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Publications in Math-Net.Ru |
Citations |
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2021 |
1. |
E. D. Èidel'man, A. Ya. Vul', “Thermal conductivity of nanofluids: influence of particle shape”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:20 (2021), 45–47 |
2. |
E. D. Eidelman, “Thermoelectric effect and a thermoelectric generator based on carbon nanostructures: achievements and prospects”, UFN, 191:6 (2021), 561–585 ; Phys. Usp., 64:6 (2021), 535–557 |
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2020 |
3. |
E. D. Èidel'man, M. A. Durnev, “Crystallization in the presence of a flow”, Fizika Tverdogo Tela, 62:1 (2020), 28–31 ; Phys. Solid State, 62:1 (2020), 30–33 |
4. |
O. E. Kvashenkina, E. D. Èidel'man, V. S. Osipov, P. G. Gabdullin, B. B. Khina, “Estimation of the maximum transverse size of multilayer bimetallic films for self-propagating high-temperature synthesis for the Ni/Al structure as an example”, Zhurnal Tekhnicheskoi Fiziki, 90:7 (2020), 1189–1194 ; Tech. Phys., 65:7 (2020), 1144–1149 |
1
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5. |
E. D. Eidelman, A. V. Arkhipov, “Field emission from carbon nanostructures: models and experiment”, UFN, 190:7 (2020), 693–714 ; Phys. Usp., 63:7 (2020), 648–667 |
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2019 |
6. |
E. D. Èidel'man, “Thermoelectric field emission mechanism from carbon nanostructures”, Zhurnal Tekhnicheskoi Fiziki, 89:10 (2019), 1491–1499 ; Tech. Phys., 64:10 (2019), 1409–1417 |
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7. |
M. K. Rabchinskii, E. D. Èidel'man, A. Ya. Vinogradov, S. A. Grudinkin, A. T. Dideikin, “A carbon nanostructure for a thermoelectric generator”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:7 (2019), 33–35 ; Tech. Phys. Lett., 45:4 (2019), 339–342 |
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2018 |
8. |
E. D. Èidel'man, M. A. Durnev, “Design of gradient composites of aluminum and graphite by the centrifugal-casting method”, Zhurnal Tekhnicheskoi Fiziki, 88:11 (2018), 1667–1671 ; Tech. Phys., 63:11 (2018), 1615–1619 |
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9. |
A. Ya. Vinogradov, S. A. Grudinkin, N. A. Besedina, S. V. Koniakhin, M. K. Rabchinskii, E. D. Èidel'man, V. G. Golubev, “Structure and properties of thin graphite-like films produced by magnetron-assisted sputtering”, Fizika i Tekhnika Poluprovodnikov, 52:7 (2018), 775–781 ; Semiconductors, 52:7 (2018), 914–920 |
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10. |
E. D. Èidel'man, M. A. Durnev, “Surface hardening of composite material by the centrifugal-casting method”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 44:7 (2018), 23–29 ; Tech. Phys. Lett., 44:4 (2018), 284–286 |
2
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2017 |
11. |
M. A. Durnev, E. D. Èidel'man, “Distribution of supercritical nucleation centers during the crystallization process in the presence of a flow as illustrated by the example of boron carbide-reinforced aluminum”, Nanosystems: Physics, Chemistry, Mathematics, 8:3 (2017), 360–364 |
1
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12. |
E. D. Èidel'man, “On a carbon nanostructure-based thermoelectric converter with record parameters”, Fizika i Tekhnika Poluprovodnikov, 51:7 (2017), 944–947 ; Semiconductors, 51:7 (2017), 906–908 |
5
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2016 |
13. |
E. D. Eidel'man, A. P. Meilakhs, “Macroscopic thermoelectric efficiency of carbon nanocomposites”, Nanosystems: Physics, Chemistry, Mathematics, 7:6 (2016), 919–924 |
4
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14. |
F. M. Shakhov, A. P. Meilakhs, E. D. Èidel'man, “Changes in the mechanism of heat transfer in passing from microparticles to nanoparticles”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:5 (2016), 57–64 ; Tech. Phys. Lett., 42:3 (2016), 252–255 |
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2015 |
15. |
E. D. Eidel'man, “Estimation of the contact area of solids by electrothermal analogy”, Nanosystems: Physics, Chemistry, Mathematics, 6:4 (2015), 547–550 |
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2014 |
16. |
A. P. Meilakhs, E. D. Èidel'man, “Overheating or overcooling of electrons in a metal because of the effect of an interface with an insulator”, Pis'ma v Zh. Èksper. Teoret. Fiz., 100:2 (2014), 89–93 ; JETP Letters, 100:2 (2014), 81–85 |
8
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17. |
S. V. Koniakhin, E. D. Èidel'man, “The electron-phonon matrix element in the dirac point of graphene”, Nanosystems: Physics, Chemistry, Mathematics, 5:1 (2014), 142–147 |
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2013 |
18. |
A. P. Meilakhs, E. D. Èidel'man, “New model of heat transport across the metal-insulator interface by the example of boundaries in a diamond-copper composite”, Pis'ma v Zh. Èksper. Teoret. Fiz., 97:1 (2013), 42–44 ; JETP Letters, 97:1 (2013), 38–40 |
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1999 |
19. |
E. D. Èidel'man, “Electroconvection during the flow of current in a horizontal layer of conducting medium due to heating”, TVT, 37:1 (1999), 122–127 ; High Temperature, 37:1 (1999), 117–122 |
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1998 |
20. |
E. D. Èidel'man, “Electroconvection in a horizontal layer of conducting liquid due to heating: Formulation of the problem and excitation in thin layers”, TVT, 36:5 (1998), 799–803 ; High Temperature, 36:5 (1998), 776–780 |
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1995 |
21. |
E. D. Èidel'man, “Some aspects of relativistic motion that depends on one spatial variable”, TMF, 103:1 (1995), 82–96 ; Theoret. and Math. Phys., 103:1 (1995), 412–423 |
1
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22. |
E. D. Èidel'man, “Excitation of instability in media of bipolar conductivity under the thermoelectric effect”, TVT, 33:4 (1995), 509–518 ; High Temperature, 33:4 (1995), 505–513 |
23. |
E. D. Èidel'man, “Excitation of an electric instability by heating”, UFN, 165:11 (1995), 1279–1294 ; Phys. Usp., 38:11 (1995), 1231–1246 |
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1994 |
24. |
E. D. Èidel'man, “Calculating the influence of the thermoelectric effect on motion in a liquid-semiconductor film”, TVT, 32:3 (1994), 418–426 ; High Temperature, 32:3 (1994), 393–401 |
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1987 |
25. |
E. D. Èidel'man, “INFLUENCE OF BOUNDARY-CONDITIONS ON THE ORIGINATION OF THE PRE-RAYLEIGH
CONVENTION IN LIQUID SEMICONDUCTORS”, Zhurnal Tekhnicheskoi Fiziki, 57:6 (1987), 1145–1147 |
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