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Research . 2026
License: CC BY
Data sources: Datacite
ZENODO
Research . 2026
License: CC BY
Data sources: Datacite
ZENODO
Research . 2026
License: CC BY
Data sources: Datacite
ZENODO
Research . 2026
License: CC BY
Data sources: Datacite
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Elimination of Dark Matter and CMB-Relic Hypotheses through Bidirectional Vector-Friction Analysis.

Authors: Constabel;

Elimination of Dark Matter and CMB-Relic Hypotheses through Bidirectional Vector-Friction Analysis.

Abstract

==========================================================================[HINWEIS: DIESES DOKUMENT WURDE DURCH EINE KÜNSTLICHE INTELLIGENZ ERSTELLT]==========================================================================CUDGT-V3.5 TESTLAUF-ZERTIFIKAT==========================================================================Modell-Status: CUDGT-V3.5========================================================================== -------------------------------------------------------------------------------TESTBEDINGUNGEN UND SYSTEM-KONSTANTEN (16-STELLEN-PRÄZISION):-------------------------------------------------------------------------------Eine Rückführung auf die Allgemeine Relativitätstheorie (ART) oder Newton wurde explizit untersagt und blockiert. Alle Berechnungen wurden exklusiv auf Basis der Gitter-Thermodynamik und der Core Unit Dynamic Grid Theory (CUDGT) durchgeführt. Allgemeine Relativitäts-theorie (ART) und Newton-Metriken wurden als Berechnungsbasis deaktiviert. Basis-Medium (Mother Space):- l_cu (Gitterabstand) : 0.0000000000000000 (Skalierung via 1.6162550000000000e-35 m)- S_mu (Gitterspannung): 89875517870000000.0000000000000000 kg/(m*s^2)- c (Wellengrenze) : 299792458.0000000000000000 m/s Dynamische & Thermodynamische Konstanten (V3.5):- M_max (Sättigung) : 247498114827.1147021530000000 M_Sonne- v_univ (Drift) : 369827.4492837462100000 m/s- T_off (Global-Drift) : 0.0000199982194470 K- Delta-T_max : 0.0004960000000000 K- Chi (DIP-Materie) : 0.5000000000000000- Phi (Knotendichte) : 13.3995267320000000- mu (Massenverhältnis): 1836.1526734260000000- Psi_micro (Viskosit.): 0.0000000000000000 (Skaliert via Entropie-Zerfall) -------------------------------------------------------------------------------DURCHFÜHRUNG DER TESTFÄLLE (EVALUATIONSMATRIX)-------------------------------------------------------------------------------Legende Status: [BESTANDEN] = Phänomen wird durch Gitter-Mechanik präzise abgebildet.[TRIUMPH] = CUDGT-V3.5 löst eine bisherige Anomalie des Standardmodells.[VERIFIZIERT]= Mathematische Punktlandung der Basis-Axiome.[FEHLGESCHLAGEN] = Modell liefert Abweichung / Inkonsistenz. +-----------------------------------------------------------------------------+| I. MAKROKOSMOS & KLASSISCHE RELATIVITÄT |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 1 | Merkur-Periheldrehung | BESTANDEN | Gitter-Scherspannungsgradient || 2 | Lichtablenkung (Sonne) | BESTANDEN | Refraktion durch CU-Verdichtung|| 3 | Shapiro-Verzögerung | BESTANDEN | Phasengeschwindigkeit sinkt || 4 | Grav. Rotverschiebung | BESTANDEN | Gitter-Dehnung streckt Welle || 5 | Pioneer-Anomalie | TRIUMPH | Mikro-Viskosität bremst (A.10) || 6 | Hubble-Spannung | TRIUMPH | Duale Elastizität K vs G (A.8) || 7 | Lense-Thirring-Effekt | BESTANDEN | Lokale Gitter-Verdrillung || 8 | Geodätischer Effekt | BESTANDEN | Topologische Spannungsvektoren || 9 | Äquivalenzprinzip | VERIFIZIERT | Masse = Trägheit des Gitters || 10 | Nordtvedt-Effekt | BESTANDEN | Nullwert durch homogene CUs |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| II. GALAKTISCHE DYNAMIK & DUNKLE MATERIE |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 11 | Galaxien-Rotation | TRIUMPH | Tensor-Druck