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[1]Y. Ji, W. Tan* (2021) Large time behavior of solutions to a Stokes-Magneto equations in three dimensions. J. Evol. Equ. (Published online).
[2]Y. Ji, W. Tan* (2021). Global well-posedness of a 3D Stokes-Magneto equations with fractional magnetic diffusion. Discrete Contin. Dyn. Syst. Series B. 26: 3271-3278.
[3]W. Tan, B. Dong, Z. Chen* (2019). Large-time regular solutions to the modified quasi-geostrophic equation in Besov spaces. Discrete Contin. Dyn. Syst. Series A 39: 3749-3765.
[4]W. Tan* (2019). The regularity of pullback attractor for a non-autonomous p-Laplacian equation with dynamical boundary condition. Discrete Contin. Dyn. Syst. Series B. 24: 529-546.
[5]W. Tan, B. Dong, Z. Chen* (2019) Regularity criterion for a critical fractional diffusion model of two-dimensional micropolar flows. J. Math. Anal. Appl. 470: 500-514.
[6]W. Tan* (2018). Dynamics for a class of non-autonomous degenerate p-Laplacian equations. J. Math. Anal. Appl. 458: 1546-1567.
[7]W. Tan*, C. Sun (2017). Dynamics for a non-autonomous reaction diffusion model with the fractional diffusion. Discrete Contin. Dyn. Syst. Series A 37: 6035--6067.
[8]W. Tan*, Y. Ji (2017). On the pullback attractor for the non-autonomous SIR equations with diffusion. J. Math. Anal. Appl. 449: 1850-1862.
[9]C. Sun*, W. Tan (2016). Non-autonomous reaction-diffusion model with dynamic boundary conditions. J. Math. Anal. Appl. 443 1007-1032.
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