À propos de cet article

Citez

Bakucs, Z., Bojnec, S., Ferto, I., Latruffe, L. (2013). Farm size and growth in field crop and dairy farms in France, Hungary and Slovenia. Spanish Journal of Agricultural Research 11(4), 869-881.10.5424/sjar/2013114-3994Search in Google Scholar

Celik, Y., Emre, M. (2014). The effect of economic size on profitability of apple farms. Bulgarian Journal of Agricultural Science, 20(1), 46-50.Search in Google Scholar

Central Statistical Office, (2020). Statistical Yearbook of Agriculture. Available on 04.05.2020 on the website: https://stat.gov.pl/obszary-tematyczne/roczniki-statystyczne/roczniki-statystyczne/rocznik-statystyczny-rolnictwa-2019,6,13.htmlSearch in Google Scholar

European Commission, (2020). https://ec.europa.eu/food/farm2fork_enSearch in Google Scholar

Flament J. (2011). The CAP towards 2020: what structural policies? Report of the international seminar “The CUP towards 2020: Regulation of Markets and Structural Policies”, CSA, Brussels.Search in Google Scholar

Gołębiewska, B. (2009). Efficiency of Material Outlays Utilisation at Individual Farms with Different Degree of Connections with the Surrounding Environmen. Ekonomika i Organizacja Gospodarki Żywnościowej, 73, 95-104Search in Google Scholar

Kocira, S., Kołtun, M. (2013). Nakłady energetyczne w gospodarstwach o zbilansowanej odnawialności substancji organicznej. Problemy Inżynierii Rolniczej 2, 99-106.Search in Google Scholar

Kocira, S. (2013). Techniczna i technologiczna modernizacja gospodarstw rodzinnych w procesie wdrażania rolnictwa zrównoważonego. Libropolis, Lublin.Search in Google Scholar

Kocira, S., Depo, K., Szparaga, A., Findura, P. (2019). „Efficiency of material and energy expenditure and the direction of farms production”, in: Farm machinery and processes management in sustainable agriculture., E. Lorencowicz, J. Uziak, B. Huyghebaert (eds.), Lublin, Instytut Naukowo-Wydawniczy Spatium, 365-369.Search in Google Scholar

Komorowska, D. (2017). Production and economic results of farms placed on plant crops. Roczniki Naukowe Stowarzyszenia Ekonomistów Rolnictwa i Agrobiznesu, 6, 135-140.Search in Google Scholar

Mahmood, H.Z., Qasim, M., Khan, M., Husnain, M.I.U. (2014). Re-Examining the Inverse Relationship Between Farm Size and Productivity in Pakistan. Journal of Animal and Plant Sciences 24(5), 1537-1546.Search in Google Scholar

Malaga-Toboła, U., Kuboń M., Kwaśniewski, D., Findura P. (2020). Effectiveness of Capital and Energy Expenditures in Organic Production. In: Wróbel M., Jewiarz M., Szlęk A. (eds) Renewable Energy Sources: Engineering, Technology, Innovation. Springer Proceedings in Energy. Springer, Cham.Search in Google Scholar

Sawa, J. (2008). Material and energetic expenses as sustainable agricultural production factor. Inżynieria Rolnicza 5, 243-248.Search in Google Scholar

Sawa, J., Parafiniuk, S., Kocira, S. (2004). Nakłady energetyczne w różnych systemach gospodarowania. Motrol, 6, 227-234.Search in Google Scholar

Sheng, Y., Zhao, S.J., Nossal, K., Zhang, D.D. (2015). Productivity and farm size in Australian agriculture: reinvestigating the returns to scale. Australian Journal of Agricultural and Resource Economics 59(1), 16-38.10.1111/1467-8489.12063Search in Google Scholar

Średzińska, J. (2017). Factors determining income of farms in the European Union according to economic size classes. Prace Naukowe Uniwersytetu Ekonomicznego we Wrocławiu, 477, 305-31410.15611/pn.2017.477.28Search in Google Scholar

Szuk, T., (2009). Investments in Machinery in Selected Farms in Lower Silesia Region. Inżynieria Rolnicza, 8(117), 199-206.Search in Google Scholar

Wasąg, Z., (2009). The Impact of Co-Financing From the European Union on Technological Modern-isation of Farms in Poland. Inżynieria Rolnicza, 8(117), 267-273.Search in Google Scholar