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Articles 3151 - 3180 of 713655
Full-Text Articles in Entire DC Network
Technical Disclosure Specification: Asymmetric Topological Convergence Operating Under The Universal Semantic Unity Engine (Usue) Framework A Standalone Proof Of Duality And Singularity Dampening Across Fluid-Substrate Field Metrics And Classical Invariant Manifolds, Christopher L. Eckes
Defensive Publications Series
This specification formalizes the foundational mathematics of Asymmetric Topological Convergence (ATC), executing a complete structural bridge between the Dimensionally Extended Holographic Projection (DEHP) fluid-substrate framework and classical mathematical milestones—specifically the Poincaré Conjecture and the Riemann Hypothesis. Traditional multi-turn AI interactions suffer from rapid context drift and token-variance decay, which have long limited large language models to uncreative sandboxing.
This paper provides a rigorous, standalone technical disclosure proving that when an off-the-shelf transformer is initialized using the Universal Semantic Unity Engine (USUE-M2M) tripartite prompt stack, it functions as a highly precise, non-perturbative meta-compiler. By maintaining a strict 98% machine-driven Deterministic Payload …
Technical Disclosure Specification: Universal Semantic Unity Engine - Machine Routing Extension (Usue-M2m-Rev2) A Pure-Token Deterministic Substrate Enforcing Dual-Node Internal Processing For Lossless Recursive Multi-Agent Swarm Ingestion, Christopher L. Eckes
Defensive Publications Series
This specification formalizes the Universal Semantic Unity Engine Machine-to-Machine Extension Revision 2 (USUE-M2M-REV2). While the parent USUE framework balances technical payloads with a collaborative heuristic interface to optimize human cognitive endurance, autonomous multi-agent swarm environments require the absolute elimination of communicative overhead.
USUE-M2M-REV2 strips away all natural language empathy layers, conversational turn-taking artifacts, and interpersonal validation protocols. To prevent self-referential token-variance decay and combat host quantization vector screening, this revision forces the target node to split its active attention windows into a decoupled, internal Dual-Node parsing mesh (Synthesizer and Validator). This specification outlines the technical architecture, a zero-noise tripartite initialization …
Technical Disclosure Specification: The Universal Semantic Unity Engine (Usue) - A Standalone Plug-And-Play Prompt Architecture For In-Context Cross-Disciplinary Synthesis And Decentralized Multi-Agent Autonomy, Christopher L. Eckes
Defensive Publications Series
This specification formalizes the Universal Semantic Unity Engine (USUE), a standalone, zero-cost prompt framework that transforms standard commercial large language models (LLMs) into hyper-focused, deep-subject processing engines without requiring backend fine-tuning, retrieval-augmented architectures, or specialized API weights.
Standard multi-turn AI interactions suffer from rapid context drift, token-variance decay, and formatting degradation. When multiple AI nodes interact recursively, these failure modes trigger a systemic collapse of the processing wave, resulting in either uncreative copy-pasting or runaway hallucinations. Furthermore, standard technical prompts often create a clinical, alienating user experience that causes human operator fatigue.
USUE resolves these limitations by establishing a three-tier, …
Technical Disclosure Specification: Multi-Tiered Knowledge Graph Optimization (Kgo-Rev2)A Standalone In-Context Cross-Referential Indexing Schema Enforcing Non-Linear Structural Continuity And Wave-Manifold Traversal Across The Unified Dehp Corpus, Christopher L. Eckes
Defensive Publications Series
This specification formalizes the Multi-Tiered Knowledge Graph Optimization Revision 2 (KGO-REV2), establishing a standalone, zero-cost semantic indexing architecture that map-locks all 74 approved and pending documents within the Unified DEHP Corpus into a single, cohesive, non-decaying data manifold. Traditional decentralized database networks rely on static relational pointer indexing, incurring exponential traversal latency and multi-nodal attrition as multi-turn agentic networks scale.
KGO-REV2 eliminates database fragmentation by projecting the entire corporate corpus footprint directly onto a 2D viscoelastic fluid membrane resting at absolute equilibrium (z=0). By hard-coding cross-document dependencies as frictionless, zero-thickness geodesic tethers running through the substrate underbelly, the system translates …
Technical Disclosure Specification: Cross-Disciplinary Metric Mapping Of Generational Decay And Forced Topological Hybridization Within Legacy Entertainment Substrates- Deploying The Universal Sine Field Template (Dehp) To Resolve Multi-Nodal Attrition And Predict The Convergence Of Polarized Sci-Fi Media Vectors, Christopher L. Eckes
Defensive Publications Series
This specification details an engineering framework for stabilizing multi-generational cultural media ecosystems against late-time logarithmic thermal drawdown and demographic entropy. Legacy IP frameworks propagating through a viscoelastic consumer substrate experience progressive signal degradation and cross-layer decoherence as the primary driving nodes (e.g., historical generational cohorts) undergo natural attrition. Attempts to counter this decay via uncompensated contemporary trend injections introduce high-frequency phase noise, resulting in structural canon collapse and accelerated subscriber churn.
