Device and system and method for remotely transmitting a representative amount of electromagnetic radiation emitted by a material

WO2026167393A1PCT designated stage Publication Date: 2026-08-13KAPITANOVA MARINA
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Filing Date
2025-02-06
Publication Date
2026-08-13

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Abstract

The invention describes a device, a method and a system for remotely transmitting a representative amount of ultra-weak electromagnetic radiation (28a, 28b... 28n) emitted by a material (26a, 26b... 26n). The device comprises: a memory with servers (50) which are combined by communication lines to form a single address space with individual electronic addresses of the servers, each server comprising an electronically shielded carrier with a recorded information matrix (40) containing a representative amount of the specific radiation of a specific material (26a, 26b... 26n), a router (30) which is connected to the communication lines of the single address space, the router (30) being configured to: a. receive remote-controlled orders (10) from customers via a communication network in order to obtain the radiation of a specific material (26a, 26b... 26n), b. select the server (50a,..., 50n) corresponding to the order on the basis of its electronic address, and c. connect the selected server (50) to communication lines for automatically remotely transmitting the information matrix (40) from the electronic carrier (60) of this server to the customer (5).
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Description

[0001] JECK, FLECK & PARTNER mbB P.O. Box 1469 • D-71657 Vaihingen / Enz PATENTER ATTORNEYS Telephone (07042) 9728 - 0

[0002] Fax (07042) 9728 - 11

[0003] A 25691 -PCT - AJ / JJ February 06, 2025

[0004] Evgeny Pavlovich Germanov

[0005] Lazur, Block 125

[0006] 8000 Burgas

[0007] BULGARIA

[0008] - 1 -

[0009] Device and system as well as method for remote transmission of a representative amount of electromagnetic radiation emitted by a material

[0010] The invention relates to a device according to the preamble of claim 1, a method according to the preamble of claim 5 and a system according to the preamble of claim 9.

[0011] WO 2015 / 082964 A1 discloses a device and a method for remotely transmitting a representative quantity of ultra-weak electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n) from a central facility (10) to customer computers located remotely from the central facility (10). A 25691 -PCT - AJ / JJ -2 - 06 February 2024

[0012] The invention aims to provide an improved device for the remote transmission of a representative quantity of electromagnetic radiation emitted by a material, or of characteristic information of the material corresponding to the electromagnetic radiation, as well as an improved method for operating the device and a system based thereon that enables reliable remote transmission of representative quantities of electromagnetic radiation from a variety of different materials.

[0013] The problem is solved by the features of each independent claim. Advantageous embodiments are described in the claims, drawings, and the following description, including those relating to the drawings.

[0014] A first aspect of the invention thus relates to a device for the remote transmission of a representative quantity of ultra-weak electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n), for example from a central facility (10) to customer computers located remotely from the central facility (10), wherein the device:

[0015] a storage device comprising servers (50) which are connected by communication lines to a single address space with individual electronic addresses of the servers, each server comprising an electronically shielded carrier with a recorded information matrix (40) containing a representative amount of the specific radiation of a particular material (26a, 26b ... 26n),

[0016] wherein a representative sample of the electromagnetic radiation (28a, 28b ... 28n) of each individual material (26a, 26b ... 26n) is stored on the electronically shielded carrier of exactly one server (50a, 50b ... 50n) which is assigned only to the respective material (26a, 26b ... 26n),

[0017] a router (30) connected to the communication lines of the single address space, the router (30) being configured to: A 25691 -PCT - AJ / JJ - 3 - 06 February 2024

[0018] 1. To receive remotely controlled orders (10) from customers via a communication network to obtain the recorded representative quantity representing the specific radiation of a particular material (26a, 26b ... 26n),

[0019] 2. to select the server corresponding to the order (50a, 50b ... 50n) based on its electronic address, and

[0020] 3. to connect the selected server with communication lines for the automatic remote transmission of the information matrix (40) from the electronic carrier (60) of this server to the customer (5).

[0021] includes.

[0022] The following can be provided as an alternative or additional option for implementing the device:

[0023] a detection of the electromagnetic radiation (28a, 28b ... 28n) emitted by a multitude of materials (26a, 26b ... 26n), corresponding to characteristic information (30a, 30b ... 30n) of each individual material (26a, 26b ... 26n), and / or

[0024] Storage of a representative quantity of the electromagnetic radiation (28a, 28b ... 28n) of each individual material (26a, 26b ... 26n) on exactly one server (50a, 50b ... 50n) that is assigned only to the respective material (26a, 26b ... 26n) in the central facility (10), and / or electromagnetic shielding (14a, 14b ... 14n) of each individual server (50a, 50b ... 50n) against each neighboring server (50a, 50b ... 50n) of the plurality of servers (50a, 50b ... 50n) in the central facility (10) for the targeted minimization of the mutual interference of the stored representative quantities of the electromagnetic radiation (28a, 28b ... 28n), and / or

[0025] Transmission of the stored representative quantity of electromagnetic radiation (28a, 28b ... 28n) to the customer computer. A 25691-PCT - AJ / JJ - 4 - February 6, 2024

[0026] The servers (50a, 50b ... 50n) can be accessed via communication lines (32a, 32b, ...

[0027] 32n) are connected to the router (34). Each server (50a, 50b ... 50n) is assigned a unique address in the router (34). The router (34) is connected to the communication network (38). The communication network can be the Internet.

[0028] The router (34) receives a request signal (36) sent via the communication network (38) from a customer computer (50) for the representative amount of electromagnetic radiation (28a, 28b ... 28n) of a material (26a, 26b ... 26n) selected by means of the request signal (36).

[0029] The router (34) selects the server (50a, 50b ... 50n) associated with the material (26a, 26b ... 26n) based on the unique address derived from the request signal (36).

[0030] To implement the electronically shielded carriers, the servers can be housed in server protection boxes built according to a specific scheme, with each server being housed in its own server protection box to prevent mutual interference between the respective representative quantity stored on one server and a representative quantity stored on another server in the central facility (10).

[0031] Server protection boxes, also known as isolation boxes, can be manufactured from the appropriate materials according to the following scheme:

[0032] 1. Layer made of plywood, chipboard or wood

[0033] 2nd layer of foam-like soft insulation

[0034] 3rd layer of aluminum foil

[0035] 4th layer of foam insulation

[0036] 5. Layer of plywood, particleboard or wood. A 25691 -PCT - AJ / JJ - 5 - 06 February 2024

[0037] The electronic, preferably electromagnetic, shielding (14a, 14b ... 14n) can encompass the server protection boxes or be encompassed by the server protection boxes.

[0038] An electronic shielding of the carriers advantageously includes server protection boxes. Each server is housed in its own server protection box to prevent mutual interference between the respective representative quantity stored on one server and a representative quantity stored on another server in the central facility (10).

[0039] The electronic shielding of the carriers can include server protection boxes, which are manufactured from the appropriate materials according to the following scheme:

[0040] 1. Layer made of plywood, chipboard or wood,

[0041] 2. Layer of foam-like soft insulation,

[0042] 3rd layer of aluminum foil,

[0043] 4th layer of foam insulation,

[0044] 5. Layer made of plywood, chipboard or wood.

