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Fluctuation-driven morphological patterning: An unconventional approach to morphogenesis
Oded Agam
, Erez Braun
Racah Institute of Physics
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Engineering
Coupling Strength
100%
Effective Temperature
100%
Driving Force
50%
Dimensional Space
50%
Two Dimensional
50%
One Dimensional
50%
Simple Model
50%
Experimental Investigation
50%
Closed Contour
50%
Scalar Field
50%
Spatial Variation
50%
Order Phase Transition
50%
Temperature Parameter
50%
Deterministic Dynamic
50%
Metastable State
50%
Keyphrases
Circular State
100%
Temperature Parameter
50%
Spherical Configurations
50%
Unconventional Function
50%
Biochemistry, Genetics and Molecular Biology
Morphology
100%
Morphogenesis
100%
Dynamics
50%
Chemistry
formation
100%
Potential Barrier
50%