Total Volume of Polymer Sample Solution

STEP 0: Pre-Calculation Summary
Formula Used
Total Volume of Polymer Sample = Volume Occupied by Polymer Molecules+Free Volume
Vtot = Vocc+Vf
This formula uses 3 Variables
Variables Used
Total Volume of Polymer Sample - (Measured in Cubic Meter) - The Total Volume of Polymer Sample is defined as the sum of the volume occupied by the polymer molecules and the free volume (empty spaces) in the system.
Volume Occupied by Polymer Molecules - (Measured in Cubic Meter) - Volume Occupied by Polymer Molecules is defined as the space inherently occupied by the polymer molecules present in the system.
Free Volume - (Measured in Cubic Meter) - The Free Volume is an inherent property of the polymer matrix that arises from the free spaces between entangled polymer chains.
STEP 1: Convert Input(s) to Base Unit
Volume Occupied by Polymer Molecules: 3 Cubic Meter --> 3 Cubic Meter No Conversion Required
Free Volume: 2 Cubic Meter --> 2 Cubic Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Vtot = Vocc+Vf --> 3+2
Evaluating ... ...
Vtot = 5
STEP 3: Convert Result to Output's Unit
5 Cubic Meter --> No Conversion Required
FINAL ANSWER
5 Cubic Meter <-- Total Volume of Polymer Sample
(Calculation completed in 00.004 seconds)

Credits

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Created by Prerana Bakli
University of Hawaiʻi at Mānoa (UH Manoa), Hawaii, USA
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Verified by Soupayan banerjee
National University of Judicial Science (NUJS), Kolkata
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14 Step-wise Polymerization Calculators

Orientation Time of Polymer
​ Go Orientation Time = Pre-Exponential Factor*(exp(Activation Energy/([R]*Temperature)))
Flory-Huggins Interaction Parameter
​ Go Flory-Huggins Interaction Parameter = (Lattice Coordination Number*Change in Enthalpy)/([R]*Temperature)
Weight Average Degree Polymerization
​ Go Weight Average Degree Polymerization = Weight-Average Molecular Weight/Weight Average Molecular Weight in Crosslink Site
Sample Area given Resistivity
​ Go Sample Area = Specific Resistance*(Thickness of Sample/Resistance)
Specific Resistance of Pellet
​ Go Specific Resistance = Resistance*(Pellet Area/Pellet Thickness)
Solubility Parameter given Heat of Vaporization for Nonpolar Solvents
​ Go Solubility Parameter = sqrt(Heat of Vaporization/Volume)
Melting Temperature of Polymer
​ Go Melting Temperature of Polymer = Enthalpy Change in Melting/Entropy Change in Melting
Enthalpy Change in Melting
​ Go Enthalpy Change in Melting = Entropy Change in Melting*Melting Temperature of Polymer
Entropy Change in Melting
​ Go Entropy Change in Melting = Enthalpy Change in Melting/Melting Temperature of Polymer
Total Volume of Polymer Sample
​ Go Total Volume of Polymer Sample = Volume Occupied by Polymer Molecules+Free Volume
Free Volume in Polymer System
​ Go Free Volume = Total Volume of Polymer Sample-Volume Occupied by Polymer Molecules
Volume Occupied by Polymer
​ Go Volume Occupied by Polymer Molecules = Total Volume of Polymer Sample-Free Volume
Heat of vaporization given Solubility Parameter
​ Go Heat of Vaporization = (Solubility Parameter)^2*Volume
Volume given Solubility Parameter
​ Go Volume = Heat of Vaporization/(Solubility Parameter)^2

Total Volume of Polymer Sample Formula

Total Volume of Polymer Sample = Volume Occupied by Polymer Molecules+Free Volume
Vtot = Vocc+Vf

What is the Effect of Free Volume in Polymer?

Free volume in a polymer can be defined as the volume of the total mass, that is not occupied by polymer chains themselves and hence diffusing molecules can be situated there. It can generally be said to be the gap or pores occupied between the chains of polymers. The direct examination of the pore in the membrane is impossible because the gaps occur at a molecular scale. It is an intrinsic, transient, and dynamic property. The polymer's physical state and density greatly influence the membrane's free volume properties. The reduction of excess free volume in the membrane can be referred to as physical aging, which originates from the lattice contraction and diffusion of the free volume from the membrane interior to the surface.

How to Calculate Total Volume of Polymer Sample?

Total Volume of Polymer Sample calculator uses Total Volume of Polymer Sample = Volume Occupied by Polymer Molecules+Free Volume to calculate the Total Volume of Polymer Sample, The Total Volume of Polymer Sample formula is defined as the sum of the volume occupied by the polymer molecules and the free volume (empty spaces) in the system. Total Volume of Polymer Sample is denoted by Vtot symbol.

How to calculate Total Volume of Polymer Sample using this online calculator? To use this online calculator for Total Volume of Polymer Sample, enter Volume Occupied by Polymer Molecules (Vocc) & Free Volume (Vf) and hit the calculate button. Here is how the Total Volume of Polymer Sample calculation can be explained with given input values -> 5 = 3+2.

FAQ

What is Total Volume of Polymer Sample?
The Total Volume of Polymer Sample formula is defined as the sum of the volume occupied by the polymer molecules and the free volume (empty spaces) in the system and is represented as Vtot = Vocc+Vf or Total Volume of Polymer Sample = Volume Occupied by Polymer Molecules+Free Volume. Volume Occupied by Polymer Molecules is defined as the space inherently occupied by the polymer molecules present in the system & The Free Volume is an inherent property of the polymer matrix that arises from the free spaces between entangled polymer chains.
How to calculate Total Volume of Polymer Sample?
The Total Volume of Polymer Sample formula is defined as the sum of the volume occupied by the polymer molecules and the free volume (empty spaces) in the system is calculated using Total Volume of Polymer Sample = Volume Occupied by Polymer Molecules+Free Volume. To calculate Total Volume of Polymer Sample, you need Volume Occupied by Polymer Molecules (Vocc) & Free Volume (Vf). With our tool, you need to enter the respective value for Volume Occupied by Polymer Molecules & Free Volume 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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