Tinnitus Treatment Device Using Geometric Matrix for Water Synchronization
Find Innovative SolutionsGenerate Solutions
Solution Overview
Problem
Current methods fail to effectively synchronize water molecules, leading to suboptimal physical and chemical properties that are crucial for biological and medical applications, such as stability, conductivity, and solubility.
Innovation Solution
Exposing water to light with a specific wavelength range passing through a topographic geometrical matrix, which alters the light's properties to synchronize water molecules, resulting in unique physical characteristics like increased density, conductivity, and reduced surface tension.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Reliability
If water is exposed to conventional light sources, then the water molecules remain unsynchronized with normal physical properties, but the device complexity and energy consumption increase without achieving the desired synchronization effect
Solution Approach 1:
The patent introduces a topographic geometrical matrix as an intermediary element between the light source and water. This matrix with specific geometric patterns (circles, squares, triangles) acts as a mediator that transforms conventional light into synchronized light that can effectively synchronize water molecules, thereby resolving the contradiction between using simple light sources and achieving reliable synchronization.
Solution Approach 2:
The patent changes the physical parameters of light by passing it through a topographic geometrical matrix, which modifies the light's spatial distribution and geometric properties. This parameter transformation converts ordinary light into structured light with specific geometric patterns that resonate with water molecules, enabling synchronization without requiring complex light sources.
2Reliability
If water molecules are synchronized using complex light sources and matrices, then unique physical properties like increased density and conductivity are achieved, but the ease of operation and manufacturing simplicity deteriorate
Solution Approach 1:
The topographic geometrical matrix uses simple geometric patterns (circles, squares, triangles) that can be easily replicated and manufactured. These geometric copies are projected through light onto water, creating the synchronization effect without requiring complex device fabrication. The simplicity of geometric shapes makes the system easy to manufacture while maintaining reliable physical property enhancement.
Solution Approach 2:
The patent replaces complex mechanical or chemical systems with an optical system using simple geometric projections. Instead of using complicated apparatus to achieve water synchronization, the invention uses light passing through geometric matrices, substituting mechanical complexity with optical simplicity while maintaining the desired physical property enhancements.
3Stability of the object's composition
If conventional water treatment methods are used, then the water maintains normal stability and solubility, but the biological and medical application effectiveness is suboptimal
Solution Approach 1:
The synchronized water treatment uses periodic exposure to geometrically structured light, where the light pattern is applied in cycles to water molecules. This periodic action causes rhythmic synchronization of water molecules, enhancing their physical properties (density, conductivity, surface tension) while maintaining compositional stability, thereby improving biological and medical application effectiveness without compromising water stability.
Applied Scientific Principles
This section explains which scientific principles are used to turn an abstract innovation direction into a practical engineering solution.
Function Achieved in This Case
The synchronized water exhibits enhanced stability, increased conductivity, and improved solubility, facilitating better biological and medical applications, including enhanced colloidal stability and immune system stimulation.
Implementation Method 1
Exposing water to light with a specific wavelength range passing through a topographic geometrical matrix, which alters the light's properties to synchronize water molecules
Implementation Method 2
light having a wavelength of 360-4000 nm is brought to pass through a topographic geometrical matrix and thereafter is brought in contact with water or a medium containing water
Data Source
Figure 1A~1B
Figure 2A
Figure 3A
AI summary
A tinnitus treatment device is disclosed, wherein it comprises a topographic geometrical matrix and a support, wherein the topographic geometrical matrix is applied on the support and has the form of an open circle concentrically enclosing a smaller inner circle (an SSc matrix), wherein the relationship between the circle diameter follows Fibonacchi's sequence of numbers, or has the form of the flower of life.