Fractal Quantum Model for Dimensional Manipulation
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Solution Overview
Problem
Current models of quantum mechanics fail to effectively utilize fractal equivalence at various levels for modeling processes and structures, leading to inadequate understanding and utilization of the universe's features, particularly in areas like quantum computing, energy storage, and chemical reactions.
Innovation Solution
The development of a new model that employs fractal equivalence to design and utilize pretime states, allowing for the manipulation of quantum change and dimensional features to improve computing, energy storage, and chemical reactions by using fractal states and pretime changes in quantum computing, energy capture, and chemical processes.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Adaptability or versatility
If current quantum mechanics models are used, then existing computational frameworks are maintained, but fractal equivalence at various levels cannot be effectively utilized for modeling processes and structures
Solution Approach 1:
The patent applies universality by creating a quantum computing model that can operate across multiple fractal levels simultaneously. The system uses fractal equivalence to enable the same quantum computational framework to model processes at different scales (atomic, molecular, macroscopic), making the model versatile rather than scale-specific. This allows a single model to handle diverse physical phenomena across hierarchical levels.
Solution Approach 2:
The patent implements nesting by organizing quantum states in hierarchical fractal structures where smaller fractal units are contained within larger ones. Each level of the fractal hierarchy represents a different scale of physical organization, with lower-level quantum states nested within higher-level structures. This nested organization enables the model to capture relationships across multiple scales while maintaining computational tractability.
2Productivity
If traditional quantum computing approaches are used, then current computational limits are respected, but energy storage and information processing efficiency are insufficient
Solution Approach 1:
The patent applies parameter changes by utilizing pretime states - quantum states that exist outside the conventional temporal framework. By accessing and manipulating these alternative quantum parameters, the system achieves enhanced information processing efficiency and energy storage capacity beyond traditional quantum computing limits. The fractal structure enables systematic exploration and utilization of these extended parameter spaces.
Data Source
AI summary
This patent describes application of key fractal elements (KFE) of AuT (the science) inherent in the fractal design of dimension for dimensional manipulation based on fractal underpinnings of the universe. The process is applicable at all dimensional levels for defining and using fractal transitions. AuT defines the bit required for this logic to work (positive and negative result) and its operation in the universe. The iterated equations primarily discussed are fpix=−1{circumflex over ( )}x+2x(—1){circumflex over ( )}(x−1), an equation generating the denominator of pi and made up and derived from underlying iterated equations, n+1 which drives changes in fpix and 2f(n){circumflex over ( )}(2{circumflex over ( )}n) the observed compression function the results of which are called ct states. There are multiple potential models of lower ct states, dimensional states, but at the ct3-ct4 interface, the model is relatively accurate and involves f-series exponential compression about a central axis: 2:1 F-series overlap of two spiral arms which fold and unfold to compresses and decompress ct states organized in exponential quantities based on interactional exchanges of ct states toward or away from compression, these exchanges being referred to generally as absorption where they are added to a matrix, and spew where they exit a matrix. The applications cover all of practical science, but can be summarized by the resulting conclusion that all controlled actions are dimensional manipulation and AuT delivers the most efficient path.