[0045] The server protection boxes can each include additional insulation against environmental influences and influences from neighboring servers (50a, 50b ... 50n) in the central facility (10).

[0046] The storage medium can be configured so that each of the servers (50) can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), the communication lines being selected from the group consisting of the Internet, the power grid, the telephone network, and the radio network. A 25691 - PCT - AJ / JJ - 6 - February 6, 2024

[0047] Each server can contain a storage medium, also called a storage device or simply storage, selected from the group consisting of a CD-ROM, a hard disk drive (HDD) storage, a solid-state drive (SSD) storage and hybrids thereof, wherein the information medium (60) is in the form of a graphics file or an audio file.

[0048] In the device, which can also be referred to as the center, at least one electronic carrier (60) can record the specific radiation of a pharmaceutical drug preparation as a material medium.

[0049] The device, which may also be referred to as a center, may include a ventilation system configured to prevent overheating of the servers (50), the ventilation system taking into account the airflows for efficient cooling.

[0050] A second aspect of the invention relates to a method for remote transmission of an information matrix (40) comprising a representative amount of ultra-weak electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n), having the features:

[0051] Receiving an order to obtain specific radiation of a particular material medium (60) by a router (30), wherein the order is made by selection by a receiver on a specialized website (70), wherein the specific radiation is temporarily recorded in a memory (50) on a carrier specially shielded from external radiation;

[0052] Automatic selection and activation of a suitable server (50) with the carrier shielded from external radiation based on its electronic address in memory (50) by the router (30);

[0053] Establishing communication with the receiver via communication lines; and A 25691 -PCT - AJ / JJ - 7 - February 6, 2024

[0054] Transmission of the information matrix (40) to the receiver's device followed by transmission of the radiation onto a radiation carrier suitable for reception by the receiver.

[0055] To implement the method for remote transmission of a representative quantity of electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n) from a central facility (10) to customer computers (50) located remotely from the central facility (10), the following may be provided alternatively or additionally:

[0056] Detection of the electromagnetic radiation (28a, 28b ... 28n) emitted by a variety of materials (26a, 26b ... 26n), which corresponds to characteristic information (30a, 30b ... 30n) of each individual material (26a, 26b ... 26n),

[0057] Storage of a representative amount of the electromagnetic radiation (28a, 28b ... 28n) of each individual material (26a, 26b ... 26n) on exactly one server (50a, 50b ... 50n) which is only assigned to the respective material (26a, 26b ... 26n) in the central facility (10),

[0058] Electromagnetic shielding (14a, 14b ... 14n) of each individual server (50a, 50b ... 50n) against each neighboring server (50a, 50b ... 50n) of the plurality of servers (50a, 50b ... 50n) in the central facility (10) for the targeted minimization of the mutual interference of the stored representative quantities of electromagnetic radiation (28a, 28b ... 28n), wherein:

[0059] 1. the servers (50a, 50b ... 50n) are connected to a router (34) via communication lines (32a, 32b, ... 32n),

[0060] 2. Each server (50a, 50b ... 50n) is assigned a unique address in the router (34),

[0061] 3. the router (34) is connected to a communication network (38), A 25691 -PCT - AJ / JJ - 8 - 06 February 2024

[0062] 4. the router (34) receives a request signal (36) sent via the communication network (38) from a customer computer (50) for the representative amount of electromagnetic radiation (28a, 28b ... 28n) of a material (26a, 26b ... 26n) selected by means of the request signal (36),

[0063] 5. the router (34) selects the server (50a, 50b ... 50n) assigned to the material (26a, 26b ... 26n) based on the unique address derived from the request signal (36), and

[0064] Transmission of the stored representative quantity of electromagnetic radiation (28a, 28b ... 28n) to the customer computer (50).

[0065] The method can alternatively or additionally be characterized by an arrangement of the servers in server protection boxes built according to a specific scheme, wherein each server is housed in its own server protection box in order to prevent mutual influence of the respective representative set stored on one server by a representative set stored on another server in the central facility (10).

[0066] For example, server protection boxes (isolation boxes) can be manufactured from the appropriate materials according to the following scheme:

[0067] 1. Layer made of plywood, chipboard or wood

[0068] 2nd layer of foam-like soft insulation

[0069] 3rd layer of aluminum foil

[0070] 4th layer of foam insulation

[0071] 5. Layer made of plywood, chipboard or wood

[0072] Electromagnetic shielding (14a, 14b ... 14n) of the carrier against external radiation can be enclosed by server protection boxes. Alternatively, the A 25691 -PCT - AJ / JJ - 9 - 06 February 2024

[0073] Server protection boxes must be enclosed by electromagnetic shielding (14a, 14b ... 14n).

[0074] The server protection boxes can be provided with additional insulation against environmental influences and influences from neighboring servers (50a, 50b ... 50n) in the central facility (10).

[0075] The radiation carrier suitable for reception by the receiver advantageously comprises water. The method may additionally include the following features:

[0076] Transmission of the information matrix (40) to a disk installed in the receiver's device for at least 1 minute; and

[0077] Place a container of water on the disc for at least 1 minute to transfer the radiation to the water.

[0078] The transmission of the information matrix (40) may include the transmission of a graphics file or an audio file.

[0079] The method may provide that the material medium (60) comprises a pharmaceutical preparation or an agricultural preparation.

[0080] Alternatively or additionally, the procedure may include the following:

[0081] Detection of the specific radiation of the specified material medium (60) using a laser beam (step 1);

[0082] Modulation of a carrier wave of the laser beam with the detected specific radiation (step 2); and

[0083] Recording of the modulated carrier wave on the carrier specially shielded against external radiation A 25691 -PCT - AJ / JJ - IQ - February 6, 2024

[0084] A third aspect of the invention relates to a system for the remote transmission of a representative quantity of ultra-weak electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n) in the form of ultra-weak electromagnetic radiation, also referred to as an energy-information signal. The system comprises:

[0085] A publicly accessible specialized website (70) for receiving and transmitting user requests;

[0086] A storage device with servers (50) connected by communication lines to a single address space with individual electronic addresses of the servers, each server comprising an electronically shielded carrier with recorded specific radiation of a particular material medium and an information matrix (40) containing a representative amount of the specific radiation of a particular material (26a, 26b ... 26n); and

[0087] A router (30) connected to the communication lines of the single address space, the router (30) being configured to:

[0088] 1. to receive remotely controlled orders (20) from the specialized website (70) via the Internet for the purpose of obtaining the radiation of a specific material medium (60),

[0089] 2. to select the server (50) corresponding to the order based on its electronic address, and

[0090] 3. to connect the selected server with communication lines for automatic remote transmission of the information matrix (40) from the electronic carrier (60) of the selected server to the customer (5).

[0091] The system can, for example, be a device for the remote transmission of a representative quantity of electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n) from a central facility (10) to Kun-A 25691 -PCT - AJ / JJ - 11 - 06 February 2024

[0092] the computers (50) that are located away from the central facility (10).

