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Journal of climate, ISSN 0894-8755, 9/2013, Volume 26, Issue 18, pp. 6974 - 6989
Mass balance | Precipitation | Melting | Snow | Ice sheets | Correlations | Surface temperature | Ice | Climate models | Seasons | Meteorology & Atmospheric Sciences | Physical Sciences | Science & Technology | Earth, ocean, space | External geophysics | Snow. Ice. Glaciers | Exact sciences and technology | Studies | Temperature | Surface water | Global warming | Trends | Sea level | Reconstruction | Runoff | Dominance | Mathematical models | Meltwater | Melts | Anomalies
Journal Article
Journal of climate, ISSN 0894-8755, 9/2013, Volume 26, Issue 18, pp. 6990 - 7002
Mass balance | Outlet glaciers | Melting | Ice sheets | Glaciers | Calving | Ice | Sea level | Surface runoff | Glacial melting | Meteorology & Atmospheric Sciences | Physical Sciences | Science & Technology | Earth, ocean, space | External geophysics | Snow. Ice. Glaciers | Exact sciences and technology | Ice ages | Global warming | Runoff | Estimates | Reconstruction | Parametrization | Marine | Underwater | Icebergs
Journal Article
Geophysical research letters, ISSN 0094-8276, 2012, Volume 39, Issue 4, pp. L04501/1 - n/a
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Geophysical research letters, ISSN 0094-8276, 06/2009, Volume 36, Issue 12, pp. L12501 - n/a
Mass balance | Global Change | Ice sheets | Atmospheric Processes | Cryospheric change | Polar meteorology | Cryosphere | Regional modeling | ADLIB-ART-2868 | ITC-ISI-JOURNAL-ARTICLE | Greenland ice sheet | surface mass balance | Geosciences, Multidisciplinary | Physical Sciences | Geology | Science & Technology | Earth, ocean, space | Earth sciences | Exact sciences and technology | Earth | Climate change | Atmospheric sciences | Mass balance models | Meteorology
Journal Article
International journal of climatology, ISSN 0899-8418, 06/2017, Volume 37, Issue 7, pp. 3154 - 3174
Andes Cordillera | SnowModel | South America | NASA MERRA | glacier | modelling | Meteorology & Atmospheric Sciences | Physical Sciences | Science & Technology | Analysis | Glaciers | Surface temperature | Multilayers | Precipitation | Future hydrologic conditions | Glaciohydrology | Air temperature | Tropical environment | Water resources | Sea level-glaciation relationships | Computer simulation | Snowpack | Sublimation | Energy distribution | Sea level rise | Routing | Calving | Evaporation | Sea level | Altimetry | Mass | Energy balance | Hydrology | Satellites | Equivalence | Runoff | Mass balance of glaciers | Sea level changes | Glacial runoff | Gravimetry
Journal Article
Reviews of geophysics (1985), ISSN 8755-1209, 2019, Volume 57, Issue 2, pp. 376 - 420
climate modeling | Antarctica | ice sheets | Greenland | observations | surface mass balance | Physical Sciences | Science & Technology | Geochemistry & Geophysics | Glaciation | Climate | Clouds | Methodology | Snow | Scale models | Atmospheric models | Measuring instruments | Radiation | Earth's atmosphere | Satellite navigation systems | Global sea level | Temperature changes | Mapping | Weather stations | Cosmic radiation | Cosmic rays | Mass balance | Earth | Albedo | Modelling | Positioning systems | Mass balance of ice sheets | Snow density | Atmospheric circulation | Earth atmosphere | Melting | Computer simulation | Ice sheets | Blowing snow | Snow and ice | Rainfall | Topography (geology) | Ice | Climate models | Evaporation | Sea level | Mass | Winds | Global positioning systems | Satellites | Regional climates | Atmosphere | Glaciers | Sea level changes | atmosphere | Grand Challenges in the Earth and Space Sciences | Natural Hazards | Physical Modeling | Mass Balance | cryosphere interactions | Modeling | Instruments and Techniques | hydrosphere | Geodesy and Gravity | Ice Sheets | Ocean | Informatics | Cryosphere
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