Uendeshaji wa Ulimwengu
1.1 Misingi ya Axiomatiki
1.1.1 Ulimwengu wenye mipaka: Kosmosi ni chombo kilichofungwa chenye ujazo usiobadilika, jambo linalomaanisha kuwa mienendo yote lazima isambaze upya jambo na ombwe bila ukuaji usio na kikomo.
1.1.2 Ombwe–plasma (ether fiche): Ombwe kwa hakika ni plasma ya ether isiyoonekana, ambayo ni kati cha usambazaji wa shinikizo na nishati. Haigunduliki kwa sababu mwingiliano wake wa ndani hujirudisha katika usawa.
1.1.3 Quarkbase: Chembe ya msingi ya kipekee, iliyoshikamana na isiyo na mapengo ya ndani. Chembe zote nyingine ni usanidi au mikusanyiko ya quarkbase.
1.1.4 Mwingiliano kupitia shinikizo: Kila quarkbase husukuma plasma-ombwe na kuunda mistari ya shinikizo la mviringo kuzunguka, ambayo ndiyo chanzo cha nguvu za kimsingi.
1.2 Uendelezaji wa Kihypothesis
1.2.1 Asili ya Nguvu:
Kulingana na Kozmolojia ya Quarkbase, kile kinachoitwa “utupu” si nafasi tupu, si pengo kwa maana halisi, bali ni kioevu endelevu cha shinikizo la plasma, yaani dutu yenye sifa za kiplazma, inayofafanuliwa na uga wa skala halisi Ψ(x, t) unaoelezea msongamano wa shinikizo la ndani wa plasma-etha.
Tofauti na gesi au kimiminika bora (ideal), kati hii ina unyevu anisotropiki na uwezo wa kujipanga yenyewe, jambo linalowezesha uundaji wa mistari na nyuzi za shinikizo zenye mshikamano ambazo hazitoweki wala kusambaa kwa usawa. Mistari hii hufanya kazi kama mifereji ya upitishaji wa uga Ψ, yenye uwezo wa kupinda, kuungana, na kuhifadhi nishati ya ulegevu.
Kila quarkbase hufasiriwa kama eneo dogo lenye msongamano wa kuhama kwa plasma-etha, ambapo mazingira yake huzalisha mfumo wa mistari ya shinikizo inayoungana, kujizungusha na kutetemeka kwa marudio maalum. Jumla ya ujazo wa plasma-etha huhifadhiwa, hivyo mabadiliko ya ndani yanayosababishwa na quarkbases hufidiwa kupitia miteremko ya shinikizo inayozalisha mvutano au msukumo kutegemea awamu, kasi au mwangwi wake.
Mchanganyiko thabiti wa mwingiliano huu huzalisha quark za kimsingi, huku mwangwi wa pamoja kati ya quarkbases nyingi ukizalisha protoni, nyutroni na chembe nyingine. Mabadiliko ya kijiometri ya mistari ya shinikizo katika mizani mikubwa huzalisha nguvu za sumakuumeme na za nyuklia kama athari za kuzuka za uga huo huo Ψ.
– Mvutano wa Uvutano (Graviti): si mvutano wa kuvutana kwa umbali,
bali ni usambazaji upya wa plasma unaosukuma miili kuelekea maeneo yenye
msongamano mkubwa wa quarkbase.
– Umeme na Sumakuumeme: usanidi wa mtetemo wa quarkbase hubadilisha
plasma kuwa mawimbi ya shinikizo (fotoni).
– Nguvu za Nyuklia: hutokea wakati mistari ya shinikizo inapopenyana
na kujizuia, na hivyo kuunda “gundi” (nguvu yenye nguvu) au mikazo ya usawa
(nguvu dhaifu).
1.2.2 Jambo na Nishati: Jambo ni hali iliyoundwa ya quarkbase. Nishati ni mawimbi ya shinikizo ndani ya plasma. Usawa E = mc² unatokana na ukweli kwamba miundo iliyoundwa na quarkbase inaweza kugawanyika na kuunda mawimbi ya shinikizo, au kinyume chake.
1.2.3 Kosmolojia: Ulimwengu haupanuki; kile tunachoona kama upanuzi ni mabadiliko katika msongamano wa plasma yanayoathiri mwendo wa mwanga. Mipaka ni maeneo ya msongamano mkubwa ambapo trajekta za mwanga hufungwa.