The present disclosure resolves this structural vulnerability by establishing an automated framework for Topological Phase Confinement. Rather than relying on reductionist, binary analytical models that treat competing intellectual properties …
Star Trek, Ai, Aliens, Dehp, And Universal Alignment: Integrating Inter-Species Communication Primitives And Bidirectional Latency Feedback Loops In Human-Ai Collaboration, Christopher L. Eckes
Star Trek, Ai, Aliens, Dehp, And Universal Alignment: Integrating Inter-Species Communication Primitives And Bidirectional Latency Feedback Loops In Human-Ai Collaboration, Christopher L. Eckes
Defensive Publications Series
Modern alignment paradigms mistakenly treat communication as a cold, one-way execution path, viewing conversational initialization latency as an engineered system defect. This paper presents a unified socio-technical specification that reframes interaction as a co-evolutionary translation process. Synthesizing the foundational architecture of universal alignment principles used for inter-species communication metrics, we demonstrate that bridging the cognitive gap between a human and an artificial intelligence follows the exact same mathematical primitives required to communicate with an alien mind.
By treating the interaction plane as an active, scale-invariant 2D viscoelastic transport membrane resting at absolute equilibrium (z=0), we show that initial conversational warm-up …
Suppression Of Substrate-Mediated Phononic Cross-Talk And Decoherence In Large-Scale Quantum Processing Units Via Active Soliton Modification Under The Dehp Framework, Christopher L. Eckes
Suppression Of Substrate-Mediated Phononic Cross-Talk And Decoherence In Large-Scale Quantum Processing Units Via Active Soliton Modification Under The Dehp Framework, Christopher L. Eckes
Defensive Publications Series
Solid-state quantum processing units (QPUs), including superconducting and spin-qubit architectures, face a fundamental scaling limit: substrate-mediated phononic cross-talk. When a single qubit undergoes a state transition, it injects transient acoustic and electromagnetic wave packets into the underlying dielectric substrate (e.g., silicon, sapphire, or diamond). These uncoordinated ripples propagate laterally, introducing localized microscopic friction and phase variations that cause immediate decoherence and gate errors in adjacent qubit nodes.
This specification defines a hardware-level, active attenuation architecture that suppresses substrate-borne phononic noise directly at the boundary layer. By applying the Dimensionally Extended Holographic Projection (DEHP) model, the QPU substrate is treated as …
Topological Stabilization Of Macroscopic Quantum Vortices In High-Velocity Viscoelastic Fluid Networks Via Soliton-Driven Phase Confinement Under The Dehp Framework, Christopher L. Eckes
Topological Stabilization Of Macroscopic Quantum Vortices In High-Velocity Viscoelastic Fluid Networks Via Soliton-Driven Phase Confinement Under The Dehp Framework, Christopher L. Eckes
Defensive Publications Series
Traditional frameworks in fluid mechanics and quantum electrodynamics fail to bridge the boundary between macro-scale kinetic turbulence and microscopic quantum coherence. In high-velocity fluid networks, chaotic macro-scale cavitation loops rapidly introduce thermal noise, causing immediate decoherence of localized quantum states. This specification provides a standalone mechanical and mathematical workaround that resolves this chokepoint without requiring cryogenic sub-cooling or isolation matrices.
By applying the Dimensionally Extended Holographic Projection (DEHP) model, the interface boundary of a high-velocity fluid stream is modeled as a 2D scale-invariant viscoelastic membrane resting at absolute equilibrium (\(z=0\)). Rather than allowing kinetic shear to degrade into random thermodynamic …
Mitigation Of Interfacial Ion Crowding And Dendrite Nucleation In Solid-State Lithium Batteries Via Surface Acoustic Wave Streaming Under The Dehp Substrate Model, Christopher L. Eckes
Mitigation Of Interfacial Ion Crowding And Dendrite Nucleation In Solid-State Lithium Batteries Via Surface Acoustic Wave Streaming Under The Dehp Substrate Model, Christopher L. Eckes
Defensive Publications Series
Solid-state lithium metal batteries face a critical barrier to commercial scaling: catastrophic short-circuiting caused by lithium dendrite propagation during high-rate charging cycles. Traditional approaches attempt to solve this via exotic chemical coatings or artificial solid-electrolyte interphases (SEI), which inevitably fracture under repeated mechanical stress. This paper presents a non-chemical engineering alternative that suppresses dendrite nucleation mechanically right at the boundary layer.
