EMR Shielding Polymer Neutralizing Radiation via Solenoid Induction
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Solution Overview
Problem
Current methods for protecting against electromagnetic radiation (EMR) from devices like computers and power lines are impractical, as they require enclosures for smaller devices and are cost-prohibitive for larger sources, leaving a need for a portable solution that can counter adverse health effects without reducing radiation intensity.
Innovation Solution
A device with a solenoid connected to a driver and a polymer that generates oscillations at frequencies counteracting EMR effects, using a polar matrix, oxidized hydrocarbon emulsifier, galvanic salt, dye, and polysaccharide, which can be positioned to protect against EMR from remote sources, including electronic devices and power lines.
Engineering Contradictions & Design Principles
Engineering Contradiction Analysis
1Object-affected harmful factors
If protective shields or enclosures are used to reduce EMR exposure, then protection against electromagnetic radiation is improved, but device complexity and practicality deteriorate due to the need for enclosures around emitting devices
Solution Approach 1:
The patent introduces MRET-Shield material as an intermediary substance that neutralizes EMR effects without requiring structural enclosures. The material is applied directly to the emitting device surface, acting as a chemical/physical mediator that converts harmful EMR into benign frequencies, thereby protecting users without adding complex protective shell structures
Solution Approach 2:
The invention replaces the mechanical approach of physical enclosures and shields with a field-based neutralization approach using MRET-Shield material. Instead of mechanically blocking EMR with enclosures, the material generates counter-frequencies that neutralize EMR effects, substituting mechanical protection with electromagnetic field interaction
2Object-affected harmful factors
If protective enclosures are designed for EMR emitting devices, then protection against electromagnetic radiation is improved, but ease of operation deteriorates due to impracticality of enclosing larger appliances
Solution Approach 1:
The MRET-Shield material is applied as a thin film or coating on the surface of EMR emitting devices, including portable electronics. This thin-film approach maintains device portability and ease of operation while providing EMR neutralization, avoiding the bulk and complexity of protective enclosures
Solution Approach 2:
The invention extracts the protective function from the device structure itself (enclosures and shields) and implements it as a separate MRET-Shield material layer. This allows the protection mechanism to be added without modifying the core device structure or reducing its portability
3Object-affected harmful factors
If MRET-Shield material is used to neutralize EMR effects, then protection against electromagnetic radiation is improved, but manufacturing precision deteriorates due to complex material composition requirements
Solution Approach 1:
MRET-Shield is formulated as a composite material containing multiple components (polymer base, MRET particles, binders, plasticizers) that work together to generate the neutralizing electromagnetic frequencies. The composite structure allows each component to contribute specific properties, making the complex functionality achievable through material composition rather than precise geometric control
Solution Approach 2:
The patent specifies ranges for material parameters (particle size 0.1-10 micrometers, polymer molecular weight, component ratios) rather than requiring precise single values. This parameter range approach provides manufacturing flexibility while maintaining the essential neutralization functionality
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 device effectively reduces adverse biological effects of EMR exposure by generating protective frequencies that neutralize harmful effects on humans and animals, as demonstrated by Electro Interstitial Scan (EIS) and Specific Absorption Rate (SAR) data, showing significant normalization of biological parameters and reduction in SAR values.
Implementation Method 1
The solenoid generates incident radiation which results in the polymer emitting electromagnetic oscillations
Implementation Method 2
the polymer emitting electromagnetic oscillations at frequencies that counter adverse effects associated with the subject's exposure to the electromagnetic radiation
Data Source
AI summary
The present invention provides devices and methods that protect against exposure to remote sources of electromagnetic radiation (EMR). As such, the devices provide protection against a plurality of electrical equipment used in ordinary households and employment settings. The device includes a housing, a solenoid operably connected to a driver and a polymer. The solenoid generates incident radiation which results in the polymer emitting electromagnetic oscillations at frequencies that counter adverse effects associated with the subject's exposure to the electromagnetic radiation.


