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Scattering of elastic waves in geometrically anisotropic random media and its implication to sounding of heterogeneity in the Earth's deep interior
Tae Kyung Hong
, Ru Shan Wu
Department of Earth System Sciences
Institute of Earth·Atmosphere·Astronomy(BK21+)
Research output
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Contribution to journal
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Article
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peer-review
15
Citations (Scopus)
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Dive into the research topics of 'Scattering of elastic waves in geometrically anisotropic random media and its implication to sounding of heterogeneity in the Earth's deep interior'. Together they form a unique fingerprint.
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Earth and Planetary Sciences
Scattering
100%
Wave
87%
Heterogeneity
62%
Coda
62%
Medium
37%
Attenuation
25%
Forward Scattering
25%
Variation
25%
Incidence
25%
Earth
25%
Anisotropy
12%
Sounding
12%
Aspect Ratio
12%
Backscattering
12%
Energy Levels
12%
Directivity
12%
Seismic Data
12%
Investigation
12%
Approach
12%
Stable
12%
Prediction
12%
Estimate
12%
Implication
12%
Physics
Scattering
100%
Heterogeneity
62%
Media
37%
Attenuation
25%
Forward Scattering
25%
Variations
25%
Earth
25%
Anisotropy
12%
Aspect Ratio
12%
Energy Levels
12%
Directivity
12%
Estimates
12%
Approximation
12%
Engineering
Scattering
100%
Anisotropic
62%
Incidence Angle
25%
Scale Variation
25%
Elastic Wave
25%
Computer Simulation
12%
Aspect Ratio
12%
Energy Level
12%
Key Parameter
12%
Directivity
12%
Angle of Incidence
12%
Energy Engineering
12%
Prediction
12%