This work presents a modular framework for the study of relativistic effects in rotating systems designed for space-based applications. The proposed system integrates rotational dynamics, time measurement concepts, and theoretical modeling of signal and clock behavior under controlled conditions. A dedicated mathematical formulation has been developed and preliminary theoretical analyses have been performed to assess internal consistency and coherence with relativistic reference models. The framework is intended as a conceptual and engineering basis for future experimental and simulation-based investigations in space environments.
Alessio Gozzi (Tue,) studied this question.
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