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Mass Fraction of Crystalline Components is the fraction of total mass of that crystalline component from the total mass of specimen present in a polymer. Check FAQs
μc=AcAc+Aa
μc - Mass Fraction of Crystalline Components?Ac - Area Under Crystalline Peak?Aa - Area Under Amorphous Hump?

Mass Fraction of Crystalline Regions Example

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Here is how the Mass Fraction of Crystalline Regions equation looks like with Values.

Here is how the Mass Fraction of Crystalline Regions equation looks like with Units.

Here is how the Mass Fraction of Crystalline Regions equation looks like.

0.4375Edit=7Edit7Edit+9Edit
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Mass Fraction of Crystalline Regions Solution

Follow our step by step solution on how to calculate Mass Fraction of Crystalline Regions?

FIRST Step Consider the formula
μc=AcAc+Aa
Next Step Substitute values of Variables
μc=7W/m²*sr7W/m²*sr+9W/m²*sr
Next Step Prepare to Evaluate
μc=77+9
LAST Step Evaluate
μc=0.4375

Mass Fraction of Crystalline Regions Formula Elements

Variables
Mass Fraction of Crystalline Components
Mass Fraction of Crystalline Components is the fraction of total mass of that crystalline component from the total mass of specimen present in a polymer.
Symbol: μc
Measurement: NAUnit: Unitless
Note: Value should be greater than 0.
Area Under Crystalline Peak
Area Under Crystalline Peak is the area under the sharp peak produced by scattering from crystalline area in WAXS curve.
Symbol: Ac
Measurement: RadianceUnit: W/m²*sr
Note: Value should be greater than 0.
Area Under Amorphous Hump
Area Under Amorphous Hump is the area under the broad (hump) peak produced by scattering from amorphous (non-crystalline) area in WAXS curve.
Symbol: Aa
Measurement: RadianceUnit: W/m²*sr
Note: Value should be greater than 0.

Other Formulas to find Mass Fraction of Crystalline Components

​Go Mass Fraction of Crystalline Components
μc=mcm
​Go Mass Fraction of Crystalline Components given Density
μc=ρcvcρv
​Go Mass Fraction of Crystalline Components given Specific Volume
μc=v'a-v'v'a-v'c

Other formulas in Crystallinity in Polymers category

​Go Total Volume of Specimen
v=vc+va
​Go Total Mass of Specimen
m=mc+ma
​Go Volume Fraction of Crystalline Components
εc=vcv
​Go Volume Fraction of Crystalline Components given Density
εc=(ρ-ρaρc-ρa)

How to Evaluate Mass Fraction of Crystalline Regions?

Mass Fraction of Crystalline Regions evaluator uses Mass Fraction of Crystalline Components = Area Under Crystalline Peak/(Area Under Crystalline Peak+Area Under Amorphous Hump) to evaluate the Mass Fraction of Crystalline Components, The Mass Fraction of Crystalline Regions formula is a measure of mass fraction to determine the degree of crystallinity from the relative areas under the crystalline peaks and the amorphous hump. Mass Fraction of Crystalline Components is denoted by μc symbol.

How to evaluate Mass Fraction of Crystalline Regions using this online evaluator? To use this online evaluator for Mass Fraction of Crystalline Regions, enter Area Under Crystalline Peak (Ac) & Area Under Amorphous Hump (Aa) and hit the calculate button.

FAQs on Mass Fraction of Crystalline Regions

What is the formula to find Mass Fraction of Crystalline Regions?
The formula of Mass Fraction of Crystalline Regions is expressed as Mass Fraction of Crystalline Components = Area Under Crystalline Peak/(Area Under Crystalline Peak+Area Under Amorphous Hump). Here is an example- 0.4375 = 7/(7+9).
How to calculate Mass Fraction of Crystalline Regions?
With Area Under Crystalline Peak (Ac) & Area Under Amorphous Hump (Aa) we can find Mass Fraction of Crystalline Regions using the formula - Mass Fraction of Crystalline Components = Area Under Crystalline Peak/(Area Under Crystalline Peak+Area Under Amorphous Hump).
What are the other ways to Calculate Mass Fraction of Crystalline Components?
Here are the different ways to Calculate Mass Fraction of Crystalline Components-
  • Mass Fraction of Crystalline Components=Total Mass of Crystalline Components/Total Mass of SpecimenOpenImg
  • Mass Fraction of Crystalline Components=(Density of Crystalline Component*Total Volume of Crystalline Components)/(Density of Specimen*Total Volume of Specimen)OpenImg
  • Mass Fraction of Crystalline Components=(Specific Volume of Amorphous Component-Specific Volume of Specimen)/(Specific Volume of Amorphous Component-Specific Volume of Crystalline Component)OpenImg
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