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Frequency dependence of elastic anomalies in charge-density-wave conductors
X. D. Xiang,
J. W. Brill
Physics And Astronomy
Research output
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Contribution to journal
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Article
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peer-review
29
Scopus citations
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Dive into the research topics of 'Frequency dependence of elastic anomalies in charge-density-wave conductors'. Together they form a unique fingerprint.
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Physics
Frequency Dependence
100%
Resonator
50%
Young's Modulus
50%
Model
50%
Harmonics
50%
Elasticity
50%
Internal Friction
50%
Electric Field
50%
Temperature
50%
Engineering
Charge Density
100%
Frequency Dependence
100%
Young's Modulus
33%
Internal Friction
33%
Resonator
33%
Model
33%
Temperature
33%
Electric Field
33%
Measurement
33%
Harmonics
33%
Earth and Planetary Sciences
Wave
100%
Frequency Dependence
100%
Model
33%
State
33%
Young
33%
Harmonics
33%
Internal Friction
33%
Elasticity
33%
Resonator
33%
Electric Field
33%
Material Science
Density
100%
Conductor
100%
Detector
33%
Temperature
33%
Internal Friction
33%
Young's Modulus
33%
Resonator
33%
Elasticity
33%