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Mass Density of Crystal Surface is a measure of the amount of mass or charge per unit area of the crystal's surface. Check FAQs
m=kr(Ci-Cx)r
m - Mass Density of Crystal Surface?kr - Reaction Rate Constant?Ci - Interfacial Concentration?Cx - Equilibrium Saturation Value?r - Order of Integration Reaction?

Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction Example

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Here is how the Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction equation looks like with Values.

Here is how the Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction equation looks like with Units.

Here is how the Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction equation looks like.

0.364Edit=227.5Edit(0.69Edit-0.65Edit)2Edit
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Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction Solution

Follow our step by step solution on how to calculate Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction?

FIRST Step Consider the formula
m=kr(Ci-Cx)r
Next Step Substitute values of Variables
m=227.5mol/m³*s(0.69mol/m³-0.65mol/m³)2
Next Step Prepare to Evaluate
m=227.5(0.69-0.65)2
Next Step Evaluate
m=0.363999999999999kg/s/m²
LAST Step Rounding Answer
m=0.364kg/s/m²

Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction Formula Elements

Variables
Mass Density of Crystal Surface
Mass Density of Crystal Surface is a measure of the amount of mass or charge per unit area of the crystal's surface.
Symbol: m
Measurement: Mass FluxUnit: kg/s/m²
Note: Value should be greater than 0.
Reaction Rate Constant
The reaction rate constant represents the speed or rate at which a solute transforms from a liquid or solution phase into a solid crystalline phase.
Symbol: kr
Measurement: Reaction RateUnit: mol/m³*s
Note: Value should be greater than 0.
Interfacial Concentration
Interfacial Concentration refers to the concentration of solute molecules or ions at the interface between the liquid phase (solution) and the solid phase (crystal).
Symbol: Ci
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Equilibrium Saturation Value
Equilibrium Saturation Value refers to the maximum concentration of solute in a solvent that can be maintained in a stable solution at a specific temperature and pressure.
Symbol: Cx
Measurement: Molar ConcentrationUnit: mol/m³
Note: Value should be greater than 0.
Order of Integration Reaction
Order of Integration Reaction describes how the rate of a chemical reaction depends on the concentration of reactants.
Symbol: r
Measurement: NAUnit: Unitless
Note: Value can be positive or negative.

Other Formulas to find Mass Density of Crystal Surface

​Go Mass Flux Density given Mass Transfer Coefficient and Concentration Gradient
m=kd(c-ci)

Other formulas in Crystallization category

​Go Degree of Supersaturation given Solution Concentration and Equilibrium Saturation Value
ΔC=C-Cx
​Go Supersaturation Ratio given Solution Concentration and Equilibrium Saturation Value
S=CCx
​Go Relative Supersaturation given Degree of Saturation and Equilibrium Saturation Value
φ=ΔCCx
​Go Relative Supersaturation for given Supersaturation Ratio
φ=S-1

How to Evaluate Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction?

Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction evaluator uses Mass Density of Crystal Surface = Reaction Rate Constant*(Interfacial Concentration-Equilibrium Saturation Value)^Order of Integration Reaction to evaluate the Mass Density of Crystal Surface, The Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction formula is defined as the distribution of mass per unit area on the surface of the crystal for a known Interfacial Concentration of Solution and the corresponding solid Phase(crystal). Mass Density of Crystal Surface is denoted by m symbol.

How to evaluate Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction using this online evaluator? To use this online evaluator for Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction, enter Reaction Rate Constant (kr), Interfacial Concentration (Ci), Equilibrium Saturation Value (Cx) & Order of Integration Reaction (r) and hit the calculate button.

FAQs on Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction

What is the formula to find Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction?
The formula of Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction is expressed as Mass Density of Crystal Surface = Reaction Rate Constant*(Interfacial Concentration-Equilibrium Saturation Value)^Order of Integration Reaction. Here is an example- 0.001597 = 227.5*(0.69-0.65)^2.
How to calculate Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction?
With Reaction Rate Constant (kr), Interfacial Concentration (Ci), Equilibrium Saturation Value (Cx) & Order of Integration Reaction (r) we can find Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction using the formula - Mass Density of Crystal Surface = Reaction Rate Constant*(Interfacial Concentration-Equilibrium Saturation Value)^Order of Integration Reaction.
What are the other ways to Calculate Mass Density of Crystal Surface?
Here are the different ways to Calculate Mass Density of Crystal Surface-
  • Mass Density of Crystal Surface=Mass Transfer Coefficient*(Bulk Solution Concentration-Interface Concentration)OpenImg
Can the Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction be negative?
No, the Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction, measured in Mass Flux cannot be negative.
Which unit is used to measure Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction?
Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction is usually measured using the Kilogram per Second per Square Meter[kg/s/m²] for Mass Flux. Kilogram per Hour per Square Meter[kg/s/m²], Kilogram per Hour per Square Foot[kg/s/m²], Pound per Hour per Square Foot[kg/s/m²] are the few other units in which Mass Flux Density given Reaction Rate Constant and Order of Integration Reaction can be measured.
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