While there is extensive research on how Russian interference – in particular Russian disinformation operation – has played out in different European countries, indications of Russian interference directly targeting EU, its institutions or policies received little attention. This paper argues why there is good reason to assume that the EU, its institutions and its policies are an ideal a target for authoritarian regimes to exploit. It then explores in what ways, if any, Russian disinformation campaigning targeted EU institutions and their policies during the political and electoral campaigns leading up to the European Parliament (EP) elections of May 2019. In this context disinformation campaigning in terms of both network flows and contents (‘narratives’) have been examined, on the basis of a review of various reports identifying Russian interference and disinformation and of analyses of overall disinformation flows in Europe and the use of a database monitoring occurrences of disinformation.
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In January 2020, Greece, the Republic of Cyprus and Israel signed an agreement to construct the EastMed pipeline, a 1900-kilometer undersea pipeline designed to transport gas from the offshore deposits in the Leviathan field of the southeastern Mediterranean to continental Europe. Designed as Project of Common Interest (PCI) by European Commission since 2013, this pipeline aims to diversify the EU’s energy source, potentially reducing reliance on Russian gas. While progress had stalled, the Russian invasion of Ukraine reignited hopes for its construction. Nonetheless, the United States raised doubts about its viability and distanced itself from what it reportedly labeled a “contentious energy scheme”. Our report aims to assess the prospects of the EastMed pipeline, drawing insights from the energy security scenario analysis by the World Energy Council, Shell, and the Clingendael Institute. Beginning with background information on the project’s geological aspects, EU-driven regulatory framework, key stakeholders, and estimated costs, we’ll craft scenarios around three central storylines: 1) Market and Institutions, focusing on stable geopolitics and regional cooperation, 2) Regions and Empires, emphasizing Geopolitical Tensions, and, 3) Environmental Challenges.
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De vijfde Internationale conferentie over Inclusief Onderwijs werd gehouden in Azerbeidzjan op 14 en 15 oktober 2011. Dit verslag geeft een beeld van de conferentie en de informatie die daar werd gepresenteerd. Tevens wordt iets gezegd over actuele ontwikkelingen in Azerbeidzjan wat betreft de ontwikkeling van een meer inclusief onderwijssysteem en het verbeteren van de maatschappelijke positie van kinderen, jongeren en volwassenen met een beperking.
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With a market demand for low cost, easy to produce, flexible and portable applications in healthcare, energy, biomedical or electronics markets, large research programs are initiated to develop new technologies to provide this demand with new innovative ideas. One of these fast developing technologies is organic printed electronics. As the term printed electronics implies, functional materials are printed via, e.g. inkjet, flexo or gravure printing techniques, on to a substrate material. Applications are, among others, organic light emitting diodes (OLED), sensors and Lab-on-a-chip devices. For all these applications, in some way, the interaction of fluids with the substrate is of great importance. The most used substrate materials for these low-cost devices are (coated) paper or plastic. Plastic substrates have a relatively low surface energy which frequently leads to poor wetting and/or poor adhesion of the fluids on the substrates during printing and/ or post-processing. Plasma technology has had a long history in treating materials in order to improve wetting or promote adhesion. The µPlasma patterning tool described in this thesis combines a digital inkjet printing platform with an atmospheric dielectric barrier discharge plasma tool. Thus enabling selective and local plasma treatment, at atmospheric pressure, of substrates without the use of any masking materials. In this thesis, we show that dependent on the gas composition the substrate surface can either be functionalized, thus increasing its surface energy, or material can be deposited on the surface, lowering its surface energy. Through XPS and ATR-FTIR analysis of the treated (polymer) substrate surfaces, chemical modification of the surface structure was confirmed. The chemical modification and wetting properties of the treated substrates remained present for at least one month after storage. Localized changes in wettability through µPlasma patterning were obtained with a resolution of 300µm. Next to the control of wettability of an ink on a substrate in printed electronics is the interaction of ink droplets with themselves of importance. In printing applications, coalescence of droplets is standard practice as consecutive droplets are printed onto, or close to each other. Understanding the behaviour of these droplets upon coalescence is therefore important, especially when the ink droplets are of different composition and/or volume. For droplets of equal volume, it was found that dye transport across the coalescence bridge could be fully described by diffusion only. This is as expected, as due to the droplet symmetry on either side of the bridge, the convective flows towards the bridge are of equal size but opposite in direction. For droplets of unequal volume, the symmetry across the bridge is no longer present. Experimental analysis of these merging droplets show that in the early stages of coalescence a convective flow from the small to large droplet is present. Also, a smaller convective flow of shorter duration from the large into the small droplet was identified. The origin of this flow might be due to the presence of vortices along the interface of the bridge, due to the strong transverse flow to open the bridge. To conclude, three potential applications were showcased. In the first application we used µPlasma patterning to create hydrophilic patterns on hydrophobic dodecyl-trichlorosilane (DTS) covered glass. Capillaries for a Lab-on-a-chip device were successfully created by placing two µPlasma patterned glass slides on top of each other separated by scotch tape. In the second application we showcased the production of a RFID tag via inkjet printing. Functional RFID-tags on paper were created via inkjet printing of silver nanoparticle ink connected to an integrated circuit. The optimal operating frequency of the produced tags is in the range of 860-865 MHz, making them usable for the European market, although the small working range of 1 m needs further improvement. Lastly, we showed the production of a chemresistor based gas sensor. In house synthesised polyemeraldine salt (PANi) was coated by hand on top of inkjet printed silver electrodes. The sensor proved to be equally sensitive to ethanol and water vapour, reducing its selectivity in detecting changes in gas composition.