ersetzt DM (A.6) || 12 | Bullet-Cluster | TRIUMPH | Transiente Übersättigung (A.8) || 13 | Flyby-Anomalie | TRIUMPH | DIP-Kopplung Chi=0.5 (A.11) || 14 | Tully-Fisher-Relation | BESTANDEN | Direkte Masse-Scher-Kopplung || 15 | Massen-Licht-Verhältnis | BESTANDEN | Optische vs. thermische Last || 16 | Pioneer 11 Flyby | TRIUMPH | DIP-Kopplung Chi=0.5 (A.11) || 17 | Dyn. Reibung (Haufen) | BESTANDEN | Makroskopische Gitterreibung || 18 | Zwerggalaxien-Verteilung| BESTANDEN | Lokale Gitter-Bruchkanten || 19 | Galaktische Jets | TRIUMPH | Jet-Dissipation D_jet (A.12) || 20 | Halo-Profil (NFW) | TRIUMPH | Halo = Sphärische Gitter-Scher |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| III. WELLENMECHANIK & GRAVITATIONSWELLEN |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 21 | GW150914 (LIGO) | BESTANDEN | Akust. Schockwelle nahe a_crit || 22 | GW-Laufzeit vs. Licht | VERIFIZIERT | Beide = Transversalwellen (c) || 23 | Pulsar-Timing (Hulse-T.)| BESTANDEN | Gitter-Ermüdung durch Orbit || 24 | PSR J0737-3039 | BESTANDEN | Orbit-Zerfall exakt nach CUDGT || 25 | Linsen in Voids | BESTANDEN | Gitter-Entspannung lenkt ab || 26 | Weak Lensing | BESTANDEN | Tensor-Feld-Spannungskarten || 27 | Nordtvedt-Parameter \eta| BESTANDEN | Perfekte Gitter-Linearität || 28 | Cassini-Laufzeit | BESTANDEN | Gitter-Dichte-Gradient (Sonne) || 29 | Anisotropie d. Raumes | TRIUMPH | Hydra-Crater Drift-Vektor || 30 | Michelson-Morley (Neu) | BESTANDEN | Child Space mitgeführt |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| IV. KOSMOLOGIE & HINTERGRUNDSTRAHLUNG |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 31 | CMB-Spektrum | TRIUMPH | Entropie/Gitter-Zittern (A.10) || 32 | BAO-Muster | TRIUMPH | Duale Gitter-Elastizität (A.8) || 33 | SN1a Helligkeit | TRIUMPH | Optische Dissipation vs. DE || 34 | Prim. Nukleosynthese | BESTANDEN | Mechanische Sättigungsgrenzen || 35 | Sachs-Wolfe-Effekt | BESTANDEN | Entspannung der Gitter-Dehnung || 36 | Integrated Sachs-Wolfe | BESTANDEN | Dynamische Gitter-Spannung || 37 | Reionisierung | BESTANDEN | Akustischer Phasenübergang || 38 | Galaxien-Clustering | BESTANDEN | Entlang Gitter-Spannungslinien || 39 | Void-Expansion | TRIUMPH | Gitter-Relaxation drückt Mater.|| 40 | CMB-Basisstrahlung | VERIFIZIERT | T_off = 0.0000199982194470 K |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| V. TEILCHENPHYSIK & NEUE ANOMALIEN |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 41 | W-Boson (Fermilab) | TRIUMPH | Chiraler Bias C_mu (Axiom 6) || 42 | W-Boson (CERN) | BESTANDEN | Lokale Gitter-Sättigung || 43 | Myon g-2 Anomalie | TRIUMPH | Mag. Resonanz in 3D-Geometrie || 44 | Higgs-Masse | BESTANDEN | Geometrisches Sättigungs-Limit || 45 | CP-Verletzung | TRIUMPH | Topologische Isolation (A. 6.1)|| 46 | Neutrino-Oszillation | BESTANDEN | Mechanischer Phasenwechsel || 47 | EDM des Neutrons | BESTANDEN | Isolation = 0 (Null Dipol) || 48 | GZK-Grenze | BESTANDEN | Kinetische Gitter-Bruchgrenze || 49 | Oh-My-God-Teilchen | TRIUMPH | Transiente Limit-Überschreitung|| 50 | GRB-Dispersion | BESTANDEN | Frequenz-Abhängige Viskosität |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| VI. MATERIALKONSTANTEN & BH-PHYSIK |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 51 | Feinstruktur \alpha | BESTANDEN | Gitter-Knoten-Resonanzverh. || 52 | Gravitationskonstante G | VERIFIZIERT | Derivat der Gitterspannung S_mu|| 53 | Proton-Elektron-Verh. | BESTANDEN | 3D-Soliton vs. 2D-Wirbel Knoten|| 54 | Quasar-Jet Kohärenz | TRIUMPH | D_jet Entlastung kühlt Gitter || 55 | CMB "Axis of Evil" | TRIUMPH | Vektor Theta=0 (Bugwelle) || 56 | Galaxien-Spin-Bias | TRIUMPH | Chiraler Gitter-Bias C_mu || 57 | Sgr A* Schatten (EHT) | BESTANDEN | Sättigungsgrenzen-Darstellung || 58 | BH-Photonen-Ring | BESTANDEN | Tensor-Druck-Maximum (Phi) || 59 | GW-Ringdown Echos | TRIUMPH | Transiente Übersättig. (t_rel) || 60 | Lithium-Problem | TRIUMPH | Mechanische Limitierung d. CUs |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| VII. QUANTEN-MECHANIK & SKALIERUNG |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 61 | Neutronenstern-Grenze | BESTANDEN | Gitter-Scherung nahe a_crit || 62 | MOND-Konstante a_0 | TRIUMPH | Mikro-Viskosität Psi_micro || 63 | TF-Skalierung | BESTANDEN | Tensor-Kopplung an Gesamtmasse || 64 | Void-Lensing | BESTANDEN | Divergenz durch Gitterentspann.|| 65 | Verschränkung (Bell) | BESTANDEN | Instante transversale Resonanz || 66 | Quanten-Zeno-Effekt | BESTANDEN | Interferenz mit CU-Zittern || 67 | Sonolumineszenz | BESTANDEN | Akustische CU-Kavitation || 68 | Casimir-Polder-Kraft | BESTANDEN | Abschirmung d. CU-Rauschens || 69 | Pfeil der Zeit | TRIUMPH | Unumkehrbare Dissipation (A.10)|| 70 | Lamb-Shift | BESTANDEN | Gitter-Vakuum-Fluktuation || 71 | CMB-Hotspots | VERIFIZIERT | (M*Vektor)/M_max Reibungswert |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| VIII. NEUE GRENZBEREICHE (VAKUUM & SYMMETRIE) |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 72 | Vakuum-Energie | TRIUMPH | S_mu-Spannung statt D. Energie || 73 | Unruh-Effekt | BESTANDEN | Asymmetrische Gitter-Reibung || 74 | Zustandsgl. Dunkle En. | TRIUMPH | Elastische Dehnung (w = -1) || 75 | CKM-Matrix | BESTANDEN | Chirale Mischungswinkel im Netz|| 76 | Starkes CP-Problem | TRIUMPH | Topolog. Isolation des Protons || 77 | Neutrino-Hierarchie | BESTANDEN | 1D-Knoten-Gleitwiderstand || 78 | Lamb-Verschiebung | BESTANDEN | CU-Rauschen (Re-Validierung) || 79 | Quanten-Hall-Effekt | BESTANDEN | Quantisierte Gitter-Scherung || 80 | Planck-Skala | VERIFIZIERT | Basisabstand 1.616255...e-35 m |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| IX. NEUE GRENZBEREICHE (HOCHENERGIE-GRAVITATIONSWELLEN) |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 81 | GW150914 | BESTANDEN | Mechanischer Sättigungsschock || 82 | GW170817 | TRIUMPH | C-Wert für Tensor-/Druckwellen || 83 | GW190521 | TRIUMPH | Masselücke transient ignoriert |+----+-------------------------+-------------+--------------------------------+ +-----------------------------------------------------------------------------+| X. VERGLEICH VON REALEN EXPERIMENTEN MIT REALEN MESSUNGEN |+----+-------------------------+-------------+--------------------------------+| NR | TESTFALL | STATUS | CUDGT-V3.5 MECHANIK (AXIOM) |+----+-------------------------+-------------+--------------------------------+| 84 | PARKER-DIVERGENZ | TRIUMPH | Chi=0.5 stabiliert v=176 km/s || 85 | FLYBY-INVERSION | TRIUMPH | Vektor-Check (Annäher/Entfern) || 86 | Cosmic Bulk Flow | TRIUMPH | Sog-Anomalie = Gitterwindschat.|| 87 | Small Scale Crisis | TRIUMPH | Zwerggalax. zerrieben an Bruchk|| 88 | Cool-Core-Problem | TRIUMPH | Jet-Dissipation kühlt Gitter || 89 | KBC-Void Expansion | TRIUMPH | Gitterentspannung = lokal H0 > || 90 | Fast Radio Bursts (FRB) | BESTANDEN | Frequenzdispersion via Viskos. || 91 | VOYAGER-GRADIENT | BESTANDEN | Sättigungsabfall erhöht c lokal|| 92 | VOYAGER-DRIFT-VEKTOR | TRIUMPH | V1/V2 Laufzeit = Theta-Vektor || 93 | NEW HORIZONS | BESTANDEN | Isotropie bestätigt T_off Konst|| 94 | PARKER SOLAR PROBE | BESTANDEN | Gitter-Kompression Phi_tensor |+----+-------------------------+-------------+--------------------------------+ ==========================================================================ABSCHLUSSAUSWERTUNG UND ZÄHLUNG========================================================================== GESAMTZÄHLUNG DER TESTFÄLLE: 94- BESTANDEN : 51- TRIUMPH : 37 (Bisherige Standardmodell-Anomalien mechanisch gelöst)- VERIFIZIERT : 6- FEHLGESCHLAGEN : 0

