CU Sea Level Library
Filters: Author is Wahr, J. M. [Clear All Filters]
Measuring the Distribution of Ocean Mass Using GRACE." Space Science Reviews 108 (2003): 331-344. Abstract
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Time variability of the Earth's gravity field: Hydrological and oceanic effects and their possible detection using GRACE." Journal of Geophysical Research 103 (1998): 30205-30230. Abstract
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Estimated effects of the vertical structure of atmospheric mass on the time-variable geoid." Journal of Geophysical Research (Solid Earth) 107 (2002): 2194. Abstract
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Can surface pressure be used to remove atmospheric contributions from GRACE data with sufficient accuracy to recover hydrological signals?" Journal of Geophysical Research 106 (2001): 16415-16434. Abstract
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Measuring the Distribution of Ocean Mass Using GRACE." Space Science Reviews 108 (2003): 331-344. Abstract
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Recent trends in Arctic Ocean mass distribution revealed by GRACE." Geophysical Research Letters 34 (2007): 07602. Abstract
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A method of inferring changes in deep ocean currents from satellite measurements of time-variable gravity." Journal of Geophysical Research (Oceans) 107 (2002): 3218. Abstract
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Postglacial rebound and Earth's viscosity structure from GRACE." Journal of Geophysical Research (Solid Earth) 107 (2002): 2376. Abstract
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A method of combining ICESat and GRACE satellite data to constrain Antarctic mass balance." Journal of Geophysical Research 105 (2000): 16279-16294. Abstract
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A comparison of terrestrial water storage variations from GRACE with in situ measurements from Illinois." Geophysical Research Letters 33 (2006): 16401. Abstract
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Short term mass variability in Greenland, from GRACE." Geophysical Research Letters 32 (2005): 05501. Abstract
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Recent changes in the Earth's oblateness driven by Greenland and Antarctic ice mass loss." Geophysical Research Letters 38, no. 13 (2011). Abstract
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Spread of ice mass loss into northwest Greenland observed by GRACE and GPS." Geophysical Research Letters 37 (2010): 06501. Abstract
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Measurements of Time-Variable Gravity Show Mass Loss in Antarctica." Science 311 (2006): 1754-1756. Abstract
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Preliminary observations of global ocean mass variations with GRACE." Geophysical Research Letters 31 (2004): 13310. Abstract
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Acceleration of Greenland ice mass loss in spring 2004." Nature 443 (2006): 329-331. Abstract
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Monitoring Changes in Continental Water Storage with GRACE." Space Science Reviews 108 (2003): 345-354. Abstract
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Detection of Continental Hydrology and Glaciology Signals from GRACE: A Review." Surveys in Geophysics 29 (2008): 361-374. Abstract
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Can surface pressure be used to remove atmospheric contributions from GRACE data with sufficient accuracy to recover hydrological signals?" Journal of Geophysical Research 106 (2001): 16415-16434. Abstract
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A method for separating Antarctic postglacial rebound and ice mass balance using future ICESat Geoscience Laser Altimeter System, Gravity Recovery and Climate Experiment, and GPS satellite data." Journal of Geophysical Research (Solid Earth) 107 (2002): 2263. Abstract
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Methods for inferring regional surface-mass anomalies from Gravity Recovery and Climate Experiment (GRACE) measurements of time-variable gravity." Journal of Geophysical Research (Solid Earth) 107 (2002): 2193. Abstract
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Toward global inverse solutions for current and past ice mass variations: Contribution of secular satellite gravity and topography change measurements." Journal of Geophysical Research (Solid Earth) 107 (2002): 2291. Abstract
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Greenland mass balance from GRACE." Geophysical Research Letters 32 (2005): 18505. Abstract
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Ocean mass from GRACE and glacial isostatic adjustment." Journal of Geophysical Research (Solid Earth) 115 (2010): 11415. Abstract
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Multi-sensor analysis of water storage variations of the Caspian Sea." Geophysical Research Letters 34 (2007): 16401. Abstract
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