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Publications in Math-Net.Ru |
Citations |
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2021 |
1. |
M. N. Magomedov, “Study of the FCC-BCC phase transition in an Au-Fe alloy”, Fizika Tverdogo Tela, 63:11 (2021), 1821–1829 |
2. |
M. N. Magomedov, “Temperature and pressure dependences of the surface energy for a macro- and nanocrystal”, Fizika Tverdogo Tela, 63:9 (2021), 1415–1428 ; Phys. Solid State, 63:10 (2021), 1465–1479 |
3
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3. |
M. N. Magomedov, “On the critical melting point of a simple matter”, Fizika Tverdogo Tela, 63:7 (2021), 966–974 ; Phys. Solid State, 63:7 (2021), 1048–1057 |
4. |
M. N. Magomedov, “Changes in the properties of iron during BCC-FCC phase transition”, Fizika Tverdogo Tela, 63:2 (2021), 191–198 ; Phys. Solid State, 63:2 (2021), 215–222 |
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2020 |
5. |
M. N. Magomedov, “Study of properties of gold–iron alloy in the macro- and nanocrystalline states under different $P$–$T$ conditions”, Fizika Tverdogo Tela, 62:12 (2020), 2034–2046 ; Phys. Solid State, 62:12 (2020), 2280–2292 |
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6. |
M. N. Magomedov, “A method for the parametrization of the pairwise interatomic potential”, Fizika Tverdogo Tela, 62:7 (2020), 998–1003 ; Phys. Solid State, 62:7 (2020), 1126–1131 |
9
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7. |
M. N. Magomedov, “An equation of the state and surface properties of amorphous iron”, Zhurnal Tekhnicheskoi Fiziki, 90:10 (2020), 1731–1738 ; Tech. Phys., 65:10 (2020), 1659–1665 |
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2019 |
8. |
M. N. Magomedov, “Change in the thermodynamic properties of a Si–Ge solid solution at a decrease of the nanocrystal size”, Fizika Tverdogo Tela, 61:11 (2019), 2169–2177 ; Phys. Solid State, 61:11 (2019), 2145–2154 |
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9. |
M. N. Magomedov, “Changes of the thermodynamic properties at isochoric and isobaric decrease of the silicon nanocrystal size”, Fizika Tverdogo Tela, 61:4 (2019), 757–764 ; Phys. Solid State, 61:4 (2019), 642–649 |
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10. |
M. N. Magomedov, “Size dependence of elastic properties of argon nanocrystals”, Fizika Tverdogo Tela, 61:1 (2019), 148–153 ; Phys. Solid State, 61:1 (2019), 23–29 |
6
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11. |
M. N. Magomedov, “Variation of the $^{13}$C diamond properties under isothermal compression”, Zhurnal Tekhnicheskoi Fiziki, 89:6 (2019), 882–886 ; Tech. Phys., 64:6 (2019), 828–832 |
12. |
M. N. Magomedov, “A change in the Debye temperature of a single-component substance upon amorphization”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:20 (2019), 32–35 ; Tech. Phys. Lett., 45:10 (2019), 1042–1046 |
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2018 |
13. |
M. N. Magomedov, “On the calculation of the Debye temperature and crystal–liquid phase transition temperature of a binary substitution alloy”, Fizika Tverdogo Tela, 60:5 (2018), 970–977 ; Phys. Solid State, 60:5 (2018), 981–988 |
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2017 |
14. |
M. N. Magomedov, “State equations and properties of various polymorphous modifications of silicon and germanium”, Fizika Tverdogo Tela, 59:6 (2017), 1065–1072 ; Phys. Solid State, 59:6 (2017), 1085–1093 |
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15. |
M. N. Magomedov, “Variations in thermal properties of diamond under isothermal compression”, Zhurnal Tekhnicheskoi Fiziki, 87:5 (2017), 643–650 ; Tech. Phys., 62:5 (2017), 661–668 |
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16. |
M. N. Magomedov, “Change in the lattice properties and melting temperature of a face-centered cubic iron under compression”, Zhurnal Tekhnicheskoi Fiziki, 87:4 (2017), 549–556 ; Tech. Phys., 62:4 (2017), 569–576 |
