An efficient algorithm for solving the variable-order time-fractional generalized Burgers’ equation
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Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s12190-024-02177-2.pdf
Reference76 articles.
1. Ali, I., Haq, S., Aldosary, S.F., Nisar, K.S., Ahmad, F.: Numerical solution of one-and two-dimensional time-fractional Burgers equation via Lucas polynomials coupled with finite difference method. Alex. Eng. J. 61(8), 6077–6087 (2022)
2. Ali, I., Haq, S., Nisar, K.S., Baleanu, D.: An efficient numerical scheme based on Lucas polynomials for the study of multidimensional Burgers-type equations. Adv. Differ. Equ. 2021(1), 1–24 (2021)
3. Amin, R.H., Hadi, F., Altanji, M., Nisar, K.S., Sumelka, W.: Solution of variable-order nonlinear fractional differential equations using Haar wavelet collocation technique. Fractals 31(02), 2340022 (2023)
4. Ashpazzadeh, E., Han, B., Lakestani, M.: Biorthogonal multiwavelets on the interval for numerical solutions of Burgers’ equation. J. Comput. Appl. Math. 317, 510–534 (2017)
5. Atangana, A., Botha, J.F.: A generalized groundwater flow equation using the concept of variable-order derivative. Bound Value Probl 2013(1), 1–11 (2013)
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