[0093] The system may alternatively or additionally have the following features:

[0094] Detection of the electromagnetic radiation (28a, 28b ... 28n) emitted by a variety of materials (26a, 26b ... 26n), which corresponds to characteristic information (30a, 30b ... 30n) of each individual material (26a, 26b ... 26n),

[0095] Storage of a representative amount of the electromagnetic radiation (28a, 28b ... 28n) of each individual material (26a, 26b ... 26n) on exactly one server (50a, 50b ... 50n) which is only assigned to the respective material (26a, 26b ... 26n) in the central facility (10),

[0096] Electromagnetic shielding (14a, 14b ... 14n) of each individual server (50a, 50b ... 50n) against each neighboring server (50a, 50b ... 50n) of the multitude of servers (50a, 50b ... 50n) in the central facility (10) for the targeted minimization of the mutual interference of the stored representative quantities of electromagnetic radiation (28a, 28b ... 28n),

[0097] Transmission of the stored representative quantity of electromagnetic radiation (28a, 28b ... 28n) to the customer computer (50)

[0098] It may be advantageous to provide that:

[0099] the servers (50a, 50b ... 50n) are connected to a router (34) via communication lines (32a, 32b, ... 32n),

[0100] Each server (50a, 50b ... 50n) is assigned a unique address in the router (34),

[0101] the router (34) is connected to a communication network (38), A 25691 -PCT - AJ / JJ - 12 - 06 February 2024

[0102] the router (34) receives a request signal (36) sent via the communication network (38) from a customer computer (50) for the representative amount of electromagnetic radiation (28a, 28b ... 28n) of a material (26a, 26b ... 26n) selected by means of the request signal (36), and

[0103] the router (34) selects the server (50a, 50b ... 50n) assigned to the material (26a, 26b ... 26n) based on the unique address derived from the request signal (36).

[0104] To implement electronically shielded carriers with recorded specific radiation of a particular material medium, the servers can be housed in server protection boxes constructed according to a specific scheme, with each server being housed in its own server protection box to prevent mutual interference between the respective representative quantity stored on one server and a representative quantity stored on another server in the central facility (10).

[0105] The server protection boxes, also known as isolation boxes, can be manufactured from the appropriate materials according to the following scheme, as already described for the device:

[0106] 1. Layer made of plywood, chipboard or wood

[0107] 2nd layer of foam-like soft insulation

[0108] 3rd layer of aluminum foil

[0109] 4th layer of foam insulation

[0110] 5. Layer made of plywood, chipboard or wood

[0111] An electromagnetic shield (14a, 14b ... 14n) of the carrier may encompass or be encompassed by the server protection boxes. A 25691 -PCT - AJ / JJ - 13 - 06 February 2024

[0112] The server protection boxes can each have additional insulation against environmental influences and influences from neighboring servers (50a, 50b ... 50n), for example in the central facility (10).

[0113] The storage (50) can advantageously be configured such that each of the servers (50) can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), the communication lines being selected from the group consisting of the Internet, the power grid, the telephone network and the radio network.

[0114] Each server may contain a shielded carrier, which may also be referred to as a storage device, selected from the group consisting of a CD-ROM, a hard disk drive (HDD) storage, a solid-state drive (SSD) storage and hybrids thereof, wherein the information carrier (60) is in the form of a graphics file or an audio file.

[0115] The system may include a mobile application (70) configured to provide a user interface for selecting, downloading and using the radiation of a specific material medium (60).

[0116] At least one electronic carrier (60) can record the specific radiation of a pharmaceutical drug preparation or an agricultural preparation as a material medium.

[0117] Accordingly, it may be provided that the specific radiation of a pharmaceutical drug preparation or an agricultural preparation can be recorded as a material medium on at least one electronic carrier (60).

[0118] The invention is explained in more detail below with reference to exemplary embodiments. The relative sizes of the individual elements in the figures correspond to A 25691-PCT - AJ / JJ - 14 - February 6, 2024

[0119] The figures do not always reflect the actual proportions, as some shapes are simplified and others are enlarged relative to other elements for better illustration. Identical reference numerals are used for identical or similarly functioning elements of the invention. Furthermore, for the sake of clarity, only those reference numerals necessary for describing the respective figure are shown in the individual figures. The embodiments shown are merely examples of how the invention can be designed and do not represent an exhaustive limitation.

[0120] This group of inventions relates to the applied use of a physical phenomenon discovered in the 1930s. It can be used in all areas of technology, particularly in medicine and medical technology, the pharmaceutical, agricultural, food and chemical industries, as well as in the field of ecology.

[0121] It is known, and there is much objective experimental evidence, that the material environment (MS) – inorganic and organic substances, biological objects (cells, tissues) – can emit ultra-weak electromagnetic waves (28). Some biological objects (MB) interact with others (MB) using this radiation. The intensity of this radiation is about 10 A 18 times weaker than the intensity of daylight (from the work of the founder of biophotonics, the German scientist Fritz Albert Popp).

[0122] Ultra-weak electromagnetic signals are also emitted by various MS substances (e.g., inorganic chemicals). If a substance is biologically active, then the signal transmitted by that substance to the body produces a biological effect. The radiation emitted by each individual drug, including medications, has unique properties. This makes it possible to utilize this phenomenon to exert an effect on the human body similar to the effect of the drug itself. A 25691 -PCT - AJ / JJ - 15 - February 6, 2024

[0123] Modern research in the field of biophotonics shows that the radiation intensity of biological organisms 10 A It is 18 times weaker than the intensity of daylight. This radiation has also been found to have high coherence, which scientists believe promotes the interaction of biological systems and, where applicable, their coordinated work.

[0124] The information radiation (field) of organic, inorganic substances and biological objects, which is electromagnetic in nature, is an oscillating process characterized by extremely low intensity and extremely low frequency. It has properties in the form of frequency, wavelength, and amplitude (or spectrum) that are unique to the object (the radiation source).

[0125] Radiation (field) cannot exist independently of a source or carrier, either temporarily or permanently. Radiation (field) can be transmitted over a distance from the source to media by means of an information matrix (40). Radiation (field) transmitted to a radiation carrier can have a specific effect on a biological object, similar to the effect of the original source. Such an informational influence is harmonious in nature, and its positive regulatory capabilities with respect to humans are quite high.

[0126] In this context, the relevance of the transfer of specific radiation from pharmaceuticals to solid and liquid neutral carriers, for example water and the aqueous environment of living organisms (saline solution), natural or artificial materials, etc., is obvious.

[0127] In particular, water is a medium that is sensitive to the effects of radiation produced by chemical and biological substances, and is the most practical neutral carrier for practical application.

[0128] Countless photos and videos are taken daily with mobile phones and sent via the internet to any location in the world at any time of day. These photos and videos are exact copies of objects. They carry information. A 25691 -PCT - AJ / JJ - 16 - February 6, 2024

[0129] Information copies of substances are also transmitted via internet communication, but the mechanism for sealing their "portrait" is somewhat different. The effect of every drug—medicine, fertilizer, hormone, etc.—is based on a fundamental component called a "biologically active substance" (BAS). This is an active ingredient that, in minimal quantities, has a maximum effect on the affected object, for example, the human body, animals, plants, water, etc.

