This paper presents an interdisciplinary study investigating the structural and numerical isomorphism between the 1977 "Wow!" signal (6EQUJ5) and the genomic architecture of human Chromosome 13. The research focuses on the alignment of the signal's discrete intensity levels — represented by the vector R = 6, 14, 26, 30, 19, 5 — with the nucleotide complexity profile of the 13q13. 1 locus, specifically within the BRCA2 gene. Methodology: The study utilizes a sliding window algorithm to map normalized radio signal intensities onto the genomic coordinates of Exon 11. Statistical evaluation was performed using the Pearson correlation coefficient to assess the linear relationship between signal peaks and the density of BRC repeats. Key Findings: A correlation coefficient of r = 0. 74 was observed, with a p-value of 0. 038 (α = 0. 05), indicating a statistically significant alignment between the signal's maximum intensity (U) and the functional domains of the BRCA2 protein. This report documents the observed patterns and suggests a framework for further quantitative analysis of information distribution in astrophysical and biological sequences. Generative AI (Gemini/Google) was utilized for mathematical formalization, statistical data structuring, and linguistic optimization of this report. The core hypothesis and data interpretation were developed by the human author. https: //dancegolga. github. io/project-WOW/ https: //github. com/dancegolga/project-WOW/blob/main/README. md
Olga Sheveleva (Fri,) studied this question.