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2-years impact-factor Math-Net.Ru of «Izvestiya Rossiiskoi Akademii Nauk. Seriya Matematicheskaya» journal, 2020
2-years impact-factor Math-Net.Ru of the journal in 2020 is calculated
as the number of citations in 2020 to the scientific papers published during
2018–2019.
The table below contains the list of citations in 2020 to the papers
published in 2018–2019. We take into account all citing publications
we found from different sources, mostly from references lists available
on Math-Net.Ru. Both original and translation versions are taken into account.
The impact factor Math-Net.Ru may change when new citations to a year
given are found.
| Year |
2-years impact-factor Math-Net.Ru |
Scientific papers |
Citations |
Citated papers |
Journal Self-citations |
| 2020 |
1.188 |
96 |
114 |
58 |
9.6% |
|
|
|
| N |
Citing pulication |
|
Cited paper |
|
| 1. |
A. G. Baskakov, D. B. Didenko, “Spektralnyi analiz operatornykh polinomov
i differentsialnykh operatorov vtorogo poryadka”, Matem. zametki, 108:4 (2020), 490–506  |
→ |
On invertibility states of differential and difference operators A. G. Baskakov, V. B. Didenko Izv. RAN. Ser. Mat., 82:1 (2018), 3–16
|
|
| 2. |
Kovtanyuk A., Chebotarev A., Turova V., Sidorenko I., Lampe R., “Inverse Problem For a Linearized Model of Oxygen Transport in Brain”, Proceedings of the 2020 International Conference Days on Diffraction (Dd), eds. Motygin O., Kiselev A., Goray L., Zaboronkova T., Kazakov A., Kirpichnikova A., IEEE, 2020, 44–49  |
→ |
Inverse coefficient problems for a non-linear convection–diffusion–reaction equation R. V. Brizitskii, Zh. Yu. Saritskaya Izv. RAN. Ser. Mat., 82:1 (2018), 17–33
|
| 3. |
Zh Saritskaia, P Savinov, “Multiplicative boundary control problems for nonlinear reaction-diffusion-convection model”, J. Phys.: Conf. Ser., 1666:1 (2020), 012045  |
→ |
Inverse coefficient problems for a non-linear convection–diffusion–reaction equation R. V. Brizitskii, Zh. Yu. Saritskaya Izv. RAN. Ser. Mat., 82:1 (2018), 17–33
|
| 4. |
O V Soboleva, A V Brizitskaya, Yu K Dyachenko, “Optimization Approach in Modelling the Effects of Technological Disasters”, IOP Conf. Ser.: Earth Environ. Sci., 459:4 (2020), 042062  |
→ |
Inverse coefficient problems for a non-linear convection–diffusion–reaction equation R. V. Brizitskii, Zh. Yu. Saritskaya Izv. RAN. Ser. Mat., 82:1 (2018), 17–33
|
|
| 5. |
K. Gorbunov, V. Lyubetsky, “Linear time additively exact algorithm for transformation of chain-cycle graphs for arbitrary costs of deletions and insertions dagger”, Mathematics, 8:11 (2020), 2001  |
→ |
Non-uniformizable sets of second projective level with countable cross-sections in the form of Vitali classes V. G. Kanovei, V. A. Lyubetsky Izv. RAN. Ser. Mat., 82:1 (2018), 65–96
|
| 6. |
V. Kanovei, V. Lyubetsky, “On the ‘definability of definable’ problem of alfred tarski”, Mathematics, 8:12 (2020), 2214  |
→ |
Non-uniformizable sets of second projective level with countable cross-sections in the form of Vitali classes V. G. Kanovei, V. A. Lyubetsky Izv. RAN. Ser. Mat., 82:1 (2018), 65–96
|
|
| 7. |
A. Borisenko, Y. Nikolayevsky, “On cylindricity of submanifolds of nonnegative Ricci curvature in a Minkowski space”, J. Geom. Phys., 155 (2020), 103776  |
