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A thermodynamic framework for the study of crystallization in polymers
I. Rao
, K. R. Rajagopal
Mechanical and Industrial Engr
Research output
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Contribution to journal
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Article
›
peer-review
102
Scopus citations
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Dive into the research topics of 'A thermodynamic framework for the study of crystallization in polymers'. Together they form a unique fingerprint.
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Mathematics
Anisotropy
42%
Biaxial
26%
Configuration
29%
Constitutive Model
25%
Context
11%
Continuum Mechanics
22%
Crystallization
100%
Dissipation
36%
Distinct
13%
Energy
12%
Entropy
15%
Experimental Results
18%
Fluid
14%
Form
7%
Framework
42%
Internal
15%
Model
24%
Polymers
76%
Predict
17%
Prediction
15%
Symmetry
12%
Thermodynamics
78%
Engineering & Materials Science
Anisotropy
38%
Constitutive models
18%
Continuum mechanics
24%
Crystalline materials
39%
Crystallization
81%
Entropy
15%
Fluids
11%
Polymer films
24%
Polymers
54%
Thermodynamics
64%
Physics & Astronomy
anisotropy
19%
configurations
16%
continuum mechanics
18%
crystallization
57%
dissipation
24%
entropy
10%
fluids
8%
internal energy
15%
marking
15%
polymers
43%
predictions
8%
symmetry
8%
thermodynamics
50%