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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
M. E. Iskhakov, R. M. Emirov, M. Kh. Rabadanov, Zh. Kh. Murlieva, D. K. Palchaev, P. V. Popov, “Electrical resistivity of stabilized polycrystalline intermetallide $\rm Ti_{67}\rm Al_{33}$”, TVT, 60:2 (2022), 198–202 ; High Temperature, 60:2 (2022), 172–176 |
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2019 |
2. |
S. A. Sadykov, N. M.-R. Alikhanov, S. N. Kallaev, M. Kh. Rabadanov, D. K. Palchaev, Zh. Kh. Murlieva, R. M. Emirov, “Structure and dielectric properties of Bi$_{1-x}$Sm$_{x}$FeO$_{3}$ nanostructured ceramics”, Fizika Tverdogo Tela, 61:11 (2019), 2097–2102 ; Phys. Solid State, 61:11 (2019), 2069–2074 |
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3. |
Zh. Kh. Murlieva, D. K. Palchaev, M. E. Iskhakov, M. Kh. Rabadanov, U. U. Bagomedova, “Thermal expansion and electrical resistivity of the intermetallic compound $\rm Ti_{67}\rm Al_{33}$”, TVT, 57:2 (2019), 203–206 ; High Temperature, 57:2 (2019), 182–185 |
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2017 |
4. |
S. A. Sadykov, D. K. Palchaev, Zh. Kh. Murlieva, N. M.-R. Alikhanov, M. Kh. Rabadanov, S. Kh. Gadzhimagomedov, S. N. Kallaev, “AC conductivity of BiFeO$_{3}$ ceramics obtained by spark plasma sintering of nanopowder”, Fizika Tverdogo Tela, 59:9 (2017), 1747–1753 ; Phys. Solid State, 59:9 (2017), 1771–1777 |
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5. |
M. Kh. Gadzhiev, S. Kh. Gadzhimagomedov, N. A. Demirov, G. B. Ragimkhanov, V. S. Kurbanismailov, D. K. Palchaev, Zh. Kh. Murlieva, “The effect of high-enthalpy argon plasma flow on the structure and properties of YBa$_{2}$Cu$_{3}$O$_{7-\delta}$ nanoceramics”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 43:13 (2017), 26–33 ; Tech. Phys. Lett., 43:7 (2017), 603–606 |
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6. |
D. K. Palchaev, Zh. Kh. Murlieva, I. M. Abdulagatov, S. Kh. Gadzhimagomedov, M. E. Iskhakov, M. Kh. Rabadanov, “Influence of magnetic properties on electric resistivity of iron-group elements”, TVT, 55:3 (2017), 402–409 ; High Temperature, 55:3 (2017), 386–392 |
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2016 |
7. |
S. A. Sadykov, D. K. Palchaev, Zh. Kh. Murlieva, M. Kh. Rabadanov, N. M.-R. Alikhanov, V. V. Samsonova, S. N. Kallaev, Z. M. Omarov, R. M. Emirov, A. Kh. D. Khashafa, “Effect of heat treatment on the structure and properties of a BiFeO$_{3}$ nanopowder”, Fizika Tverdogo Tela, 58:5 (2016), 929–936 ; Phys. Solid State, 58:5 (2016), 959–966 |
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8. |
S. Kh. Gadzhimagomedov, D. K. Palchaev, M. Kh. Rabadanov, Zh. Kh. Murlieva, N. S. Shabanov, N. A. Palchaev, E. K. Murliev, R. M. Emirov, “YBa$_{2}$Cu$_{3}$O$_{7-\delta}$-based ceramic materials manufactured from nanopowders”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:1 (2016), 9–16 ; Tech. Phys. Lett., 42:1 (2016), 4–7 |
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2015 |
9. |
S. N. Kallaev, Z. M. Omarov, D. K. Palchaev, M. Kh. Rabadanov, Zh. Kh. Murlieva, M. P. Faradzheva, S. A. Sadykov, “Heat capacity of nanocrystalline bismuth ferrite”, TVT, 53:4 (2015), 636–639 ; High Temperature, 53:4 (2015), 601–604 |
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2012 |
10. |
Zh. Kh. Murlieva, M. E. Iskhakov, D. K. Palchaev, M. P. Faradjeva, D. G. Chernykh, “Temperature dependence of electrical resistance of alloys caused by dynamic and static disorders”, TVT, 50:5 (2012), 644–652 ; High Temperature, 50:5 (2012), 602–610 |
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2010 |
11. |
D. K. Palchaev, Zh. Kh. Murlieva, F. D. Palchaeva, “Phonon thermal resistance under conditions of negative thermal deformation of lattice”, TVT, 48:4 (2010), 512–520 ; High Temperature, 48:4 (2010), 489–496 |
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2007 |
12. |
Zh. Kh. Murlieva, D. K. Palchaev, E. D. Borzov, M. E. Iskhakov, F. A. Akaev, “The electrical resistance of nickel and $\beta$-brass as a function of isobaric thermal deformation in ordered and disordered phases”, TVT, 45:6 (2007), 875–880 ; High Temperature, 45:6 (2007), 797–802 |
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13. |
D. K. Palchaev, Zh. Kh. Murlieva, K. K. Kazbekov, “The correlation between electrical resistivity of metals and thermal deformation”, TVT, 45:5 (2007), 700–706 ; High Temperature, 45:5 (2007), 632–638 |
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