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1. Garside, A.L., Lawn, R.J. & Byth D.E. (1992). Irrigation management of soybean (Glycine max L. Merrill) in a semi arid tropical environment. I. Effect of irrigation frequency on growth development and yield. Australian Journal of Agricultural research, 43 (5), 1003 - 1017.Search in Google Scholar

2. Petrova, V. (2010). Evaluation of the Meliorative effects on Water and Thermal Regimes of Crops of Soybean and Wheat. Dissertation, Sofia.Search in Google Scholar

3. Varlev, I. (1983). Optimize the uniformity of irrigation. Agricultural Academy. Sofia.Search in Google Scholar

4. Varlev,I. & Popova, Z. (1999). Waterevapotranspiration-yield. IHM - Sofia.Search in Google Scholar

5. Varlev, I., (1983). Potential efficiency and risk in maize growing in Bulgaria. Agricultural Academy. Sofia.Search in Google Scholar

6. Diez, R.T., Rojas, P.H. & Agudelo, D.O. (1998). Funciones agua produccion y eficiencia del uso agua de genotipes de soya, Acta Agronomica, Universidat Nacional de Columbia, 48 (3 - 4), 28 - 36.Search in Google Scholar

7. Senchukov, G.A. (1986). Effect of irrigation rate on the yield of major crops in the conditions of the Rostov region. Rational use of irrigated crops and programming, 31 - 38.Search in Google Scholar

8. Nekov, N., Matev, Al. & Ovcharova, A. (2014). ”Additional yield - irrigation depth” relationship for white bearing rose (Rosa Alba L.). Ovidius University Annals - Constantza, Romania, Year XVI - Issue 16, 91 - 104.Search in Google Scholar

9. Davidov, D. (1982). On the “Yield-Water” relationship. Irrigation and Land Reclamation, 7, 18 - 20 (BG).Search in Google Scholar

10. Davidov, D. & Gajdarova, St. (1994). Computer Programme for Calculating Crop Yields with and without Irrigation for a Series for Past Years. 17th European Regional Conference on Irrigation and Drainage ICID-CIID, Varna, Bulgaria, 1, 255-260.Search in Google Scholar

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