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Demidenko Gennadii Vladimirovich

Publications in Math-Net.Ru

  1. Exponential dichotomy for systems of difference equations under perturbation of coefficients

    Chelyab. Fiz.-Mat. Zh., 9:4 (2024),  561–572
  2. Boundary value problem in a cylinder for a pseudohyperbolic equation

    Chelyab. Fiz.-Mat. Zh., 8:4 (2023),  469–482
  3. On location of the matrix spectrum with respect to a parabola

    Mat. Tr., 26:1 (2023),  26–40
  4. On well-posedness of the Cauchy problem for pseudohyperbolic equations in weighted Sobolev spaces

    Sibirsk. Mat. Zh., 64:5 (2023),  895–911
  5. A method for solving one biological problem of large dimension

    Sib. Zh. Ind. Mat., 25:4 (2022),  42–53
  6. On periodic solutions of one second-order differential equation

    CMFD, 67:3 (2021),  535–548
  7. Boundary value problems for one pseudohyperbolic equation in a quarter plane

    Mat. Tr., 24:2 (2021),  3–23
  8. On one class of systems of differential equations with periodic coefficients in linear terms

    Sibirsk. Mat. Zh., 62:5 (2021),  995–1012
  9. Boundary value problems for the Rayleigh–Bishop equation in a quarter plane

    Mathematical notes of NEFU, 28:3 (2021),  5–18
  10. On solvability of one class of quasielliptic systems

    Sibirsk. Mat. Zh., 61:6 (2020),  1212–1233
  11. Cauchy problem for one pseudohyperbolic system

    Zh. Vychisl. Mat. Mat. Fiz., 60:4 (2020),  626–638
  12. On one system of ordinary differential equations of large dimension and a delay equation

    Sib. Zh. Ind. Mat., 22:3 (2019),  59–73
  13. Estimates for solutions to neutral differential equations with periodic coefficients of linear terms

    Sibirsk. Mat. Zh., 60:5 (2019),  1063–1079
  14. On stability of the inverted pendulum motion with a vibrating suspension point

    Sib. Zh. Ind. Mat., 21:4 (2018),  39–50
  15. Asymptotic behavior at infinity of solutions to the nonhomogeneous Sobolev equation

    Sibirsk. Mat. Zh., 59:5 (2018),  998–1012
  16. On a class of systems of ordinary differential equations of large dimension

    Sib. Zh. Ind. Mat., 19:2 (2016),  47–60
  17. Exponential dichotomy of systems of linear difference equations with periodic coefficients

    Sibirsk. Mat. Zh., 57:6 (2016),  1240–1254
  18. Quasielliptic operators and equations not solvable with respect to the highest order derivative

    Sib. J. Pure and Appl. Math., 16:3 (2016),  15–26
  19. On the robust stability of solutions to linear differential equations of neutral type with periodic coefficients

    Sib. Zh. Ind. Mat., 18:4 (2015),  18–29
  20. Solvability conditions of the Cauchy problem for pseudohyperbolic equations

    Sibirsk. Mat. Zh., 56:6 (2015),  1289–1303
  21. On asymptotic stability of solutions to delay difference equations

    Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 15:4 (2015),  50–62
  22. On the exponential stability of solutions to one class of differential equations of neutral type

    Sib. Zh. Ind. Mat., 17:3 (2014),  59–70
  23. On estimates of solutions to systems of differential equations of neutral type with periodic coefficients

    Sibirsk. Mat. Zh., 55:5 (2014),  1059–1077
  24. Estimates for Solutions to One Class of Nonlinear Systems of Neutral Type with Several Delays

    Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 14:4 (2014),  32–43
  25. Systems of differential equations with periodic coefficients

    Sib. Zh. Ind. Mat., 16:4 (2013),  38–46
  26. Estimates of solutions to linear differential equations of neutral type with several delays of argument

    Sib. Zh. Ind. Mat., 16:3 (2013),  53–60
  27. Systems of differential equations of higher dimension and delay equations

    Sibirsk. Mat. Zh., 53:6 (2012),  1274–1282
  28. Asymptotic Stability of Solutions to One Class of Nonlinear Second-Order Differential Equations with Parameters

    Vestnik YuUrGU. Ser. Mat. Model. Progr., 2012, no. 14,  39–52
  29. On a method of approximation of solutions to delay differential equations

    Sibirsk. Mat. Zh., 51:3 (2010),  528–546
  30. Stability of solutions to differential equations of neutral type

    Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 10:3 (2010),  17–29
  31. Quasielliptic operators and Sobolev type equations. II

    Sibirsk. Mat. Zh., 50:5 (2009),  1060–1069
  32. Quasielliptic operators and Sobolev type equations

    Sibirsk. Mat. Zh., 49:5 (2008),  1064–1076
  33. Boundary value problems for quasielliptic systems

    Sibirsk. Mat. Zh., 49:2 (2008),  256–273
  34. Exponential Dichotomy of Linear Systems of Differential Equations with Periodic Coefficients

    Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 8:4 (2008),  40–48
  35. Stability of solutions to delay differential equations with periodic coefficients of linear terms

    Sibirsk. Mat. Zh., 48:5 (2007),  1025–1040
  36. On one class of systems of differential equations and on retarded equations

    Sibirsk. Mat. Zh., 47:1 (2006),  58–68
  37. On mixed boundary value problems for pseudoparabolic systems

