Assorted and Sundry Hypotheses in Physics and Medicine

#21
PLCoulomb Offline
Publication #25 -  On the Nature of Triboelectric Effects (2026 July 18)

Synopsis:

Current physical doctrine holds that the generation of electrostatic energy is predicated upon the transfer of electrons from one material into another, a la a sponge absorbing water or silly putty removing a thin layer of newsprint from a newspaper which can later be imprinted upon a blank piece of paper.

This phenomenon, although it has been documented for centuries, is poorly understood.

In order to understand the actual dynamics of triboelectricity and SASE effects (one in the same, I would argue,) one has to understand that electrons can be effectively duplicated under the condition that their charge becomes physically segregated from their associated magnetic vortex (i.e. the chargon and the spinon come out of alignment.) This is currently believed to be possible only in extremely unusual circumstances, but I would suggest that it is a common phenomenon central to electrostatic energy generation.

When mercury is agitated within a glass tube under vacuum as in the Picard experiment, there is no atmosphere to support photovoltaic conversion. The Gamma generated by this friction is not immediately converted into an electron and, when it is converted into an electron, it strikes mercury which is already carrying an overall negative charge. This results in electrons already in stable orbits being converted into photons in the visible spectrum and in the documented phosphorescent effect. Mercury tends to conduct heat well, but conducts electrons poorly. Atmosphere tends to conduct heat poorly but tends to conduct electrons freely, leading to arcing through atmosphere when significant charge imbalances exist and a circuit is created.

Therefore, when we look at Jean Picard’s observations in this new light, we can understand atmosphere as a dampener of Gamma energy as even nitrogen and oxygen can act both as photovoltaic materials vis-à-vis Gamma energy and as a diffusive medium with respect to electrons.
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#22
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Publication #26 -  High-Efficiency Piezo-Electric Mechanism for Acousto-Electric Conversion Applicable in the Context of Ultra-Cold Thermo-Acousto-Electric Converters (2026 July 21)

Synopsis:

Piezo-Electric plates, particularly those designed to function at extremely low temperature could enjoy an efficiency enhancement through the incorporation of sandwiched layers of yttrium molybdate printed as a mesh upon more traditional piezo-electric materials such as silicon oxide, particularly if that mesh is offset in its alignment.

As a result of the Negative Thermal Expansion property of yttrium molybdate, the material, although applied at a high temperature, would expand as it cools, exerting steady mechanical torsion upon the silicon oxide. As a result of the purposeful misalignment, the silicon oxide would be not merely be compressed, but would be subjected to torsion. This is important for reason that only under the condition of asymmetrical application of mechanical stresses are asymmetries in electron clouds produced.

Aside from enhancing photovoltaic conversion efficiency, this very sort of asymmetry would cause the acoustic energy present in the silicon oxide or other piezo-electric materials to be alternatively either focused or diffused, naturally resulting in ambient acoustic energy being converted into electrical energy at greater efficiency in the areas of the material featuring acoustic energy of above a particular threshold of magnitude. This is a bit like wringing out a sponge to get the last drops of water out of it.

In an ultra-cold material, the expansion of the yttrium molybdate relative to the silicon oxide would be even greater and so would be, therefore, the efficiency of the conversion of acoustic energy into electrical impulses. This may have a variety of applications, but the one of most immediate interest to this author is energy-generation in the context of thermo-acousto-electric converters, which naturally maintain a temperature of approximately 35K.

Although this is a subtle effect, with a sufficiently efficient piezo-electric mechanism; preferably one which thrives under ultra-cold conditions naturally brought about by thermo-acoustic conversion mechanisms of the aforementioned nature; we can ensure the efficient conversion of heat into electricity and can generate meaningful amounts of electricity from the soil or from the air, even on a cold winter’s day.

This mechanism may also be applied toward the creation of highly sensitive pressure sensors or for the purpose of creating data interfaces in computing systems which leverage both electronic and acoustic components and require a mechanism for converting subtle acoustic energy back into electrical impulses.
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#23
PLCoulomb Offline
Publication #27 - Soliton-Guided Counterlevitation Vapor Deposition and Bonding (2026 July 25)

Synopsis:

Two important methods of manufacturing nano-scale structures can be combined with the aid of finely-controlled soliton waves; soliton waves being defined as flat walls of electromagnetic energy in which the Magnetic Norths of photons are forced to orient themselves consistently in the direction of angular momentum. This can be achieved using a combination of glass nano-spheres the diameter of which are matched to the phase height of the frequency of light used and by using a waveguide in order to ensure that each wave of light strikes each sphere “squarely.” This already has a wide variety of identified applications ranging from propulsion to reactive armor to nano-printing of inks for anti-counterfeiting.

