The provided document outlines the "Positive 7 Dimension" (+7D) framework, which is a core component of the "Colorless King Dimensional Model" (CKDM) authored by Mohammad Salman Farshi Rahat. The author presents the CKDM as an alternative to standard theoretical physics, emphasizing direct observation and logical intuition over purely mathematical models that, according to the text, often fail to align with physical reality. A foundational premise of the paper is the explicit rejection of subatomic particles, including those purportedly discovered at the Large Hadron Collider (LHC). Instead, the author proposes the existence of "subatomic signals" or "quantum vibrational energy" that transfers between atoms. According to this framework, phenomena traditionally attributed to subatomic mass are actually the result of passing subatomic signals that amplify magnetic fields. Central to the +7D framework is the concept of "Atomic Parallel Path Processing," which seeks to redefine how energy and electrons move through materials. The author argues that electrons do not simply seek the path of least resistance; rather, they evaluate all available atomic paths and flow into the most compatible atoms capable of absorbing extra vibrational data. If a specific atomic path reaches its thermodynamic resonance limit, it acts as a "vibrational energy trap," causing the energy to spill over and seek an alternative, parallel route. Furthermore, the document posits that materials traditionally classified as insulators, such as plastic, are fundamentally conductive but possess a profoundly low capacity to absorb or release vibrational energy. The paper also seeks to unify the underlying mechanics of fire, lightning, and heat transfer by attributing their behaviors to atomic density and a "Gravity Sorting Mechanism". The text explains that fire moves upward not because energy inherently prefers ascending, but because intense heat causes lighter gas atoms to break their bonds and rise into the atmosphere. Conversely, lightning strikes downward because electrons naturally seek the shortest path to dense, highly conductive, metal-rich ground rather than lingering in easily separated atmospheric gases. The author applies a similar mechanical logic to the superfluidity observed in liquid helium and hydrogen. Instead of representing a truly frictionless state, superfluidity is described as ultra-light atoms actively harvesting ambient heat from their environment to overpower gravity and escape their forced condensed forms. Finally, the author re-evaluates the standard laws of thermodynamics through the unique perspective of the CKDM. While the Zeroth, First, and Second Laws are broadly accepted by the author, they are modified by the assertion that atoms serve as immutable "Information Nodes" that do not convert into energy, thereby rejecting Einstein's mass-energy equivalence. The Third Law's concept of absolute zero at 0 Kelvin is challenged, with the author arguing that true zero entropy only exists within black holes, which emit absolutely no returning quantum vibrations. Consequently, the mainstream hypothesis of the universe's ultimate "Heat Death" is dismissed; the author concludes that gravity will inevitably cause vibrating atoms to eventually lose their energy and aggregate back together, thereby perpetuating the cosmic thermodynamic cycle.
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Mohammad Salman Farshi Rahat
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Mohammad Salman Farshi Rahat (Sat,) studied this question.
www.synapsesocial.com/papers/69bf899af665edcd009e9712 — DOI: https://doi.org/10.5281/zenodo.19140056