrium Vapour Density*2
Theoretical Molecular Weight given Initial Vapour Density
​ Go Molecular Weight Theoretical = Initial Vapour Density*2
Initial Vapour Density given Theoretical Molecular Weight
​ Go Initial Vapour Density = Molecular Weight Theoretical/2

Theoretical Molecular Weight given Initial Vapour Density Formula

Molecular Weight Theoretical = Initial Vapour Density*2
mtheoretical = D*2

What is Vapour density?

Vapour density is the weight of a volume of pure vapor or gas compared to an equal volume of dry air at the same temperature and pressure. It is obtained by dividing the molecular weight of the vapor by the average molecular weight of air thus, it is unitless. It is also defined as the fraction of moles dissociated out of 1 mole.

How to Calculate Theoretical Molecular Weight given Initial Vapour Density?

Theoretical Molecular Weight given Initial Vapour Density calculator uses Molecular Weight Theoretical = Initial Vapour Density*2 to calculate the Molecular Weight Theoretical, The Theoretical molecular weight given initial vapour density formula is defined as the theoretical value obtained of the mass of the substance during reaction. Molecular Weight Theoretical is denoted by mtheoretical symbol.

How to calculate Theoretical Molecular Weight given Initial Vapour Density using this online calculator? To use this online calculator for Theoretical Molecular Weight given Initial Vapour Density, enter Initial Vapour Density (D) and hit the calculate button. Here is how the Theoretical Molecular Weight given Initial Vapour Density calculation can be explained with given input values -> 5E+8 = 250*2.

FAQ

What is Theoretical Molecular Weight given Initial Vapour Density?
The Theoretical molecular weight given initial vapour density formula is defined as the theoretical value obtained of the mass of the substance during reaction and is represented as mtheoretical = D*2 or Molecular Weight Theoretical = Initial Vapour Density*2. Initial Vapour Density is the density of a vapour substance during the initial stages of reaction.
How to calculate Theoretical Molecular Weight given Initial Vapour Density?
The Theoretical molecular weight given initial vapour density formula is defined as the theoretical value obtained of the mass of the substance during reaction is calculated using Molecular Weight Theoretical = Initial Vapour Density*2. To calculate Theoretical Molecular Weight given Initial Vapour Density, you need Initial Vapour Density (D). With our tool, you need to enter the respective value for Initial Vapour Density 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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