Engineering topics
Argus, D.
Publications and source records attributed to Argus, D..
Applying Geodesy to Geoscience 1
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Integration of GPS geocenter and scale estimates
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Comparison of ITRF2000 with a GPS defined reference frame
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A Geodetic Observation of Postglacial Rebound: Constraints on Mantle Viscosity
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Modern Uplift of the Transantarctic Mountains: Results of an Autonomous GPS Array
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Geodetic Observation of Postglacial Rebound: Constraints on Mantle Viscosity
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JPL Solution for the Co- and Immediate Post-Seismic Displacements of SCIGN Stations in the 1999 Hector Mine Earthquake
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Glacial Isostatic Adjustment Observed with VLBI and SLR
In global geodetic solutions vertical rates of site motion are usually estimated relative to the geocenter (center of figure) of the solid earth. The velocity of the geocenter is estimated assuming that the plates are rigid, that the velocities of the plates equal those in NUVEL-1A (DeMets et al. 1990, 1994) and that the uplift, subsidence, and intraplate deformation due to glacial isostatic adjustment is negligible.
Shortening and Thickening of Metropolitan Los Angeles Measured and Inferred Using Geodesy
Geodetic measurements using the Global Positioning System and other techniques show north-south shortening near Los Angeles to be fastest across the northern part of the metropolitan area, where an ESE-striking, 5- to 40-km-wide belt lying to the south of San Gabriel Mountains and to the north of downtown and West Los Angeles is shortening at 5 mm/yr.
Use of GPS and InSAR Technology and its Further Development in Earthquake Modeling
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Use of GPS and InSAR Technology and its Further Development in Earthquake Modeling
Global Positioning System (GPS) data are useful for understanding both interseismic and postseismic deformation. Models of GPS data suggest that the lower crust, lateral heterogeneity, and fault slip, all provide a role in the earthquake cycle.
The Co- and Immediate Post-seismic Geodetic Signature of the 1999 Hector Mine Earthquake
The M7.1 Hector Mine earthquake ruptured the Lavic Lake fault near Twentynine Palms, CA at 09:46 UTC October 16, 1999.
Plate Motion and Crustal Deformation Estimated With Geodetic Data From the Global Positioning
We use geodetic data taken over four years with the Global Positioning System (GPS) to estimate.
Vertical Rates Determined with the Global Positioning Syste
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