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Publications in Math-Net.Ru
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Procedure for constructing of explicit, implicit and symmetric simplectic schemes for numerical solving of hamiltonian systems of equations
Computer Research and Modeling, 8:6 (2016), 861–871
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Numerical investigation of photoexcited polaron states in water
Computer Research and Modeling, 6:2 (2014), 253–261
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NINE: computer code for numerical solution of the boundary problems
for nonlinear differential equations on the basis of CANM
Computer Research and Modeling, 4:2 (2012), 315–324
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Configurations of rotating magnetic Newtonian polytropics with small index
Vestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.], 2010, no. 16, 75–86
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Numerical investigation of the dynamics of polaron states
Vestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.], 2009, no. 13, 5–14
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Mathematical modelling of thermal processes in materials at irradiation by ions with high energies
Vestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.], 2009, no. 12, 17–27
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Numerical simulation of the process of heat and moisture transfer in porous materials
Vestnik TVGU. Ser. Prikl. Matem. [Herald of Tver State University. Ser. Appl. Math.], 2008, no. 8, 51–57
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A gravitating rapidly rotating superdense configuration with realistic state equations
Matem. Mod., 18:3 (2006), 103–119
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Two-body relativistic equations for the bound-state problem with coulomb and linear potentials
Matem. Mod., 12:12 (2000), 79–96
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Second-order learning methods for a multilayer perceptron
Matem. Mod., 10:3 (1998), 117–124
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On numerical investigation of eigenvalue problems in momentum space
Matem. Mod., 9:10 (1997), 111–119
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Numerical investigation of quantumfield model of strong-coupling binucleon
Matem. Mod., 9:8 (1997), 51–59
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Numerical analysis of a quarkonium model at finite temperature
Matem. Mod., 9:3 (1997), 73–90
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A method for the numerical solution of three-dimensional polaron equations
Zh. Vychisl. Mat. Mat. Fiz., 36:7 (1996), 109–118
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On some problems of numerical investigation of the quarkonium model with the coulomb and linear potentials
Matem. Mod., 7:7 (1995), 34–48
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Numerical investigation of Schwinger–Dyson and Bhete–Salpeter equations with Gauss potential at the framework of the quarkonium model
Matem. Mod., 6:7 (1994), 55–70
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The combination of the establishment method and Newton's method for solving nonlinear differential problems
Zh. Vychisl. Mat. Mat. Fiz., 34:2 (1994), 175–184
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The convergence of iterations based on a continuous analogue of Newton's method
Zh. Vychisl. Mat. Mat. Fiz., 32:6 (1992), 846–856
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An evolutionary Newton procedure for solving nonlinear equations
Zh. Vychisl. Mat. Mat. Fiz., 32:1 (1992), 3–12
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Numerical solution of eigenvalue problems for integrodifferential equations in nuclear theory
Zh. Vychisl. Mat. Mat. Fiz., 17:2 (1977), 407–419
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Solution of a certain nonlinear discrete boundary value problem by means of the continuous analogue of Newton's method
Zh. Vychisl. Mat. Mat. Fiz., 9:2 (1969), 442–447
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Application of a continuous analogue of Newton's method to approximate solution of a non-linear boundary value problem
Dokl. Akad. Nauk SSSR, 180:1 (1968), 18–21
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Solution of boundary value problems for nonlinear ordinary differential equations of the second degree by the method of stabilization
Dokl. Akad. Nauk SSSR, 174:2 (1967), 271–273
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A method for introducing a parameter when solving boundary value problems for second-order nonlinear ordinary differential equations
Zh. Vychisl. Mat. Mat. Fiz., 7:5 (1967), 1086–1095
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Поправки к статье “Решение краевых задач для нелинейных обыкновенных дифференциальных
уравнений второго порядка методом стабилизации” (ДАН, т. 174, № 2, 1967 г.)
Dokl. Akad. Nauk SSSR, 179:6 (1968), 1333
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