Acemoglu, D. “the Solow Growth Model”. Introduction to Modern Economic Growth. Princeton University Press, Princeton (2009): pp. 26–76. ISBN 9780691132921.
Barelli, P. and Pessôa, S. “Inada Conditions Imply that Production Function must be Asymptotically Cobb– Douglas” (PDF). Economics Letters Vol. 81 No. 3 (2003): pp. 361–363. DOI 10.1016/S0165-1765(03)00218-0.
Litina, A. and Palivos, T. “Do Inada Conditions Imply that Production Function must be Asymptotically Cobb–Douglas? A Comment”. Economics Letters Vol. 99 No. 3 (2008): pp. 498–499. DOI 10.1016/j.econlet.2007.09.035.
Mankiw, N.G., Romer, D., and Weil, D.N. “A Contribution to the empirics of economic Growth”. The Quarterly Journal of Economics Vol. 107 No. 2 (1992): pp. 407–437. DOI 10.2307/2118477.
Kasianov, V. Subjective Entropy of Preferences. Subjective Analysis: Monograph/V. Kasianov. Institute of Aviation Scientific Publications, Warsaw (2013): p. 644.
Касьянов, В.А. Энтропийная парадигма в теории активных систем. Субъективный анализ: монография/В. А. Касьянов. – К.: ДП НВЦ «Приорітети» (2016): с. 657.
Jaynes, E.t. “Information theory and Statistical Mechanics.” Physical Review Vol. 106 No. 4 (1957): pp. 620–630. Available at: https://bayes.wustl.edu/etj/articles/theory.1.pdf.
Jaynes, E.t. “Information theory and Statistical Mechanics II.” Physical Review Vol. 108 No. 2 (1957): pp. 171–190. Available at: https://bayes.wustl.edu/etj/articles/theory.2.pdf.
Goncharenko, A. “Optimal Price Choice through Buyers’ Preferences entropy.” Proceedings of the International Conference on Advanced Computer Information Technologies (ACIt-2020): pp. 537–540. Deggendorf, Germany, September, 2020.
Goncharenko, AV. “Multi-Optional Hybrid effectiveness Functions Optimality Doctrine for Maintenance Purposes.” Proceedings of the International Conference on Advanced Trends in Radioelectronics, Telecommunications and Computer Engineering (TCSET-2018): pp. 20–24. Lviv-Slavske, Ukraine, February, 2018.
Goncharenko, A.V. “expediency of Unmanned Air Vehicles Application in the Framework of Subjective Analysis.” Proceedings of the IEEE 2nd International Conference on Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD): pp. 129–133. Ieee, Kyiv, Ukraine, October, 2013.
Goncharenko, A.V. “Navigational Alternatives, their Control and Subjective entropy of Individual Preferences.” Proceedings of the IEEE 3rd International Conference on Methods and Systems of Navigation and Motion Control (MSNMC): pp. 99–103. Ieee, Kyiv, Ukraine, October, 2014.
Goncharenko, A.V. “Applicable Aspects of Alternative UAV Operation.” Proceedings of the IEEE 3rd International Conference on Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD): pp. 316–319. Ieee, Kyiv, Ukraine, October, 2015.
Goncharenko, A.V. “Several Models of Artificial Intelligence elements for Aircraft Control.” Proceedings of the IEEE 4th International Conference on Methods and Systems of Navigation and Motion Control (MSNMC): pp. 224–227. Ieee, Kyiv, Ukraine, October, 2016.
Goncharenko, A.V. “Aeronautical and Aerospace Material and Structural Damages to Failures: theoretical Concepts.” International Journal of Aerospace Engineering Article ID 4126085 (2018): p. 7.
Goncharenko, A.V. “Multi-Optional Hybridization for UAV Maintenance Purposes.” Proceedings of the IEEE 5th International Conference on Actual Problems of Unmanned Aerial Vehicles Developments (APUAVD): pp. 48–51. Ieee, Kyiv, Ukraine, October, 2019. DOI 10.1109/APUAVD47061.2019.8943902.
Solomentsev, O., Zaliskyi, M., and Zuiev, O. “estimation of Quality Parameters in the radio Flight Support Operational System.” Aviation Vol. 20 No. 3 (2016): pp. 123–128.
Patel, G.C.M., Chate, G.r., Parappagoudar, M.B., and Gupta, K. “Intelligent Modelling of Hard Materials Machining.” Springer Briefs in Applied Sciences and Technology (2020): pp. 73–1021.
Hulek, D. and Novák, M. “expediency Analysis of Unmanned Aircraft Systems.” Proceedings of the 23rd International Conference on Transport Means: pp. 959–962. Palanga, Lithuania, October, 2019.
Kasjanov, V. and Szafran, K. “Some Hybrid Models of Subjective Analysis in the theory of Active Systems.” Transactions of the Institute of Aviation Vol. 3 No. 240: pp. 27–31. DOI 10.5604/05096669.1194963.
Pagowski, Z.t. and Szafran, K. “Ground effect Inter-Modal Fast Sea transport.” International Journal on Marine Navigation and Safety of Sea Transportation Vol. 8 No. 2 (2014): pp. 317–320. DOI 10.12716/1001.08.02.18.
Szafran, K. “Bezpieczeństwo lotu – zasada maksymalnej entropii” [Flight safety – the principle of maximum entropy] (in Polish), Bezpieczeństwo na lądzie, morzu i w powietrzu w XXI wieku (2014): pp. 247–251. ISBN 9788361520023.
Szafran, K. and Kramarski, I. “Safety of Navigation on the Approaches to the Ports of the republic of Poland on the Basis of the radar System on the Aerostat Platform.” International Journal on Marine Navigation and Safety of Sea Transportation Vol. 9 No. 1 (2015): pp. 129–134. DOI 10.12716/1001.09.01.16.