"Nevers et al. protein length fit to Lucas and Fibonacci targets - Descriptive statistics with adjacent midpoints and a Brocchieri & Karlin comparison - Additional evidence for generality of Geier's equations" by Stefan A. Geier et al.
Nevers et al. protein length fit to Lucas and Fibonacci targets - Descriptive statistics with adjacent midpoints and a Brocchieri & Karlin comparison - Additional evidence for generality of Geier's equations by Stefan A. Geier*, Caroline Geier, Stephanie Geier, Constantin Geier, Katharina Geier, Nora Blättermann-Goldstein, and Michèle Geier-Noehl** Institute for Structuralistic Theory of Sciences Simssee (ISTS), Gerhart-Hauptmann-Straße 6, 83071 Haidholzen, Germany; and Ludwig-Maximilians-Universität Munich, Germany. **Dermatologische Klinik der Landeshauptstadt und der Ludwig-Maximilians-Universität LMU München, Thalkirchner Straße 48, 80337 Munich, Germany. *Correspondence: Stefan A. Geier; wissenschaftstheorie.simssee.1@gmail.com Summary: This report evaluates the numerical proximity of protein-length summaries in Nevers and colleagues to Lucas numbers, Fibonacci numbers, and arithmetic midpoints between adjacent values in their sorted union. The three domain summaries print...