Biblio
Filtre: First Letter Of Title er G [Slett Alle Filtre]
General circulation of the Norwegian Sea with a deeper look into the Lofoten Basin from space. Oceans from Space 197-198 (2010).
The gravity field and steady-state ocean circulation explorer mission - GOCE. Earth Observation Quarterly, European Space Agency 6-11 (2000).
The Greenland flow distortion experiment. BULLETIN OF THE AMERICAN METEOROLOGICAL SOCIETY 89, 18 (2008). Abstract
Geophysical information on the winter marginal ice zone obtained from CEAREX SAR data. In proceedings of IGARSS'90, Washington DC (1990).
The Greenland Sea Odden Sea Ice Feature: Intra- and Inter-Annual Variability. Journal of Geophysical Research Oceans 103, 12709-12724 (1998). Abstract
Gaussian anamorphosis extension of the DEnKF for combined state parameter estimation: Application to a 1D ocean ecosystem model. Journal of Marine Systems 89, (2012).
Går vi mot et isfritt Arktis?. Cicerone (2000).
Gas exploration beyond the shelf break: an oceanographic challenge. Environmental Modelling & Software 21, 136-141 (2006).
A Granular Sea-Ice Model. (1997).
GCOS Reference Upper Air Network: Steps towards assuring future climate records. AIP Conference Proceedings (2013).doi:10.1063/1.4821421 Abstract
Global Surface Temperatures. Climate Change - Observed impacts on planet earth - Second edition (2016).doi:10.1016/B978-0-444-63524-2.00002-6
The Greenland Ice Sheet during the last glacial cycle: Current ice loss contribution to sea-level rise from a palaeoclimatic perspective. Earth-Science Reviews 150, (2015).
GEROS-ISS: GNSS REflectometry, Radio Occultation, and Scatterometry Onboard the International Space Station. IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing 9, (2016).
Global climate [in “State of the Climate in 2013”]. Bulletin of The American Meteorological Society - (BAMS) 95, (2014).
Greenland ice sheet contribution to future global sea level rise based on CMIP5 models. Advances in Atmospheric Sciences 31, (2014).
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