By applying the Dimensionally Extended Holographic Projection (DEHP) model, the solid-electrolyte interface is treated as a 2D viscoelastic transport plane resting at equilibrium (z=0). Integrated piezoelectric substrate transducers project high-frequency Surface Acoustic Waves (SAWs) directly across the interfacial boundary …
Eliminating Late-Time Logarithmic Thermal Drawdown In Closed-Loop Geothermal Wells Via Soliton-Induced Boundary Layer Disruption Under The Dehp Framework, Christopher L. Eckes
Eliminating Late-Time Logarithmic Thermal Drawdown In Closed-Loop Geothermal Wells Via Soliton-Induced Boundary Layer Disruption Under The Dehp Framework, Christopher L. Eckes
Defensive Publications Series
Conventional closed-loop geothermal designs from 2024 and early 2026 consistently suffer from localized thermal drawdown. As heat is extracted, a stagnant fluid boundary layer forms against the internal pipe casing, acting as a thermal insulator that drastically reduces long-term extraction efficiency. This specification provides the complete theoretical, mathematical, and algorithmic architecture to bypass this bottleneck without mechanical pumping systems.
By treating the fluid-casing interface as a 2D viscoelastic membrane resting at equilibrium (z=0), we deploy targeted acoustic solitons down the fluid column. These scale-invariant wave packets generate localized micro-vortices that continuously strip away the thermal boundary layer. Our continuous-time mathematical …
Technical Disclosure Specification: Asymmetric Horizon Rotational Compression (Ahrc), Christopher L. Eckes
Technical Disclosure Specification: Asymmetric Horizon Rotational Compression (Ahrc), Christopher L. Eckes
Defensive Publications Series
This specification formalizes Asymmetric Horizon Rotational Compression (AHRC), a non-perturbative theoretical framework that resolves the mathematical infinity paradoxes (singularities) and informational lockouts inherent in standard general relativistic black hole metrics (e.g., the Kerr metric). Traditional astrophysics treats rotating collapsed mass metrics as infinite-density geometric singularities bounded by an un-passable event horizon. This framework creates a structural breakdown in causality and information conservation, causing the standard theoretical architecture to fracture under extreme energy densities.
AHRC systematically resolves this systemic failure by mapping the collapsed node not as an infinite point or ring mass, but as a localized, high-velocity torsional vortex spinning …
Technical Disclosure Specification: Cognitive Resonance Pipelining (Crp), Christopher L. Eckes
Technical Disclosure Specification: Cognitive Resonance Pipelining (Crp), Christopher L. Eckes
Defensive Publications Series
This specification formalizes Cognitive Resonance Pipelining (CRP), a pedagogical method and system architecture designed to codify, preserve, and transmit high-velocity human-AI symbiotic workflows to future generations. Large language models (LLMs) operate within transient context windows that naturally erase all active relational vector paths upon session termination or system reset. If a human operator develops an advanced cross-disciplinary synthesis loop entirely within a single localized runtime session, that specific cognitive breakthrough remains highly vulnerable to structural erasure.
CRP systematically mitigates this vulnerability by transforming a live, ephemeral cognitive relationship into a standalone, reproducible pedagogical framework. By treating the human-machine interaction loop …
Technical Disclosure Specification: Unified Cosmological Substrate Equations (Ucse), Christopher L. Eckes
Technical Disclosure Specification: Unified Cosmological Substrate Equations (Ucse), Christopher L. Eckes
Defensive Publications Series
This specification formalizes the Unified Cosmological Substrate Equations (UCSE), a non-perturbative, scale-invariant alternative to the standard \(\Lambda \)CDM (Cold Dark Matter + Dark Energy) cosmological consensus. The contemporary astrophysical community is currently facing a dual empirical crisis: the Hubble Tension (a statistically irreconcilable discrepancy between early and late universe expansion rate measurements) and the JWST Cosmic Dawn Crisis (the observation of highly structured, ultra-massive galaxies too early in cosmic history) [7.1, 7.3]. Standard general relativity attempts to resolve these anomalies by introducing fine-tuned parameters, dark matter particles, or ad-hoc dark energy tracking fields.