[0130] BAS is the primary source of information fields. Information fields are the natural background radiation of these biologically active substances. This background radiation results from the vibrations of atoms and other microparticles—the molecular structures that make up all substances in nature. These vibrations form a precisely defined frequency spectrum of information fields that can be recorded and are characteristic of a specific biologically active substance or its analogue, its informational profile.

[0131] By influencing water, the information copy alters the water's structure, its molecular chains, the so-called domains or long-lasting structural elements of water. In doing so, the water does not change its chemical properties, but only its physical properties such as pH value, electrical conductivity, and redox potential. Water becomes a copy of a specific chemical.

[0132] The proposed group of inventions is based on the principle of generating a low-intensity electromagnetic background, the neutral (passive) carrier of which can be water or other substances and materials. The magnitude and specificity of the electromagnetic properties of this background are determined by the effect of the radiation from the original drug, which is recorded on a solid intermediate medium, for example, a laser CD, used for transport or transmission over a distance. The recording or transmission of the radiation from the source substance to the information-A 25691 -PCT - AJ / JJ - 17 - 06 February 2024

[0133] The onszelle can be achieved, for example, by modulating / demodulating the radiation from standard transmitting and receiving devices with an energy-information signal, or according to the method specified in the information source WO 2011 / 062518 A2 (dated 26 May 2011), or in other ways, since various physical influences can ensure the transmission of the radiation from the source substance to the intermediate carrier.

[0134] As an example, this patent uses a method for modulating the carrier wave of a laser beam (1):

[0135] 1. The laser beam (1) as carrier wave (3) excites a material (26a, 26b ... 26n) referred to briefly as substance to emit ultra-weak electromagnetic radiation (28a, 28b ... 28n).

[0136] 2. This results in an ultra-weak modulation of the carrier wave (3) by the ultra-weak electromagnetic radiation (28a, 28b ... 28n).

[0137] 3. An information matrix (40) comprising the ultra-weak electromagnetic radiation (28a, 28b ... 28n) contained in the modulated carrier wave (3) is transferred from the original material (26) to an intermediate medium, such as a CD material or other suitable material, preferably a carrier (60):

[0138] See Fig. 1.

[0139] The carrier (60) of the recorded specific radiation of a particular material environment of a server storage cell can be a CD or a hard disk drive (HDD) (disks with a layer of ferromagnetic material) or a solid-state drive (SSD) (memory chips on semiconductors, flash memory, NAND, EAROM, etc.) or their hybrids (HDD+SSD), and the information matrix (40) of the ultra-weak field of the excited substance can be in the form of a graphic or audio file, wherein at least one electronic carrier contains the specific radiation. A 25691 -PCT - AJ / JJ - 18 - 06 February 2024

[0140] lung of a pharmaceutical drug or an agricultural (chemical) preparation as a material medium.

[0141] The existence and the possibility of recording on a medium and remote transmission by means of an information matrix (40) of specific (individual) weak electromagnetic radiation of organic and inorganic substances (material environment) have been demonstrated and confirmed by a series of studies which form the basis for inventions for which IIS patents No. 6,541,978, 8,405,379, FR No. 2783605, EP No. 1116025, US application No. 2012 / 0024701 A1, PCT / FR99 / 02270 and others have been granted.

[0142] However, existing technical solutions implement means and results that are inaccessible to most interested users. At the same time, the functionality of these physical phenomena is not technically implemented in a way that meets the needs of a broad consumer base.

[0143] The technical problem of the claimed group of inventions, which are linked by a unified inventive concept, is to create an effective method and apparatus for the remote transmission of specific energy-information radiation.

[0144] The technical result relating to the technical center, system, and procedure for the remote transmission of energy-information signals of ultra-weak electromagnetic radiation and the solution to the problem is that rapid selection and effective transmission of energy-information signals over a distance is provided automatically (without operator intervention), simplifying the technology for transmitting and applying information transmitted by energy-information radiation to a remote medium, reducing intervention time in medical applications, and expanding functionality for diagnosing various pathologies and identifying promising treatment areas. A 25691 -PCT - AJ / JJ - 19 - February 6, 2024

[0145] The essence of the invention relating to the technical center for the remote transmission of an energy-information signal in the form of ultra-weak electromagnetic radiation is that the technical center for the remote transmission of an energy-information signal in the form of ultra-weak electromagnetic radiation includes a storage device with servers that are connected by communication lines in a single address space with individual email addresses of the servers, each of which has an electronic carrier of the recorded specific radiation of a particular material environment and an information matrix (40) shielded from external radiation.While a router is connected to the communication lines of a single address space, it is configured to receive commands remotely via the Internet to receive radiation from a specific material environment and to select the appropriate command server by its email address, this server being connected to communication lines for the automatic remote transmission of the information matrix (40) from the electronic carrier of this server to the customer.

[0146] 1. The secondary carrier containing the IC preparation from the technical center cell is transmitted via a general transmitter.

[0147] 2. The secondary carrier receives the drug carrier signal IC via the receiving device.

[0148] Fig. 1

[0149] Preferably, the technical center is configured so that each of the servers can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), for example, the internet, the power grid, telephone and radio networks, and as a carrier of the recorded specific radiation of a particular material environment, each server contains a CD - a hard disk drive or hard disk drive HDD (disks with a layer of ferromagnetic material) or a solid-state drive SSD (semiconductor memory chips, flash memory, NAND, EAROMA 25691 -PCT - AJ / JJ -20 - 06 February 2024

[0150] etc.) or their hybrids (HDD+SSD). The information carrier is created in the form of a graphic or audio file on which the specific radiation of a pharmaceutical drug, medicine, food, chemical, agricultural, plant or other preparation is recorded as a material medium.

[0151] In this case, the server protection boxes (isolation boxes) must be manufactured according to a specific scheme using the appropriate materials:

[0152] I. Layer made of plywood, chipboard or wood

[0153] II. Layer of foam-like soft insulation

[0154] Third layer of aluminum foil

[0155] IV. Layer of foam insulation

[0156] V. Layer made of plywood, chipboard or wood.

[0157] The following Fig. 3 shows a cross-section of an isolation box also referred to as server protection box 14:

[0158] To prevent overheating of the servers, the server protection box 14 (insulation box), shown in cross-section in Fig. 3 and in a detailed view of its wall structure in Fig. 3a), must itself be equipped with a ventilation system of sufficient capacity that takes airflows into account (Type C and B). The essence of the invention relating to a system for the remote transmission of an energy information signal in the form of ultra-weak electromagnetic radiation is that the system for the remote transmission of an energy information signal in the form of ultra-weak electromagnetic radiation comprises the following: A publicly accessible specialized website or mobile application configured to receive and transmit user requests. A website or mobile application is connected to a storage router with servers that are connected by communication lines in a single address space with individual EA 25691 -PCT - AJ / JJ -21 - 06.February 2024.

