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  • 21. Bardarbunga-2015_January-events

    then the glow from Holuhraun can be seen on webcams and there do not seem to be any changes there. Seismic activity at the Bárðarbunga caldera has been pulsative; the activity becomes more intense for a while and then decreases markedly, almost to the point of ceasing. Around 30 quakes have been detected there during the last 26 hours; the largest at 18:16, M4.1 in magnitude. In the dyke intrusion /media/jar/Bardarbunga-2015_January-events.pdf
  • 22. VI_2019_009

    26 36 40 41 46 50 51 52 53 54 58 60 61 62 63 64 65 68 70 71 72 73 74 80 81 83 84 85 86 87 92 Present weather (Manual) Present weather ( Automatic ) Number of records a71 a71 a71 250 500 750 250 500 750 Number of records Figure 15. Automatic station as a function of manual station. a71 a71a71a71a71a71 a71a71 a71a71a71 a71a71 a71 a71 a71a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71 a71a71a71 /media/vedurstofan-utgafa-2019/VI_2019_009.pdf
  • 23. Bárðarbunga 2014 - November events

    water Large quantities of gases are emitted to the atmosphere associated with the Holuhraun eruption. Among the gases are SO2 that can convert to sulfuric acid causing acid rain. Since 19th September 2014, rainwater samples have been collected and analysed at weekly bases at 18 locations across all the country. The sampling and analysis have been carried out by Veðurstofan and Háskóli Íslands /earthquakes-and-volcanism/articles/nr/3023
  • 24. Bardarbunga-2014_November-events

    all below M1.0. A slight increase of seismicity in the dyke during the first hours after M>5 earthquakes at the caldera rim has also been observed in several previous cases since the onset of the activity. No obvious changes in the volcanic activity at the eruption site in Holuhraun, based on camera observation. 22 November 2014 12:00 - from geoscientist on duty Seismic activity around /media/jar/Bardarbunga-2014_November-events.pdf
  • 25. Bárðarbunga 2014 - November events

    water Large quantities of gases are emitted to the atmosphere associated with the Holuhraun eruption. Among the gases are SO2 that can convert to sulfuric acid causing acid rain. Since 19th September 2014, rainwater samples have been collected and analysed at weekly bases at 18 locations across all the country. The sampling and analysis have been carried out by Veðurstofan and Háskóli Íslands /earthquakes-and-volcanism/articles/nr/3023/
  • 26. 2010_003rs

    ................ 91 Figure B.5. Rake distribution for mapped faults/clusters in boxes E and F, Brennisteinsfjöll-Bláfjöll. ................................................................................. 92 Figure B.6. Rake distribution for mapped faults/clusters in box G, Ölfus. ......................... 93 Figure B.7. Rake distribution for mapped faults/clusters in box H, Hengill, active between January /media/vedurstofan/utgafa/skyrslur/2010/2010_003rs.pdf
  • 27. The weather in Iceland in 2018

    of bright sunshine hours in June have not been as few since 1914. It was sunny in Reykjavík in March, August and September. In Akureyri the number of bright sunshine hours was above normal in March, June and September but below normal in April, July, August and October. Sea level pressure The annual average in Reykjavík was 1003.0 hPa, 2.9 below the 1961 to 1990 mean. The absolute /about-imo/news/the-weather-in-iceland-in-2018
  • 28. Public-Choice-2012---Teyssier---Inequity-and-risk-aversion-in-sequential-public-good-games

    individuals act like homo-œconomicus agents (see for example Andreoni 1988; Berg et al. 1995; Camerer 2003; Forsythe et al. 1994; Isaac et al. 1984). Recent developments in public-choice theory have taken a behavioral approach to broaden the analysis of collective action. The introduction of social preferences, such as altruism, inequity aversion or trust, may mean that optimal collective choices /media/loftslag/Public-Choice-2012---Teyssier---Inequity-and-risk-aversion-in-sequential-public-good-games.pdf
  • 29. VI_2022_006_extreme

    77 91 109 Hraunaveita 132 116 136 159 117 140 169 Kvíslaveita 48 42 49 58 42 51 61 Sultartangi 66 57 68 80 58 69 84 Þingvallavatn 96 84 99 117 85 102 123 Þórisvatn 47 41 49 57 42 50 60 Tungnaá 76 67 79 92 67 80 98 Ufsarlón 104 92 108 126 93 112 134 36 Figure 19 – 1M5 maps for catchment Hálslón based on the ICRA dataset without projection (top left), with RCP 2.6 and 10th percentile /media/vedurstofan-utgafa-2022/VI_2022_006_extreme.pdf
  • 30. VI_2020_004

    vedur@vedur.is Veðurstofa Íslands Bústaðavegur 7–9 108 Reykjavík Sara Barsotti, Veðurstofa Íslands Sigrún Karlsdóttir, Veðursstofa Íslands Anna María Ágústsdóttir, Landgræðslan Björn Oddsson, Almannavarnadeild Ríkislögreglustjóra Íris Marelsdóttir, Embætti landlæknis Þorvaldur Þórðarson, Jarðvísindastofnun H áskólans Þórólfur Guðnason, Embætti landlæknis Bogi B. Björnsson, Veðurstofa Íslands /media/vedurstofan-utgafa-2020/VI_2020_004.pdf

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