يعرض 1 - 20 نتائج من 136 نتيجة بحث عن '"Systemic vulnerability"', وقت الاستعلام: 0.77s تنقيح النتائج
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    المؤلفون: Andra-Cosmina Albulescu

    المصدر: Remote Sensing; Volume 15; Issue 5; Pages: 1453

    جغرافية الموضوع: agris

    وصف الملف: application/pdf

    Relation: Environmental Remote Sensing; https://dx.doi.org/10.3390/rs15051453

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    المؤلفون: Adriana Galderisi, Giada Limongi

    المصدر: Sustainability; Volume 13; Issue 16; Pages: 9055

    جغرافية الموضوع: agris

    وصف الملف: application/pdf

    Relation: Social Ecology and Sustainability; https://dx.doi.org/10.3390/su13169055

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    المساهمون: University of Geneva, Politecnico di Milano, Istituto Nazionale di Geofisica e Vulcanologia (INGV), Sezione Bologna, Bologna, Italia

    Relation: Frontiers in Earth Science; /9 (2021); Andersen, B., and Fagerhaug, T. (2006). Root Cause Analysis: Simplified Tools and Techniques. 2nd Edn. Milwaukee: William A. Tony Armijos, M. T., and Few, R. (2017). Surviving Disaster: Resettlement, Recovery and Ongoing Risk at Nevado del Ruiz, ColombiaTech. rep (Norwich: University of East Anglia) Armijos, M. T., Phillips, J., Wilkinson, E., Barclay, J., Hicks, A., Palacios, P., et al. (2017). Adapting to Changes in Volcanic Behaviour: Formal and Informal Interactions for Enhanced Risk Management at Tungurahua Volcano, Ecuador. Glob. Environ. Change 45, 217–226. doi:10.1016/j.gloenvcha.2017.06.002 CrossRef Full Text %7C Google Scholar Barclay, J., Wilkinson, E., White, C. S., Shelton, C., Forster, J., Few, R., et al. (2019). Historical Trajectories of Disaster Risk in Dominica. Int. J. Disaster Risk Sci. 10, 149–165. doi:10.1007/s13753-019-0215-z CrossRef Full Text %7C Google Scholar Blake, D. M., Deligne, N. I., Wilson, T. M., Lindsay, J. M., and Woods, R. (2017). Investigating the Consequences of Urban Volcanism Using a Scenario Approach Ii: Insights into Transportation Network Damage and Functionality. J. Volcanology Geothermal. Res. 340, 92–116. doi:10.1016/j.jvolgeores.2017.04.010 CrossRef Full Text %7C Google Scholar Bonadonna, C., Biass, S., Manzella, I., Frischknecht, C., Gregg, C., Galderisi, A., et al. (2009). ENSURE Framework. WP 5: Application of an Integrated Vulnerability Conceptual approach. Del. 5.3.3: Development of the Integrated Approach on the Vulcano Case Study. Tech. rep., Eur. Comm. 155. Google Scholar Bonadonna, C., Cioni, R., Pistolesi, M., Elissondo, M., and Baumann, V. (2015). Sedimentation of Long-Lasting Wind-Affected Volcanic Plumes: the Example of the 2011 Rhyolitic Cordón Caulle Eruption, Chile. Bull. Volcanology 77, 1–13. doi:10.1007/s00445-015-0900-8 CrossRef Full Text %7C Google Scholar Burton, I. (2010). Forensic Disaster Investigations in Depth: A New Case Study Model. Environ. Sci. Pol. Sustainable Development 52, 36–41. doi:10.1080/00139157.2010.507144 CrossRef Full Text %7C Google Scholar Craig, H. M., Wilson, T., Stewart, C., Outes, V., Villarosa, G., and Baxter, P. (2016a). Impacts to Agriculture and Critical Infrastructure in Argentina after Ashfall from the 2011 Eruption of the Cordón Caulle Volcanic Complex: an Assessment of Published Damage and Function Thresholds. J. Appl. Volcanology 5, 1–31. doi:10.1186/s13617-016-0046-1 CrossRef Full Text %7C Google Scholar Craig, H. M., Wilson, T., Stewart, C., Villarosa, G., Outes, V., Cronin, S., et al. (2016b). Agricultural Impact Assessment and Management after Three Widespread Tephra Falls in Patagonia, South America. Nat. Hazards 82, 1167–1229. doi:10.1007/s11069-016-2240-1 CrossRef Full Text %7C Google Scholar De Groeve, T., Corbane, C., and Ehlrich, D. (2015). Guidance for Recording and Sharing Disaster Damage and Loss Data. Tech. rep., Luxembourg: European Commission Joint Research Centre (EU-JRC) Report EUR 27192. De Groeve, T., Poljansek, K., Ehlrich, D., and