[0159] The email addresses of the servers are connected, each of which has an electronic carrier shielded from external radiation, which records the specific radiation of a particular material environment or information matrix (40). Simultaneously, said router is connected to the communication lines of a single address space and configured to remotely receive commands from a specific location via the Internet to receive radiation from a specific material medium and to select a corresponding server task via its email address. This server is connected to the communication lines for the automatic remote transmission of the information matrix (40) from the electronic carrier of this server to the customer (user) (Fig. 1).

[0160] Each server 50 can have its own server protection box 14a, ..., 14n. Fig. 1: The nature of the remote transmission of an energy-information signal.

[0161] In this case, the storage is configured so that each of the servers can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), for example the Internet (100), the power grid, telephone and radio networks, and a CD as well as other devices, media or files suitable for this purpose (electromagnetic transmitters, means for transmitting and reproducing sound, image, video, etc.) are used as an intermediate medium suitable for transmitting the information matrix (40) over the Internet.

[0162] In certain cases, the procedure for transmitting the information matrix (40) to the user is implemented in the form of a graphic file. Any user device suitable for this purpose, also referred to as the receiver's device (200), is used as an intermediate medium for receiving the information matrix (40) via the Internet: PC, telephone, smartphone, tablet, electromagnetic transmitters, means for transmitting and reproducing sound, images, video, CDs, DVD discs, etc. In this case, the transmission of A 25691 -PCT - AJ / JJ -22 - 06 February 2024

[0163] Information matrix (40) onto the user's devices for at least 1 minute, followed by placing a container with an end medium suitable for use and utilization by the user, referred to as the radiation carrier (300), onto this device for a period of at least 1 minute in order to transfer the radiation to the specified medium, for example, water or saline solution (Fig. 2).

[0164] Fig. 1: Transmission of the information matrix (40) to the user

[0165] In other specific implementations of the method, the information matrix (40) is transmitted to the user's PC in the form of an audio file, and the information matrix (40) is transmitted from the audio output of the user's device to a coil with a container holding a container suitable for reception by the user, for example, water or a physiological solution, for a period of at least 30 minutes, in order to transfer the radiation to the water or solution. In carrying out the method, pharmaceutical or chemical preparations are preferably used as the material media, including those made from plant materials.

[0166] The procedure can be implemented as follows:

[0167] Before starting the procedure, the user should acquire a device or CD, as well as other suitable devices or media to serve as intermediate carriers for the radiation. CDs, DVDs, and other products capable of receiving and storing radiation and that are convenient to use (electromagnetic transmitters, devices for transmitting and playing back sound, images, and videos – tablets, computers, smartphones, etc.) can be used as intermediate media.

[0168] Sequence of measures to achieve the maximum effect of radiation from chemicals, drugs and medicinal plants: A 25691 -PCT - AJ / JJ -23 - 06 February 2024

[0169] 1. A previously purchased device for use as an intermediate medium is connected to the Internet, or the intermediate medium is inserted into the drive of a PC (computer or laptop), or placed on the system device or keyboard of a PC, telephone, smartphone, or tablet computer.

[0170] 2. The user selects the required radiation on a special website or in a mobile application on their mobile device, according to the descriptions provided or after consulting with specialists via email or telephone.

[0171] 3. After selecting the desired radiation, the user remotely issues a command to transfer the order by clicking the 'Download drug radiation' button. The transmission of the information matrix (40) containing the radiation of the selected drug then begins from the technical center to the connected device or intermediate medium.

[0172] The technical center has servers that record the radiation of various material media - substances - on intermediate carriers.

[0173] From the technical center, an information matrix (40) carrying the radiation of the material environment—a drug or chemical that retains its properties—can be transmitted from any server via communication lines. This information can be sent within seconds over almost any wired or wireless communication line. Upon completion of the transmission, the information matrix (40) is stored on the user's device (200), which serves as an intermediate medium and has received the transmitted "radiation" of the material, for example, a drug. The transmitted properties of the material can be equipped with a user-friendly end carrier, referred to as a radiation carrier (300), such as water (301) in an ordinary glass, honey, fermented dairy products, bread, cosmetics, or saline solution. A 25691-PCT - AJ / JJ -24 - 06 February 2024

[0174] Other possible radiation carriers (300) include - without claiming to be exhaustive - alcoholic solutions (302), Stekloplast (303), aluminium (304), wax / paraffin (305) (Fig. 5).

[0175] To do this, the user must place the intermediate medium containing the downloaded copy of the information matrix (40) on a flat surface and place a glass containing a suitable medium – water (or honey, dairy products, bread, cosmetics) – on top of it, for example, for 30 minutes. The radiation contained in the carrier affects the exposed product, for example, water (or another carrier suitable for ingestion by the user), and apparently alters its supramolecular structure, leading to the formation of coherent domains in the water (containing molecules vibrating in phase), as demonstrated by experimentally confirmed changes in electrical conductivity, a reduction in the work function of electrons, and an increase in the evaporation rate of water (H2O).

[0176] To achieve the best results over the next 24 hours, it is recommended to use only the final carrier (water), which interacts with the intermediate carrier, or other carriers such as honey, fermented dairy products, bread, and cosmetics. Since the volume of the glass is less than a person's daily fluid requirement, you should leave some water in the glass and top it up.

[0177] The radiation of the drug, transmitted by the technical center and received by the user's intermediary device, retains its therapeutic properties for at least 30 days.

[0178] The result is increased application safety, an expansion of the product's application range, and the elimination of side effects through the elimination or reduction of direct chemical or pathophysiological effects when using a form in the form of radiation that reproduces the basic properties of a chemical or biological substance and is obtained using a neutral intermediate carrier (device or disc), which A 25691 -PCT - AJ / JJ -25 - 06 February 2024

[0179] It contains and reproduces the low-intensity energy-informational radiation characteristic of the substance that was transmitted to it.

[0180] It is obvious that the invention can be realized by:

[0181] a) A technical center for the remote transmission of an energy-information signal in the form of ultra-weak electromagnetic radiation, comprising a storage device with servers connected by communication lines in a single address space with individual electronic addresses of the servers, each of which has an electronic carrier shielded from external radiation of the recorded specific radiation of a particular material environment and information matrix (40), while a router is connected to the communication lines of a single address space and configured to receive commands remotely via the Internet,to receive radiation from a specific material environment and to select a server appropriate to the order based on its email address and to connect this server to communication lines for the automatic remote transmission of the information matrix (40) from the electronic carrier of this server to the customer.

[0182] b) The center according to a), wherein it is designed so that each of the servers can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), for example the Internet, the power grid, telephone and radio networks, and each server contains a CD or a hard disk drive HDD (disks with a layer of ferromagnetic material) or a solid-state drive SSD (memory chips on semiconductors) or their hybrids (HDD+SSD) as the carrier of the recorded specific radiation of a particular material environment, and the information carrier is in the form of a graphic or audio file.

