Dushanbe electric vehicle infrastructure

Ahn, S.-J., Kim, L., & Kwon, O. (2018). Korea's social dynamics towards power supply and air pollution caused by electric vehicle diffusion. Journal of Cleaner Production, 205, 1042–1068. https://doi.org/10.1016/j.jclepro.2018.09.078
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Ahn, S.-J., Kim, L., & Kwon, O. (2018). Korea''s social dynamics towards power supply and air pollution caused by electric vehicle diffusion. Journal of Cleaner Production, 205, 1042–1068. https://doi /10.1016/j.jclepro.2018.09.078

Ahn, Y.-J., & Juraev, Z. (2024). Examination of regional water governance and water insecurity issues in Central Asia. Sustainable Water Resources Management, 10(3), 118. https://doi /10.1007/s40899-024-01099-y

Ajanovic, A., Haas, R., & Schrödl, M. (2021). On the Historical Development and Future Prospects of Various Types of Electric Mobility. Energies, 14, 1070. https://doi /10.3390/en14041070

Albrechtowicz, P. (2023). Electric vehicle impact on the environment in terms of the electric energy source — Case study. Energy Reports, 9, 3813–3821. https://doi /10.1016/j.egyr.2023.02.088

Alochet, M., MacDuffie, J. P., & Midler, C. (2023). Mirroring in production? Early evidence from the scale-up of Battery Electric Vehicles (BEVs). Industrial and Corporate Change, 32(1), 61–111. https://doi /10.1093/icc/dtac028

ASIA-Plus. (2023). About 1,600 electric vehicles now run along Tajikistan''s highways, says transport minister. ASIA-Plus. https://asiaplustj /en/news/tajikistan/economic/20230801/about-1600-electric-vehicles-now-run-along-tajikistans-highways-says-transport-minister

Bacquart, T., Moore, N., Mattelaer, V., Olden, J., Si, A., Morris, O., Storms, W., & Murugan, A. (2022). First Hydrogen Fuel Sampling from a Fuel Cell Hydrogen Electrical Vehicle – Validation of Hydrogen Fuel Sampling System to Investigate FCEV Performance. Processes, 10, 1709. https://doi /10.3390/pr10091709

Bennett, R., & Vijaygopal, R. (2018). Consumer attitudes towards electric vehicles Effects of product user stereotypes and self-image congruence. European Journal of Marketing, 52(3/4), 499–527. https://doi /10.1108/EJM-09-2016-0538

Choi, H., Lee, J., & Koo, Y. (2023). Value of different electric vehicle charging facility types under different availability situations: A South Korean case study of electric vehicle and internal combustion engine vehicle owners. Energy Policy, 174, 113436. https://doi /10.1016/j.enpol.2023.113436

Hofman, I., & Visser, O. (2021). Towards a geography of window dressing and benign neglect: The state, donors and elites in Tajikistan''s trajectories of post-Soviet agrarian change. Land Use Policy, 111, 105461. https://doi /10.1016/j.landusepol.2021.105461

Jing, Y., Zhang, Z., Shi, H., Wang, J., Xu, R., Li, M., & Zhang, G. (2021). The present and future of electric vehicles : Market analysis and forecast of different types of electric vehicles. 2021 International Conference on Artificial Intelligence and Electromechanical Automation (AIEA), 161–164. https://doi /10.1109/AIEA53260.2021.00042

Kanimozhi, G., Natrayan, L., Angalaeswari, S., & Paramasivam, P. (2022). An Effective Charger for Plug-In Hybrid Electric Vehicles (PHEV) with an Enhanced PFC Rectifier and ZVS-ZCS DC/DC High-Frequency Converter. Journal of Advanced Transportation, 2022(1), 7840102. https://doi /10.1155/2022/7840102

Karoń, G. (2022). Safe and Effective Smart Urban Transportation—Energy Flow in Electric (EV) and Hybrid Electric Vehicles (HEV). Smart Cities, 4, 372–404. https://doi /10.3390/ smartcities4010022

Kataeva, Z. (2024). Gender and the navigation of STEM careers in higher education institutions: Narratives of female faculty in post-Soviet Tajikistan. Compare: A Journal of Comparative and International Education, 54(1), 55–73. https://doi /10.1080/03057925.2022.2078954

Kataeva, Z., & DeYoung, A. J. (2017). Gender and the academic profession in contemporary Tajikistan: challenges and opportunities expressed by women who remain. Central Asian Survey, 36(2), 247–262. https://doi /10.1080/02634937.2017.1287663

Lee, D., Park, G.-J., Son, B., & Jung, H.-C. (2019). Efficiency improvement of IPMSG in the electric power generating system of a range-extended electric vehicle. IET Electric Power Applications, 13(7), 943–950. https://doi /10.1049/iet-epa.2018.5387

Liao, F., Molin, E., Timmermans, H., & Wee, B. Van. (2018). The impact of business models on electric vehicle adoption : A latent transition analysis approach. Transportation Research Part A, 116, 531–546. https://doi /10.1016/j.tra.2018.07.008

O''Brien, M. L. (2020). Disruption and decline: the gendered consequences of civil war and political transition for education in Tajikistan. Post-Soviet Affairs, 36(4), 323–345. https://doi /10.1080/1060586X.2019.1701880

Rietmann, N., & Lieven, T. (2019). How policy measures succeeded to promote electric mobility – Worldwide review and outlook. Journal of Cleaner Production, 206, 66–75. https://doi /10.1016/j.jclepro.2018.09.121

Sałabun, W., & Karczmarczyk, A. (2018). Using the COMET Method in the Sustainable City Transport Problem: an Empirical Study of the Electric Powered Cars. Procedia Computer Science, 126, 2248–2260. https://doi /10.1016/j.procs.2018.07.224

Sanguesa, J. A., Torres-sanz, V., Garrido, P., Martinez, F. J., & Marquez-barja, J. M. (2021). smart cities A Review on Electric Vehicles : Technologies and Challenges. Smart Cities, 4, 372–404. https://doi /10.3390/ smartcities4010022

Shafiei, M., & Ghasemi-marzbali, A. (2022). Fast-charging station for electric vehicles, challenges and issues : A comprehensive review. Journal of Energy Storage, 49, 104136. https://doi /10.1016/j.est.2022.104136

About Dushanbe electric vehicle infrastructure

About Dushanbe electric vehicle infrastructure

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