PSEM Approximations for Both Branches of Lambert W Function with Applications

Author:

Vazquez-Leal H.1ORCID,Sandoval-Hernandez M. A.23ORCID,Garcia-Gervacio J. L.1,Herrera-May A. L.45,Filobello-Nino U. A.1

Affiliation:

1. Facultad de Instrumentación Electrónica, Universidad Veracruzana, Cto. Gonzalo Aguirre Beltrán S/N, 91000 Xalapa, Veracruz, Mexico

2. National Institute for Astrophysics, Optics and Electronics, Luis Enrique Erro No. 1, Sta. María Tonantzintla, 72840 Puebla, Mexico

3. Universidad de Xalapa, Km. 2 Carretera Xalapa-Veracruz, Xalapa 91190, Veracruz, Mexico

4. Centro de Investigación de Micro y Nanotecnología, Universidad Veracruzana, Calzada Ruíz Cortines 455, Boca del Río 94292, Veracruz, Mexico

5. Maestría en Ingeniería Aplicada, Facultad de Ingeniería de la Construcción y el Hábitat, Universidad Veracruzana, Calzada Ruíz Cortines 455, Boca del Río 94294, Veracruz, Mexico

Abstract

Transcendental functions are a fundamental building block of science and engineering. Among them, a relatively new function denominated as Lambert W is highlighted. The importance of such function relies on the fact that it can perform novel isolation of variables. In this work, we propose two accurate piece-wise approximate solutions, one for the lower branch and another one for the upper branch, respectively. The proposed analytic approximations are obtained by using the power series extender method (PSEM) in combination with asymptotic solutions. In addition, we will compare some published approximations with our proposal, highlighting our advantages in terms of significant digits and speed of evaluation. Furthermore, the approximations are validated by the successful simulation of a problem of economy and other acoustic waves of nonlinear ions.

Funder

Secretary of Public Education of México

Publisher

Hindawi Limited

Subject

Modeling and Simulation

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