Rate of Polycondensation Solution

STEP 0: Pre-Calculation Summary
Formula Used
Rate of Polycondensation = Rate Constant*(Diacid Concentration)^2*Diol Concentration
Rp = k*(A)^2*D
This formula uses 4 Variables
Variables Used
Rate of Polycondensation - Rate of Polycondensation is rate of the reaction proceeds between monomers containing two or more reactive functional groups (e.g., hydroxyl, carboxyl and amino) condensing with each other.
Rate Constant - (Measured in 1 Per Second) - Rate Constant or Reaction Rate Coefficient 'k' quantifies the rate and direction of a chemical reaction. It has different units for different orders of chemical reactions.
Diacid Concentration - (Measured in Mole per Cubic Meter) - Diacid Concentration is a measure of the amount of diacid that has been dissolved in a given solution.
Diol Concentration - (Measured in Mole per Cubic Meter) - Diol Concentration is a measure of the amount of diol that has been dissolved in a given solution.
STEP 1: Convert Input(s) to Base Unit
Rate Constant: 0.1 1 Per Second --> 0.1 1 Per Second No Conversion Required
Diacid Concentration: 7 Mole per Cubic Meter --> 7 Mole per Cubic Meter No Conversion Required
Diol Concentration: 6 Mole per Cubic Meter --> 6 Mole per Cubic Meter No Conversion Required
STEP 2: Evaluate Formula
Substituting Input Values in Formula
Rp = k*(A)^2*D --> 0.1*(7)^2*6
Evaluating ... ...
Rp = 29.4
STEP 3: Convert Result to Output's Unit
29.4 --> No Conversion Required
FINAL ANSWER
29.4 <-- Rate of Polycondensation
(Calculation completed in 00.004 seconds)

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Amity Institute Of Applied Sciences (AIAS, Amity University), Noida, India
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15 Polymers Calculators

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​ Go Sedimentation Coefficient = Mass of Particle/(6*pi*Dynamic Viscosity*Radius of Spherical Particle)
Sedimentation Coefficient given Radius of Particle
​ Go Sedimentation Coefficient = Sedimentation Speed/((Radius of Spherical Particle)*(Angular Velocity)^2)
Viscosity Number
​ Go Viscosity Number = (Flow Time of Polymer Solution/(Flow Time of Solvent-1))/Polymer Concentration
Average Functionality Factor
​ Go Average Functional Factor = (Mole of each Reactant*Functionality)/Total Number of Moles
Rate of Polycondensation
​ Go Rate of Polycondensation = Rate Constant*(Diacid Concentration)^2*Diol Concentration
Number-Average Molecular Weight
​ Go Number-Average Molecular Weight = Molecular Weight of Repeating Unit/(1-Probability of Finding Repeating Unit AB)
Weight-Average Molecular Weight in General Step Reaction Polymerization
​ Go Weight-Average Molecular Weight = Number-Average Molecular Weight*(1+Probability of Finding Repeating Unit AB)
Number-Average Degree of Polymerization
​ Go Number-Average Degree of Polymerization = Number of Original Molecules/Number of Molecules at Specific Time
Activation Energy for Propagation
​ Go Activation Energy for Propagation = Heat of Polymerization+Activation Energy for Depolymerization
Compressive Strength of Material
​ Go Compressive Strength of Material = Force Applied on Material/Cross Sectional Area of Polymer
Polydispersity Index for Step-Reaction Polymers
​ Go Polydispersity Index = Weight-Average Molecular Weight/Number-Average Molecular Weight
Tensile Strength given Cross-Sectional Area
​ Go Tensile Strength = Force Applied on Material/Cross Sectional Area of Polymer
Sedimentation Coefficient of Particle
​ Go Sedimentation Coefficient = Sedimentation Speed/Applied Acceleration
Contour Length of Macromolecule
​ Go Contour Length = Number of Monomers*Length of Monomer Unit
Deborah Number
​ Go Deborah Number = Time of Relaxation/Observation Time

