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Degradation of Polymer Solutions in Extensional Flows
Jeffrey A. Odell
, Alejandro J. Muller
,
Kwabena A. Narh
, Andrew Keller
Research output
:
Contribution to journal
›
Article
›
peer-review
121
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Scopus citations
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Keyphrases
Polymer Solution
100%
Extensional Flow
100%
Polymer Degradation
100%
Scission
100%
Elongational Flow
33%
Room Temperature
16%
Macromolecules
16%
Flow Instability
16%
Polymer Dynamics
16%
Flow Effect
16%
Prediction Method
16%
Flow Method
16%
Molecular Weight Distribution
16%
Monodisperse
16%
Elevated Temperature
16%
Dilute Solution
16%
Common Belief
16%
Thermally Activated Processes
16%
Flow Temperature
16%
Strain Rate Dependence
16%
Thermal Degradation
16%
Chain Scission
16%
Flow Turbulence
16%
Decreasing Function
16%
Atactic Polystyrene
16%
Real Flow
16%
Laminar Shear Flow
16%
Opposing Jet
16%
Idealized Experiment
16%
Instance Flow
16%
Jet Apparatus
16%
Critical Strain
16%
Flow Situations
16%
C Degradation
16%
Physics
Strain Rate
100%
Room Temperature
50%
Shear Flow
50%
Macromolecule
50%
Molecular Weight
50%
Thermal Degradation
50%
Polystyrene
50%
Elevated Temperature
50%
Earth and Planetary Sciences
Strain Rate
100%
Room Temperature
50%
Shear Flow
50%
Molecular Weight
50%
Polystyrene
50%
Pyrolysis
50%
Chemical Engineering
Gel Permeation Chromatography
100%
Polystyrene
100%
Macromolecule
100%
Pharmacology, Toxicology and Pharmaceutical Science
Styrofoam
100%