Corbane, C. (2014). Current Status and Best Practices for Disaster Loss Data Recording in EU Member States: A Comprehensive Overview of Current Practice in the EU Member States. Tech. rep. Luxembourg: European Commission Joint Research Centre (EU-JRC) Report EUR 26879. De Groeve, T., Poljansek, K., and Ehlrich, D. (2013). Recording Disaster Losses: Recommendations for a European Approach. Tech. rep., Luxembourg: European Commission Joint Research Centre (EU-JRC). Report EUR 26111. Deligne, N. I., Fitzgerald, R. H., Blake, D. M., Davies, A. J., Hayes, J. L., Stewart, C., et al. (2017). Investigating the Consequences of Urban Volcanism Using a Scenario Approach I: Development and Application of a Hypothetical Eruption in the Auckland Volcanic Field, New Zealand. J. Volcanology Geothermal Res. 336, 192–208. doi:10.1016/j.jvolgeores.2017.02.023 CrossRef Full Text %7C Google Scholar Dominguez, L., Bonadonna, C., and Bran, D. (2020a). Workshop on the Impacts Associated with the Primary Fallout of Volcanic Ash and Subsequent Aeolian Remobilisation, Consensual Document. Tech. rep., Geneva: University of Geneva (UNIGE) Available at: https://vhub.org/resources/4611 (Accessed September 10, 2020). Dominguez, L., Bonadonna, C., Forte, P., Jarvis, P. A., Cioni, R., Mingari, L., et al. (2020b). Aeolian Remobilisation of the 2011-Cordón Caulle Tephra-Fallout Deposit : Example of an Important Process in the Life Cycle of Volcanic Ash. Front. Earth Sci. 7, 1–20. doi:10.3389/feart.2019.00343 CrossRef Full Text %7C Google Scholar Dudenhoeffer, D. D., Permann, M. R., and Manic, M. (2006). Cims: A Framework for Infrastructure Interdependency Modeling and Analysis. In Proceedings of the 2006 Winter Simulation Conference, 478–485. Google Scholar Elissondo, M., Baumann, V., Bonadonna, C., Pistolesi, M., Cioni, R., Bertagnini, A., et al. (2016). Chronology and Impact of the 2011 Cordón Caulle Eruption, Chile. Nat. Hazards Earth Syst. Sci. 16, 675–704. doi:10.5194/nhess-16-675-2016 CrossRef Full Text %7C Google Scholar Eusgeld, I., Nan, C., and Dietz, S. (2011). "System-of-systems" Approach for Interdependent Critical Infrastructures. Reliability Eng. Syst. Saf. 96, 679–686. doi:10.1016/j.ress.2010.12.010 CrossRef Full Text %7C Google Scholar Few, R., Armijos, M. T., and Barclay, J. (2017). Living with Volcan Tungurahua: The Dynamics of Vulnerability during Prolonged Volcanic Activity. Geoforum. 80, 72–81. doi:10.1016/j.geoforum.2017.01.006 CrossRef Full Text %7C Google Scholar Forte, P., Domínguez, L., Bonadonna, C., Gregg, C. E., Bran, D., Bird, D., et al. (2018). Ash Resuspension Related to the 2011-2012 Cordón Caulle Eruption, Chile, in a Rural Community of Patagonia, Argentina. J. Volcanology Geothermal. Res. 350, 18–32. doi:10.1016/j.jvolgeores.2017.11.021 CrossRef Full Text %7C Google Scholar Garcia-Aristizabal, A., Capuano, P., Russo, R., and Gasparini, P. (2017). Multi-hazard Risk Pathway Scenarios Associated with Unconventional Gas Development: Identification and Challenges for Their Assessment. Energ. Proced. 125, 116–125. doi:10.1016/j.egypro.2017.08.087 CrossRef Full Text %7C Google Scholar Garcia-Aristizabal, A., Kocot, J., Russo, R., and Gasparini, P. (2019). A Probabilistic Tool for Multi-Hazard Risk Analysis Using a Bow-Tie Approach: Application to Environmental Risk Assessments for Geo-Resource Development Projects. Acta Geophys. 