→ |
On intersections of two real quadrics V. A. Krasnov Izv. RAN. Ser. Mat., 82:1 (2018), 97–150
|
|
| 8. |
A E Mamontov, D A Prokudin, “Global unique solvability of the initial-boundary value problem for one-dimensional barotropic equations of viscous compressible bifluids”, J. Phys.: Conf. Ser., 1666:1 (2020), 012032  |
→ |
Solubility of unsteady equations of multi-component viscous compressible fluids A. E. Mamontov, D. A. Prokudin Izv. RAN. Ser. Mat., 82:1 (2018), 151–197
|
| 9. |
Zh Saritskaia, P Savinov, “Multiplicative boundary control problems for nonlinear reaction-diffusion-convection model”, J. Phys.: Conf. Ser., 1666:1 (2020), 012045  |
→ |
Solubility of unsteady equations of multi-component viscous compressible fluids A. E. Mamontov, D. A. Prokudin Izv. RAN. Ser. Mat., 82:1 (2018), 151–197
|
| 10. |
O V Soboleva, A V Brizitskaya, Yu K Dyachenko, “Optimization Approach in Modelling the Effects of Technological Disasters”, IOP Conf. Ser.: Earth Environ. Sci., 459:4 (2020), 042062  |
→ |
Solubility of unsteady equations of multi-component viscous compressible fluids A. E. Mamontov, D. A. Prokudin Izv. RAN. Ser. Mat., 82:1 (2018), 151–197
|
|
| 11. |
B. P. Osilenker, “Obobschennaya formula sleda dlya polinomov, ortogonalnykh v kontinualno-diskretnykh prostranstvakh Soboleva”, Funkts. analiz i ego pril., 54:4 (2020), 102–105  |
→ |
Sobolev-orthogonal systems of functions associated with an orthogonal system I. I. Sharapudinov Izv. RAN. Ser. Mat., 82:1 (2018), 225–258
|
| 12. |
R. M. Gadzhimirzaev, “O ravnomernoi skhodimosti ryada Fure po sisteme polinomov, porozhdennoi sistemoi polinomov Lagerra”, Izv. Sarat. un-ta. Nov. ser. Ser.: Matematika. Mekhanika. Informatika, 20:4 (2020), 416–423  |
→ |
Sobolev-orthogonal systems of functions associated with an orthogonal system I. I. Sharapudinov Izv. RAN. Ser. Mat., 82:1 (2018), 225–258
|
| 13. |
M. S. Sultanakhmedov, “Recurrence relations for Sobolev orthogonal polynomials”, Probl. anal. Issues Anal., 9(27):2 (2020), 97–118  |
→ |
Sobolev-orthogonal systems of functions associated with an orthogonal system I. I. Sharapudinov Izv. RAN. Ser. Mat., 82:1 (2018), 225–258
|
|
| 14. |
A. V. Greshnov, “Funktsii rasstoyaniya mezhdu mnozhestvami $(q_1,q_2)$-kvazimetricheskikh prostranstv”, Sib. matem. zhurn., 61:3 (2020), 528–538  |
→ |
$(q_1,q_2)$-quasimetric spaces. Covering mappings and coincidence points A. V. Arutyunov, A. V. Greshnov Izv. RAN. Ser. Mat., 82:2 (2018), 3–32
|
| 15. |
A. V. Arutyunov, E. S. Zhukovskiy, S. E. Zhukovskiy, “On the stability of fixed points and coincidence points of mappings in the generalized Kantorovich's theorem”, Topology Appl., 275 (2020), 107030  |
→ |
$(q_1,q_2)$-quasimetric spaces. Covering mappings and coincidence points A. V. Arutyunov, A. V. Greshnov Izv. RAN. Ser. Mat., 82:2 (2018), 3–32
|
|
| 16. |
A. A. Panin, G. I. Shlyapugin, “Lokalnaya razreshimost i globalnaya nerazreshimost odnoi modeli
ionno-zvukovykh voln v plazme”, Matem. zametki, 107:3 (2020), 426–441  |
→ |
Blow-up of solutions of a full non-linear equation of ion-sound waves
in a plasma with non-coercive non-linearities M. O. Korpusov, D. V. Lukyanenko, A. A. Panin, E. V. Yushkov Izv. RAN. Ser. Mat., 82:2 (2018), 43–78