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Alle reden om lessen te trekken uit de huidige gascrisis en aan te sturen op een energiesysteem dat veel beter bestand is tegen verrassingen
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Given the increasing importance of sustainability as a part of one’s daily routine and life in countries in the European Union, there is a need to establish a basic understanding of the attitudes, behaviours and culture among older people. This, in turn, should lead to better policies which help alleviate the effects of the current cost-of-living and energy crises and make our societies more sustainable and resilient. Despite the growing awareness of sustainability amongst the general public, a conceptual model of a sustainable lifestyle among older people is missing. The existing reports from the WHOprovide some guidance on how to move along, as they touch upon items that are related to sustainability such as walkability, proximity to transportation stops and emergency preparedness, and highlight the need to improve the fit between people’s needs and the environments in which they live. Any effort to come up with such a conceptual model would have to acknowledge that energy conservation and sustainable behaviours among our older population, as was shown by Bennetts et al., are not an integral part of all older people’s lifestyles and day-to-day choices. Also, following Dikken et al.,many seemingly sustainable choices may be made purely out of financial necessity. New models and policies would have to acknowledge that in times of declining purchase power, the majority of older people living on the edge make sacrifices in terms of energy use in the broadest sense of the word due to financial constraints and not out of concern for the environment.
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In elk beleidsstuk staat het: Nederland/Europa streeft naar betrouwbare, betaalbare en schone energie. In de praktijk komt betrouwbaar er nogal magertjes van af. “Natuurlijk beseft men in Den Haag en Brussel dat energiezekerheid van extreem grote maatschappelijke betekenis is. De gascrisis laat dit ook wel zien. Tegelijk onderstreept deze gebeurtenis het falen tot nu toe.”
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The Interreg Europe eBussed project supports the transition of European regions towards low carbon mobility and more efficient transport. The regions involved are Turku (Finland), Hamburg (Germany), Utrecht (The Netherlands), Livorno (Italy), South Transdanubia (Hungary) and Gozo island in Malta. It promotes the uptake of e-busses in new regions and supports the expansion of existing e-fleets. Within the project, there are four thematic working groups formed that aim at delivering a best practices report and policy recommendations to be used in the partner regions. Thematic Working Group 4 (TWG4) focusses on the topics of Procurement, Tendering and Costs of e-busses. As a starting point for TWG4, the value chain for e-bus public transport per region has been mapped. By mapping how the value chain for e-bus public transport works and defining the nature of the issues, problems or maybe challenges per region can be better understood.
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Natuurlijk, we moeten vol blijven inzetten op windenergie, “De winderige, ondiepe Noordzee is voor Nederland en de andere landen in Noordwest-Europa een enorme asset. Maar laten we ervoor waken onze samenleving er te afhankelijk van te maken. Dus ook zorgen voor significante bijdragen van andere CO2-vrije energiebronnen. Hoe meer en hoe groter hun aandeel, des te beter.”
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Peatlands can be found in almost every country in the world, but we areonly just starting to realise their value and how to harness their potential asa powerhouse nature-based solution. The more we learn about peatlands,the more we value the important services they provide - controllingfloods, purifying and supplying water, safeguarding species,harbouring deep cultural meaning, inspiring creativity and offeringlivelihoods to millions of people. We cannot afford to lose them or abusethem. A lack of understanding of peatlands’ vital role in the landscape, combined with outdated policies and perverse incentives, means that peatlands continue to be drained and damaged around the world. Peatlands are our largest terrestrial organic carbon stock, and if we are to meet ourglobal goals and commitments, we must work hard to understand,protect, restore, and sustainably manage these vital ecosystems. This Peatlands Across Europe: Innovation & Inspiration Guide is a valuable step towards that reality – it captures important recommendations, shares the cutting edge experiences of peatland restoration pioneers, and identifies gaps, priorities and lessons from across Europe that can be taken up by peatland practitioners around the globe.
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