67, 385–410. doi:10.1007/s11600-018-0201-7 CrossRef Full Text %7C Google Scholar Garcia-Aristizabal, A., Polese, M., Zuccaro, G., Almeida, M., and Aubrecht, C. (2015). Improving Emergency Preparedness with Simulation of Cascading Events Scenarios. In 12th International Conference on Information Systems for Crisis Response and Management, 1–9. Kristiansand: ISCRAM 2015 PubMed AbstractGoogle Scholar Gasparini, P., and Garcia-Aristizabal, A. (2014). Seismic Risk Assessment, Cascading Effects. in Encyclopedia of Earthquake Engineering. Springer, 1–20. doi:10.1007/978-3-642-36197-5_260-1 CrossRef Full Text %7C Google Scholar Hayes, J. L., Blake, D. M., Davies, A. J., Fitzgerald, R. H., Wilson, G., Wilson, T. M., et al. (2016). A Multi-Disciplinary Approach to Developing a Volcanic Eruption Scenario and Temporal Evolution of Impacts to Critical Infrastructure. In 1st International Conference on Natural Hazards and Infrastructure, 1–10 PubMed AbstractGoogle Scholar Hicks, A., and Few, R. (2015). Trajectories of Social Vulnerability during the Soufriere Hills Volcanic Crisis. J. Appl. Volcanology 4, 1–15. doi:10.1186/s13617-015-0029-7 CrossRef Full Text %7C Google Scholar IAEA (2015). Root Cause Analysis Following an Event at a Nuclear Installation: Reference Manual. Tech. Rep. TECDOC-1756. Vienna: International Atomic Energy Agency (IAEA). InfoLEG (2015). Ministerio de Planificación Federal, Inversión Pública y Servicios. Tech. rep., Ministerio de Planificación Federal, Inversión Pública y Servicios - Secretaría de Energía (Argentina). Available at: http://servicios.infoleg.gob.ar/infolegInternet/anexos/245000-249999/248465/norma.htm (Accessed 10 May, 2020) IRDR (2011). Forensic Investigations of Disasters: The FORIN Project. Tech. rep., Beijing: Integrated Research on Disaster Risk (IRDR)Available at: http://www.irdrinternational.org/projects/forin/about-forin/ (Accessed November 15, 2018). Jenkins, S. F., Phillips, J. C., Price, R., Feloy, K., Baxter, P. J., Hadmoko, D. S., et al. (2015a). Developing Building-Damage Scales for Lahars: Application to Merapi Volcano, Indonesia. Bull. Volcanology 77, 75. doi:10.1007/s00445-015-0961-8 CrossRef Full Text %7C Google Scholar Jenkins, S. F., Wilson, T. M., Magill, C., Miller, V., Stewart, C., Marzocchi, W., et al. (2015b). Volcanic Ash Fall Hazard and Risk. In Global Volcanic Hazards and Risk. Cambridge University Press, 173–221. Google Scholar Livingston, A. D., and Jackson, G. (2001). Root Causes Analysis : Literature Review. 1st Edn. Warrington: WS Atkins Consultants Ltd. Lopez Chachalo, A. J. (2017). Evaluación del impacto de ceniza volcánica en la rigidez dieléctrica de aisladores de suspensión en líneas de alto voltaje mediante análisis del factor de pérdida dieléctrica. PhD thesis. Quito: Escuela Politécnica Nacional. Google Scholar Lopez Chachalo, A., Ramírez, J., Vásconez, F., Bernard, B., Fausto, V., Hidalgo, S., et al. (2016). Volcanic Ash Impacts on the Dielectric Strength of HVAC Outdoor Suspension Insulators: the Case of Cotopaxi and Tungurahua Volcanoes (Ecuador). Cities on Volcanoes 9. In Understanding Volcanoes and Society: The Key for 2507 Risk Mitigation City (Mitigation City: Puerto Varas). Google Scholar Magill, C., Wilson, T., and Okada, T. (2013). Observations of Tephra Fall Impacts from the 2011 Shinmoedake Eruption, Japan. Earth Planet. Sp. 65, 677–698. doi:10.5047/eps.2013.05.010 CrossRef Full Text %7C Google Scholar Marzocchi, W., Garcia-Aristizabal, A., Gasparini, P., Mastellone, L., and Di Ruocco, A. (1995). Basic Principles of Multi-Risk Assessment: a Case Study in Italy. Nat. Hazards 100, 551–573. Google Scholar Mendoza, M. T. (2019). Forensic Investigation of Post-Flood Damage Data to Support Spatial Planning. PhD thesis. Milan: Politecnico di Milano. Google Scholar Menoni, S., Bonadonna, C., García, M., and Schawarze, R. (2017). “Recording Disaster Losses for Improving Risk Modelling Capacities,” in Science for Disaster Risk Management 2017: Knowing Better and Losing Less. Editors K. Poljanšek, M. Marín Ferrer, T. De Groeve, and I. Clark, chap. 2.4, 85–130. Google Scholar Menoni, S., Molinari, D., Parker, D., Ballio, F., and Tapsell, S. (2012). Assessing Multifaceted Vulnerability and Resilience in Order to Design Risk-Mitigation Strategies. Nat. Hazards 64, 2057–2082. doi:10.1007/s11069-012-0134-4 CrossRef Full Text %7C Google Scholar Murgida, A. M., Laham, F. M., Chiappe, C. J. P., and Kazimierski, M. A. (2016). Desarrollo territorial bajo sequía y cenizas. Iluminuras 17, 