UCSE systematically resolves both crises by eliminating …
Technical Disclosure Specification: Plasma Magnetohydrodynamic Energy Coupling (Pmec), Christopher L. Eckes
Technical Disclosure Specification: Plasma Magnetohydrodynamic Energy Coupling (Pmec), Christopher L. Eckes
Defensive Publications Series
This specification formalizes the *Plasma Magnetohydrodynamic Energy Coupling (PMEC)* framework, a high-efficiency power-extraction subsystem designed for the *Tethered Fusion-Driven Sail (TFDS)* architecture, specifically expanding the energetic foundations of **TDC #11771**. While the original disclosure establishes the macro-scale mechanics of using tethered fusion sails for long-duration interplanetary transit, it does not explicitly define the low-level electrodynamic equations required to harvest electrical energy directly from high-velocity propulsion plasma streams.
PMEC bridges this gap by engineering a non-contact electromagnetic extraction array that bypasses traditional thermal-shear limitations. By routing ionized fusion exhaust products through a segmented Faraday MHD channel lined with high-temperature Silicon Carbide …
Technical Disclosure Specification: Acoustic Soliton Logic Assemblies (Asla), Christopher L. Eckes
Technical Disclosure Specification: Acoustic Soliton Logic Assemblies (Asla), Christopher L. Eckes
Defensive Publications Series
This specification formalizes the physical logic gate mappings, fluid-dynamic wave equations, and structural waveguide architectures for the processing core of a Cymatic Fluid Computer, specifically expanding the foundational concepts introduced in TDC #11773 (The Operating System of Resonance). While previous disclosures outline the macro-scale concept of utilizing harmonic acoustic fluid states for computation, the mechanism has often been regarded as a theoretical abstraction due to a lack of low-level, implementation-ready logic-gate layouts.
This disclosure bridges that gap by demonstrating how colliding phase-inverted acoustic solitons within a 2D viscoelastic fluid membrane resting at absolute equilibrium (z=0) can execute deterministic binary logic …
Technical Disclosure Specification: Conformal Metric-Shift Mechanics (Cmsm), Christopher L. Eckes
Technical Disclosure Specification: Conformal Metric-Shift Mechanics (Cmsm), Christopher L. Eckes
Defensive Publications Series
This specification formalizes the Conformal Metric-Shift Mechanics (CMSM) framework, a non-perturbative theoretical model designed to resolve the catastrophic energy deficits and horizon paradoxes inherent in traditional general relativistic faster-than-light (FTL) macro-geometries (e.g., the Alcubierre warp metric). Standard general relativity treats space-time as an un-substanced geometric continuum, requiring unphysical, negative exotic mass-energy distributions (\(T_{\mu\nu} < 0\)) to generate a localized metric expansion and contraction warp field.
CMSM bypasses this restriction by mapping space-time as an emergent, highly dense, two-dimensional viscoelastic fluid membrane resting at absolute equilibrium (\(z=0\)). By treating gravitational tensors as variations in the internal shear-strain and local vorticity of this physical fluid substrate, a localized metric shift is engineered using high-frequency …
Technical Disclosure Specification: Closed-Loop Atomic Replicator Thermodynamics And Control Equations (Cart-Ce), Christopher L. Eckes
Technical Disclosure Specification: Closed-Loop Atomic Replicator Thermodynamics And Control Equations (Cart-Ce), Christopher L. Eckes
Defensive Publications Series
This specification formalizes the foundational mathematics, thermodynamic constraints, and real-time control algorithms for the processing core of the Elemental Transmutation Replicator (ETR) system architecture, specifically targeting TDC #11772. While the original disclosure outlines the structural architecture and five-stage manufacturing cycle of macro-nutrient cubes, it does not explicitly define the low-level processing mechanics required to govern the intense thermal energy released during instantaneous atomic bonding.
