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Adhikari U., Nejadhashemi A.P., Woznicki S.A. 2015. Climate change and eastern Africa: a review of impact on major crops. Food and Energy Security 4(2): 110–132. DOI: 10.1002/fes3.61. Open DOISearch in Google Scholar

Bielec-Bąkowska Z., Piotrowicz K. 2013. Extreme temperatures in Poland 1951–2006. Prace Geograficzne 132: 59–98. DOI: 10.4467/20833113pg.13.004.1094. [in Polish with English abstract] Open DOISearch in Google Scholar

Boryczka J. 2001. Climate of the Earth – past, present, future. Studies in Geography 29: 55–72. [in Polish with English abstract] Search in Google Scholar

Boryczka J., Stopa-Boryczka M. 2004. Cyclic temperature and precipitation fluctuations in Poland in 19th–21st century. Acta Agrophysica 3(1): 21–33. [in Polish with English abstract] Search in Google Scholar

Burroughs W.J. 2007. Climate Change: A Multidisciplinary Approach, 2nd ed. Cambridge University Press, 378 p. DOI: 10.1017/cbo9780511803819. Open DOISearch in Google Scholar

Cebulak E., Limanówka D. 2007. Days with extreme air temperatures in Poland. In: Piotrowicz K., Twardosz R. (Eds.), Climate variation at various scales of time and space. IGiGP U Kraków, Poland, pp. 185–194. [in Polish with English abstract] Search in Google Scholar

Doboszyński L., Doboszyńska J. 1963. Warunki meteorologiczno-rolnicze Skierniewic w czterdziestoleciu 1921–1960. Roczniki Nauk Rolniczych A 87(2): 369–397. [in Polish] Search in Google Scholar

Ghazi B., Przybylak R., Pospieszyńska A. 2023. Projection of climate change impacts on extreme temperature and precipitation in Central Poland. Scientific Reports 13; 18772; 13 p. DOI: 10.1038/s41598-023-46199-5. Open DOISearch in Google Scholar

Gumiński R. 1998. Attempts to delimit agroclimatic provinces in Poland. Studies in Geography 22: 69–117. [in Polish with English abstract] Search in Google Scholar

He Q., Silliman B.R. 2019. Climate change, human impacts, and coastal ecosystems in the Anthropocene. Current Biology 29(19): 1–15. DOI: 10.1016/j.cub.2019.08.042. Open DOISearch in Google Scholar

Herrero M., Henderson B., Havlík P., Thornton P.K., Conant R.T., Smith P. et al. 2016. Greenhouse gas mitigation potentials in the livestock sector. Nature Climate Change 6(5): 452–461. DOI: 10.1038/nclimate2925. Open DOISearch in Google Scholar

James R., Washington R., Schleussner C.-F., Rogelj J., Conway D. 2017. Characterizing half-a-degree difference: a review of methods for identifying regional climate responses to global warming targets. WIREs Climate Change 8(2); e457; 23 p. DOI: 10.1002/wcc.457. Open DOISearch in Google Scholar

Jayasinghe S.L., Kumar L. 2019. Modeling the climate suitability of tea [Camellia sinensis (L.) O. Kuntze] in Sri Lanka in response to current and future climate change scenarios. Agricultural and Forest Meteorology 272–273: 102–117. DOI: 10.1016/j.agrformet.2019.03.025. Open DOISearch in Google Scholar

Karaczun Z.M., Kozyra J. 2020. Wpływ zmiany klimatu na bezpieczeństwo żywnościowe Polski. SGGW, Warszawa, Poland, 118 p. [in Polish] Search in Google Scholar

Kaszewski B.M., Siwek K.W., Siłuch M., Gluza A.F. 2007. Ekstremalne wartości wybranych charakterystyk termicznych w Lublinie (1951–2004). In: Szkutnicki J., Kossowska-Cezak U., Bogdanowicz E., Ceran M. (Eds.), Cywilizacja i żywioły. PTG, IMGW, Warszawa, Poland, pp. 118–126. [in Polish] Search in Google Scholar

Kozłowska-Szczęsna T., Limanówka D., Niedźwiedź T., Ustrnul Z., Paczos S. 1993. Thermal characteristic of Poland. Zeszyty IGiPZ PAN 18, 82 p. [in Polish with English abstract] Search in Google Scholar

Kożuchowski K., Żmudzka E. 2001. The warming in Poland: the range and seasonality of the changes in air temperature in the second half of 20th century. Przegląd Geofizyczny 46(1–2): 81–90. [in Polish with English abstract] Search in Google Scholar

Kuziemska D. 1983. O zakresie zmienności temperatury powietrza w Polsce. Przegląd Geofizyczny 28(3–4): 329–339. [in Polish] Search in Google Scholar

Manabe S., Wetherald R.T. 1975. The effects of doubling the CO2 concentration on the climate of a general circulation model. Journal of the Atmospheric Sciences 32(1): 3–15. DOI: 10.1175/1520-0469(1975)032<0003:teodtc>2.0.co;2. Open DOISearch in Google Scholar

Michalska B. 2011. Tendencies of air temperature changes in Poland. Studies in Geography 47: 67–75. [in Polish with English abstract] Search in Google Scholar

Podstawczyńska A. 2010. Temperatura powietrza i opady atmosferyczne w regionie łódzkim w ostatnim stuleciu. In: Twardy J., Żurek S., Forysiak J. (Eds.), Torfowisko Żabieniec: warunki naturalne, rozwój i zapis zmian paleoekologicznych w jego osadach. Bogucki Wydawnictwo Naukowe, Poznań, Poland, pp. 63–74. [in Polish] Search in Google Scholar

Różański S. 1951. Kotliny chłodu. Przegląd Meteorologiczny i Hydrologiczny 3–4: 141–147. [in Polish] Search in Google Scholar

Tomczyk A.M., Bednorz E., Szyga-Pluta K. 2021. Changes in air temperature and snow cover in winter in Poland. Atmosphere 12(1); 68; 19 p. DOI: 10.3390/atmos12010068. Open DOISearch in Google Scholar

Tomczyk A.M., Piniewski M., Eini M.R., Bednorz E. 2022. Projections of changes in maximum air temperature and hot days in Poland. International Journal of Climatology 42(10): 5242–5254. DOI: 10.1002/joc.7530. Open DOISearch in Google Scholar

Wójcik R., Miętus M. 2014. Some features of long-term variability in air temperature in Poland (1951–2010). Polish Geographical Review 86(3): 339–364. [in Polish with English abstract] Search in Google Scholar

Wu P., Christidis N., Stott P. 2013. Anthropogenic impact on Earth’s hydrological cycle. Nature Climate Change 3(9): 807–810. DOI: 10.1038/nclimate1932. Open DOISearch in Google Scholar

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