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Extra resources for Cardinal functions in topology, ten years later
Numer. Simulat. 15: 2315– 2332 (2010). J. Liao, On the relationship between the homotopy analysis method and Euler transform, Commun. Nonlinear Sci. Numer. Simulat. 15: 1421–1431, 2010. V. T. G. Kolosov, Methods of Dynamics Calculation and Testing for Thin-walled Structures (in Russian). Mashinostroyenie, Moscow, 1990. H. He, An approximate solution technique depending upon an artificial parameter, Commun. Nonlinear Sci. Numer. Simulat. 3: 92–97 (1998).  M. Sajid and T. Hayat, Comparison of HAM and HPM methods for nonlinear heat conduction and convection equations.
Numer. Simulat. 3: 92–97 (1998).  M. Sajid and T. Hayat, Comparison of HAM and HPM methods for nonlinear heat conduction and convection equations. Nonlin. Anal. B. 9: 2296– October 24, 2013 30 10:44 World Scientific Review Volume - 9in x 6in Advances/Chap. -J. Liao 2301 (2008). X. J. Jeffrey, Comparison of homotopy analysis method and homotopy perturbation method through an evaluation equation, Commun. Nonlinear Sci. Numer. Simulat. 14: 4057–4064 (2009).  V. Marinca and N. Heri¸sanu: Application of optimal homotopy asymptotic method for solving nonlinear equations arising in heat transfer, Int.
22] V. Marinca and N. Heri¸sanu: Application of optimal homotopy asymptotic method for solving nonlinear equations arising in heat transfer, Int. Commun. Heat Mass. 35: 710–715 (2008). A. Van Gorder: Gaussian waves in the Fitzhugh-Nagumo equation demonstrate one role of the auxiliary function H(x) in the homotopy analysis method, Commun. Nonlinear Sci. Numer. Simulat. 17: 1233–1240 (2012).  K. A. Van Gorder, Nonlinear Flow Phenomena and Homotopy Analysis: Fluid Flow and Heat Transfer. Springer, Heidelberg, 2012.