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Effect of Commercial Crossbreeding and Growth Intensity on Slaughter Indicators, Microstructure and The Quality Characteristics of Biceps Brachii Muscle in Bulls

., Valentini A., Williams J.L., Mangin B., Cañón J., Levéziel H., the GeMQualConsortium. (2013). Association of genes involved in carcass and meat quality traits in 15 European bovine breeds. Livest. Sci., 154: 34–44. Keane M.G., Allen P. (1998). Effects of production system intensity on performance, carcass composition and meat quality of beef cattle. Livest. Prod. Sci., 56: 203–214. Młynek K., Guliński P. (2007). The effect of growth rate and age at slaughter on dressing percentage and colour, pH48 and microstructure of longissimus dorsi muscle in Black-and-White (BW

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Cultivation Of Microalgae (Chlorella vulgaris) For Biodiesel Production

quality on biomass production and fatty acid content in the microalga Chlorella vulgaris. Bioresource technology , Vol. 159 , pp. 465–467. 25. FU, W. et al. 2012. Maximizing biomass productivity and cell density of Chlorella vulgaris by using light-emitting diode-based photobioreactor. Journal of biotechnology , 161 (3), pp. 242–249. 26. MOHSENPOUR, S. F. et al. 2012. Spectral conversion of light for enhanced microalgae growth rates and photosynthetic pigment production. Bioresource technology , Vol. 125 , pp. 75–81. 27. RYU, H. J. et al. 2009

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Individual Growth Rates of Nikolsky’s Viper, Vipera berus nikolskii (Squamata, Viperidae)

–336. Drobenkov, S. M. 1989. The method of individual marking of common adder using morphological variability. In: Abstrs. of the 7rd Herpetol. Conf. “The Problems of Herpetology” , Kiev, 83–84 [In Russian] Forsman, A. 1992. Adaptive body and head size variation in populations of the adder Vipera berus . Acta Universitatis Upsalensis, Comprehensive summaries of Uppsala Dissertations from the Faculty of Science 401 , Uppsala, 1–34. Forsman, A. 1993. Growth rate in different color morphs of the adder, Vipera berus , in relation to early weather variation. Oikos

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Deterministic Approach to Predicting the Fatigue Crack Growth in the 2024-T3 Aluminum Alloy Under Variable Amplitude Loading

, J. (1995). Fatigue Crack Closure Measurements on 2024-T3 Sheet Specimens. Fatigue and Fracture of Engineering Materials and Structures. 18(9). 917-921. Ellyin, F., & Wu, J. (1999). An Numerical Investigation on the Effect of an Overload on Fatigue Crack Opening and Closure Behaviour. Fatigue and Fracture of Engineering Materials and Structures. 22(10), 835-848. Yasniy, P., & Pyndus, Y. U. (2000). Prediction of fatigue crack growth rate after single overload at different stress ratios. In: Proceedings of the

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Investigating Industry Dynamics in a Recessionary Transition Economy

Marketing Research (1) Emerald Group Publishing Limited, pp. 207 - 244 Bottazzi, G. and Secchi, A. (2011) A new class of asymmetric exponential power densities with applications to economics and finance. Industrial and Corporate Change, 20, p. 991-1030. Bottazzi, G., & Secchi, A. (2003). Common properties and sectoral specificities in the dynamics of US manufacturing companies. Review of Industrial Organization, 23(3-4), p. 217-232. Bottazzi, G., & Secchi, A. (2006). Explaining the distribution of firm growth rates. The RAN

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Corrosion Fatigue Crack Propagation Rate Characteristics for Weldable Ship and Offshore Steels with Regard to the Influence of Loading Frequency and Saltwater Temperature

rates in shipbuilding steels. Zeszyty Naukowe PG, No.344, 121130 (in Polish). 11. Jakubowski M. (1986). A study crack length effect on the fatigue crack growth rate for ordinary shipbuilding steel in saltwater. 5th Intl Symp. Offshore Mechanics and Arctic Engineering, Tokyo, ASME Book No. 100194, 212217. 12. Knight J. W. (1977). Corrosion fatigue of welded, quenched and tempered steels, Welding Research International, 7, 1738. 13. Jakubowski M. (1993). Fatigue and corrosion fatigue crack propagation rates for two new

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On the Modulation of Oscillation in Thermohaline Convection Problems Using Temperature Dependent Viscosity

Convection. J. Mar. Res., 23 (1965), No. 1, 1-17. [6] Banerjee, M. B., D. C. Katoch, G. S. Dube, K. Banerjee. Bounds for Growth Rate of Perturbation in Thermohaline Convection. Proc. Roy. Soc., London , A387 (1981), 301-304. [7] Gupta, J. R., J. S. Dhiman, J. Thakur. Thermohaline Convection of Veronis and Stern Types Revisited. J. Math. Anal. Appl., 264 (2001), 398-407. [8] Straughan, B. Sharp Global Non-linear Stability for Temperature Dependent Viscosity. Proc. R. Soc., London, A458 (2002), 1773-1782. [9

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Size-dependent growth kinetics of vitamin C crystals in water solutions of L(+)-ascorbic acid with the addition of methanol and ethanol

of ascorbic acid in its supersaturated aqueous solution. Cryst. Res. Technol. 41, 431 - 436. DOI: 10.1002/crat.200510601. Omar, W. (2006). Effect of solvent composition on crystallization process of ascorbic acid. Chem. Eng. Technol. 29, 119 - 123. DOI: 10.1002/ceat.200500283. Suprunov, N. A., Lymar, A. P., Varentsov, V. V., Streltsov, V. V. & Smirnov N. Ju. (1994). Linear growth rate of ascorbic acid crystals during crystallization from water - alcohol solutions. Massov. Kristall. 3, 45 - 50

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Modelling the growth rate of Listeria monocytogenes in cooked ham stored at different temperatures

evolution of food products along the cold chain. Part II: A case study. Int J Refrig 2012, 35, 915–926. 18. Hwang C.A., Tamplin M.L.: Modeling the lag phase and growth rate of Listeria monocytogenes in ground ham containing sodium lactate and sodium diacetate at various storage temperatures. J Food Sci 2007, 72, M246–M253. 19. Laguerre O., Derens E., Palagos B.: Study of domestic refrigerator temperature and analysis of factors affecting temperature: a French survey. Int J Refrig 2002, 25, 653–659. 20. Likar K., Jevsnik M.: Cold chain maintaining in

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Non-Decreasing Economic Growth Rate Of Inflation (Ndegri) In Light Of Empirical Studies

Employment, Interest and Money , Macmillan, London. Knight J., Ding S., 2009, Why does China invest so much? , University of Oxford, Department of Economics, Discussion Paper Series, no. 441. Kononenko I., Repin A., 2016, The regularity of the country’s GDP growth rate changes influence on the volume of gross fixed capital formation , download from:’s_GDP_Growth_Rate_Changes_Influence_on_the_Volume_of_Gross_Fixed_Capital_Formation (28.01.2019). Muciek A., 2012

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