The substrate would be placed upon a strong solid-state magnet which would force any metallic vapors in a vapor deposition chamber to levitate above the substrate, preventing bonding.

Between phases of vapor replenishment within the chamber, a soliton emitter plate consisting of billions of glass nanospheres arrayed in a grid would be lowered into place so as to come into proximity with the levitating vapor layer.

In the areas in which wire or transistor formation is desired, light is directed through the corresponding nano-spheres and is solitonized. These waves are translated into kinetic energy which pushes the individual vapor atoms into the substrate, having counteracted the repulsive force of the solid-state magnet below the substrate. The vapor, when it makes contact with the substrate, bonds as a result of both the introduction of current via the soliton wave (the photovoltaic effect) as well and due to the resultant electrostatic attraction created. Although this bond is weak, it grows stronger as a the vapor cools.

This introduces the possibility of constructing a state-of-the-art processor using an additive method combining CVD and Additive Manufacturing techniques which does not require etching steps, photomasks, photoresists, washing steps, or any of the other costly and time-consuming steps required for the photofabrication of processors at the present.
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#24
PLCoulomb Offline
Publication #28 - Eicosapentaenoic Acid’s Role in Ensuring Symmetrical Diffusion of Electrolytes, mRNA and Oxygen Within Biological Tissues Rooted in Arch Structure and Electroweak Repulsion (2026 July 27)

Synopsis:

The manifold health benefits of Eicosapentaenoic Acid (EPA) are not readily explained through cellular biology and metabolism. This author proposes that the associated health benefits of this compound are rooted not in the metabolism of this molecule by individual cells, but in the way in which the arch shape of the molecule affects the distribution of electrolytes and other biological compounds including mRNA and hemeglobin through the electroweak force, making these health benefits as much a manifestation of physics as per se chemistry.

EPA, through electroweak repulsion, diffuses and turbulates salts and proteins, preventing undesired concentration of these powerful bio-active molecules.  This ameliorates conditions ranging from allergic reactions to hangovers to bipolar disorder, to a certain extent.

EPA’s role in reducing cholesterol is also of note and is also, I would posit, an indirect consequence of its electroweak repulsive effects and not due to metabolic effects. EPA supplementation ensures more symmetrical oxygenation and reduces the liver’s perception that oxygen levels are low by ensuring that both hemoglobin as well as the mRNA signals which herald hypoxia are transported efficiently, preventing the heme compensatory reaction, which I postulate is the true culprit in cholesterol overproduction.  Heme, which is composed, in part of vinyl molecules, is chemically similar to cholesterol and the liver produces excess cholesterol as a byproduct of the process of producing heme, which is overproduced in response to the perception of hypoxia.
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#25
PLCoulomb Offline
Publication #29 - Cellular Membrane Rupturing via Acoustic Vortex Induction and Shearing for Pasteurization and Tumor Remediation (2026 July 28)

Synopsis:

Due to limits on the ability to focus acoustic energy over substantial distances, particularly through fluidic media, the possibility of using acoustic energy as a means of pasteurization and even as a means of remediating tumors by rupturing cell membranes has not been adequately explored.

The ability to render water safe to drink at lower cost than either HPP or traditional pasteurization would have a variety of benefits, but the effort to achieve this goal could, in addition to making sterilization of drinking water more affordable, have important medical benefits in the field of oncology.

When one considers that pressure is relative to the area over which it is exerted (this is why we measure pressure in terms of pounds per square inch) we can leverage ambient atmospheric pressures of merely 14.7 PSI in order to exert far greater pressures on focused areas with the judicious use of acoustic energy. Microscopic organisms and cells; as they are orders of magnitude smaller than one square inch; if they were subjected to all of the ambient pressure intended for materials in their immediate environs, then, for a brief moment, one could force that ambient pressure to be shunted into extremely focused areas by applied modest, carefully structured energy to the surrounding environment.

