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Geomorphology / Environmental soil science / Fluid mechanics / Physical geography / Sediment transport / Sediment / Particle-size distribution / Ambient Vibrations / Bed load / Geology / Sedimentology / Earth


GEOPHYSICAL RESEARCH LETTERS, VOL. 39, L02404, doi:[removed]2011GL050255, 2012 A physical model for seismic noise generation from sediment transport in rivers Victor C. Tsai,1,2 Brent Minchew,1,2 Michael P. Lamb,2 and Je
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Document Date: 2012-02-01 21:02:28


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City

TSAI ET / Cambridge / Betrawati / Pasadena / Reno / New York / Sausalito / /

Company

Lg / Brodsky / Seismological Laboratory / Z PvT / /

Country

Taiwan / Nepal / United States / /

Currency

pence / /

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Event

Natural Disaster / /

Facility

station H0460 / California Institute of Technology / /

IndustryTerm

typical generic rock site / higher frequency seismic energy / potential solution / seismic energy / diverse applications / /

NaturalFeature

Alps / Marsyandi River / Himalayan / Trisuli River / /

Organization

California Institute of Technology / American Geophysical Union / Division of Geological and Planetary Sciences / National Science Foundation / PSD (Pv) / /

Person

Jean-Paul Ampuero / Fernandez Luque / Victor C. Tsai / Corey Shape / Leonard Sklar / Brent Minchew / Michael P. Lamb / D. As / Ub Hb / Joel Johnson / /

Position

Hb / Vp / Editor / representative / model of Lamb / /

Product

Nikon D50 Digital Camera / /

ProvinceOrState

South Dakota / New Jersey / Nevada / California / New York / /

PublishedMedium

GEOPHYSICAL RESEARCH LETTERS / /

Region

eastern North America / central Nepal / /

Technology

frequency modulation / HTML / /

SocialTag