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85 results were found for x 도지코인거래「wwwͺbybͺpw」 도지코인매매 도지코인투자☊도지코인리딩㋈자연과환경 ska.


Results:

  • 31. Gradual fading of seismic activity at Bárðarbunga and the dyke intrusion

    with the general observation of a slowly fading activity in almost all other data sets. Inter-event waiting time For the Bárðarbunga caldera, inter-event waiting time for earthquakes equal to or larger than M5 has been plotted* during the four months period from the onset of events until 15 Dec 2014. On the y-axis, waiting time is given in hours. The x-axis shows the relevant earthquakes /earthquakes-and-volcanism/articles/nr/3039
  • 32. Group5-Stakeholders_involvement

    - m a k e r P u b l i c S t ron g Go v ernanc e I n s u re r s Pri v a t e S t ron g M ar k e t S c ie n t i f i c e x per t s ( g eo s c ie n c e s , e c o n o m i c s , s o c iolog y , p s y c hol o g y ) Publi c / pri v a t e - - I nd u s t ri e s Pri v a t e S t ron g M ar k e t W a t e r s upplie r P u b l i c S t ron g M ar k e t F ar m er s /media/loftslag/Group5-Stakeholders_involvement.pdf
  • 33. Group-1_Scenarios-for-AWM

    i on c a p ac i t y A r ea of r e s i d en c e (Flood p r one /non p r one a r eas) Un c e r t a n t i e s H i g h wi l l i n g n e s s t o p a y L o w wi l l i n g nes to pay D i k e s H i gh t a x a t i on - E arly w arn i n g s y s t e m s - Sof t s t r uct u r a l m e as u r e s -Community training L o w taxation Risk P e r c e p t i o n B e n e f i /media/loftslag/Group-1_Scenarios-for-AWM.pdf
  • 34. Public-Choice-2012---Teyssier---Inequity-and-risk-aversion-in-sequential-public-good-games

    + x−k) (1) Public Choice (2012) 151:91–119 95 with k = 1,2, and −k = 1 if k = 2, −k = 2 if k = 1. The variables xik and x−k are the contributions to the public good of subject i as mover k and mover −k, respectively. The contribution of the first mover is an integer x1 ∈ [0,10] and that of the second mover takes one of the two values x2 ∈ {0, x1}. 2.2 Theoretical predictions As noted /media/loftslag/Public-Choice-2012---Teyssier---Inequity-and-risk-aversion-in-sequential-public-good-games.pdf
  • 35. ces-glacier-scaling-memo2009-01

    of melt water from glaciated areas in long integrations for a warming climate. Glacier dynamics This problem can be qualitatively analysed by considering the continuity equation for ice vol- ume, which may be expressed as ¶h ¶t + ¶q ¶x = b or ¶h ¶t +~ ~q = b ; (1) for a one-dimensional ice flow channel or an ice cap that flows in two horizontal dimensions, respectively. h is ice thickness, q or ~q /media/ces/ces-glacier-scaling-memo2009-01.pdf
  • 36. 2013_001_Nawri_et_al

    the validity of the ideal gas law, hydrostatic balance, a piecewise linear vertical gradient of air temperature, and neglecting the effects of water vapour. Pressure, p, as a function of height can then be derived through vertical integration of the hydrostatic balance equation, and is given by p(h(x;y);z) = p0 exp g R Z h(x;y)+z 0 dx T (x ) ; (5) where p0 is pressure at mean sea level, T /media/vedurstofan/utgafa/skyrslur/2013/2013_001_Nawri_et_al.pdf
  • 37. CES_D2.4_task1

    distribution of anthropogenic climate changes, largely following Räisänen and Ruokolainen (2008a,b). The main features of this procedure are as follows: x Model simulations of 20th and 21st century climate change are used to develop linear regression equations that relate the local temperature or precipitation climate to a smoothed (11-year running mean) evolution of the global mean /media/ces/CES_D2.4_task1.pdf
  • 38. VI_2017_009

    we take the corresponding data from the CMIP5 project. Table 1. All GCMs and RCMs used in this study. If a model is available for any of the domains Arctic-44, EURO-44, or EURO-11, it is marked with a v, but with an x if it is unavailable. Model name Type EURO-11 EURO-44 Arctic-44 CCCma-CanESM2 GCM x v v COSMO-CLM4-8-17 RCM v v x CNRM-CERFACS-CNRM-CM5 GCM v v x IHCEC-EC-Earth GCM v v v /media/vedurstofan-utgafa-2017/VI_2017_009.pdf
  • 39. VI_2020_004

  • 40. VI_2009_006_tt

    . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 63 8 Conclusions 67 References 69 x List of Figures 3.1 Overview map of western Vatnajökull. . . . . . . . . . . . . . . . . . 10 3.2 The Skaftá cauldrons. . . . . . . . . . . . . . . . . . . . . . . . . . . 11 3.3 Discharge in the 2006 and 2008 jökulhlaups from the Eastern Skaftá cauldron /media/vedurstofan/utgafa/skyrslur/2009/VI_2009_006_tt.pdf

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