[0183] c) The center according to a) or b), wherein at least one electronic carrier contains the specific radiation of a pharmaceutical drug as the material medium. A 25691 -PCT - AJ / JJ -26 - 06 February 2024

[0184] d) A system for the remote transmission of an energy-information signal in the form of ultra-weak electromagnetic radiation, comprising a publicly accessible specialized website or mobile application for receiving and transmitting commands from users, connected to a storage router with servers connected via communication lines in a single address space with individual email addresses of the servers, each of which has an electronic carrier of the recorded specific radiation of a particular material environment and information matrix (40) shielded from external radiation, while the said router is connected to the communication lines of a single address space and configured to remotely receive commands from a particular location via the Internet,to receive radiation from a specific material environment and to select the corresponding task from a server based on its email address, this server being connected via communication lines for the automatic remote transmission of the information matrix (40) from the electronic carrier of this server to the customer. As an advanced version of the mobile application, a fully customized user interface of a mobile phone operating system (smartphone) can be used to select, download, and utilize the radiation from a specific material environment (IC information matrix (40)).

[0185] e) The system according to d), wherein the storage is configured so that each of the servers can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), for example, the Internet, the power grid, telephone and radio networks, and wherein, as the recorded medium of specific radiation from a particular material environment, each server contains a CD or a hard disk drive (HDD) (disks with a layer of ferromagnetic material) or a solid-state drive (SSD) (memory chips on semiconductors) or their hybrids (HDD+SSD), and the information carrier is in the form of a graphic or audio file. A 25691 -PCT - AJ / JJ -27 - 06 February 2024

[0186] f) The system according to d) or e), wherein at least one electronic medium contains specific radiation of a pharmaceutical drug as a material medium.

[0187] (g) A method for the remote transmission of an energy-information signal in the form of ultra-weak electromagnetic radiation, wherein the receiver selects a preliminary command on a special website to receive specific radiation from a particular material environment and transmits it via a PC recording of the radiation stored on a medium protected from external radiation, suitable for transmitting the information matrix (40) over the Internet, transmission of each order to the technical center, storage via the Internet, automatic selection in a single address space and activation of the corresponding server with the radiation carrier at its email address in memory via a router,Establishing communication with the user via communication lines and transmitting the information matrices to the receiver's PC, followed by transmitting the radiation to an intermediate medium suitable for reception by the user.

[0188] (h) The method according to (g), wherein it uses a storage device in the form of a technical center with a group united by communication lines in a single address space with individual email addresses of servers, each of which is equipped with a radiation carrier for a specific material environment and with a router for automatic server selection with the appropriate radiation carrier at its electronic address, while the storage is configured so that each of the servers can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), for example the Internet, the power grid, telephone and radio networks.

[0189] i) The method according to g) or h), wherein a CD or DVD and / or a compact disc is used as the medium suitable for transmitting an information matrix (40) over the Internet. A 25691 -PCT - AJ / JJ -28 - 06 February 2024

[0190] j) The method according to g), h) or i), wherein the information matrix (40) is transmitted to the user in the form of a graphic file.

[0191] k) The method according to g), h), i) or j), wherein a CD or DVD and / or a CD on the user's PC is used as an intermediate medium suitable for receiving an information matrix (40) via the Internet.

[0192] l) The method according to g), h), i), j) or k), wherein the information matrix (40) is transmitted to a disc installed in the user's PC for at least 1 minute and a container with a medium suitable for receiving is then placed on this disc. The user must transmit the radiation to a specific medium, for example water or saline solution, for a period of at least 1 minute.

[0193] m) The method according to g), h), i), j), k) or I), wherein the information matrix (40) is transmitted to the user's PC in the form of an audio file transmission. n) The method according to m), wherein the information matrix (40) is transmitted from the audio output of the user's PC to the coil with a container containing a medium suitable for reception by the user, for example water or saline solution, which is placed there for a period of at least 30 minutes in order to transfer the radiation to the water or solution.

[0194] o) The method according to g), h), i) or j), wherein other suitable devices are used as an intermediate medium suitable for receiving the information matrix (40) on the user's PC via the Internet and / or a CD: smartphones, tablets, mobile computers, projectors and other means of image transmission and display.

[0195] p) The method according to g), h), i) or j), wherein other suitable devices are used as an intermediate medium suitable for receiving the information matrix (40) on the user's PC via the Internet and / or a CD: Smart-A 25691 -PCT - AJ / JJ -29 - 06 February 2024

[0196] phones, tablets, mobile computers, projectors and other means of transmitting and reproducing sound to the user's end devices.

[0197] q) The method according to g), h), i), j), k), I), m), n), o) or p), wherein pharmaceutical or agricultural preparations, including those made from plant raw materials, are used as the material medium.

[0198] Additional advantages over the state of the art, beyond the complete solution of the problem posed and / or beyond the advantages mentioned above for the individual features, are listed below.

[0199] The invention was verified through several experiments:

[0200] First year:

[0201] I. With information spectral copies containing data for TWO peanut herbicides.

[0202] II. In the production of bell pepper seedlings with six spectral copies of biological and chemical substances (at two sowing dates).

[0203] I. Experiments with peanuts

[0204] In the IRGR field, two plots sown with peanuts were treated immediately after sowing with water enriched with spectral information copies of two different active ingredients from the contact herbicide group. An additional control treatment with pure water was also carried out. The results from the experimental plots were recorded between 25 and 30 days after crop emergence.

[0205] Results:

[0206] It was found that in both variants treated with IR soil herbicides, the efficacy of the IR application was approximately 95% (there were some weed shoots), and in the control, weed control was significant: A 25691 -PCT - AJ / JJ - 30 - 06 February 2024

[0207] II. Experiments with bell peppers

[0208] A). 1st appointment

[0209] At a specific location, an experiment with six variants and one control was conducted on July 24th (due to high ambient temperatures). Pepper seeds were sown in a peat mixture (3:1) in plastic terrines, each containing 45 nests. Four terrines were used for each variant, and these were thoroughly watered after sowing. Six data carriers containing information copies (spectral properties of substances) were used for the analysis.

[0210] 1. Atony

[0211] 2. Indole butyric acid

[0212] 3. Nimoil

[0213] 4. Tricontanol

[0214] 5. Humic acids

[0215] 6. CCC (Chlorocholine chloride)

[0216] 7. Check (water without IR)

[0217] After sowing, a 1.5-liter plastic bottle of water was placed on top of each disc to "charge" it for 1-2 hours. This water, containing informative spectral copies, was then poured into the corresponding variants (terrines containing bell pepper seeds). To prolong the effect of the information copies, each of the carriers (CDs) of the spectral information was placed in the center beneath the terrines of each variant. A gap was left between the individual variants to prevent mutual interference between the ICs.

[0218] The seeds germinated normally in all variants. Recordings began on July 31st, and the mass germination phase was observed on August 3rd. Due to the high A 25691 -PCT - AJ / JJ - 31 - 06 February 2024

[0219] Mass germination occurred simultaneously in all variants at the same air temperature, making it difficult to determine which variant was superior at this stage. Due to the very high temperatures, there was later an uneven thinning of the seedlings in both variants, and this experiment was not completed. Therefore, we only drew conclusions from the following observations, but it was found that the seedlings in terrines treated with water containing the IR substances indolebutyric acid, nimoyl, and CCC (chlorocholine chloride) were in the best condition and showed the best development.