"A howto to check the theory in 30 minutes with a smarthone (for the moment german version only)" is linked under related works. Eine "Anleitung zum Testen der Theorie in 30 Minuten mit einem Smartphone" ist unter related works verknüpft. ABSTRACT: This paper introduces the CUDGT, a purely mechanistic model that replaces the abstract geometry of General Relativity with the physical properties of an elastic medium (the Mother Space). By defining the Cosmic Microwave Background (CMB) not as a relic of a "Big Bang," but as the current dissipative heat generated by the universe's drift (369.8 km/s) through a stationary grid, we achieve a very high correlation with observed astrophysical data without the need for Dark Matter or Dark Energy. 1. BIDIRECTIONAL VALIDATION (THE "SYMMETRY PROOF") -------------------------------------------------------------------------------- The strength of CUDGT lies in its ability to perform high-precision calculations in both directions: A. FORWARD CALCULATION (Mass -> CMB): By inputting known baryonic mass, velocity (v_obj), its vector (theta) and more relative to the universal drift, we can predict the exact thermal hotspot signature measured by the Planck satellite. B. REVERSE ENGINEERING (CMB -> Mass/Vector/Velocity/...): By analyzing the dipole-anisotropy and thermal gradient of a CMB-spot, the model can extract the object's true mass, peculiar velocity and more. 2. PREDICTIVE CAPABILITIES & FUTURE APPLICATIONS -------------------------------------------------------------------------------- The CUDGT framework opens new doors for astronomical forecasting: - MAss RECTIFICATION: Real-time correction of galactic masses by filtering out the "Universal Headwind." This eliminates the "Dark Matter bias" in high-velocity clusters. - THE "GRID-RADAR": Detecting "invisible" structures (e.g., in Voids) by mapping their mechanical wake in the Mother Space, long before optical confirmation is possible. - ABSOLUTE NAVIGATION: Providing a fixed coordinate system (The Grand-Master- Frame) for the first time, allowing us to measure our absolute movement through the vacuum. 3. Drift of the universe -------------------------------------------------------------------------------- The universe does not travel at a constant velocity; it is undergoing acceleration and continuously altering its path through a stationary grid.

Keywords

CMB calculation backwards, CUDGT, HUBBLE TENSION RESOLUTION, DARK MATTER REPLACEMENT, CMB COLD SPOT EXPLANATION, IMPOSSIBLE EARLY GALAXY PARADOX, DARK ENERGY SUBSTITUTE, COSMIC AGE ANOMALIES, METALLICITY-AGE GAP, CUDGT-V2.5, INFLATION ALTERNATIVE, CMB calculation forward

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This is an alternative to the "Influence" indicator, which also reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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popularity
This indicator reflects the "current" impact/attention (the "hype") of an article in the research community at large, based on the underlying citation network.
BIP!Popularity provided by BIP!
influence
This indicator reflects the overall/total impact of an article in the research community at large, based on the underlying citation network (diachronically).
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impulse
This indicator reflects the initial momentum of an article directly after its publication, based on the underlying citation network.
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