PHYSICS Journal: Theoretical and Experimental Studies (ISSN: 3142-8320)
Research Article Volume: 2 & Issue: 3
Research Article Volume: 2 & Issue: 3
Classical thermodynamic frameworks operate on the foundational assumption of strict energy conservation within closed systems, treating secondary property changes merely as passive, dissipative losses. This paper challenges that limitation by introducing the phenomenon of Anomalous Property Oscillation (APO) a spontaneous, cyclic disturbance of a secondary fundamental physical property induced exclusively by a primary reaction, requiring no secondary external input force. Operating under the theoretical framework of the Bhaskara Law of Energy (ZHA=W-E), we demonstrate that when an engineered medium experiences multi-property cross-coupling, the resulting APO establishes a non-conservative thermodynamic state. This paper models the mathematical and physical mechanisms through which APO actively alters the internal state of matter, leading to net energy generation or dissipation (ZHA ≠ 0) via targeted property manipulation. By defining the boundary conditions required to trigger and sustain these unforced oscillations, this work provides a predictive roadmap for a new class of non-conservative, fuel-free energy modulation technologies, effectively bridging classical mechanics with emergent thermodynamic principles.
Keywords: Anomalous Property Oscillation (APO), Bhaskara Law of Energy, (ZHA) formula, non-conservative thermodynamics, cross-coupled property disturbances, unforced cyclic mechanisms, multi-property interacting media, self-generated resonance, energy generation.