[0220] In the 5th variant, the number of plants that died after germination was highest (35-45%).

[0221] B). 2nd appointment

[0222] On September 5th, a similar experiment to the one described above began with bell peppers, but in a steel-glass growing environment. On September 5th, the seeds were sown in terrariums on concrete surfaces. For the bell peppers with the second sowing date, six discs containing information spectral copies were also used. The arrangement of the variants and their treatment with "charged" water were analogous to the first experiment.

[0223] Table 1 shows that on the second day of sowing the peppers, September 14th, germination was only observed in variants 2 and 4. However, on September 16th, mass germination was only recorded in variant 3 (IR neem oil), and one day later in all other IR-treated variants.

[0224] The experimental results according to the invention were obtained using a device, a method, and a system according to the claims, in particular the independent claims. A 25691 - PCT - AJ / JJ - 32 - February 6, 2024

[0225] Table 1. Growth dynamics of the first leaf in wheat after treatment with the growth regulator kinetin before sowing, using spectral information copying (IS) and quantum entanglement.

[0226]

[0227]

[0228] Legend: 1 - Control (untreated) isolated seed; 2 - Quantum entanglement / the seed, after overwriting an information copy (IC) at a distance of 3 m - direct overwriting of an information copy (IC); 3 - direct overwriting of the information copy using SD; and 4 - Quantum entanglement / seed at a distance of 60 km, after overwriting the information copy (IC)

[0229] Table 2. Laboratory germination and biometric measurements of wheat after treatment with the growth regulator kinetin prior to sowing, using spectral information copying (IS) and quantum entanglement

[0230]

[0231] A 25691 -PCT - AJ / JJ - 33 - February 6, 2024

[0232] Legend: 1 - Control (untreated) isolated seed; 2 - Quantum entanglement / the seed, after overwriting an information copy (IC) at a distance of 3 m - direct overwriting of an information copy (IC); 3 - direct overwriting of the information copy using SD; and 4 - Quantum entanglement / seed at a distance of 60 km, after overwriting the information copy (IC)

[0233] Table 3. Accumulation of fresh root and aboveground biomass (first leaf) in wheat after treatment with the growth regulator kinetin before sowing using spectral information copy (IC) and quantum entanglement

[0234]

[0235] Legend: 1 - Control (untreated) isolated seed; 2 - Quantum entanglement / the seed, after overwriting an information copy (IC) at a distance of 3 m - direct overwriting of an information copy (IC); 3 - direct overwriting of the information copy using SD; and 4 - Quantum entanglement / seed at a distance of 60 km, after overwriting the information copy (IC)

[0236] Results:

[0237] The differences between the variants when using IR are evident from the results shown in Table 1. The differences compared to the control group in this experiment amount to up to 5 days.

[0238] Conclusions from the data of the first year

[0239] - The results of aqueous application of information spectral copies of soil herbicides under field conditions for peanuts show the positive dynamics of the influence of IR on weed emergence and a certain effect, A 25691 -PCT - AJ / JJ -34 - 06 February 2024

[0240] which can be achieved when they are included as an element of the technology.

[0241] - In the case of peppers, research is still in its early stages (cultivation of seedlings), but here too a positive effect on the development rate is observed when informative spectral copies of indolebutyric acid, nimoyl and CCC are used.

[0242] - Agricultural production is not possible without water, and this opens up enormous possibilities for the study and integration of water, which contains informative spectral copies of various biological and chemical substances, into every single production technology.

[0243] The following year, testing of information spectral copies (IR) continued:

[0244] I. For peanuts in the field: Testing of different concentrations of 4 soil herbicides (Table 2).

[0245] Variants with tested IR of 4 herbicides at different dilution levels (concentration)

[0246] Variants of the preparation

[0247] 1 Trifluralin

[0248] 2 Trifluralin

[0249] 3 Metolachlor

[0250] 4 Metolachlor

[0251] 5 Pendimethalin

[0252] 6 PendimethalinA 25691 -PCT - AJ / JJ - 35 - February 6, 2024

[0253] 7 Imazethapyr

[0254] 8 Imazethapyr

[0255] After treatment with IR herbicides, there is no weed in the row, unlike in the control group:

[0256] II. Experiments with bell peppers

[0257] A) Pepper seedlings of the variety "Kurtovskaya kapiya" were grown in a waterbed in a steel-glass grower and planted in the field to study in advance the effect of the IR application of complex mineral fertilizers on the biological manifestations of peppers under field conditions.

[0258] For field trials with IC fertilizer tests:

[0259] • For fertilizing the peppers before planting, 500 l / ha of worm compost (organic fertilizer from Californian worms) was used as the main base fertilizer.

[0260] • Multi-nutrient fertilizers NPK 10-45-10, NPK 15-10-30, and calcium nitrate Ca(NO3)2 are used as vegetative nutrients, applied according to the scheme via fertigation. Part of the crop is irrigated with "structured" water containing the IR of the aforementioned fertilizers.

[0261] Fig. 6

[0262] B) Experiments in the greenhouse with IR substances.

[0263] Results of a study on the influence of IR on the occurrence of certain pheno-phases in bell peppers grown in a waterbed in 2019 (date 1):

[0264] Biometric indicators of 30-day seedlings (peppers) using IR of various biological and chemical substances:

[0265] ConclusionsA 25691 -PCT - AJ / JJ - 36 - February 06, 2024

[0266] In the second year of peanut production, the results of IR-treated soil herbicide vanantene were encouraging and showed significant benefits of IR application. Currently, there are still some questions regarding the optimization of IR-applied herbicide dosages, but the research is ongoing.

[0267] - In experiments involving the cultivation of bell pepper seedlings in a waterbed using infrared radiation from various substances (biological and chemical), it was found that the seedlings of the variant treated with indolebutyric acid exhibited better agronomic indicators (fresh biomass, number and weight of leaves, and stem diameter) compared to the control. These differences were statistically significant. This variant also confirmed the trend toward faster development of young plants observed in 2018; however, due to the higher temperature background, the differences this year amounted to up to two days.

[0268] The invention is not limited by the description based on the exemplary embodiments. Rather, the invention encompasses every new feature as well as every combination of features, which in particular includes every combination of features in the claims, even if that feature or combination itself is not explicitly specified in the claims or exemplary embodiments.

[0269] The invention is particularly commercially applicable in the field of providing internet services.

[0270] The invention is particularly commercially applicable in the agricultural sector as well as in the food and beverage industry, where a variety of specific materials are handled.

