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On the relaxation between Debye and nonexponential relaxation in supercooled monohydric alcohols and water: A solution study
M. A. Floriano, C. A. Angell
Molecular Sciences, School of (SMS)
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Article
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peer-review
105
Scopus citations
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Dive into the research topics of 'On the relaxation between Debye and nonexponential relaxation in supercooled monohydric alcohols and water: A solution study'. Together they form a unique fingerprint.
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Medicine & Life Sciences
Alcohols
60%
Water
54%
Cluster Analysis
48%
1-Propanol
41%
Data Analysis
40%
Mechanical Phenomena
40%
Hydrogen Bonding
32%
Hydrogen
31%
Salts
23%
Datasets
21%
Kinetics
19%
Temperature
19%
Chemical Compounds
Dielectric Relaxation
100%
Mechanical Relaxation
49%
Alcohol
48%
Dielectric Relaxation Time
25%
Dielectric Response
23%
Molecular Cluster
21%
Dielectric Loss
18%
Time
17%
Hydrogen
16%
Dielectric Material
14%
Solute
13%
Conductivity
10%
Liquid
8%
Physics & Astronomy
alcohols
84%
water
45%
formalism
25%
relaxation time
21%
magnetic permeability
19%
molecular clusters
11%
hydrogen
11%
dielectric loss
8%
solutes
8%
salts
8%
anomalies
7%
conductivity
5%
temperature dependence
5%
kinetics
5%
liquids
4%
interactions
3%