Zacytuj

X. Wang, X. Song, Global stability and periodic solution of a model for HIV infection of CD4+ T-cells, Applied Mathematics and Computation 189 (2007) 1331–1340. WangX. SongX. Global stability and periodic solution of a model for HIV infection of CD4+ T-cells Applied Mathematics and Computation 189 2007 1331 1340 10.1016/j.amc.2006.12.044 Search in Google Scholar

R.V. Culshaw, S. Ruan, A delay-differential equation model of HIV infection of CD4+ T-cells, Mathematical Biosciences 165 (2000) 27–39. CulshawR.V. RuanS. A delay-differential equation model of HIV infection of CD4+ T-cells Mathematical Biosciences 165 2000 27 39 10.1016/S0025-5564(00)00006-7 Search in Google Scholar

A.S. Perelson, Modelling the interaction of the immune system with HIV, in: C. Castillo-Chavez (Ed.), Mathematical and Statistical Approaches to AIDS Epidemiology, Springer, Berlin, 1989, p. 350. PerelsonA.S. Modelling the interaction of the immune system with HIV in: Castillo-ChavezC. (Ed.), Mathematical and Statistical Approaches to AIDS Epidemiology Springer Berlin 1989 350 10.1007/978-3-642-93454-4_17 Search in Google Scholar

A.S. Perelson, D.E. Kirschner, R. De Boer, Dynamics of HIV infection of CD4+ T-cells, Mathematical Biosciences 114 (1993) 81. PerelsonA.S. KirschnerD.E. De BoerR. Dynamics of HIV infection of CD4+ T-cells Mathematical Biosciences 114 1993 81 10.1016/0025-5564(93)90043-A Search in Google Scholar

R.V. Culshaw, S. Ruan, A delay-differential equation model of HIV infection of CD4+ T-cells, Mathematical Biosciences 165 (2000) 27–39. CulshawR.V. RuanS. A delay-differential equation model of HIV infection of CD4+ T-cells Mathematical Biosciences 165 2000 27 39 10.1016/S0025-5564(00)00006-7 Search in Google Scholar

M. Ghoreishi, A.I.B.Md. Ismail, A.K. Alomari, Application of the homotopy analysis method for solving a model for HIV infection of CD4+ T-cells, Mathematical and Computer Modelling (2011) 3007–3015. GhoreishiM. IsmailA.I.B.Md. AlomariA.K. Application of the homotopy analysis method for solving a model for HIV infection of CD4+ T-cells Mathematical and Computer Modelling 2011 3007 3015 10.1016/j.mcm.2011.07.029 Search in Google Scholar

M. Merdan, Homotopy perturbation method for solving a model for HIV infection of CD4+ T-cells, İstanbul Ticaret Üniversitesi Fen Bilimleri Dergisi Yil: 6 Sayi: 12 Güz 2007/2 s. pp. 39–52. MerdanM. Homotopy perturbation method for solving a model for HIV infection of CD4+ T-cells İstanbul Ticaret Üniversitesi Fen Bilimleri Dergisi Yil: 6 Sayi: 12 Güz 2007 2 39 52 Search in Google Scholar

M.Y. Ongun, The Laplace Adomian decomposition method for solving a model for HIV infection of CD4+ T cells, Mathematical and Computer Modelling 53 (2011) 597–603. OngunM.Y. The Laplace Adomian decomposition method for solving a model for HIV infection of CD4+ T cells Mathematical and Computer Modelling 53 2011 597 603 10.1016/j.mcm.2010.09.009 Search in Google Scholar

S. Liao, Notes on the homotopy analysis method: Some definitions and theorems. Commun. Nonlinear Sci. Numer. Simul. 14(4), 983–997 (2009). LiaoS. Notes on the homotopy analysis method: Some definitions and theorems Commun. Nonlinear Sci. Numer. Simul. 14 4 983 997 2009 10.1016/j.cnsns.2008.04.013 Search in Google Scholar

S. Liao, Beyond Perturbation: Introduction to the Homotopy Analysis Method, Chapman & Hall/CRC Press, Boca Raton, 2003. LiaoS. Beyond Perturbation: Introduction to the Homotopy Analysis Method Chapman & Hall/CRC Press Boca Raton 2003 10.1201/9780203491164 Search in Google Scholar

M. Baxter, R.A. Van Gorder and K. Vajravelu, On the choice of auxiliary linear operator in the optimal homotopy analysis of the Cahn-Hilliard initial value problem, Numerical Algorithms 66 (2014) 269–298. BaxterM. Van GorderR.A. VajraveluK. On the choice of auxiliary linear operator in the optimal homotopy analysis of the Cahn-Hilliard initial value problem Numerical Algorithms 66 2014 269 298 10.1007/s11075-013-9733-8 Search in Google Scholar

Y. Tan and S. Abbasbandy, Homotopy analysis method for quadratic Riccati differential equation, Communications in Nonlinear Science and Numerical Simulation 13 (2008) 539–546. TanY. AbbasbandyS. Homotopy analysis method for quadratic Riccati differential equation Communications in Nonlinear Science and Numerical Simulation 13 2008 539 546 10.1016/j.cnsns.2006.06.006 Search in Google Scholar

S. Liao, An optimal homotopy-analysis approach for strongly nonlinear differential equations, Communications in Nonlinear Science and Numerical Simulation 15 (2010) 2315–2332. LiaoS. An optimal homotopy-analysis approach for strongly nonlinear differential equations Communications in Nonlinear Science and Numerical Simulation 15 2010 2315 2332 10.1016/j.cnsns.2009.09.002 Search in Google Scholar

M. Baxter, R.A. Van Gorder and K. Vajravelu, Optimal analytic method for the nonlinear Hasegawa-Mima equation, The European Physical Journal Plus 129 (2014) 98. https://doi.org/10.1140/epjp/i2014-14098-x BaxterM. Van GorderR.A. VajraveluK. Optimal analytic method for the nonlinear Hasegawa-Mima equation The European Physical Journal Plus 129 2014 98 https://doi.org/10.1140/epjp/i2014-14098-x 10.1140/epjp/i2014-14098-x Search in Google Scholar

S. Liao, Y Zhao, On the method of directly defining inverse mapping for nonlinear differential equations, Numerical Algorithms 72(4) (2016) 989–1020. LiaoS. ZhaoY On the method of directly defining inverse mapping for nonlinear differential equations Numerical Algorithms 72 4 2016 989 1020 10.1007/s11075-015-0077-4 Search in Google Scholar

M. Dewasurendra, M. Baxter, K. Vajravelu, A method of directly defining the inverse mapping for solutions of nonlinear coupled systems arising in convection heat transfer in a second grade fluid, Applied Mathematics and Computation 339 (2018) 758–767. DewasurendraM. BaxterM. VajraveluK. A method of directly defining the inverse mapping for solutions of nonlinear coupled systems arising in convection heat transfer in a second grade fluid Applied Mathematics and Computation 339 2018 758 767 10.1016/j.amc.2018.07.015 Search in Google Scholar

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