A Communication Dynamics Representation of Electron Energy of S-Orbitals in Hydrogen-Like Atoms
摘要
This paper delves into the inherent role of energy within the proposed theoretical framework, communication dynamics, which draws inspiration from Shannon’s communication theory. Beginning with the foundational understanding of atoms as quintessential carriers of energy, especially evident in electron orbital structures, we explore the centrality of energy in varying computational models, from classical mechanics to quantum mechanics. A pivotal observation reveals the confluence of information and energy, suggesting that in many systems, particularly in quantum realms, information transfer necessitates energy interactions. Further, we probe the energy implications within particle-wave duality, indicating dual energy manifestations for entities. By emphasizing energy’s universality, we argue for its role as a bridge in the multi-scale model integration of communication dynamics with diverse scientific fields. We posit that for the holistic success of this new framework, a coherent understanding and representation of energy across multiple scales and domains is imperative.