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2016 |
17. |
M. N. Magomedov, “On the size dependence of melting parameters for silicon”, Zhurnal Tekhnicheskoi Fiziki, 86:5 (2016), 92–95 ; Tech. Phys., 61:5 (2016), 730–733 |
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18. |
M. N. Magomedov, “Nanostructuring and ductility of crystals under compression”, Zhurnal Tekhnicheskoi Fiziki, 86:5 (2016), 84–91 ; Tech. Phys., 61:5 (2016), 722–729 |
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19. |
M. N. Magomedov, “Size dependence of the shape of a silicon nanocrystal during melting”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:14 (2016), 94–102 ; Tech. Phys. Lett., 42:7 (2016), 761–764 |
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2009 |
20. |
M. N. Magomedov, “The variation of thermoelastic properties under conditions of variation of isotopic composition of diamond”, TVT, 47:3 (2009), 379–387 ; High Temperature, 47:3 (2009), 359–366 |
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21. |
M. N. Magomedov, “Thermal expansion of crystals of lithium isotopes”, TVT, 47:2 (2009), 238–241 ; High Temperature, 47:2 (2009), 219–222 |
5
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22. |
M. N. Magomedov, “The dependence of the temperature of crystal-liquid phase transition on the size and shape of simple nanocrystal”, TVT, 47:1 (2009), 49–60 ; High Temperature, 47:1 (2009), 45–55 |
1
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2008 |
23. |
M. N. Magomedov, “The correlation of the parameters of interatomic interaction in crystals with the position of atom in the periodic table”, TVT, 46:4 (2008), 533–544 ; High Temperature, 46:4 (2008), 484–494 |
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2007 |
24. |
M. N. Magomedov, “The melting of fullerites from small or large fullerenes”, TVT, 45:3 (2007), 363–369 ; High Temperature, 45:3 (2007), 321–326 |
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2006 |
25. |
M. N. Magomedov, “The behavior of self-diffusion coefficient under conditions of varying isotope composition of crystal”, TVT, 44:6 (2006), 868–876 ; High Temperature, 44:6 (2006), 861–870 |
26. |
M. N. Magomedov, “The calculation of the parameters of the Mie–Lennard-Jones potential”, TVT, 44:4 (2006), 518–533 ; High Temperature, 44:4 (2006), 513–529 |
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2005 |
27. |
M. N. Magomedov, “The Variation of “Surface” Pressure in a Nanocrystal as a Function of Temperature”, TVT, 43:6 (2005), 870–879 ; High Temperature, 43:6 (2005), 870–880 |
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28. |
M. N. Magomedov, “Interfullerene Interaction and Properties of Fullerites”, TVT, 43:3 (2005), 385–395 ; High Temperature, 43:3 (2005), 379–390 |
6
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29. |
M. N. Magomedov, “The energy of interatomic interaction for crystals of elements of the carbon subgroup”, TVT, 43:2 (2005), 202–211 ; High Temperature, 43:2 (2005), 192–202 |
1
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2004 |
30. |
M. N. Magomedov, “Constancy of the surface energy during the melting of a nanocrystal”, TVT, 42:2 (2004), 227–235 ; High Temperature, 42:2 (2004), 221–230 |
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2002 |
31. |
M. N. Magomedov, “Thermodynamically Consistent Calculation of the Debye Temperature Using Thermophysical Data”, TVT, 40:4 (2002), 586–590 ; High Temperature, 40:4 (2002), 542–545 |
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32. |
M. N. Magomedov, “Compensation Effects for the Diffusion Process”, TVT, 40:1 (2002), 152–155 ; High Temperature, 40:1 (2002), 142–144 |
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2001 |
33. |
M. N. Magomedov, “Change of coordination number during melting and in the liquid phase”, TVT, 39:4 (2001), 559–565 ; High Temperature, 39:4 (2001), 518–524 |
