Sakar, F. M.Aydogan, M.2024-04-242024-04-2420180096-30031873-5649https://doi.org/10.1016/j.amc.2017.05.013https://hdl.handle.net/11468/15099Let's take f(z) = h (z) + <(g(z))over bar> which is an univalent sense-preserving harmonic functions in open unit disc D = {z : vertical bar z vertical bar < 1}. If f (z) fulfills vertical bar w(z)vertical bar = |g'(z)/h'(z)vertical bar < m, where 0 <= m < 1, then f(z) is known m-quasiconformal harmonic function in the unit disc (Kalaj, 2010) [8]. This class is represented by S-H(m). The goal of this study is to introduce certain features of the solution for non- linear partial differential equation <(f)over bar>((z) over bar) = w(z)f(z) when vertical bar w(z)vertical bar < m, w(z) (sic) m(2)(b(1)-z)/m(2)-b(1)z, h(z) is an element of S*(A, B). In such case S*(A, B) is known to be the class for Janowski starlike functions. We will investigate growth theorems, distortion theorems, jacobian bounds and coefficient ineqaulities, convex combination and convolution properties for this subclass. (C) 2017 Published by Elsevier Inc.eninfo:eu-repo/semantics/closedAccessStarlike FunctionsHarmonic MappingDistortion TheoremGrowth TheoremConvex CombinationConvolution PropertiesSubclass of m-quasiconformal harmonic functions in association with Janowski starlike functionsSubclass of m-quasiconformal harmonic functions in association with Janowski starlike functionsArticle319461468WOS:0004159062000362-s2.0-8501937450910.1016/j.amc.2017.05.013Q1Q1