11–29. doi:10.22456/1984-1191.64556 CrossRef Full Text %7C Google Scholar OVDAS (2012). Reportes de Actividad Volcánica, Región Los Ríos - Los Lagos, 2010 to 2012. Tech. rep., Temuco: Volcano Observatory of the Southern Andes - Servicio Nacional de Geología y Minería (OVDAS-SERNAGEOMIN)Available at: https://www.sernageomin.cl/complejo-volcanico-puyehue-cordon-caulle/ (Accessed January 31, 2020). Oxford Economics(2010). The Economic Impacts of Air Travel Restrictions Due to Volcanic Ash. A Report Prepared for Airbus (Oxford), 1–12. Available at: https://www.oxfordeconomics.com/my-oxford/projects/129051 (Accessed December 10, 2019) Pescaroli, G., and Alexander, D. (2015). A Definition of Cascading Disasters and Cascading Effects : Going beyond the “toppling dominos” metaphor, in Planet@Risk (Davos: Global Risk Forum GRF Davos), Vol. 2, 58–67. Google Scholar Pistolesi, M., Cioni, R., Bonadonna, C., Elissondo, M., Baumann, V., Bertagnini, A., et al. (2015). Complex Dynamics of Small-Moderate Volcanic Events: the Example of the 2011 Rhyolitic Cordón Caulle Eruption, Chile. Bull. Volcanology 77, 1–24. doi:10.1007/s00445-014-0898-3 CrossRef Full Text %7C Google Scholar Pitilakis, K., Crowley, H., and Kaynia, A. M. (2014). SYNER-G : Typology Definition and Fragility Functions for Physical Elements at Seismic Risk. Tech. rep., Eur. Comm. New York: Springer, 27, 420. doi:10.1007/978-94-007-7872-6 Google Scholar Pitilakis, K., Franchin, P., Cavalieri, F., Pinto, P., Lupoi, A., Vanzi, I., et al. (2011). General Methodology for Systemic Vulnerability Assessment. Tech. rep., Eur. Comm. Google Scholar Pyle, D. M., Barclay, J., and Armijos, M. T. (2018). The 1902-3 Eruptions of the Soufrière, St Vincent: Impacts, Relief and Response. J. Volcanology Geothermal Res. 356, 183–199. doi:10.1016/j.jvolgeores.2018.03.005 CrossRef Full Text %7C Google Scholar Rinaldi, S. (2004). Modeling and Simulating Critical Infrastructures and Their Interdependencies. 37th Annual Hawaii International Conference On System Sciences. Proc. of the 2004, 1–8. Google Scholar Rinaldi, S. M., Peerenboom, J. P., and Kelly, T. K. (2001). Identifying, Understanding, and Analyzing Critical Infrastructure Interdependencies. IEEE Control. Syst. Mag. 21, 11–25. doi:10.1109/37.969131 Google Scholar Rofman, A. (2010). La Economía Solidaria Y Los Desafíos Actuales. Revista de Ciencias Sociales, segunda época 2, 159–175. Google Scholar Rose, A. (2004). “Economic Principles, Issues, and Research Priorities in Hazard Loss EstimationModeling Spatial and Economic Impacts of Disasters,” in Advances in Spatial Science Editors Y. Okuyama, and S. Chang (Springer), chap. 2, 13–36. doi:10.1007/978-3-540-24787-6_2 CrossRef Full Text %7C Google Scholar Ruijter, A., and Guldenmund, F. (2015). The Bowtie Method: A Review. Saf. Sci. 88, 211–218. doi:10.1016/j.ssci.2016.03.001 Google Scholar Sapountzaki, K., Wassenhoven, L., Melissourgos, Y., Menoni, S., Kundak, S., Desramaut, N., et al. (2009). ENSURE Framework. WP 2: Integration and Connection of Vulnerabilities. Del. 2.1.2: Relation between Systemic and Physical Vulnerability and Relation between Systemic, Social, Economic, Institutional and Territorial Vulnerability. Tech. rep., Eur. Comm. 93. Google Scholar Scaini, C., Biass, S., Galderisi, A., Bonadonna, C., Folch, A., Smith, K., et al. (2014). A Multi-Scale Risk Assessment for Tephra Fallout and Airborne Concentration from Multiple Icelandic Volcanoes - Part 2: Vulnerability and Impact. Nat. Hazards Earth Syst. Sci. 14, 2289–2312. doi:10.5194/nhess-14-2289-2014 CrossRef Full Text %7C Google Scholar Schultz, M. T., Gouldby, B. P., Simm, J. D., and Wibowo, J. L. (2010). Beyond the Factor of Safety : Developing Fragility Curves to Characterize System Reliability-US Army Corps of Engineers. Tech. Rep. Washington: US Army Corps of Engineers. doi:10.21236/ada525580 CrossRef Full Text Setola, R., and Theocharidou, M. (2016). “Modelling Dependencies between Critical