[0271] The invention has been described with reference to preferred embodiments. However, it is conceivable to a person skilled in the art that modifications or changes can be made to the invention without departing from the scope of protection of the following claims. A 25691 - PCT - AJ / JJ - 37 - February 6, 2024

[0272] Orange juice acidity control 39.64

[0273] IC Glucophage 46.58

[0274] IC omez 51.76

[0275] Coca-Cola acidity

[0276] Control 61

[0277] IC omez 46.6

[0278] IC-Allopurinol 48.25

[0279] Mineral water p / N

[0280] Hisar

[0281] Control 9.15 IC Ursosan 9.25

[0282] Wodna Banja

[0283] Control 9.2 IC-Prozac 8.8 IC Dilacor 8.9

[0284] Moisture in honey

[0285] Control 17%

[0286] IC Doxycycline 16.2%

[0287] IC Weight Loss 15.8% A 25691 - PCT - AJ / JJ - 38 - February 6, 2024

[0288] 1C Diflican 15.8%

[0289] 1C Noni juice 17%

[0290] IC Glucophage 17.4%

[0291] Red wine polyphenols mg / l

[0292] Control 1.6

[0293] IC Heptral 4

[0294] IC Omez 2.1

[0295] IC Allopurinol 1.9

[0296] Rosewater control IC rejuvenation

[0297] p / N 4.9 5.1

[0298] EC, ppm 0027ms / cm 0.0012 0009ms / cm,0005 ORP 198mv lllmv

[0299] The studies were conducted in independent, reputable laboratories.

[0300] When different IC drugs (and not only these) are transferred into different liquids, their physical parameters change. We therefore investigated: p / N, conductivity, ORP, and the amount of polyphenols / antioxidants.

[0301] The experimental liquids were held on the SR with IC for up to 30 minutes. Afterwards, changes in physical parameters convincing enough to confirm that IC alters the structure of the liquids are reported. A 25691 -PCT - AJ / JJ - 39 - 06 February 2024

[0302] changed on a physical level.

Claims

A 25691 -PCT - AJ / JJ -40 - February 06, 2024 Patent claims 1. Device for remote transmission of a representative quantity of ultra-weak electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n) is emitted, wherein the device: a storage device comprising servers (50) which are connected by communication lines to a single address space with individual electronic addresses of the servers, wherein each server (50) comprises an electronically shielded carrier (60) with a recorded information matrix (40) containing a representative amount of the specific radiation (28a, 28b ... 28n) of a particular material (26a, 26b ... 26n), a router (30) connected to the communication lines of the single address space, the router (30) being configured to: a) to receive remotely controlled orders (10) from customers via a communication network (100) for the acquisition of radiation of a specific material (26a, 26b ... 26n), b) to select the server (50a, 50b ... 50n) corresponding to the order based on its electronic address, and c) to connect the selected server (50a, 50b ... 50n) with communication lines for the automatic remote transmission of the information matrix (40) from the electronic carrier (60) of this server (50) to the customer (5) includes.

2. Device according to claim 1, wherein an electronic shielding of the carriers (60) comprises server protection boxes (14), each server (50) being housed in its own server protection box (14) to prevent mutual interference between the respective representative quantity stored on one server (50) and a representative quantity stored on another server (50) in the central unit (10). A 25691-PCT - AJ / JJ -41 - February 6, 2024 3. Device according to claim 1 or 2, wherein an electronic shielding of the carriers (60) comprises server protection boxes (14a, ... 14n) which are manufactured from the corresponding materials according to the following scheme: I. Layer made of plywood, chipboard or wood, II. Layer of foam-like soft insulation, Third layer of aluminum foil, IV. Layer of foam insulation, V. Layer made of plywood, chipboard or wood.

4. Device according to claim 1, 2 or 3, wherein each server (50) contains a carrier (60) selected from the group consisting of a CD-ROM, a hard disk drive (HDD) storage, a solid-state drive (SSD) storage and hybrids thereof, and wherein the information matrix (40) is in the form of a graphic file or an audio file.

5. Method for remote transmission of an information matrix (40) comprising a representative amount of ultra-weak electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n) having the following characteristics: Receiving an order to obtain an information matrix (40) of a specific material (26) by a router (30), wherein the order is made by selection by a receiver on a specialized website (70), wherein the specific radiation is temporarily recorded in a memory (50) on a carrier specially shielded from external radiation; Automatic selection and activation of a suitable server (50) with the carrier (60) shielded from external radiation based on its electronic address in memory (50) by the router (30); Establishing communication with the receiver via communication lines (100); and A 25691-PCT - AJ / JJ -42 - 06 February 2024 Transmission of the information matrix (40) to the device (200) of the receiver with subsequent transmission of the radiation onto a radiation carrier (300) suitable for reception by the receiver.

6. Method according to claim 5, wherein an electromagnetic shielding of the carrier (60) against external radiation is enclosed by server protection boxes (14) or the server protection boxes (14) are enclosed by the electromagnetic shielding of the carrier (60).

7. Method according to claim 6 or 7, wherein the radiation carrier (300) suitable for reception by the receiver comprises water (301), with the additional features: Transmission of the information matrix (40) to a disk installed in the device (200) of the receiver for at least 1 minute; and Placing a container with the water (301) on the disc for at least 1 minute to transfer the radiation to the water (301).

8. Method according to claim 6, 7 or 8, wherein the transmission of the information matrix (40) comprises the transmission of a graphic file or an audio file.

9. System for the long-distance transmission of a representative quantity of ultra-weak electromagnetic radiation (28a, 28b ... 28n) emitted by a material (26a, 26b ... 26n) is emitted in the form of ultra-weak electromagnetic radiation, comprising: a publicly accessible specialized website (70) for receiving and transmitting user requests; a storage device with servers (50) connected by communication lines (100) to a single address space with individual electronic addresses of the servers (50), each server (50) having an electronically shielded carrier (60) with recorded specific radiation of a particular material (26) and an A 25691 -PCT - AJ / JJ -43 - 06 February 2024 The information matrix (40) comprises a representative amount of the specific radiation of the particular material (26a, 26b ... 26n); and a router (30) connected to the communication lines of the single address space, the router (30) being configured to: a) to receive remotely controlled orders (20) from the specialized website (70) via the Internet (100) to obtain the information matrix (40) of a specific material (26), b) to select the server (50) corresponding to the order based on its electronic address, and c) to connect the selected server with communication lines for automatic remote transmission of the information matrix (40) from the electronic carrier (60) of the selected server to the customer (5).

10. System according to claim 9, wherein an electromagnetic shield of the carrier (60) comprises or is comprised of server protection boxes (14).

11. System according to claim 9 or 10, wherein the memory is configured such that each of the servers (50) can be connected to wired or wireless communication lines suitable for targeted transmission of the information matrix (40), wherein the communication lines are selected from the group consisting of the Internet (100), the power supply network, the telephone network and the radio network.

12. System according to claim 9, 10 or 11, wherein each server (50) contains a shielded carrier (60) selected from the group consisting of a CD-ROM, a hard disk drive (HDD) storage, a solid-state drive (SSD) storage and hybrids thereof, and wherein the information matrix (40) is in the form of a graphics file or an audio file. A 25691-PCT - AJ / JJ -44 - February 6, 2024 13. System according to any one of claims 9 to 12, comprising a mobile application (70) configured to provide a user interface for selecting, downloading and using the information matrix (40) of a specific material (26).

14. System according to any one of claims 9 to 13, wherein at least one electronic carrier (60) records the specific radiation of a pharmaceutical drug preparation or an agricultural preparation as a specific material (26).