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Nonlinear model reduction of chemical reaction systems
Nishith Vora
,
Prodromos Daoutidis
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Conference article
›
peer-review
5
Scopus citations
Overview
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Dive into the research topics of 'Nonlinear model reduction of chemical reaction systems'. Together they form a unique fingerprint.
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Keyphrases
Slow Dynamics
100%
Chemical Reaction Systems
100%
Nonlinear Model Order Reduction
100%
Order Reduction
50%
Dynamic Model
50%
Stiffness
50%
State-space Realization
50%
Algebraic Constraints
50%
Reversible Reaction
50%
Slow Time
50%
Equilibrium Constraints
50%
Spatially Homogeneous
50%
Nonlinear Model
50%
Non-isothermal
50%
Time-scale multiplicity
50%
Reaction Equilibrium
50%
Differential-algebraic Systems
50%
Singularly Perturbed
50%
Homogeneous Reaction Systems
50%
Engineering
Nonlinear Model
100%
Model Reduction
100%
Chemical Reaction System
100%
Isothermal
50%
Broader Class
50%
Slow Time Scale
50%
State Space Realization
50%
Reversible Reaction
50%
Dynamic Models
50%
Multiplicity
50%
Equilibrium Reaction
50%
Rigidity
50%
Mathematics
Reaction System
100%
Nonlinear Model
100%
Equilibrium Constraint
50%
Algebraic System
50%
Dynamic Models
50%
Reversible Reaction
50%
Multiplicity
50%