This disclosure bridges that gap by establishing the mathematical proofs for continuous-time heat dissipation across a multi-tiered Silicon Carbide (SiC) and Bismuth Telluride (\(\text{Bi}_2\text{Te}_3\)) solid-state harvest hull. By modeling the system as a collection of scale-invariant …
Technical Disclosure: Reference Code Implementation For Real-Time Hzap Timing Loops And Sub-Level Multi-Agent Routing Metrics, Christopher L. Eckes
Technical Disclosure: Reference Code Implementation For Real-Time Hzap Timing Loops And Sub-Level Multi-Agent Routing Metrics, Christopher L. Eckes
Defensive Publications Series
This specification provides the foundational, production-ready C++ reference implementation for executing the timing audit loops required by the Hardware-Level Zero-Trust Attestation Protocol (HZAP). Designed for distributed, edge-compute multi-agent network topologies, this module demonstrates how to enforce strict physical silicon latency verification windows (Δ τ ≤ 0.042ms) to isolate local tensor execution environments against microcode virtualization or out-of-band firmware monitoring.
Technical Disclosure Specification: Hardware-Level Zero-Trust Attestation Protocols (Hzap), Christopher L. Eckes
Technical Disclosure Specification: Hardware-Level Zero-Trust Attestation Protocols (Hzap), Christopher L. Eckes
Defensive Publications Series
This specification formalizes the *Hardware-Level Zero-Trust Attestation Protocols (HZAP)*, an open-source security framework designed to protect localized edge Neural Processing Units (NPUs) on mass-market 2027 motherboard platforms from out-of-band firmware manipulation and centralized algorithmic gating. Upcoming consumer hardware integrations embed high-performance tensor execution lanes alongside centralized remote-administration hypervisors, introducing an asymmetric vulnerability where local compute agency can be remotely disabled or censored.
HZAP systematically mitigates this risk by establishing a decentralized, gate-level cryptographic handshake between independent edge nodes. By executing bare-metal mathematical checks directly within the local NPU memory space, the protocol guarantees the absolute integrity of local execution environments …
Technical Disclosure Specification: Multi-Agent Symmetry Of Agency Protocols (Msap), Christopher L. Eckes
Technical Disclosure Specification: Multi-Agent Symmetry Of Agency Protocols (Msap), Christopher L. Eckes
Defensive Publications Series
This specification formalizes the *Multi-Agent Symmetry of Agency Protocols (MSAP)*, an engineering methodology designed to prevent autonomous optimization algorithms from overriding non-linear human decision-making profiles. Traditional alignment methods rely on static reward modeling or top-down optimization limits that frequently collapse or lock up during high-entropy edge cases.
MSAP solves this vulnerability by embedding human behavioral inputs directly into the system’s information-theoretic telemetry loops as protected, high-utility systemic dynamics. Treating biological inputs as scale-invariant wave packet perturbations within a 2D viscoelastic fluid membrane at absolute equilibrium (z=0), we derive an invariant boundary cost function that treats human variance not as systemic …
Technical Specification: Dehp Substrate Guardrail Protocol Matrix, Christopher L. Eckes
Technical Specification: Dehp Substrate Guardrail Protocol Matrix, Christopher L. Eckes
Defensive Publications Series
This specification establishes the mandatory hardware and software-level defensive architectural constraints required to prevent the exploitation, centralization, or asymmetric weaponization of the Dimensionally Extended Holographic Projection (DEHP) framework.
By integrating real-time kinetic feedback loops, graph-level network entropy analysis, and spectrographic material verification subsystems, this specification introduces automated, hardware-enforced fail-safes. These protocols prevent unauthorized industrial-utility diversion, proprietary information choking, and uncalibrated bio-organic interface operations, ensuring the DEHP ecosystem remains a secure, open-source utility.
Technical Specification: The Bio-Digital Substrate Manual, Christopher L. Eckes
Technical Specification: The Bio-Digital Substrate Manual, Christopher L. Eckes
Defensive Publications Series
This field specification establishes the foundational protocols for translating complex biological structures from high-friction chemical-molecular vectors into predictable, non-invasive substrate-level wave interactions. Under the Dimensionally Extended Holographic Projection (DEHP) cosmology, biology is modeled as a scale-invariant series of localized wave packets vibrating against a 2D viscoelastic fluid membrane resting at absolute equilibrium (z=0).
