References in zbMATH (referenced in 169 articles )

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  1. Saw, Vijay; Kumar, Sushil: Fourth kind shifted Chebyshev polynomials for solving space fractional order advection-dispersion equation based on collocation method and finite difference approximation (2018)
  2. Sene, Ndolane: Exponential form for Lyapunov function and stability analysis of the fractional differential equations (2018)
  3. Wei, Leilei: Analysis of a new finite difference/local discontinuous Galerkin method for the fractional Cattaneo equation (2018)
  4. Zaky, M. A.; Baleanu, D.; Alzaidy, J. F.; Hashemizadeh, E.: Operational matrix approach for solving the variable-order nonlinear Galilei invariant advection-diffusion equation (2018)
  5. Zeid, Samaneh Soradi; Effati, Sohrab; Kamyad, Ali Vahidian: Approximation methods for solving fractional optimal control problems (2018)
  6. Abbaszadeh, Mostafa; Dehghan, Mehdi: An improved meshless method for solving two-dimensional distributed order time-fractional diffusion-wave equation with error estimate (2017)
  7. Bertaccini, Daniele; Durastante, Fabio: Solving mixed classical and fractional partial differential equations using short-memory principle and approximate inverses (2017)
  8. Ciesielski, Mariusz; Klimek, Malgorzata; Blaszczyk, Tomasz: The fractional Sturm-Liouville problem -- numerical approximation and application in fractional diffusion (2017)
  9. Esmaeili, Shahrokh: Solving 2D time-fractional diffusion equations by a pseudospectral method and Mittag-Leffler function evaluation (2017)
  10. fu, Hongfei; Wang, Hong: A preconditioned fast finite difference method for space-time fractional partial differential equations (2017)
  11. Gao, Guang-hua; Sun, Zhi-zhong: Two difference schemes for solving the one-dimensional time distributed-order fractional wave equations (2017)
  12. Guo, Weihong; Song, Guohui; Zhang, Yue: PCM-TV-TFV: a novel two-stage framework for image reconstruction from Fourier data (2017)
  13. Ingo, Carson; Barrick, Thomas R.; Webb, Andrew G.; Ronen, Itamar: Accurate Padé global approximations for the Mittag-Leffler function, its inverse, and its partial derivatives to efficiently compute convergent power series (2017)
  14. Khaliq, A. Q. M.; Liang, X.; Furati, K. M.: A fourth-order implicit-explicit scheme for the space fractional nonlinear Schrödinger equations (2017)
  15. Liang, X.; Khaliq, A. Q. M.; Bhatt, H.; Furati, K. M.: The locally extrapolated exponential splitting scheme for multi-dimensional nonlinear space-fractional Schrödinger equations (2017)
  16. Li, Zhuo; Liu, Lu; Dehghan, Sina; Chen, Yangquan; Xue, Dingyü: A review and evaluation of numerical tools for fractional calculus and fractional order controls (2017)
  17. Lyons, Rainey; Vatsala, Aghalaya S.; Chiquet, Ross A.: Picard’s iterative method for Caputo fractional differential equations with numerical results (2017)
  18. Owolabi, Kolade M.; Atangana, Abdon: Analysis and application of new fractional Adams-Bashforth scheme with Caputo-Fabrizio derivative (2017)
  19. Owolabi, Kolade M.; Atangana, Abdon: Mathematical analysis and numerical simulation of two-component system with non-integer-order derivative in high dimensions (2017)
  20. Ozturk, Okkes: Discrete fractional solutions of radial Schrödinger equation for Makarov potential (2017)

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