Meridian Touching Wave Packet Encapsulation for Measurement: Construction of the Standard Envelope Interface from a Given Touch-Wave Period
Le résumé fourni par la source
This paper defines a measurement procedure — the encapsulation of a Meridian Touching Wave Packet into a standard Envelope Interface. A Meridian Touching Wave Packet is characterized by three RMS velocity components (Vu, Du, Su) together with a given period T. In general, the radial and center RMS components are not equal: Du ≠ Su. However, to construct a closed, repeatable, and comparable measurement interface, one may impose the degenerate condition Du = Su. Under this condition, the packet topological factor reduces to bu = Su / Vu = bj, and the standard Envelope Interface framework applies directly: angular speed ω_new = Θ_total / T, initial tangential velocity V0_new = Vu, initial radius r0_new = Vu / ω_new, and closure is automatically guaranteed by the sign-flip condition. This paper emphasizes that the degenerate condition is a measurement-application requirement, not an assertion about the real structure of the underlying world process. The general case Du ≠ Su is the more original expression of the world process; the encapsulated Envelope Interface is an interface anchor used for observation and measurement, not a claim that the process itself is degenerate. Keywords: Meridian Touching Wave Packet, encapsulation, Envelope Interface, degenerate condition, measurement interface, RMS velocity decomposition, closure condition
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