947 resultados para stream invertebrate


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In September 2015, Gazprom and major European energy companies (Germany's E.ON and BASF/Wintershall, Austria's OMV, France’s ENGIE and Royal Dutch Shell) signed an agreement to double the Nord Stream gas pipeline’s capacity by 2019. The plan is to transport up to 55 billion additional cubic meters of gas a year to Germany through the Baltic Sea, bypassing Ukraine and other Central-Eastern European countries.

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In September 2015, Gazprom and major European energy companies (Germany's E.ON and BASF/Wintershall, Austria's OMV, France’s ENGIE and Royal Dutch Shell) signed an agreement to double the Nord Stream gas pipeline’s capacity by 2019. The plan is to transport up to 55 billion additional cubic metres of gas a year to Germany through the Baltic Sea, bypassing Ukraine and other Central-Eastern European countries.

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When the new European Commission started work in autumn 2014, the president of the Commission took great pride in calling it a ‘political Commission’, which will be big on big things and small on small. Whilst the EU is currently dealing with many crises, reality is that things do not come much bigger than Nord Stream II. Will this be a political Commission that stands by its principles, including respect for liberty, democracy, the rule of law and human rights? Will this Commission have the backbone to politically assess a project that threatens EU unity and its core values, undermines the Union’s commonly agreed commitment to building an Energy Union and facilitates Russia’s aggression against Ukraine? President Juncker’s controversial visit to Russia and meeting with President Putin on 16-17 June is a test-case: will this Commission be ready to defend its commitments and principles when discussing ‘economic issues’?

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Ecological work carried out on the Antarctic and Magellan shelves since the first IBMANT conference held at the UMAG, Punta Arenas in 1997 is summarized to identify areas where progress has been made and others, where impor- tant gaps have remained in understanding past and present interaction between the Antarctic and the southern tip of South America. This information is complementary to a review on shallow-water work along the Scotia Arc (Barnes, 2005) and recent work done in the deep sea (Brandt and Hilbig, 2004). While principally referring to shipboard work in deeper water, above all during the recent international EASIZ and LAMPOS campaigns, relevant work from shore stations is also included. Six years after the first IBMANT symposium, significant progress has been made along the latitudinal gradient from the Magellan region to the high Antarctic in the fields of biodiversity, biogeography and community structure, life strategies and adaptations, the role of disturbance and its significance for biodiversity, and trophic coupling of the benthic realm with the water column and sea ice. A better understanding has developed of the role of evolutionary and ecological factors in shaping past and present-day environmental conditions, species composition and distribution, and ecosystem functioning. Furthermore, the science community engaged in unravelling Antarctic-Magellan interactions has advanced in methodological aspects such as new analytical approaches for comparing biodiversity derived from visual methods, growth and age determination, trophic modelling using stable isotope ratios, and molecular approaches for taxonomic and phylogenetic purposes. At the same time, much effort has been invested to complement the species inventory of the two adjacent regions. However, much work remains to be done to fill the numerous gaps. Some perspectives are outlined in this review, and sug- gestions are made where particular emphasis should be placed in future work, much of which will be developed in the frame of SCAR's EBA (Evolution and Biodiversity in the Antarctic) programme.

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Performed under contract no. HEW-105-76-1140, National Center for Child Advocacy and prepared by members of InterAmerica Research Associates.

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Mode of access: Internet.

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Mode of access: Internet.

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Mode of access: Internet.

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At head of title: By Marie Stanley.

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Mode of access: Internet.

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Thesis (M.S. in Geology)--University of California, Berkeley, 1914.