Uundaji wa Kimsingi
Nadharia hii inajumlishwa katika milinganyo minne kuu:
Suluhisho la Kimsingi: Aina ya Yukawa
Suluhisho la uwezekano wa shinikizo kwa quarkbase iliyo pekee ndani ya plasma-ether ni la aina ya Yukawa:
Mielezo hii inaonyesha jinsi mwingiliano kati ya quarkbase unavyorudia umbo la mvutano wa uvutano na nguvu nyingine, ukiwa na marekebisho yanayotokana na urefu wa usitishaji \(\lambda\).
Misingi
Ulimwengu ni mdogo na unaudumu wa kiasi cha jumla kilichobaki thabiti. Plasma-ether ina msongamano na ukinzani; mwingiliano kati ya quarkbases na plasma hii huunda uwezo wa shinikizo Ψ unaofanya kazi kama asili inayoibuka ya mvutano wa mvuto na nguvu nyingine.
Dhahania Muhimu
- Uhifadhi wa Kiasi wa Ulimwengu: idadi na kiasi cha quarkbases pamoja na msongamano wa plasma vinaunganishwa na sharti la ulimwengu mzima.
- Uwanja wa Shinikizo Ψ: uwanja wa scalar wa uwiano wa nadharia ya jamaa unaokidhi mlinganyo wa aina ya Klein–Gordon wenye ulinzi (urefu λ).
- Nguvu Zinazoibuka: nguvu halisi kati ya quarkbases ni sawia na mteremko wa Ψ; katika hali inayofaa hurekebisha sheria ya Newton kwa umbali mrefu.
Makala Muhimu
Cosmolojia ya Quarkbase
Nyaraka msingi inayofafanua axioms, mlinganyo wa chini kabisa (uwanja Ψ, nguvu zinazoibuka, uhifadhi wa kiasi) na kupendekeza majaribio kwa ajili ya kukanushwa.
Shimo Mbili katika Cosmolojia ya Quarkbase
Inaelezea jinsi mwingiliano na utambuzi wa nukta zinavyoweza kufafanuliwa na msongamano wa nishati ya uwanja na mifumo ya kujifocusi yenye isiyo mstari (bila kudai kuanguka kwa wimbi).
Usiobadilika wa Relativisti
Uchambuzi wa kihisabati unaoonyesha jinsi nadharia inavyolingana na majaribio ya aina ya Michelson–Morley na na usiobadilika wa kiutendaji wa eneo chini ya makisia yanayokubalika.
Usiobadilika wa Relativisti na Vikwazo vya Majaribio katika Cosmolojia ya Quarkbase
Inaonyesha kwamba usawa wa Lorentz unaibuka kwa njia ya eneo na ufanisi katika uwanja msingi wa Quarkbase, na kwamba modeli hii inalingana kikamilifu na vipimo vya kisayansi vya uwiano wa relativiti, kulingana na mipaka ya sasa ya Standard-Model Extension (SME).
Article Synopsis
Genesis Quarkbase A New Genesis for Physics A Manifesto for the Twenty-First Century
This work explains the origin of the fundamental forces — gravitational, electromagnetic, strong, and weak — as manifestations of a single governing principle: the global conservation of etheric volume. It reproduces atomic constants such as the Rydberg value and hydrogen binding energy, and introduces an alternative method of fission based on resonance of the etheric pressure field, equivalent in energy to conventional nuclear fission but founded on a different physical mechanism. It also predicts the next element in the periodic table (Z ≈ 155), derived from the quantized sequence of quarkbase closures.
Complex Formalism in Quarkbase Cosmology: Unified Description of Gravitational, Electromagnetic, and Quantum Interactions
This research extends the QuarkBase Cosmology into the complex domain, demonstrating that the mathematical representation through complex numbers does not alter the physical foundations of the theory but rather unifies, within a single analytical structure, the gravitational, electromagnetic, and quantum phenomena. The complex formalism allows one to express in a single function, \\( \Psi(x, t) = A e^{i(\omega t - \mathbf{k}\cdot\mathbf{x})} \\), the longitudinal (pressure) and transverse (vorticity) components of the etheric plasma, simplifying differential derivatives and revealing the intrinsic nature of the field oscillations. It is shown that Maxwell’s equations can be reformulated as a complex wave equation of the etheric plasma, in which the real part represents electric pressure and the imaginary part magnetic vorticity, while the formalism strictly preserves Lorentz invariance. Finally, the framework is applied to the nucleus–electron resonance in hydrogen, deriving its coupling frequency directly from the phase conditions of the complex field and demonstrating the coherence of the QuarkBase model from the subatomic to the relativistic scale.
