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  • 41. ces_SA_group_flyer_new

    by season (%) between 1991-2007 and 1961-1990 in the Baltic countries 1 9 0 0 1 9 2 0 1 9 4 0 1 9 6 0 1 9 8 0 2 0 0 0 - 1 5 - 1 0 - 5 0 5 1 0 1 5 P r e c i p i t a t i o n a n o m a l y ( % ) R e g i o n 1 R e g i o n 2 R e g i o n 3 R e g i o n 4 F un c t ion P lo t 5 1 9 0 0 1 9 2 0 1 9 4 0 1 9 6 0 1 9 8 0 2 0 0 0 - 1 . 5 - 1 - 0 . 5 0 0 . 5 1 1 . 5 T e m p e r a t u r e a n o m /media/ces/ces_SA_group_flyer_new.pdf
  • 42. norsem_lindholm

    Neotectonics in Nordland; NEONOR 2 C. Lindholm, O. Olesen, I. Janutyte, S. Gradman, M. Keiding, H. Kierulf, M. Ask, J. Dehls, Y. Maystrenko, F. Riis, L. Rise and other project partners The Nordland shore region is known to be seismically active with deep local sediment basins on the continental shelf that stretches some 200 km west of the coastline. The offshore areas west of Nordland have /media/norsem/norsem_lindholm.pdf
  • 43. VI_2020_005

  • 44. VanderKeur_etal-2008-Uncertainty_IWRM-WARM

    h stat us an d goal s Locat io n — u n ce rta in tie s re la te d to So urc e o fun certaint y Natur e (1)/typ e(2 )o f u n ce rta in ty Co mment s R hin e at (su b-) catch m en tleve l W at er re so u rc es issu es Id en tif ica tio n an d pr io rit y settin g o fu rge nt wat er re so u rc es pr ob le m s; co n fli ct in g in te re sts amon g sector s an d stakeh older s M ul tip le fra m es (so /media/loftslag/VanderKeur_etal-2008-Uncertainty_IWRM-WARM.pdf
  • 45. VED_AnnualReport-2013_screen

    and our intention is to run these models dur- ing times of hazardous events and even on a daily basis to further improve monitoring. Avalanche monitoring has progressed. The em- phasis is now on improving our services, especially to the Icelandic Road and Coastal Administration with regard to transport. The reason is that com- munity structure has changed considerably in recent years and the need /media/vedurstofan/utgafa/arsskyrslur/VED_AnnualReport-2013_screen.pdf
  • 46. 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
  • 47. VI_2016_006_rs

    was 0.1–0.2 C and the flow was 40–50 l/s (Árni Hjartarson, 2015). The inner Efri-Botnar area is similar to the outer cirque, but the thickness of the debris appears to be somewhat greater. There are ridges and lateral glacier moraines within the cirque and the thickness of the piles of loose materials near the mouth of the cirque is around 6–8 m. Glacier striations from the end of the last ice age can /media/vedurstofan-utgafa-2016/VI_2016_006_rs.pdf
  • 48. 2013_001_Nawri_et_al

    with terrain elevation above mean sea level. Additionally, the vertical dependence of seasonally averaged temperature within the boundary layer atmosphere is well approximated by a linear profile. Temperature as a function of height, x , above mean sea level can therefore be written as T (x ) = ( T0 +LTx for 0 x h T0 +LT h+L(x h) for h x h+ z ; (6) where T0 is air temperature at mean sea level, LT /media/vedurstofan/utgafa/skyrslur/2013/2013_001_Nawri_et_al.pdf
  • 49. VI_2020_004

  • 50. 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

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