Citation:
A. V. Pskhu, “Solution of a Boundary Value Problem for a Fractional Partial Differential Equation”, Differ. Uravn., 39:8 (2003), 1092–1099; Differ. Equ., 39:8 (2003), 1150–1158
\Bibitem{Psk03}
\by A.~V.~Pskhu
\paper Solution of a Boundary Value Problem for a Fractional Partial Differential Equation
\jour Differ. Uravn.
\yr 2003
\vol 39
\issue 8
\pages 1092--1099
\mathnet{http://mi.mathnet.ru/de10894}
\mathscinet{http://mathscinet.ams.org/mathscinet-getitem?mr=2198241}
\transl
\jour Differ. Equ.
\yr 2003
\vol 39
\issue 8
\pages 1150--1158
\crossref{https://doi.org/10.1023/B:DIEQ.0000011289.79263.02}
Linking options:
https://www.mathnet.ru/eng/de10894
https://www.mathnet.ru/eng/de/v39/i8/p1092
This publication is cited in the following 23 articles:
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B. Yu. Irgashev, “Mixed Problem for Higher-Order Equations with Fractional Derivative and Degeneration in Both Variables”, Ukr Math J, 74:10 (2023), 1513
B. Yu. Irgashev, “Mixed problem for higher-order equations with fractional derivative and degeneration in both variables”, Ukr. Mat. Zhurn., 74:10 (2022), 1328
A. V. Pskhu, “Boundary Value Problem for a First-Order Partial Differential Equation with Liouville Fractional Derivative”, Diff Equat, 58:8 (2022), 1043
O. Kh. Abdullaev, A. A. Matchanova, “On a Problem for the Third Order Equation with Parabolic-Hyperbolic Operator Including a Fractional Derivative”, Lobachevskii J Math, 43:2 (2022), 275
Menglibay Ruziev, “A Boundary Value Problem for a Partial Differential Equation with Fractional Derivative”, Fract Calc Appl Anal, 24:2 (2021), 509
B. I. Islomov, O. Kh. Abdullaev, “Gellerstedt type problem for the loaded parabolic-hyperbolic type equation with Caputo and Erdelyi-Kober operators of fractional order”, Russian Math. (Iz. VUZ), 64:10 (2020), 29–42
R. Z. Berezgova, “Apriornaya otsenka resheniya nelokalnoi kraevoi zadachi dlya uravneniya Makkendrika - fon Ferstera drobnogo poryadka”, Doklady AMAN, 20:1 (2020), 9–14
Murat O. Mamchuev, “Non-local boundary value problem for a system of fractional partial differential equations of the type I”, AIMS Mathematics, 5:1 (2020), 185
A. V. Pskhu, “Funktsiya Grina pervoi kraevoi zadachi dlya drobnogo diffuzionno-volnovogo uravneniya v mnogomernoi pryamougolnoi oblasti”, Materialy IV Mezhdunarodnoi nauchnoi konferentsii “Aktualnye problemy prikladnoi matematiki”. Kabardino-Balkarskaya respublika, Nalchik, Prielbruse, 22–26 maya 2018 g. Chast III, Itogi nauki i tekhn. Sovrem. mat. i ee pril. Temat. obz., 167, VINITI RAN, M., 2019, 52–61
M. O. Mamchuev, “Kraevaya zadacha dlya lineinoi sistemy uravnenii s chastnymi proizvodnymi drobnogo poryadka”, Chelyab. fiz.-matem. zhurn., 2:3 (2017), 295–311
A. V. Pskhu, “The first boundary-value problem for a fractional diffusion-wave equation in a non-cylindrical domain”, Izv. Math., 81:6 (2017), 1212–1233
Zhan-Dong Mei, Ji-Gen Peng, “A class of abstract fractional relaxation equations”, Applicable Analysis, 94:12 (2015), 2397
Shu-qin Zhang, “Solution of Semi-Boundless Mixed Problem for Time-fractional Telegraph Equation”, Acta Mathematicae Applicatae Sinica, English Series, 23:4 (2007), 611
A. V. Pskhu, “On the real zeros of functions of Mittag-Leffler type”, Math. Notes, 77:4 (2005), 546–552