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  • 11. Icelandic climate in general

    of the Aurora Borealis on a clear night sky draws an increasing number of tourists. During summertime tourists should bring a windbreaker, rainwear, a thick pullover (wool or fleece) and sturdy walking shoes. Travellers who are camping or heading into the interior will need warm underwear and socks, rubber boots and a warm sleeping bag. During wintertime tourist should bring warm clothing, warm /climatology/iceland/nr/1268
  • 12. Icelandic climate

    pullover (wool or fleece) and sturdy walking shoes. Travellers who are camping or heading into the interior will need warm underwear and socks, rubber boots and a warm sleeping bag. During wintertime tourist should bring warm clothing, warm coat, mittens etc. Iceland has many swimming pools, usually with geothermally heated water. Hence, in either season a visitor should bring a swim suit /weather/climate_in_iceland/
  • 13. IPPC-2007-ar4_syr

    the respective WG reports. Unless otherwise stated, numerical ranges given in square brackets in this report indicate 90% uncertainty intervals (i.e. there is an estimated 5% likelihood that the value could be above the range given in square brackets and 5% likelihood that the value could be below that range). Uncertainty intervals are not necessarily symmetric around the best estimate. 1 Observed changes /media/loftslag/IPPC-2007-ar4_syr.pdf
  • 14. Journal_of_Hydrology_Veijalainen_etal

    The hydrological simulations were performed with the Wa- tershed Simulation and Forecasting System (WSFS) developed and operated in the Finnish Environment Institute (Vehviläinen et al., 2005). The WSFS is used in Finland for operational hydrolog- ical forecasting and flood warnings (www.environment.fi/water- forecast/), regulation planning and research purposes (Vehviläinen and Huttunen, 1997 /media/ces/Journal_of_Hydrology_Veijalainen_etal.pdf
  • 15. CES_D2.4_task1

    2609 BEITO NO +61:14:35 +08:51:20 754 P 2610 BIRI NO +60:57:10 +10:35:49 190 P 2611 ABJORSBRATEN NO +60:55:05 +09:17:25 639 TP 2612 BOVERDAL NO +61:43:14 +08:14:39 701 P 2613 ESPEDALEN NO +61:25:00 +09:32:04 752 P 2614 LUNNER NO +60:17:39 +10:34:49 /media/ces/CES_D2.4_task1.pdf
  • 16. The volcano measured

    The volcano measured No name yet 9.4.2010 The Institute of Earth Sciences, University of Iceland, measured the size of the new volcano which has formed around the craters on Fimmvörðuháls. The area of the new lava is now 1.3 square kilometers, the average /about-imo/news/nr/1862
  • 17. 100 years of seismic observations

    York collaborated in installing a seismograph network throughout Iceland, including a network of five seismographs in the interior of the country. During the same period the number of stations in the IMO network increased markedly. A new era of seismic monitoring began in Iceland in 1991, when a digital seismic system, the SIL system, was upgraded to fully automatic operation. It was designed /earthquakes-and-volcanism/conferences/jsr-2009/100_years/
  • 18. Workshop on Earthquakes in North Iceland

    of Akureyri Institute of Earth Sciences, University of Iceland KAUST, King Abdullah University of Science and Technology Húsavík Academic Center Icelandic Meteorological Office Earthquake Engineering Research Centre, University of Iceland Civil Protection Department, National Commisioner of the Icelandic Police Iceland Catastrophe Insurance Husavik Academic centre Ministry of the Interior /about-imo/news/nr/2701
  • 19. Eyjafjallajokull_status_2010-05-19_IES_IMO

    from midnight to midday, considerably fewer then yesterday. Noises: No reports. Meltwater: Heavy rainfall caused swelling of Eyjafjallajökull rivers today. The rain, together with ash from an area of a few square kilometers, resulted in a mudslide in Svaðbæli River, Hydrologists from IMO and a scientist from the Earth Science Institute, University of Iceland, gathered /media/jar/Eyjafjallajokull_status_2010-05-19_IES_IMO.pdf
  • 20. 2010_016

    -based and 10 based on IPCC GCM simulations. The choice of the GCM models was based on their SAT performance for the present-day climate near Iceland as mentioned above. 2. For GCM-based scenarios, temperature change in the highland interior of Iceland, where the large ice caps are located, were increased by 25% based on the results of RCM downscaling (Nawri & Björnsson, 2010). 3. Expected /media/ces/2010_016.pdf

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