|
| 17. |
M. O. Korpusov, E. A. Ovsyannikov, “Vzryvnaya neustoichivost v nelineinykh volnovykh modelyakh s raspredelennymi parametrami”, Izv. RAN. Ser. matem., 84:3 (2020), 15–70  |
→ |
Blow-up of solutions of a full non-linear equation of ion-sound waves
in a plasma with non-coercive non-linearities M. O. Korpusov, D. V. Lukyanenko, A. A. Panin, E. V. Yushkov Izv. RAN. Ser. Mat., 82:2 (2018), 43–78
|
| 18. |
M. O. Korpusov, “Razrushenie i globalnaya razreshimost v klassicheskom smysle zadachi Koshi dlya formalno giperbolicheskogo uravneniya s nekoertsitivnym istochnikom”, Izv. RAN. Ser. matem., 84:5 (2020), 119–150  |
→ |
Blow-up of solutions of a full non-linear equation of ion-sound waves
in a plasma with non-coercive non-linearities M. O. Korpusov, D. V. Lukyanenko, A. A. Panin, E. V. Yushkov Izv. RAN. Ser. Mat., 82:2 (2018), 43–78
|
| 19. |
M. O. Korpusov, A. N. Levashov, D. V. Lukyanenko, “Analitiko-chislennoe issledovanie voprosa o razrushenii za konechnoe vremya resheniya nachalno-kraevoi zadachi dlya nelineinogo uravneniya Kleina–Gordona”, Zh. vychisl. matem. i matem. fiz., 60:9 (2020), 1503–1512  |
→ |
Blow-up of solutions of a full non-linear equation of ion-sound waves
in a plasma with non-coercive non-linearities M. O. Korpusov, D. V. Lukyanenko, A. A. Panin, E. V. Yushkov Izv. RAN. Ser. Mat., 82:2 (2018), 43–78
|
|
| 20. |
R. M. Safina, “Dirichlet problem for mixed type equation with characteristic degeneration and singular coefficient”, Lobachevskii J. Math., 41:1, SI (2020), 80–88  |
→ |
The first boundary-value problem for an equation of mixed type with a singular coefficient K. B. Sabitov, R. M. Safina Izv. RAN. Ser. Mat., 82:2 (2018), 79–112
|
|
|
|
| Total publications: |
3263 |
| Scientific articles: |
3180 |
| Authors: |
1836 |
| Citations: |
39453 |
| Cited articles: |
2836 |
 |
Impact Factor Web of Science |
|
for 2025:
0.700 |
|
for 2024:
0.900 |
|
for 2023:
0.800 |
|
for 2022:
0.800 |
|
for 2021:
0.978 |
|
for 2020:
1.189 |
|
for 2019:
1.130 |
|
for 2018:
1.030 |
|
for 2017:
0.923 |
|
for 2016:
0.725 |
|
for 2015:
0.505 |
|
for 2014:
0.630 |
|
for 2013:
0.500 |
|
for 2012:
0.640 |
|
for 2011:
0.488 |
|
for 2010:
0.494 |
|
for 2009:
0.635 |
|
for 2008:
0.494 |
|
for 2007:
0.453 |
|
for 2006:
0.545 |
|
for 2005:
0.649 |
 |
Scopus Metrics |
|
2025 |
CiteScore |
1.200 |
|
2025 |
SNIP |
0.799 |
|
2025 |
SJR |
0.464 |
|
2024 |
CiteScore |
1.300 |
|
2024 |
SNIP |
0.986 |
|
2024 |
SJR |
0.575 |
|
2023 |
CiteScore |
1.300 |
|
2023 |
SNIP |
1.081 |
|
2023 |
SJR |
0.519 |
|
2022 |
SJR |
0.449 |
|
2021 |
SJR |
0.726 |
|
2020 |
SJR |
1.057 |
|
2019 |
SJR |
0.587 |
|
2018 |
CiteScore |
0.660 |
|
2018 |
SJR |
0.691 |
|
2017 |
CiteScore |
0.440 |
|
2017 |
SNIP |
0.711 |
|
2017 |
SJR |
0.420 |
|
2016 |
CiteScore |
0.330 |
|
2016 |
SNIP |
0.717 |
|
2016 |
SJR |
0.376 |
|
2015 |
CiteScore |
0.360 |
|
2015 |
SNIP |
0.537 |
|
2015 |
IPP |
0.309 |
|
2015 |
SJR |
0.362 |
|
2014 |
CiteScore |
0.310 |
|
2014 |
SNIP |
0.500 |
|
2014 |
IPP |
0.293 |
|
2014 |
SJR |
0.362 |
|
2013 |
SNIP |
0.715 |
|
2013 |
IPP |
0.264 |
|
2013 |
SJR |
0.362 |
|
2012 |
SNIP |
0.544 |
|
2012 |
IPP |
0.220 |
|
2012 |
SJR |
0.396 |
|