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  • The error is smallest when any change in one of the weight parameters <math>w_{ki}</math> increases the error, im ...m the high-resolution atmospheric reanalysis ERA5 of ECMWF[26] to estimate global sea level extremes using neural networks. Each gauge was modelled independe
    29 KB (4,514 words) - 16:02, 21 September 2023
  • ...s of the Nagoya Protocol are obliged to have a national regime which meets global standards, thereby enabling users to know what to expect whenever they wish ...those customary rules together with some novel additions. The UNCLOS is a global framework which defines the boundaries of the jurisdiction of a state and r
    10 KB (1,527 words) - 16:11, 8 September 2020
  • ...pendium provides an overview of the Belgian marine research community in a global, European and local context. A semi-automated methodology was developed in [[Category:Climate change, impacts and adaptation]]
    9 KB (1,243 words) - 17:23, 7 November 2019
  • ...in deep trouble due to negative impacts from human activities and climate change (Wilkinson, 2004; Hughes et al., 2010; Richmond & Wolanski, 2011; Graham, 2 ...bioavailability in the North Pacific Ocean: Insights from data and models. Global Biogeochemical Cycles, 23(2), p.GB2010.
    50 KB (7,106 words) - 12:42, 14 September 2020
  • ...astal hydrodynamic and morphodynamic processes, long term geomorphological change, climate impacts and coastal engineering (articles in blue). This content w * [[Using satellite data for global wave forecasts]]
    20 KB (2,427 words) - 17:21, 20 May 2024
  • ...jor global impact from registered river impoundments. Global and Planetary Change 39: 169–190</ref>. <br clear=all> ..., A.J., Waller, M.P. and Stupples, P. (2006) Driving mechanisms of coastal change: Peat compaction and the destruction of late Holocene coastal wetlands. Mar
    87 KB (13,505 words) - 12:18, 20 January 2024
  • ...ges in both mean sea level and river flows linked to future global climate change scenarios. Impacts from a rise in mean sea level of 1 m are shown to have n How will estuaries adapt to Global Climate Change?
    50 KB (7,345 words) - 17:09, 2 July 2020
  • ...the general information on the harbour porpoise is very exhaustive for its global distribution area, specific information for the BPNS is less abundant and o ...e most likely reason for the changes in harbour porpoise distribution is a change in the distribution and/or availability of key prey species. Harbour porpoi
    77 KB (11,773 words) - 16:58, 17 February 2024
  • ...rs affecting river discharge to the global ocean, 1951-2000, Glob. Planet. Change, 62(3-4), 187–194, doi:Doi 10.1016/J.Gloplacha.2008.03.001. </ref>. If th
    13 KB (1,953 words) - 21:33, 3 July 2020
  • # the assessment of vulnerability to natural hazards and climate change (DIVA, RegIS, CVAT, DESYCO, KRIM, Coastal Simulator, THESEUS); ...cosystems, in order to predict how coastal regions will respond to climate change (RegIS, CVAT, Coastal Simulator, THESEUS);
    17 KB (2,405 words) - 11:54, 20 February 2024
  • [[Image: GlobalShelf.jpg|thumb|400px|right|Figure 1: Global map showing continental shelf areas in cyan. Public Domain, https://common ...l Context. Pp3-24 in Carbon and Nutrient Fluxes in Continental Margins: A Global Synthesis (eds Liu KK, Atkinson L, Quiñones RA, Talaue-McManus L), Springe
    34 KB (5,194 words) - 22:01, 2 July 2024
  • | style="border:1px solid gray;"| Global Climate Regulation ...incorporating forward-looking perspectives on how ecosystem services might change in the future (Carpenter and Folke 2006<ref>Carpenter, S.R. and Folke, C. 2
    28 KB (4,079 words) - 22:20, 6 April 2024
  • ...t of the salinity zonation landwards (see also [[Effects of global climate change on European marine biodiversity]]). However, coastal areas, including estua
    22 KB (3,117 words) - 23:14, 20 January 2024
  • ...ed by the wind. Therefore the temperature and salinity in this water layer change with the seasons, as well as the community of organisms. In the temperate l ...phy, G.E.P., Romanuk, T.N. and Worm, B. 2020. Cascading effects of climate change on plankton community structure. Ecology and Evolution 10: 2170–2181</ref
    14 KB (2,153 words) - 13:08, 23 February 2021
  • ...found <ref> Short, A. D. and Aagaard, T. 1993. Single and multi-bar beach change models. Journal of Coastal Research, SI 15: 141-157.</ref>. [[Image:CoastStormsWaves.jpg|center|thumb|600px|caption |Fig.1. Global distribution of storm and wave climate. Blue: Coasts seasonally subjected t
    24 KB (3,854 words) - 16:00, 30 June 2020
  • If climate change affects only the sea level, while leaving the wave climate unchanged, Bruun ...sea level rise. Coastal Engineering 114: 1–8</ref>. Therefore the volume change <math>\Delta V</math> [<math>m^3/m</math>] of the active coastal profile du
    11 KB (1,739 words) - 22:49, 11 December 2022
  • ==Global manifestation of the tides== ...tion of the continents acts as one of the organizing principles behind the global pattern of tides.
    27 KB (4,146 words) - 23:36, 19 January 2024
  • ...meeting of EU Nature Ministers in October 2005 (Recommendations on Climate Change and Biodiversity Conservation: Knowledge Needed to Support Development of I ...pean scale, would lead to a better understanding of the effects of climate change on marine biodiversity. Though the focus at the meeting was on marine biodi
    8 KB (1,083 words) - 17:18, 1 August 2019
  • ...d in the SPICOSA project. It is remarkable that sea level rise and climate change are not yet ranked among the most urgent pressures. ...oading has important secondary effects on the trophic food web, leading to change and loss of biodiversity, to increased turbidity, to oxygen depletion and t
    20 KB (2,992 words) - 20:35, 18 January 2022
  • ...ernmental Panel on Climate Change</ref> research in the field of [[climate change]] over the past decades shows that the observed changes in regional climate ...re the first to experience the effects of sea level rise and other climate change consequences.
    14 KB (2,043 words) - 18:40, 7 March 2023

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