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10. Gladyshev, G. P., & Gladyshev, D. P. (1993). About Physical - Chemical Theory of Bio-
logical Evolution ( Preprint ). Moscow, Olimp, 24 p.
11. Gladyshev, G. P., & Gladyshev, D. P. (1994) . The Approximative Thermodynamical
Equation for Nonequilibrium Phase Transitions . Zhurnal Fizicheskoi Khimii, 68(5),
790-792.
12. Hornbogen, E. (1989) . Fractals in Microstructure of Metals. Int . Mater . Rev., 34(6), 277-
296.
13. Bessendorf, M. H. (1987) . Stochastic and Fractal Analysis of Fracture Trajectories . Int .
J . Engng . Sci ., 25(6), 667-672.
14. Zemlyanov, M. G., Malinovskii, V. K., Novikov, V. N., Parshin, P., & Sokolov, A. P.
(1992) . The Study of Fractions in Polymers . Zhurnal Eksperiment. I Teoretich. Fiziki,
101(1), 284-293.
15. Kozlov, G. V., Ozden, S., Krysov, V. A., & Zaikov, G. E. (2001) . The Experimental De-
termination of a Fractal Dimension of the Structure of Amorphous Glassy Polymers . In:
Fractals and Local Order in Polymeric Material. Kozlov, G. V., Zaikov, G. E., Ed., New
York, Nova Science Publishers Inc., 83-88.
16. Kozlov, G. V., Ozden, S., & Dolbin, I. V. (2002) . Small Angle X - Ray Studies of the
Amorphous Polymers Fractal Structure . Russian Polymer News, 7(2), 35-38.
17. Bagryanskii, V. A., Malinovskii, V. K., Novikov, V. N., Pushchaeva, L. M., & Sokolov,
A. P. (1988) . Inelastic Light Diffusion on Fractal Oscillation Modes in Polymers. Fizika
Tverdogo Tela, 30(8), 2360-2366.
18. Balankin, A. S. (1991) . Synergetics of Deformable Body . Moscow, Publishers of De-
fence Ministry of SSSR, 404p.
19. Kozlov, G. V., Belousov, V. N., & Mikitaev, A. K. (1998) . Description of Solid Polymers
as Quasitwophase Bodies. Fizika I Tekhnika Vysokikh Davlenii, 8(1), 101-107.
20. Flory, J. (1976) . Spatial Configuration of Macromolecular Chains. Brit . Polymer J. 8(1),
1-10.
21. Kozlov, G. V., Ovcharenko, E. N., & Mikitaev, A. K. (2009) . Structure of the Polymers
Amorphous State . Moscow, Publishers of the D.I. Mendeleev RkhTU, 392 p.
22. Haward, R. N. (1995) . The Application of a Gauss-Eyring Model to Predict the Behavior
of Thermoplastics in Tensile Experiment . J . Polymer Sci .: Part B : Polymer Phys , 33(8),
1481-1494 .
23. Haward, R . N. (1987) . The Application of a Simplified Model for the Stress-Strain
Curves of Polymers. Polymer, 28(8), 1485-1488.
24. Boyce, M. C., Parks, D. M., & Argon, A. S. (1988) . Large Inelastic Deformation in
Glassy Polymers . Part I . Rate Dependent Constitutive Model. Mech . Mater, 7(1), 15-33.
25. Boyce, M. C., Parks, D. M., & Argon, A. S. (1988) . Large Inelastic Deformation in
Glassy Polymers. Part II. Numerical Simulation of Hydrostatic Extrusion. Mech . Mater,
7(1), 35-47.
26. Haward, R. N. (1993) . Strain Hardening of Thermoplastics. Macromolecules, 26(22) ,
5860-5869.
27. Bartenev, G. M., & Frenkel, S. Ya. (1990) . Physics of Polymers . Leningrad, Khimiya,
432 p.
28. Belousov, V. N., Kozlov, G. V., Mikitaev, A. K., & Lipatov, Yu. S. (1990). Entanglements
in Glassy State of Linear Amorphous Polymers. Doklady AN SSSR, 313(3) , 630-633.
29. Flory, J. (1985) . Molecular Theory of Rubber Elasticity . Polymer J., 17(1), 1-12.
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