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In this article, we methodically investigate the fractional stochastic Kraenkel–Manna–Merle system (KMMS), which explains how a magnetic field propagates in a ferromagnet with zero conductivity and may shed light on a number of intriguing scientific occurrences. A suitable wave transformation is used to convert the governing equation into an ordinary differential equation (ODE). We thoroughly evaluate the innovative soliton solutions in the forms of dark, bright–dark, dark–bright, periodic, singular, hyperbolic, mixed trigonometric, and rational forms using the improved
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