Empirical evidence for the existence of an etheric vacuum exhibiting plasmatic properties
This study presents an empirical and theoretical framework supporting the ex- istence of an etheric vacuum with plasmatic characteristics, as predicted by the QuarkBase Cosmology. Using the historical parameters of Tonomura’s 1989 single-electron double-slit experiment, we reproduce the observed interference patterns under the assumption that the vacuum behaves as a continuous pres- sure field (Ψ) rather than as an empty background. The model introduces two measurable parameters—the screening length (λ) and the decoherence rate (Γφ)—which describe, respectively, the attenuation of the pressure wave through the etheric medium and the loss of coherence induced by detector coupling. Numerical simulations yield λ ≈ 5 m and Γφ ≈ 80 s−1, providing an accu- rate quantitative match to Tonomura’s recorded interference build-up while offer- ing a causal, physically interpretable mechanism. The results demonstrate that the QuarkBase formulation can reproduce the same experimental data as stan- dard quantum mechanics without invoking non-causal collapse postulates. Instead, the interference pattern arises from the redistribution of etheric pressure within a frictionless but compressible medium, suggesting that space itself possesses measurable mechanical structure.
Quantum Entanglement in Quarkbase Cosmology
Proposes that quantum entanglement is a consequence of shared pressure channels in the plasma ether, explaining instantaneous correlations without superluminal transmission.
The Next Electromagnetic Revolution: Maxwell’s Equations in the Framework of Quarkbase Cosmology
The Quarkbase theory reformulates the foundations of electromagnetic interaction by interpreting classical fields not as abstract entities in empty space, but as pressure distributions within a continuous, frictionless plasma that permeates the universe. In this framework, Maxwell’s equations acquire a physical substrate: they describe the reorganization of pressure lines in this hidden medium rather than mere mathematical relations among charges and currents. This reinterpretation preserves the predictive power of classical electromagnetism while providing a consistent field-based foundation for potential extensions and experimental tests.
Simultaneous Enhancement of Electrical and Thermal Conductivity in Graphene through Excitation of the Etheric Longitudinal Mode
Within the framework of the Quarkbase Cosmology, electromagnetic and transport phenomena arise from longitudinal pressure waves in an etheric medium described by the scalar field Ψ(x, t). When an excitation in the terahertz or mid-infrared range (10–60 THz) couples resonantly to the longitudinal mode of this field, the coherence of both charge and heat carriers in graphene increases simultaneously. The predicted result is a reversible and correlated enhancement of the electrical conductivity σ and the thermal conductivity κ, a distinctive signature of the etheric longitudinal mode acting as a unifying coupling channel.
Curvature-Tunable Absorbance in Graphene: A Quarkbase-Cosmology Prediction
Within the framework of Quarkbase Cosmology, electromagnetic propagation arises from longitu- dinal pressure waves of a frictionless etheric plasma (Ψ-field). This theory predicts that the universal optical absorbance of monolayer graphene (A ≈ πα) should vary linearly with biaxial strain or mean curvature, due to changes in the local density of etheric pressure channels that guide the propagation of light. The expected dependence is ∆A/A ≃ 10−3–10−2 per % strain. Verification of this small but measurable effect would provide a direct falsifiable test of the Quark- base description of electromagnetic phenomena as pressure dynamics in an incompressible etheric medium.
