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Optimization of thin film growth using multiscale process systems
Amit Varshney
, Antonios Armaou
Chemical Engineering
Institute for Computational and Data Sciences (ICDS)
Research output
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Contribution to journal
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Conference article
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peer-review
1
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Dive into the research topics of 'Optimization of thin film growth using multiscale process systems'. Together they form a unique fingerprint.
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Keyphrases
Thin Film Growth
100%
Optimization Problem
100%
Process Systems
100%
Temperature Profile
50%
Film Surface
50%
Surface Temperature
50%
Surface Roughness
50%
Microscopic Simulators
50%
Cost Function
50%
Computational Requirements
50%
Partial Differential Equation Systems
50%
Order Reduction
50%
Deposition Rate
50%
Search Algorithm
50%
Conservation Laws
50%
Optimal Surfaces
50%
Thin Film Deposition Techniques
50%
Microscopic Scale
50%
Transport-reaction Processes
50%
Dissipative Partial Differential Equations
50%
Tabulation Method
50%
Equality Constraints
50%
Process Description
50%
Engineering
Multiscale
100%
Process System
100%
Optimisation Problem
100%
Thin Film Growth
100%
Microscale
50%
Film Surface
50%
Length Scale
50%
Cost Function
50%
Equality Constraint
50%
Deposition Process
50%
Search Algorithm
50%
Deposition Rate
50%
Macroscale
50%
Microscopic Scale
50%
Partial Differential Equation
50%
Equation System
50%
Conservation Law
50%
Temperature Profile
50%
Thin film deposition
50%
Computer Science
Optimization Problem
100%
Process Model
50%
Searching Algorithm
50%
Equality Constraint
50%
Process Description
50%
Equation System
50%
Partial Differential Equation
50%
Conservation Law
50%
Chemical Engineering
Film
100%
Deposition Rate
33%