Infrastructures,”. Managing the Complexity of Critical Infrastructures. Editors R. Setola, V. Rosatto, E. Kyriakides, and E. Rome (Cham, Switzerland: Springer Nature), 90 chap. 2, 19–41. doi:10.1007/978-3-319-51043-9_2 CrossRef Full Text %7C Google Scholar Stamatelatos, M., and Vesely, W. (2002). Fault Tree Handbook with Aerospace Applications. Washington: Tech. Rep. 8, National Aeronautics and Space Administration (NASA) Sutton, I. (2015). Process Risk and Reliability Management. second edn. Elsevier Sword-Daniels, V. L., Rossetto, T., Wilson, T. M., and Sargeant, S. (2015). Interdependence and Dynamics of Essential Services in an Extensive Risk Context: a Case Study in Montserrat, West Indies. Nat. Hazards Earth Syst. Sci. 15, 947–961. doi:10.5194/nhess-15-947-2015 CrossRef Full Text %7C Google Scholar UNDRR (2019). Global Assessment Report on Disaster Risk Reduction. Tech. Rep. Geneva: United Nations Office for Disaster Risk Reduction (UNDRR) Venkateswaran, K., MacClune, K., Keating, A., and Szönyi, M. (2015). The PERC Manual. Learning from Disasters to Build Resilience: a Simple Guide to Conducting a Post Event Review. Tech. rep., Zurich Insurance. Available at: https://floodresilience.net/resources/item/the-perc-manual (Accessed December 5, 2018) Google Scholar Walia, A., Menoni, S., Farah Dell’Aringa, M., Bakon, M., Rovnak, M., Milenov, K., et al. (in press). Methodologies for Disaster Impact Assessmen. In EU JRC Science for DRM 2020: Acting Today, Protecting Tomorrow, chap. 3.1 (Luxembourg: European Commission Joint Research Centre, EU-JRC). Google Scholar Wantim, M. N., Bonadonna, C., Gregg, C. E., Menoni, S., Frischknecht, C., Kervyn, M., et al. (2018). Forensic Assessment of the 1999 Mount Cameroon Eruption, West-Central Africa. J. Volcanology Geothermal Res. 358, 13–30. doi:10.1016/j.jvolgeores.2018.06.007 CrossRef Full Text %7C Google Scholar Wardman, J. B., Wilson, T. M., Bodger, P. S., Cole, J. W., and Stewart, C. (2012). Potential Impacts from Tephra Fall to Electric Power Systems: A Review and Mitigation Strategies. Bull. Volcanol. 74, 2221–2241. doi:10.1007/s00445-012-0664-3 CrossRef Full Text %7C Google Scholar Wardman, J. B., Wilson, T. M., Cole, J. W., Bodger, P. S., and Johnston, D. M. (2010). Quantifying the Vulnerability of High Voltage Power Transmission Systems to Volcanic Ashfall Hazards. In EEA Conference And Exhibition, 2010 (Christchurch), 17–18. Google Scholar Wardman, J., Wilson, T., Hardie, S., and Bodger, P. (2014). Influence of Volcanic Ash Contamination on the Flashover Voltage of HVAC Outdoor Suspension Insulators. IEEE Trans. Dielect. Electr. Insul. 21, 1189–1197. doi:10.1109/tdei.2014.6832265 CrossRef Full Text %7C Google Scholar Wild, A. J., Wilson, T. M., Bebbington, M. S., Cole, J. W., and Craig, H. M. (2019). Probabilistic Volcanic Impact Assessment and Cost-Benefit Analysis on Network Infrastructure for Secondary Evacuation of Farm Livestock: A Case Study from the Dairy Industry, Taranaki, New Zealand. J. Volcanology Geothermal Res. 387, 1–20. doi:10.1016/j.jvolgeores.2019.106670 CrossRef Full Text %7C Google Scholar Wilson, G., Wilson, T. M., Deligne, N. I., and Cole, J. W. (2014). Volcanic Hazard Impacts to Critical Infrastructure: A Review. J. Volcanology Geothermal Res. 286, 148–182. doi:10.1016/j.jvolgeores.2014.08.030 CrossRef Full Text %7C Google Scholar Wilson, T., Stewart, C., Bickerton, H., Baxter, P., Outes, V., Villarosa, G., et al. (2013). Impacts of the June 2011 Puyehue-Cordón Caulle Volcanic Complex Eruption on Urban Infrastructure, Agriculture and Public Health. Tech. Rep. GNS Science Report 2012/20, 88. Google Scholar Zuccaro, G., De Gregorio, D., and Leone, M. F. (2018). Theoretical Model for Cascading Effects Analyses. Int. J. Disaster Risk Reduction 30, 199–215. doi:10.1016/j.ijdrr.2018.04.019 CrossRef Full Text %7C Google Scholar; http://hdl.handle.net/2122/14778; https://www.frontiersin.org/articles/10.3389/feart.2021.645945/full

