MMEFI Unified Atomic Periodic Monitor · v2.4
118 audited centers · 20 peer comparisonsA / B / C + P peer tiersno legacy interpolation
Evidence-calibrated atomic centers × nested-isotope MEFI dynamics
Periodic Coherence Monitor
Every element uses its audited primary record, with peer-reviewed ten-zone comparisons now available for the 20 unfinished and heavy entries. Evaluated mode applies 13 supported peer updates while retaining the observed fermium record and six calculated level proxies as comparison-only. The selected evidence basis drives every tile, chart, tooltip, isotope corridor, and export.
Exact response core used in every nodeFMEFI(r,t) = kc/r² − kr/[r²(1+r)] + ΔQ·fUFR(t)
Element frequency evidence
Select an element —
Frequency roleOpen documented source
Nested isotope candidate laboratory
Select an elementProvisional MEFI assignment
Isotope candidates
Candidate-center spectrum
calculated shift above element center · click a label at leftRadial response balancefour simultaneous dimensions
Shape reveals balance; collapse toward one axis exposes a dominant modeled term.
Harmonic transfer spectrumdriver vs MEFI output power
Compares retained fundamental energy and higher-order response structure.
Controlled driver and complete-core responsetime trace · live phase cursor
Purple is the controlled excitation; green is the normalized full-core response. The moving cursor drives the live inspector.
Cycle-fold phase coherencecycle rows · peak-phase trail · correlation
Green cells are positive response, red cells negative response, and the white path tracks peak phase from cycle to cycle.
Group × period response surfaceselected metric across periodic structure
Preserves periodic position while exposing the active modeled metric as a continuous surface.
Pinned-node phase portraitloop area exposes memory
Pin up to four nodes. Wider loops indicate greater modeled response memory or phase separation.
Interpretation boundary: displayed element centers and support limits are documented evidence inputs, with their frequency role and tier shown explicitly. A threshold anchor is not an optical centroid, and a method-benchmark band is not a measured uncertainty. MEFI isotope centers, nested occupations, stability bandwidth, ΔQ drift, UFR lock, friction, coherence, and generated traces are deterministic exploratory outputs. Isotope-to-state assignments remain provisional until isotope-specific MEFI observations distinguish them.

