| Issue |
Title |
File |
| Vol 59, No 8 (2019) |
An Approach to Determining the Variation of a Functional with Singularities |
|
|
Albu A.F., Evtushenko Y.G., Zubov V.I.
|
| Vol 59, No 9 (2019) |
An Approach to the Analysis of Possible Structural Damages in Multicommodity Network Systems |
|
|
Malashenko Y.E., Nazarova I.A., Novikova N.M.
|
| Vol 59, No 8 (2019) |
An Approach to the Numerical Solution of the Basic Magnetostatic Equation for a Plane Parallel Plate with an Arbitrarily Shaped Inclusion |
|
|
Dyakin V.V., Kudryashova O.V., Rayevskii V.Y.
|
| Vol 59, No 3 (2019) |
An Approximate Method for Determining the Harmonic Barycentric Coordinates for Arbitrary Polygons |
|
|
Il’inskii A.S., Polyanskii I.S.
|
| Vol 58, No 1 (2018) |
An Attack–Defense Model with Inhomogeneous Resources of the Opponents |
|
|
Perevozchikov A.G., Reshetov V.Y., Yanochkin I.E.
|
| Vol 56, No 3 (2016) |
Analogue of Newton–Cotes formulas for numerical integration of functions with a boundary-layer component |
|
|
Zadorin A.I., Zadorin N.A.
|
| Vol 56, No 8 (2016) |
Analysis of a method for computing the speed of sound in a medium with inclusions |
|
|
Ivanov V.P.
|
| Vol 58, No 4 (2018) |
Analysis of a Two-Dimensional Thermal Cloaking Problem on the Basis of Optimization |
|
|
Alekseev G.V.
|
| Vol 56, No 3 (2016) |
Analysis of stability boundaries of satellite’s equilibrium attitude in a circular orbit |
|
|
Novikov M.A.
|
| Vol 58, No 11 (2018) |
Analysis of the Spectrum of Azimuthally Symmetric Waves of an Open Inhomogeneous Anisotropic Waveguide with Longitudinal Magnetization |
|
|
Smirnov Y.G., Smolkin E.Y., Snegur M.O.
|
| Vol 57, No 4 (2017) |
Analytic continuation of the Appell function F1 and integration of the associated system of equations in the logarithmic case |
|
|
Bezrodnykh S.I.
|
| Vol 58, No 9 (2018) |
Analytic–Numerical Investigation of Combustion in a Nonlinear Medium |
|
|
Korpusov M.O., Lukyanenko D.V., Nekrasov A.D.
|
| Vol 58, No 9 (2018) |
Analytical Solution of a Plasma Oscillation Problem in a Half-Space Subject to Diffusive Boundary Conditions |
|
|
Latyshev A.V., Suleimanova S.S.
|
| Vol 59, No 4 (2019) |
Analytical Solution of Lamb’s Problem in the Case of a Limiting Poisson Ratio |
|
|
Il’yasov K.K., Kravtsov A.V., Kuznetsov S.V., Sekerzh-Zenkovich S.Y.
|
| Vol 56, No 1 (2016) |
Analytical solutions for the fractional nonlinear cable equation using a modified homotopy perturbation and separation of variables methods |
|
|
Irandoust-Pakchin S., Javidi M., Kheiri H.
|
| Vol 59, No 5 (2019) |
Analytical Solutions of the Internal Gravity Wave Equation for a Semi-Infinite Stratified Layer of Variable Buoyancy |
|
|
Bulatov V.V., Vladimirov Y.V.
|
| Vol 59, No 7 (2019) |
Analytical Solutions of the Internal Gravity Wave Equation in a Stratified Medium with Shear Flows |
|
|
Bulatov V.V., Vladimirov Y.V.
|
| Vol 59, No 1 (2019) |
Analytical-Numerical Approach to Describing Time-Periodic Motion of Fronts in Singularly Perturbed Reaction–Advection–Diffusion Models |
|
|
Volkov V.T., Lukyanenko D.V., Nefedov N.N.
|
| Vol 58, No 6 (2018) |
Analytical-Numerical Method for Solving an Orr–Sommerfeld-Type Problem for Analysis of Instability of Ocean Currents |
|
|
Skorokhodov S.L., Kuzmina N.P.
|
| Vol 57, No 2 (2017) |
Angular boundary layer in boundary value problems for singularly perturbed parabolic equations with quadratic nonlinearity |
|
|
Denisov I.V.
|
| Vol 56, No 11 (2016) |
Application of a direct method for solving the Boltzmann equation in supersonic flow computation |
|
|
Aristov V.V., Rovenskaya O.I.
|
| Vol 59, No 5 (2019) |
Application of a Hybrid Method to Microflow Simulation |
|
|
Rovenskaya O.I.
|
| Vol 58, No 8 (2018) |
Application of Compact and Multioperator Approximations in the Immersed Boundary Method |
|
|
Tolstykh A.I., Chigerev E.N.
|
| Vol 56, No 10 (2016) |
Application of fast automatic differentiation for solving the inverse coefficient problem for the heat equation |
|
|
Zubov V.I.
|
| Vol 56, No 7 (2016) |
Application of generalized separation of variables to solving mixed problems with irregular boundary conditions |
|
|
Gasymov E.A., Guseinova A.O., Gasanova U.N.
|
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