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    Conference

    المصدر: Lifelines 2022

    جغرافية الموضوع: Virtual

    وصف الملف: 914 - 926; Electronic

    Relation: Lifelines 2022: 1971 San Fernando Earthquake and Lifeline Infrastructure - Selected Papers from the Lifelines 2022 Conference; ORCID iD: Sotirios Argyroudis orcid:0000-0002-8131-3038; Poudel, A. et al. (2022) 'Systemic seismic vulnerability and risk assessment of urban infrastructure and utility systems', Lifelines 2022: 1971 San Fernando Earthquake and Lifeline Infrastructure - Selected Papers from the Lifelines 2022 Conference, 2022, 1 pp. 914 - 926. doi:10.1061/9780784484432.081.; https://bura.brunel.ac.uk/handle/2438/27415; https://doi.org/10.1061/9780784484432.081

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    Academic Journal

    المؤلفون: Matsiyevsky, Y.

    المصدر: Вестник Харьковского национального университета имени В. Н. Каразина. Серия «Вопросы политологии»; Том 30 (2016): Питання політології; 47-51 ; Вісник Харківського національного університету імені В. Н. Каразіна. Серія «Питання політології»; Том 30 (2016): Питання політології; 47-51 ; 2220-8089

    وصف الملف: application/pdf

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    Dissertation/ Thesis