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Kostanovskaya, Margarita Evgen'evna

Statistics Math-Net.Ru
Total publications: 29
Scientific articles: 29

Number of views:
This page:203
Abstract pages:4767
Full texts:3159
References:499
Senior Researcher
Candidate of physico-mathematical sciences

https://www.mathnet.ru/eng/person94056
List of publications on Google Scholar
List of publications on ZentralBlatt

Publications in Math-Net.Ru Citations
2024
1. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Влияние температуры и силы тока на контактное электрическое сопротивление графита”, TVT, 62:3 (2024),  363–367  mathnet
2. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Распределение температуры в области контактной электрической поверхности графита”, TVT, 62:1 (2024),  143–146  mathnet
2022
3. A. V. Kostanovskii, M. E. Kostanovskaya, M. G. Zeodinov, A. A. Pronkin, “Thermal effect in the contact resistance of graphite”, TVT, 60:6 (2022),  946–949  mathnet  elib; High Temperature, 60:6 (2022), 877–880 1
4. M. G. Zeodinov, A. V. Kostanovskii, M. E. Kostanovskaya, A. A. Pronkin, “Contact electrical resistance of grade MPG-$7$ graphite at DC and AC current”, TVT, 60:5 (2022),  789–792  mathnet  elib; High Temperature, 60:5 (2022), 723–726 2
5. M. G. Zeodinov, A. V. Kostanovskii, M. E. Kostanovskaya, A. A. Pronkin, “Electrical contact resistance of graphite”, TVT, 60:4 (2022),  519–523  mathnet  elib; High Temperature, 60:4 (2022), 469–473 4
2021
6. A. V. Kostanovskii, M. E. Kostanovskaya, “Determination of specific heat in experiments with pulsed electric heating”, TVT, 59:5 (2021),  790–793  mathnet  elib; High Temperature, 60:1, Suppl. 2 (2022), S281–S284 3
2020
7. A. V. Kostanovskii, M. E. Kostanovskaya, “Relationship between force and heat flux in the electric-pulse heating of a metal conductor”, TVT, 58:5 (2020),  826–828  mathnet  elib; High Temperature, 58:5 (2020), 747–749  isi  scopus
8. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Influence of heating temperature on the electrical resistivity of pyrolytic graphite”, TVT, 58:4 (2020),  732–734  mathnet  elib; High Temperature, 58:4 (2020), 668–670  isi  scopus 2
9. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Electrical resistivity of the $c$ surface of pyrolytic UPV-1 graphite in a temperature range of $2200$$3200$ K”, TVT, 58:1 (2020),  141–143  mathnet  elib; High Temperature, 58:1 (2020), 137–139  isi  scopus
2019
10. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Emittance properties of siliconized silicon carbide in the temperature range of $1400$$2200$ K”, TVT, 57:2 (2019),  301–303  mathnet  elib; High Temperature, 57:2 (2019), 272–274  isi  scopus 2
11. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Thermal conductivity of silicicated silicon carbide at $1400$$2200$ K”, TVT, 57:1 (2019),  137–139  mathnet  elib; High Temperature, 57:1 (2019), 122–123  isi  scopus 4
2018
12. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Thermal expansion of zirconium carbide at $1200$$2850$ K”, TVT, 56:6 (2018),  956–958  mathnet  elib; High Temperature, 56:6 (2018), 936–937  isi  scopus 6
13. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Electrical resistivity of silicated silicon carbide”, TVT, 56:5 (2018),  841–843  mathnet  elib; High Temperature, 56:5 (2018), 824–826  isi  scopus 5
14. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Relative elongation of silicicated silicon carbide at temperatures of $1150$$2500$ K”, TVT, 56:2 (2018),  310–312  mathnet  elib; High Temperature, 56:2 (2018), 299–301  isi  elib  scopus 3
2017
15. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, T. I. Borodina, “Relative lengthening of $\rm ZrO_2$ in the temperature range of $1200$$2700$ K”, TVT, 55:6 (2017),  782–784  mathnet  elib; High Temperature, 55:6 (2017), 942–944  isi  scopus 1
16. A. V. Kostanovskii, M. E. Kostanovskaya, “The role of heat flux in the nonsteady thermal problem of molybdenum sphere cooling in an electrostatic levitation experiment”, TVT, 55:6 (2017),  696–699  mathnet  elib; High Temperature, 55:6 (2017), 866–869  isi  scopus 7
17. A. V. Kostanovskii, M. E. Kostanovskaya, M. G. Zeodinov, “Self-heating effect at graphite ohmic heating”, TVT, 55:5 (2017),  732–736  mathnet  elib; High Temperature, 55:5 (2017), 718–722  isi  scopus 3
2016
18. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Investigation of stability of the relative elongation of GIP-4 graphite under cyclic thermal loads”, TVT, 54:1 (2016),  144–146  mathnet  elib; High Temperature, 54:1 (2016), 146–148  isi  scopus 4
2015
19. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, A. A. Pronkin, “Investigation of stability of specific elongation of graphite of $\text{DE}$-$24$ grade under cyclic heat loads”, TVT, 53:1 (2015),  54–57  mathnet  elib; High Temperature, 53:1 (2015), 51–54  isi  elib  scopus 8
2013
20. A. V. Kostanovskiy, M. E. Kostanovskaya, M. G. Zeodinov, “About a phonon mechanism of heat conduction in graphite at high temperatures”, TVT, 51:3 (2013),  477–480  mathnet  elib; High Temperature, 51:3 (2013), 426–429  isi  elib  scopus 9
2006
21. L. G. D'yachkov, A. V. Kostanovskii, M. E. Kostanovskaya, “Thermograms of melting of thin plates heated by laser radiation with modulated intensity”, TVT, 44:5 (2006),  673–681  mathnet  elib; High Temperature, 44:5 (2006), 665–674
2005
22. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, “The Determination of Thermal Conductivity and Emissivity of Graphite at High Temperatures”, TVT, 43:5 (2005),  791–793  mathnet; High Temperature, 43:5 (2005), 793–795 14
2001
23. A. V. Kostanovskii, M. E. Kostanovskaya, “Possibility of increasing the degree of perfection of a blackbody model”, TVT, 39:2 (2001),  347–349  mathnet; High Temperature, 39:2 (2001), 329–331 1
24. A. V. Kostanovskii, M. G. Zeodinov, M. E. Kostanovskaya, “Experimental determination of the emissivity of isotropic graphite at temperatures above $2300$ K”, TVT, 39:1 (2001),  163–165  mathnet; High Temperature, 39:1 (2001), 159–161 4
1998
25. A. V. Kostanovskii, M. E. Kostanovskaya, “Determination of the melting temperature for high-temperature materials by the thermogram method under laser heating”, TVT, 36:6 (1998),  921–926  mathnet; High Temperature, 36:6 (1998), 897–902  isi  scopus
1997
26. A. V. Kostanovskii, L. B. Nefedkina, M. E. Kostanovskaya, “High-temperature blackbody model”, TVT, 35:1 (1997),  122–128  mathnet; High Temperature, 35:1 (1997), 119–124  isi 5
1986
27. M. A. Styrikovich, D. I. Lamden, M. E. Kostanovskaya, “Space-time structure of thermal interaction in the brief contact of a liquid droplet with a supercritically heated surface”, TVT, 24:4 (1986),  753–761  mathnet; High Temperature, 24:4 (1986), 577–585  isi
1984
28. M. A. Styrikovich, D. I. Lamden, M. E. Kostanovskaya, “Heat and mass-transfer in the short-term contact of a liquid-drop with a strongly superheated surface”, TVT, 22:6 (1984),  1158–1165  mathnet; High Temperature, 22:6 (1984), 892–899  isi
29. M. A. Styrikovich, D. I. Lamden, M. E. Kostanovskaya, “Temperature regimes arising in the analysis of some $3$-layer heat-conduction problems”, TVT, 22:1 (1984),  64–68  mathnet; High Temperature, 22:1 (1984), 57–61  isi

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