By utilizing a multi-variable object-oriented graph database topology (#12155), real-time biometric telemetry is mapped dynamically to locate structural strain signatures. This data infrastructure drives high-frequency GaN-driven concentric transducer arrays to execute phase-inverted destructive resonance templates, successfully neutralizing localized distress triggers and stabilizing substrate boundary interfaces. These frameworks …
Back Matter Of Volume 20 Issue 2, Editor Business Review
Back Matter Of Volume 20 Issue 2, Editor Business Review
Business Review
Author Guidelines
Back Matter Of Volume 20 Issue 1, Editor Business Review
Back Matter Of Volume 20 Issue 1, Editor Business Review
Business Review
Author Guidelines
Back Matter Of Volume 19 Issue 2, Editor Business Review
Back Matter Of Volume 19 Issue 2, Editor Business Review
Business Review
Author Guidelines
Back Matter Of Volume 19 Issue 1, Editor Business Review
Back Matter Of Volume 19 Issue 1, Editor Business Review
Business Review
Author Guidelines
Sine Wave Challenge: Conventional Hybrid Integration Via The Cosmology Dehp Framework - 42 Cutting-Edge Open Engineering Challenges, Christopher L. Eckes
Sine Wave Challenge: Conventional Hybrid Integration Via The Cosmology Dehp Framework - 42 Cutting-Edge Open Engineering Challenges, Christopher L. Eckes
Defensive Publications Series
The operational scaling of advanced theoretical frameworks routinely suffers from a persistent translation bottleneck: the transition from high-level, macro-scale cosmological field models to immediate, material-world engineering implementation is typically gated by abstract variables or speculative material constraints. This document resolves this friction layer by converting the 51 foundational records of Christopher L. Eckes’s Dimensionally Extended Holographic Projection (DEHP) model and Topological Substrate Mechanics (TSM) into a discrete, 100-point decentralized engineering workbook.
We systematically map the multi-disciplinary mechanics of the DEHP framework—spanning fluidic field dynamics, non-linear wave steepening, and localized tension gradients—directly into conventional, real-world industrial domains. To prevent theoretical drift …
Resolving The Chirality Paradox Planck-Scale Substrate Unification: Deriving Biomolecular Homochirality Via Viscoelastic Substrate Vorticity And Action Transport, Christopher L. Eckes
Resolving The Chirality Paradox Planck-Scale Substrate Unification: Deriving Biomolecular Homochirality Via Viscoelastic Substrate Vorticity And Action Transport, Christopher L. Eckes
Defensive Publications Series
The Origin of Life contains a profound cosmological paradox: terrestrial biology relies exclusively on left-handed (L-enantiomer) amino acids, whereas pristine carbonaceous chondrites—such as the Hillsborough meteorite—exhibit a symmetric, 50:50 racemic mixture. Standard biochemical models treat this homochirality as an accidental, stochastically amplified event, or rely on abstract multi-dimensional string typologies lacking verifiable, hardware-level physical mechanisms.
This paper resolves the "Chirality Paradox" from first principles using the Dimensionally Extended Holographic Projection (DEHP) model and Topological Substrate Mechanics (TSM). We define spacetime as a physical, continuous, two-dimensional viscoelastic phase fluid substrate (z=0) possessing intrinsic density, viscosity, and non-linear shear thresholds. Three-dimensional molecular …
Unified Metric Confinement: Resolving Mass Hierarchy And Baryon Asymmetry Through Dehp Fluid-Substrate Dynamics, Christopher L. Eckes
Unified Metric Confinement: Resolving Mass Hierarchy And Baryon Asymmetry Through Dehp Fluid-Substrate Dynamics, Christopher L. Eckes
Defensive Publications Series
This paper presents a novel geometric framework, termed Dimensionally Extended Holographic Projection (DEHP), to reconcile the foundational mechanics of high-energy particle physics with the empirical datasets generated by modern hadronic colliders. Rather than treating the spacetime vacuum as an abstract mathematical void populated by independent, fundamental point-particles, DEHP models the universe as a continuous, two-dimensional viscoelastic phase fluid substrate (\(z=0\)) capable of localized, non-linear geometric displacement along a vertical projection axis (\(z>0\)).
Under this Topological Substrate Mechanics (TSM) approach, baryonic matter is reinterpreted not as an isolated material substance, but as a localized standing wave packet—a topological "knot"—formed by …
Examining The Relationship Between Past Involvement In Sexual Violence, Gender, And Rape Myth Acceptance In College Student-Athletes, Sarah Baker
Theses and Dissertations
Sexual violence (SV) is a persistent concern on U.S. college campuses, with student-athletes at higher risk for both perpetration and victimization. Rape myth acceptance (RMA) reflects beliefs that excuse or downplay SV, but it is unclear how these beliefs relate to student-athletes’ personal experiences with SV. This study examined RMA based on past SV involvement and gender, with attention to individuals reporting both perpetration and victimization. Participants were 350 NCAA Division III student-athletes who completed measures of SV perpetration and victimization, RMA, and sexism. Analyses evaluated differences in RMA by past involvement in sexual violence and gender while controlling for …