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Publications in Math-Net.Ru |
Citations |
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2005 |
1. |
K. S. Matviychuk, “Technical stability of solutions of nonlinear differential equations of controlled vertical motion of an elastic body for a given measure”, Avtomat. i Telemekh., 2005, no. 1, 13–28 ; Autom. Remote Control, 66:1 (2005), 10–23 |
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2002 |
2. |
K. S. Matviychuk, “Technical Stability with Respect to Measure of Solutions of Boundary Value Problems for Distributed Processes with a Continuous Control”, Differ. Uravn., 38:10 (2002), 1404–1411 ; Differ. Equ., 38:10 (2002), 1495–1502 |
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3. |
K. S. Matviychuk, “Technical stability of nonlinear states of an elastic vehicle in vertical flight”, Prikl. Mekh. Tekh. Fiz., 43:3 (2002), 161–175 ; J. Appl. Mech. Tech. Phys., 43:3 (2002), 475–487 |
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2001 |
4. |
K. S. Matviychuk, “Conditions for the Technical Stability of Solutions of Autonomous Differential Equations with a Discontinuous Control”, Differ. Uravn., 37:9 (2001), 1177–1185 ; Differ. Equ., 37:9 (2001), 1234–1242 |
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2000 |
5. |
K. S. Matviichuk, “On conditions for engineering stability of dynamical systems with variable structure”, Sibirsk. Mat. Zh., 41:4 (2000), 873–885 ; Siberian Math. J., 41:4 (2000), 725–736 |
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1999 |
6. |
K. S. Matviichuk, “Investigation of the technical stability of nonlinear parametrically varying systems with distributed parameters”, Sibirsk. Mat. Zh., 40:6 (1999), 1289–1301 ; Siberian Math. J., 40:6 (1999), 1091–1102 |
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1992 |
7. |
K. S. Matviychuk, “Technical stability of the dynamic states of an extended rod with a variable cross section, moving longitudinally in a fluid”, Prikl. Mekh. Tekh. Fiz., 33:5 (1992), 97–105 ; J. Appl. Mech. Tech. Phys., 33:5 (1992), 705–712 |
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1990 |
8. |
K. S. Matviychuk, “Technical stability in a straight pipeline containing a flowing liquid”, Prikl. Mekh. Tekh. Fiz., 31:1 (1990), 148–155 ; J. Appl. Mech. Tech. Phys., 31:1 (1990), 136–142 |
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1988 |
9. |
K. S. Matviychuk, “Technical stability of panel motion in a gas stream”, Prikl. Mekh. Tekh. Fiz., 29:6 (1988), 93–99 ; J. Appl. Mech. Tech. Phys., 29:6 (1988), 849–855 |
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1986 |
10. |
K. S. Matviychuk, “Техническая устойчивость нелинейных параметрически возбуждаемых распределенных процессов”, Differ. Uravn., 22:11 (1986), 2001–2004 |
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1984 |
11. |
K. S. Matviychuk, “On a comparison method for differential equations close to hyperbolic ones”, Differ. Uravn., 20:11 (1984), 2009–2011 |
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1982 |
12. |
K. S. Matviichuk, “Conditions of existence and stability of a solution of singular Kirkwood–Salsburg equations. Part III”, TMF, 51:1 (1982), 86–101 ; Theoret. and Math. Phys., 51:1 (1982), 372–381 |
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1981 |
13. |
K. S. Matviichuk, “Conditions of existence and stability of a solution of singular Kirkwood–Salsburg equations. Parts I and II”, TMF, 49:1 (1981), 63–76 ; Theoret. and Math. Phys., 49:1 (1981), 887–896 |
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1979 |
14. |
K. S. Matviichuk, “Mathematical description of the states of bose and fermi systems by the method of partial density matrices of the canonical ensemble”, TMF, 41:3 (1979), 346–367 ; Theoret. and Math. Phys., 41:3 (1979), 1067–1079 |
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1976 |
15. |
K. S. Matviychuk, “The mathematical description of quantum systems by the method of reduced density matrices of the canonical ensemble”, Dokl. Akad. Nauk SSSR, 227:2 (1976), 318–320 |
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16. |
K. S. Matviichuk, “Method of $m$-particle density matrices of the canonical ensemble in the description of states of quantum systems”, TMF, 27:3 (1976), 360–372 ; Theoret. and Math. Phys., 27:3 (1976), 539–548 |
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1974 |
17. |
K. S. Matviichuk, “Reduced density matrices with nonzero boundary conditions in the case of a hard core”, TMF, 18:3 (1974), 410–426 ; Theoret. and Math. Phys., 18:3 (1974), 293–304 |
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1972 |
18. |
K. S. Matviichuk, “Dependence of reduced density matrices on the boundary conditions”, TMF, 10:1 (1972), 85–101 ; Theoret. and Math. Phys., 10:1 (1972), 56–66 |
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