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The ATHENA Alliance Promotes Collaboration Between Lithuanian and Ukrainian Researchers: VILNIUS TECH Hosts KPI Representatives

March 28, 2025
The collaboration between Lithuanian and Ukrainian researchers is strengthening: VILNIUS TECH hosts colleagues from the National Technical University of Ukraine “Igor Sikorsky Kyiv Polytechnic Institute” (KPI). Professors Jurii Bogomol and Oleksandr Bondarenko, who arrived under the Erasmus+ mobility program, presented the latest developments and scientific research in the fields of materials engineering and electronics at KPI. Together with their colleagues, they discussed the opportunities for the Lithuanian-Ukrainian program announced by the Lithuanian Research Council (LMT), which will support joint research projects in 2026-2027 on the topics of safe infrastructure, resilient societies and states, and human security.
 
Such meetings are highly valuable in strengthening collaboration within the ATHENA Alliance. They also provide opportunities for networking, sharing best practices, and getting acquainted with the latest higher education practices. The insights gained and the connections established significantly contribute to the university's efforts to enhance international relations and serve as a base for new projects.
 
VILNIUS TECH is a member of the ATHENA European University Alliance (https://athenauni.eu/), which continuously creates mobility and collaboration opportunities for students and staff. The ATHENA Alliance partners include universities from ten European countries: Greece, Italy, Poland, Lithuania, Portugal, Slovenia, Spain, France, Germany, and Ukraine.
 
Initiative is funded by the Economic recovery and resilience plan "Next generation Lithuania" and the state budget of the Republic of Lithuania.

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New doctoral dissertation
New doctoral dissertation
VILNIUS TECH Library invites you to follow the published new dissertations. The dissertation „Twin transition impact assessment model for agricultural performance in the context of sustainability“ prepared at VILNIUS TECH by Kristina Šermukšnytė-Alešiūnienė. The dissertation was prepared in 2020–2026. Scientific consultant – Dr Rasa Melnikienė. The dissertation was defended at the public meeting of the Dissertation Defence Council of the Scientific Field of Economics in the Aula Doctoralis Meeting Hall of Vilnius Gediminas Technical University at 10 a. m. on 22 September 2026. The twin transition in agriculture, combining the digital and green transitions, is one of the key directions of the European Union’s strategy for developing a more sustainable, resilient, and competitive agricultural sector. This dissertation addresses the problem of how to assess the impact of digital and green transitions on agricultural performance in the context of sustainability. The dissertation aims to develop and empirically substantiate the Twin Transition Impact Assessment Model. The model integrates three assessment levels: farm-level adoption and economic performance; the bioeconomy and value-chain level; and the national and regional context level. Structural asymmetries and enabling mechanisms are included as cross-cutting components. A mixed-methods research design was applied, combining scientific literature analysis, conceptual synthesis, case-study analysis, structured survey analysis, comparative assessment, correlation and regression analysis, sensitivity analysis, semi-structured interviews, document review, and the synthesis of empirical findings. The empirical basis consists of five interconnected studies covering small-farm digitalisation, digital technology adoption in sustainable agriculture and the bioeconomy, the twin transition in Lithuania and Romania, food supply-chain digitalisation, and structural asymmetries in Lithuania’s bioeconomy transition. The empirical results show that the twin transition improves agricultural performance when digital and green solutions are integrated across the farm, value chain, and regional and national levels. Digitalisation supports labour efficiency, planning, customer relations, investment decisions, loss reduction, traceability, product quality, and supply-chain visibility, while also contributing to resource efficiency, renewable energy use, water-use efficiency, emissions reduction, carbon sequestration, and climate resilience. The empirical evidence indicates that the effects of digital and green transitions depend on infrastructure, investment capacity, policy support, digital skills and institutional conditions. The results also show structural differences in transition outcomes: higher investment intensity does not automatically produce stronger economic results, and digital adoption may occur separately from ecological production orientation. On this basis, the dissertation concludes that digital and green transitions can strengthen agricultural performance and sustainability when they are integrated, context-specific and supported by enabling mechanisms. The proposed model provides a scientific and practical framework for assessing agricultural performance under the twin transition across farm-level, bioeconomy and agri-food value-chain, regional-national and structural dimensions. Doctoral dissertation readers can search via VILNIUS TECH Virtual Library.
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