    Sib. Zh. Ind. Mat., 8:4 (2005),  34–50
  38. On differential equations with retarded argument

    Sibirsk. Mat. Zh., 46:3 (2005),  538–552
  39. Asymptotic properties of solutions to delay differential equations

    Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 5:3 (2005),  20–28
  40. Modeling nonbranching multistage synthesis by an equation with retarded argument

    Sib. Zh. Ind. Mat., 7:1 (2004),  73–94
  41. On stability of solutions to quasilinear periodic systems of differential equations

    Sibirsk. Mat. Zh., 45:6 (2004),  1271–1284
  42. An estimate for the attraction domains of difference equations with periodic linear terms

    Sibirsk. Mat. Zh., 45:6 (2004),  1199–1208
  43. On one class of matrix differential operators

    Sibirsk. Mat. Zh., 45:1 (2004),  103–118
  44. Mathematical modeling of regular contours of gene networks

    Zh. Vychisl. Mat. Mat. Fiz., 44:12 (2004),  2276–2295
  45. Asymptotic stability of solutions to perturbed linear difference equations with periodic coefficients

    Sibirsk. Mat. Zh., 43:3 (2002),  493–507
  46. Isomorphic properties of one class of differential operators and their applications

    Sibirsk. Mat. Zh., 42:5 (2001),  1036–1056
  47. On stability of solutions to linear systems with periodic coefficients

    Sibirsk. Mat. Zh., 42:2 (2001),  332–348
  48. A new criterion for a matrix spectrum to belong to the closed unit disk and applications to stability theory

    Sib. Zh. Ind. Mat., 3:1 (2000),  47–56
  49. Numeric Characteristics for Asymptotic Stability of Solutions to Linear Difference Equations with Periodic Coefficients

    Sibirsk. Mat. Zh., 41:6 (2000),  1227–1237
  50. On mixed boundary value problems in a quarter-space for a class of systems not of Cauchy–Kovalevskaya type

    Differ. Uravn., 34:3 (1998),  348–358
  51. On a method for constructing projectors on invariant subspaces of matrices

    Sib. Zh. Ind. Mat., 1:1 (1998),  104–113
  52. On quasi-elliptic operators in $R_n$

    Sibirsk. Mat. Zh., 39:5 (1998),  1028–1037
  53. On a functional approach to the construction of projections onto invariant subspaces of matrices

    Sibirsk. Mat. Zh., 39:4 (1998),  796–813
  54. The Cauchy problem for pseudoparabolic systems

    Sibirsk. Mat. Zh., 38:6 (1997),  1251–1266
  55. Weighted Sobolev spaces and integral operators defined by quasi-elliptic equations

    Dokl. Akad. Nauk, 334:4 (1994),  420–423
  56. A class of integral operators and applications to quasi-elliptic equations. II

    Differ. Uravn., 30:10 (1994),  1731–1737
  57. A class of integral operators and applications to quasi-elliptic equations. I

    Differ. Uravn., 30:5 (1994),  889–898
  58. Boundary value problems in a quarter-space for systems that are not of Cauchy–Kovalevskaya type

    Trudy Inst. Mat. SO RAN, 26 (1994),  42–76
  59. On the regularity of solutions of boundary value problems for quasi-elliptic equations

    Trudy Inst. Mat. SO RAN, 24 (1994),  144–166
  60. On a certain class of spectral characteristics of matrices

    Sibirsk. Mat. Zh., 35:5 (1994),  1032–1051
  61. Integral operators determined by quasielliptic equations. II

    Sibirsk. Mat. Zh., 35:1 (1994),  41–65
  62. Integral operators determined by quasielliptic equations. I

    Sibirsk. Mat. Zh., 34:6 (1993),  52–67
  63. Integral operators defined by boundary value problems for quasi-elliptic equations

    Dokl. Akad. Nauk, 326:5 (1992),  765–769
  64. Correct solvability of boundary value problems in a half-space for quasi-elliptic equations

    Sibirsk. Mat. Zh., 29:4 (1988),  54–67
  65. Necessary conditions for the well-posedness of the Cauchy problem for a linearized Navier–Stokes system

    Sibirsk. Mat. Zh., 29:3 (1988),  186–189
  66. The behavior as $t\to\infty$ of solutions of certain problems of hydrodynamics

    Dokl. Akad. Nauk SSSR, 280:5 (1985),  1072–1074
  67. Estimates as $t\to\infty$ of the solution of a problem of S. L. Sobolev

    Sibirsk. Mat. Zh., 25:2 (1984),  112–120
  68. Behavior at infinity of solutions of a problem of S. L. Sobolev

    Sibirsk. Mat. Zh., 24:5 (1983),  199–210
  69. On mixed boundary value problems for Sobolev type equations

    Sibirsk. Mat. Zh., 22:3 (1981),  53–66
  70. On mixed boundary-value problems for a class of equations unsolved with respect to the highest derivative

    Dokl. Akad. Nauk SSSR, 252:3 (1980),  560–562

  71. Vladimir Mikhailovich Filippov

    CMFD, 67:3 (2021),  423–426
  72. The $100^{\mathrm{th}}$ Anniversary of the Birthday of Sergei L'vovich Sobolev

    Vestn. Novosib. Gos. Univ., Ser. Mat. Mekh. Inform., 8:4 (2008),  3–12


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