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  • 41. VI_2014_005

    %) Subpolar wetlands: 7,208 km2 (7.5%) Subpolar crops: 2,380 km2 (2.5%) Inland water4: 1,463 km2 (1.5%) 4Including also the coastal lagoon Hópið, and the estuary at Höfn. 9 Inland Water Subpolar Wetlands Subpolar Crops Subpolar Pastures Tundra Sparse Tundra Permanent Snow Vatnajökull Mýrdalsjökull Langjökull Hofsjökull Drangajökull Eyja fjall ajö kul l Reykjanesskagi Sp ren gis an du r /media/vedurstofan/utgafa/skyrslur/2014/VI_2014_005.pdf
  • 42. VI_2015_005

    at the bound- aries. With longitude, l , parameterised as a function of latitude, f , these boundaries are at l1 = 30 30 40 (f 40) (2) and l2 = 45 90 40 (f 40) : (3) This suggests dividing the study domain into three parts: a western sector, with l < l1, covering the region west of Greenland; a central sector, with l1 l < l2, including the region of the Icelandic Low; and an eastern sector /media/vedurstofan/utgafa/skyrslur/2015/VI_2015_005.pdf
  • 43. Climate and Modeling Scenarios

    A. (2010b). 21st century changes in the European climate: uncertainties derived from an ensemble of regional climate model simulations. Tellus, published online. DOI: 10.1111/j.1600-0870.2010.00475. Ólafsson H, & Rögnvaldsson Ó. (2010). Regional and Seasonal Variability in Precipitation Scenarios For Iceland. Hydrology Research, in revision. Peltonen-Sainio, P., Hakala, K., Jauhiainen, L /ces/publications/nr/1680
  • 44. Public-Choice-2012---McGuiness-and-Walker---Foundations-of-the-Ostrom-workshop---institutional-analysis,-polycentricity,-and-self-governance-of-the-commons

    296 Public Choice (2010) 143: 293–301 2 The commons The literature on the commons, or what is more technically defined as common-pool re- sources (CPRs), should be viewed initially from its place in the larger literature on dilem- mas of collective action. Since the foundational work of H. Scott Gordon (1954) on the com- mons, and Mancur Olson (1965) on collective action more broadly, the behavioral /media/loftslag/Public-Choice-2012---McGuiness-and-Walker---Foundations-of-the-Ostrom-workshop---institutional-analysis,-polycentricity,-and-self-governance-of-the-commons.pdf
  • 45. Jokull-guidlines

    Reykjavík, 139 pp. Paterson, W.S.B. 1994. The Physics of Glaciers (Third Edition). Pergamon. 480 pp. Vogt, P.R., G.L. Johnson and L. Kristjánsson 1980. Morphology and magnetic anomalies north of Iceland. J. of Geophysics 47, 67-80. Walker, G.P.L. 1974. Eruptive mechanisms in Iceland. In L. Kristjánsson, ed. Geodynamics of Iceland and the North Atlantic Area. D. Reidel, Dordrecht /media/jar/Jokull-guidlines.pdf
  • 46. Dataseries and components

    Analysed components - IMO's research: Sulphur and salinity measurements: Precipitation: SO4-S, NO3-N, Cl, Na, Mg, K, Ca (mg/l) Precipitation: conductivity (µS/cm), quantity (mm), pH Aerosol: SO4-S, Cl, Na, Mg, K, Ca, Fe (µg/m3) Air: SO2-S (µg/m3) Heavy metals in precipitation: Pb, Cd, Cu, Zn, Cr, Ni, Fe, Mn, V, As, Al (ng/ml) Cl, NO3-N, SO4-S, Na, K, Ca, Mg, NH4-N, Br, F (µg/ml) conductivity (µS/cm /pollution-and-radiation/pollution/components/
  • 47. Dyrrdal_Anita_CES_2010

    • Analyse future snow scenarios Introduction Data & Methods Results 0 50 100 150 200 250 300 350 400 450 0-100 100- 200 200- 300 300- 400 400- 500 500- 600 600- 700 700- 800 800- 900 900- 1000 1000- 1100 1100- 1200 1200- 1300 1300- 1400 1400- 1500 1500- 1600 1600- 1700 1700- 1800 1800- 1900 1900- 2000 2000- 2100 2100- 2200 Høyde (m o.h.) A n t a l l v æ r s t a s j o n e r Elevation of met.no /media/ces/Dyrrdal_Anita_CES_2010.pdf
  • 48. Eriksson_Garvill_Nordlund_2006

    Journal of Environmental Psycholog l , Ume , e Acceptability of travel demand management (TDM) with the aim of reducing private car use is modeled following a hierarchical set of beliefs. In a two-part model, pro-environmental orientation, problem awareness, personal norm, and willingness to reduce car use are linked to beliefs about to which extent the specific TDM measure is perceived /media/loftslag/Eriksson_Garvill_Nordlund_2006.pdf
  • 49. Hydropower - Glacier, Snow and Ice

    Guðmundsson, S., Björnsson, H., Pálsson, F., Jóhannesson, T., Hannesdóttir, H. o.fl. (2011). Modelling the 20th and 21st century evolution of Hoffellsjökull glacier, SE-Vatnajökull, Iceland. The Cryosphere, 5, 961-975, doi:10.5194/tc-5-961-2011. Andreassen, L. M., & Oerlemans, J. (2009). Modelling long-term summer and winter balances and the climate sensitivity of Storbreen, Norway. Geogr. Ann., 91 /ces/publications/nr/1940
  • 50. Rolf_Johnsen_(Region_Midt,_Dk)

    Reference list: Thomé- Scmidt, P. “Sea level change affecting the spatial development in the Baltic Sea Region.” Geological Survey of Finland, special edition paper 41. pp. 51-59. Van Roosmallen L., Christensen, B.S.B, Sonnenborg, T.O. “Regional difference in climate change impacts on groundwater and stream discharge in Denmark”, 2007. Vadose Zone Journal 6: 554-571. /media/loftslag/Rolf_Johnsen_(Region_Midt,_Dk).pdf

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