Online Katalog der GeoSphere Austria (Standort Neulinggasse)
Home
Suchen
Ergebnisse
Details
Auswahl
Suchverlauf
Login
Detailansicht
Katalogkarte GBA
Katalogkarte ISBD
Suche präzisieren
Drucken
Download RIS
Datensatz
1
von
1
Titel
The Cryosphere ; 8, no. 4
Erscheinungsjahr
2014
Medientyp
Stücktitel
ISSN
1994-0416
Erschienen
In:
The Cryosphere (TC)
; Nr. 8, no. 4 (2014)
Datensatznummer
116379
Teil von
The Cryosphere (TC)
Teil(e)
Fabric along the NEEM ice core, Greenland, and its comparison with GRIP and NGRIP ice cores | M. Montagnat
Measuring the specific surface area of wet snow using 1310 nm reflectance | J.-C. Gallet
High-resolution modelling of the seasonal evolution of surface water storage on the Greenland Ice Sheet | N. S. Arnold
MODIS observed increase in duration and spatial extent of sediment plumes in Greenland fjords | B. Hudson
Thermokarst lake waters across the permafrost zones of western Siberia | R. M. Manasypov
Modeled Arctic sea ice evolution through 2300 in CMIP5 extended RCPs | P. J. Hezel
The growth of sublimation crystals and surface hoar on the Antarctic plateau | J.-C. Gallet
An improved CryoSat-2 sea ice freeboard retrieval algorithm through the use of waveform fitting | N. T. Kurtz
Parameterization of basal friction near grounding lines in a one-dimensional ice sheet model | G. R. Leguy
A high-resolution bedrock map for the Antarctic Peninsula | M. Huss
Initial results from geophysical surveys and shallow coring of the Northeast Greenland Ice Stream (NEGIS) | P. Vallelonga
A spurious jump in the satellite record: has Antarctic sea ice expansion been overestimated? | I. Eisenman
Tracing glacier changes since the 1960s on the south slope of Mt. Everest (central Southern Himalaya) using optical satellite imagery | S. Thakuri
Debris thickness of glaciers in the Everest area (Nepal Himalaya) derived from satellite imagery using a nonlinear energy balance model | D. R. Rounce
Two independent methods for mapping the grounding line of an outlet glacier – an example from the Astrolabe Glacier, Terre Adélie, Antarctica | E. Le Meur
Modelling the evolution of the Antarctic ice sheet since the last interglacial | M. N. A. Maris
Using MODIS land surface temperatures and the Crocus snow model to understand the warm bias of ERA-Interim reanalyses at the surface in Antarctica | H. Fréville
Constraining the recent mass balance of Pine Island and Thwaites glaciers, West Antarctica, with airborne observations of snow accumulation | B. Medley
Importance of basal processes in simulations of a surging Svalbard outlet glacier | R. Gladstone
The influence of edge effects on crack propagation in snow stability tests | E. H. Bair
The importance of insolation changes for paleo ice sheet modeling | A. Robinson
Representing moisture fluxes and phase changes in glacier debris cover using a reservoir approach | E. Collier
Recent ice dynamic and surface mass balance of Union Glacier in the West Antarctic Ice Sheet | A. Rivera
Ice–ocean interaction and calving front morphology at two west Greenland tidewater outlet glaciers | N. Chauché
Temporal dynamics of ikaite in experimental sea ice | S. Rysgaard
A 10 year record of black carbon and dust from a Mera Peak ice core (Nepal): variability and potential impact on melting of Himalayan glaciers | P. Ginot
Glacier dynamics at Helheim and Kangerdlugssuaq glaciers, southeast Greenland, since the Little Ice Age | S. A. Khan
The Greenland Ice Mapping Project (GIMP) land classification and surface elevation data sets | I. M. Howat
Surface energy budget on Larsen and Wilkins ice shelves in the Antarctic Peninsula: results based on reanalyses in 1989–2010 | I. Välisuo
Elevation and elevation change of Greenland and Antarctica derived from CryoSat-2 | V. Helm
Dynamic response of Antarctic ice shelves to bedrock uncertainty | S. Sun
How much snow falls on the Antarctic ice sheet? | C. Palerme
Sensitivity of lake ice regimes to climate change in the Nordic region | S. Gebre
Sensitivity of CryoSat-2 Arctic sea-ice freeboard and thickness on radar-waveform interpretation | R. Ricker
Corrigendum to "Using MODIS land surface temperatures and the Crocus snow model to understand the warm bias of ERA-Interim reanalyses at the surface in Antarctica" published in The Cryosphere, 8, 1361–1373, 2014 | H. Fréville