11 Important Formulas of Polymers Calculators

Viscosity Number
​ Go Viscosity Number = (Flow Time of Polymer Solution/(Flow Time of Solvent-1))/Polymer Concentration
Average Functionality Factor
​ Go Average Functional Factor = (Mole of each Reactant*Functionality)/Total Number of Moles
Rate of Polycondensation
​ Go Rate of Polycondensation = Rate Constant*(Diacid Concentration)^2*Diol Concentration
Number-Average Molecular Weight
​ Go Number-Average Molecular Weight = Molecular Weight of Repeating Unit/(1-Probability of Finding Repeating Unit AB)
Weight-Average Molecular Weight in General Step Reaction Polymerization
​ Go Weight-Average Molecular Weight = Number-Average Molecular Weight*(1+Probability of Finding Repeating Unit AB)
Number-Average Degree of Polymerization
​ Go Number-Average Degree of Polymerization = Number of Original Molecules/Number of Molecules at Specific Time
Compressive Strength of Material
​ Go Compressive Strength of Material = Force Applied on Material/Cross Sectional Area of Polymer
Polydispersity Index for Step-Reaction Polymers
​ Go Polydispersity Index = Weight-Average Molecular Weight/Number-Average Molecular Weight
Tensile Strength given Cross-Sectional Area
​ Go Tensile Strength = Force Applied on Material/Cross Sectional Area of Polymer
Sedimentation Coefficient of Particle
​ Go Sedimentation Coefficient = Sedimentation Speed/Applied Acceleration
Contour Length of Macromolecule
​ Go Contour Length = Number of Monomers*Length of Monomer Unit

Rate of Polycondensation Formula

Rate of Polycondensation = Rate Constant*(Diacid Concentration)^2*Diol Concentration
Rp = k*(A)^2*D

What do you mean by Chemical Kinetics?

Chemical kinetics, the branch of physical chemistry that is concerned with understanding the rates of chemical reactions. It is to be contrasted with thermodynamics, which deals with the direction in which a process occurs but in itself tells nothing about its rate.

How to Calculate Rate of Polycondensation?

Rate of Polycondensation calculator uses Rate of Polycondensation = Rate Constant*(Diacid Concentration)^2*Diol Concentration to calculate the Rate of Polycondensation, The Rate of Polycondensation formula is defined as the rate at which the reaction proceeds between monomers containing two or more reactive functional groups (e.g., hydroxyl, carboxyl, and amino) condensing with each other. Rate of Polycondensation is denoted by Rp symbol.

How to calculate Rate of Polycondensation using this online calculator? To use this online calculator for Rate of Polycondensation, enter Rate Constant (k), Diacid Concentration (A) & Diol Concentration (D) and hit the calculate button. Here is how the Rate of Polycondensation calculation can be explained with given input values -> 29.4 = 0.1*(7)^2*6.

FAQ

What is Rate of Polycondensation?
The Rate of Polycondensation formula is defined as the rate at which the reaction proceeds between monomers containing two or more reactive functional groups (e.g., hydroxyl, carboxyl, and amino) condensing with each other and is represented as Rp = k*(A)^2*D or Rate of Polycondensation = Rate Constant*(Diacid Concentration)^2*Diol Concentration. Rate Constant or Reaction Rate Coefficient 'k' quantifies the rate and direction of a chemical reaction. It has different units for different orders of chemical reactions, Diacid Concentration is a measure of the amount of diacid that has been dissolved in a given solution & Diol Concentration is a measure of the amount of diol that has been dissolved in a given solution.
How to calculate Rate of Polycondensation?
The Rate of Polycondensation formula is defined as the rate at which the reaction proceeds between monomers containing two or more reactive functional groups (e.g., hydroxyl, carboxyl, and amino) condensing with each other is calculated using Rate of Polycondensation = Rate Constant*(Diacid Concentration)^2*Diol Concentration. To calculate Rate of Polycondensation, you need Rate Constant (k), Diacid Concentration (A) & Diol Concentration (D). With our tool, you need to enter the respective value for Rate Constant, Diacid Concentration & Diol Concentration 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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