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Calculators Created by Pavan Kumar
Pavan Kumar
Anurag Group of Institutions
(AGI)
,
Hyderabad
https://www.linkedin.com/in/v-r-s-c-pavan-kumar-madduri-607909224
61
Formulas Created
0
Formulas Verified
7
Across Categories
List of Calculators by Pavan Kumar
Following is a combined list of all the calculators that have been created and verified by Pavan Kumar. Pavan Kumar has created 61 and verified 0 calculators across 7 different categories till date.
Basics of Non Ideal Flow
(10)
Created
Area under C-pulse curve
Go
Created
Exit Age Distribution based on Mean Residence Time
Go
Created
Exit Age Distribution Curve from C Pulse Curve
Go
Created
F Curve
Go
Created
Initial Cocentration of Reactant in Plug Flow Reactant with Negligible Density Changes
Go
Created
Mean of C pulse Curve
Go
Created
Rate Constant for Plug Flow Reactor using Space Time for Negligible Density Changes
Go
Created
Space Time for Plug Flow Reactor with Negligible Density Changes
Go
Created
Volume of Reactor based on Exit Age Distribution
Go
Created
Volumetric Flow Rate based on Mean Pulse Curve
Go
Convection Model for Laminar Flow
(8)
Created
Bodenstein Number
Go
Created
Dispersion using General Axis Expression
Go
Created
Dispersion using Taylor Expression Formula
Go
Created
F Curve for Laminar Flow in Pipes for Improper RTD
Go
Created
F Curve for Laminar Flow in Pipes for Proper RTD
Go
Created
Mean Residence Time for Improper RTD
Go
Created
Mean Residence Time for Proper RTD
Go
Created
Reactant Concentration for Chemical Conversions for Zero Order in Laminar Flow Reactors
Go
1 More Convection Model for Laminar Flow Calculators
Go
Dispersion Model
(4)
Created
Concentration using Dispersion where Dispersion Number less than 0.01
Go
Created
Exit Age Distribution based on Dispersion Number
Go
Created
Variance of Spread of Tracer for Small Extents of Dispersion
Go
Created
Velocity of Pulse based on Variance of Spread of Tracer
Go
5 More Dispersion Model Calculators
Go
Earliness of Mixing,Segregation,RTD
(6)
Created
Initial Reactant Concentration of Macrofluid in Mixed Flow Reactor at First Order
Go
Created
Initial Reactant Concentration of Microfluid treated in Mixed Flow Reactor
Go
Created
Life of Element in Fluid
Go
Created
Reactant Concentration of Macrofluid in Mixed Flow Reactor at First Order
Go
Created
Reactant Concentration of Macrofluid in Mixed Flow Reactor at Zero Order
Go
Created
Reactant Concentration of Microfluid treated in Mixed Flow Reactor
Go
3 More Earliness of Mixing,Segregation,RTD Calculators
Go
Solid Catalyzed Reactions
(5)
Created
Mass Transfer Coefficient of Fluid passing through Packed Bed of Particles
Go
Created
Mass Transfer Coefficient of Fluid passing through Single Particle
Go
Created
Rate Constant for Mixed Flow Reactor with Volume of Catalyst
Go
Created
Space Time of Mixed Flow Reactor with Volume of Catalyst
Go
Created
Space Time of Mixed Flow Reactor with Weight of Catalyst
Go
3 More Solid Catalyzed Reactions Calculators
Go
Temperature and Pressure Effects
(7)
Created
Adiabatic Heat of Equilibrium Conversion
Go
Created
Equilibrium Conversion of Reaction at Final Temperature
Go
Created
Final Temperature for Equilibrium Conversion
Go
Created
Heat of Reaction at Equilibrium Conversion
Go
Created
Non Adiabiatic Heat of Equilibrium Conversion
Go
Created
Reactant Conversion at Adiabatic Conditions
Go
Created
Reactant Conversion at Non Adiabiatic Conditions
Go
2 More Temperature and Pressure Effects Calculators
Go
Zero order followed by First order Reaction
(9)
Created
Initial Concentration of Reactant in Zero Order Reaction followed by First Order Reaction
Go
Created
Initial Reactant Concentration by Intermediate Conc. for Zero Order followed by First Order Rxn
Go
Created
Initial Reactant Concentration using Intermediate Conc. for Zero Order followed by First Order Rxn
Go
Created
Intermediate Concentration for Zero Order followed by First Order with Greater Rxn Time
Go
Created
Intermediate Concentration for Zero Order followed by First Order with Less Rxn Time
Go
Created
Maximum Intermediate Concentration in Zero Order followed by First Order
Go
Created
Rate Constant of Zero Order Reaction in Zero Order Reaction followed by First Order Reaction
Go
Created
Reactant Concentration of Zero Order Reaction followed by First Order Reaction
Go
Created
Time at Max Intermediate in Zero Order followed by First Order Reaction
Go
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