The Quarkbase Cosmology Explanation of Superconductivity and Thermal Hyperconductivity in Graphene
This work presents a unified mechanism for superconductivity and thermal hyperconductivity in graphene within the framework of Quarkbase Cosmology (QBC), which models space as a frictionless etheric plasma governed by a scalar pressure field Ψ(x,t). In this view, graphene acts as a two-dimensional resonant cavity for Ψ, where phase coherence produces nondissipative electric currents without requiring Cooper pairing. An effective Ginzburg–Landau formulation and a Berezinskii–Kosterlitz–Thouless analysis yield critical temperatures of 1–10 K, consistent with experimental data. The same Ψ-field coherence explains graphene’s extraordinary thermal conductivity (>5000 W/m·K) as pressure-energy transport within the etheric medium. Overall, the work unifies graphene’s electrical and thermal behavior as two observable manifestations of phase and amplitude coherence in the underlying Ψ field.
Etheric Vacuum Pressure Sensor (SEP-V1): an interferometric system for detecting and converting energy through pressure gradients of the Ψ field
The SEP-V1 proposes an experimental device capable of detecting, amplifying, or eventually converting variations in the pressure of the Ψ field into measurable changes in optical phase or intensity. This system enables the experimental validation of dynamic anisotropies in vacuum density and allows the exploration of their potential energy conversion.
Coherent Pressure Quarkic Battery (Ψ-Cell)
This study reports the design and experimental validation of a Coherent Pressure Quarkic Battery (Ψ-Cell), a solid-state device that converts pressure fields of the etheric plasma into electric potential within multilayer graphene–dielectric structures. Exploiting the coherence of the scalar field Ψ, the system produces a voltage proportional to the pressure gradient without chemical or mechanical reactions. The prototype, comprising 500 active layers and a pressure-dependent RLC model with PLL–MPPT control, achieved 1–5 W output power, over 90 % efficiency, and excellent thermal stability (ΔT < 5 °C). These results demonstrate a new class of solid-state energy storage based on coherent vacuum pressure for ultra-low-dissipation electronics and autonomous quarkic energy systems.
The Geometry of Galaxies
Explores how the structure of galaxies is interpreted in terms of plasma ether pressure and global volume conservation. Suggests that spiral distribution and flattening result from Ψ field stresses.
Redshift in Quarkbase Theory
Reinterprets redshift as an effect of variations in plasma ether density and pressure wave propagation, rather than metric expansion of space.
Superclusters in Quarkbase Theory
Presents a model for supercluster formation through redistributions of ether pressure, without invoking dark matter as the primary explanation.
Hawking Radiation in Quarkbase Cosmology
Offers an alternative interpretation of Hawking radiation, linking it to pressure redistributions in the plasma ether around event horizons.
Microwave Background in Quarkbase Cosmology
Explains the cosmic microwave background as an equilibrium state of the plasma ether, rather than a thermal remnant of the Big Bang. Predicts anisotropies related to pressure fluctuations.
Quasars in Quarkbase Cosmology
Interprets quasars as high-energy resonators where ether pressure lines produce intense and persistent emissions, without requiring extreme accretion.
CMB Expansion in Quarkbase Extended Theory
Proposes that apparent signals of cosmic expansion in the CMB are due to density variations in the plasma ether, reinterpreting observations without an inflationary Big Bang.
Explaining Quark Flavors and Masses through Quarkbase Cosmology
It explains the structure of matter by modeling quarks as resonant systems composed of fundamental vibrating units, and provides a framework for understanding mass, flavor, and the dynamic nature of the quantum vacuum.
Biomedical Applications
Biomedical Advances with Quarkbase Theory
Explores potential biomedical applications of the theory, including interpretations of cellular resonance, molecular dynamics, and proposals for diagnosis or therapy based on the plasma ether.
Biomedical Applications: Cancer and Quarkbase Cosmology
Analyzes the dynamics of cancer cells from the plasma ether perspective, suggesting alternative models of proliferation and potential therapeutic research pathways.
Utabiri & Maombi
Muhtasari wa utabiri unaoweza kuchunguzwa na maendeleo ya kiteknolojia yanayoweza kutokea yanayotokana na mfumo wa nadharia.
- Mawimbi ya Shinikizo la Ether: ishara zinazowezekana kwenye vichunguzi vya usahihi na katika matukio ya astrophysical (pulsars, FRBs).
- Marekebisho kwenye Mvutano: upotovu kutoka 1/r^2 katika viwango vya ulinzi λ.
- Teknolojia: propulsion ya hali ya juu, kompyuta ya plasmons, sensa zisizo za moja kwa moja zinazotegemea uhusiano na plasma.
Mawasiliano na Ushirikiano
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