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1994 |
34. |
M. N. Magomedov, “Prediction of the properties of crystals of alkali metal hydrides of different isotopic compositions”, TVT, 32:5 (1994), 686–691 ; High Temperature, 32:5 (1994), 640–645 |
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1993 |
35. |
M. N. Magomedov, “The activation energy of Self-diffusion”, TVT, 31:5 (1993), 731–734 ; High Temperature, 31:5 (1993), 671–674 |
36. |
M. N. Magomedov, “The change in the activation energy of self-diffusion during melting”, TVT, 31:1 (1993), 61–63 ; High Temperature, 31:1 (1993), 56–57 |
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1992 |
37. |
M. N. Magomedov, “Enthalpy of formation of Schottky defect in an ionic crystal”, Fizika Tverdogo Tela, 34:12 (1992), 3724–3729 |
38. |
M. N. Magomedov, “Volume and entropy of formation of Schottky defects in an ionic crystal”, Fizika Tverdogo Tela, 34:12 (1992), 3718–3723 |
39. |
M. N. Magomedov, “Calculation of the Debye temperature for alkali halide crystals”, TVT, 30:6 (1992), 1110–1117 ; High Temperature, 30:6 (1992), 917–923 |
40. |
M. N. Magomedov, “Об изменении рода фазового перехода кристалл – жидкость при уменьшении размера системы”, TVT, 30:4 (1992), 836–838 |
41. |
M. N. Magomedov, “Dimensional dependence of the spinodals of a crystal–liquid phase transition”, TVT, 30:3 (1992), 470–476 ; High Temperature, 30:3 (1992), 370–375 |
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1991 |
42. |
M. N. Magomedov, “О спинодалях фазового перехода кристалл – жидкость”, TVT, 29:3 (1991), 622 |
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1990 |
43. |
M. N. Magomedov, “Dimensional dependence of phase diagram of simple material”, TVT, 28:6 (1990), 1112–1117 ; High Temperature, 28:6 (1990), 843–847 |
1
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44. |
M. N. Magomedov, “Температура плавления частиц индия, погруженных в алюминиевую матрицу”, TVT, 28:5 (1990), 1012–1013 |
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1989 |
45. |
M. N. Magomedov, “Probability of vacancy formation”, TVT, 27:2 (1989), 279–281 ; High Temperature, 27:2 (1989), 217–220 |
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1988 |
46. |
M. N. Magomedov, “Change in the Einstein temperature and Gruneisen-parameter during melting”, TVT, 26:6 (1988), 1107–1111 ; High Temperature, 26:6 (1988), 855–859 |
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1990 |
47. |
M. N. Magomedov, “О зависимости координационного числа от плотности и температуры (№ 6337-В-89 Деп. от 18.10.1989)”, TVT, 28:2 (1990), 409 |
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1988 |
48. |
M. N. Magomedov, “Об изменении размерной зависимости температуры плавления с ростом давления (№ 5263-В-88 Деп. от 30.VI.1988)”, TVT, 26:6 (1988), 1246 |
49. |
M. N. Magomedov, “О роли вакансий при фазовых переходах (№ 2671-В-88 Деп. от 11.IV.1988)”, TVT, 26:4 (1988), 830 |
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1987 |
50. |
M. N. Magomedov, “Статистическая модель простого вещества с вакансиями (№ 3512-В-87 Деп. от 19.V.1987)”, TVT, 25:5 (1987), 1037 |
51. |
M. N. Magomedov, “Влияние жесткости потенциала на процесс плавления (№ 7513-86 Деп. от 31.Х.1986)”, TVT, 25:2 (1987), 413 |
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1985 |
52. |
M. N. Magomedov, “Статистическая модель простого вещества. II. Термическое уравнение состояния (№ 3588-85 Деп. от 23.V.1985)”, TVT, 23:6 (1985), 1232 |
53. |
M. N. Magomedov, “Статистическая модель простого вещества. I. Общий формализм (№ 2391-85 Деп. от 9.IV.1985)”, TVT, 23:5 (1985), 1037 |
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1984 |
54. |
M. N. Magomedov, “Уравнение состояния $n$-мерной идеально равновесной системы частиц, имеющих твердую сердцевину (№ 880-84 Деп. от 13.II.1984)”, TVT, 22:3 (1984), 622 |
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Organisations |
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