All that would really be necessary to destroy an undesired cell of any nature would be to create a modest-size tear in its membrane, but in such a way that surrounding tissues would remain unharmed. Acoustic energy, when highly collimated, of high amplitude and when contributed from ternary sources could be leveraged in order to allow for a technique which might be termed ambient pressure collimation via acoustic vortex generation to be applied both for the purposes of the production of safe drinking water and for oncological medical applications.
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#26
PLCoulomb Offline
Publication #30 - Negative Discrepancy Gravitational Detection of Photons to Enable Repeated Measurement and Integrated Sensorlenses for Omnifocal Capability (2026 July 31)

Synopsis:

This mechanism would exploit the tendency of photons to absorb gravitational energy so that the properties of the photons could be inferred much as the presence of electron flow through a wire can be inferred by measuring the magnetic field this flow generates through the Hall Effect.

Not only would this allow for individual photons to be detected and quantified, it would allow them to be detected and quantified without destroying them. Importantly, this opens up the possibility of creating what might be termed a sensorlens, which is a mechanism which integrates photon detection mechanisms of nano- scale within a lens or series of lenses. This would enable images to be constructed in which resolution as well as the necessary exposure time are not adversely affected, but which would allow individual images to be constructed in which all components of the image, both proximal and distal, would be in perfect focus.
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#27
PLCoulomb Offline
Publication #31 -  Root Cause of Acid Reflux Disease in Pyloric Value Rather than Lower Esophageal Sphincter; in Failure to Open Rather than Lack of Tensity (2026 August 6)

Synopsis:

In this publication, this author intends to re-frame acid reflux disease, also known as GERD, as a disorder of the pyloric value (PV) rather than the lower esophageal sphincter (LES.)

When overpressure is generated in the stomach, it allows for acids to seep past even a taught LES; an overpressure which exists only because the typical pressure release mechanisms (sc. the release of food and gases heavier than air into the duodenum and the release of gases lighter than air through belching) are not functioning properly.

In support of this hypothesis, we observe that the risk of GERD increases with the accumulation of visceral fat deposits which would necessarily put pressure on the stomach from the exterior, increasing the relative pressure of gases within. Artificial carbonation sources such as Alka-Seltzer have long been documented to alleviate heartburn, but this relief comes not so much from carbonates in the Alka-Seltzer as much as from the overpressure caused by the carbonation, which is sufficient that it forces the muscles to work to open the LES (also aided by stimulation from cavitations,) allowing all of the original overpressure to be relieved in exchange for permitting an extreme overpressure, if for a short period. Alka-Seltzer may also stimulate PV nerves when it lands in the bottom of the stomach. It might make sense to experiment with taking small quantities of the Alka-Seltzer material and encapsulating it in pill-form so that its carbonation is released directly at the bottom of the stomach. This could help to correct the disorder of incomplete stomach emptying. A person with GERD might take such a pill 30 minutes after a meal in order to ensure that their stomach is in an empty state between meals.

Relieving chemical strain caused by food contact with the pyloric value, even with short-term artificial interventions, would, by ensuring complete emptying of the stomach, help to break the cycle of nerve desensitization in both the PV and the LES as well as have the effect of quite literally shrinking the stomach.
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#28
PLCoulomb Offline
Publication #32 - The Use of Brillouin Scattering Diagnostic Equipment at End-User Nodes for Covert Communication with Other Fiber Users within Local Area via Acoustic Manipulation of Fiber (2026 August 10)

Synopsis:

It is well-known that ISPs use various analysis methods in order to diagnose problems with fiber-optic lines which include Rayleigh, Raman and Brillouin scattering analysis coupled with interferometry to localize faults in fiber optic lines.

This introduces the possibility of users either with or without access to telecommunications company facilities transmitting data without sending packets through the network in the traditional sense. It would be possible, through the introduction of acoustic energy into a section of fiber-optic cable, for data to be introduced to and exfiltrated from, for example, secure subsections of networks without the transmission of any packets which would be of concern to system administrators/analysts. It would also allow for users of any given Internet service living along the same lengths of fiber to communicate with one-another by attaching equipment designed to introduce vibrations into fiber-optic cables along shared backbones and arranging for the recipient to use their own independently-operated test equipment to extrapolate the data intended for transmission through analysis of Brillouin Scattering.

As this data would be easier to extrapolate locally, it would be nearly impossible for an ISP to use its own test equipment to monitor these communications from their own facilities without installing special taps in areas suspected of operating these surreptitious communications devices, which would attach like a sheath around small sections of fiber.
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#29
PLCoulomb Offline
Publication #33 - Neural Pattern Identification and Reinforcement via Precision Introduction of Helically Injected Near-IR Light for Memory Retrieval, Conversion and Implantation (2026 August 11)

Synopsis:

When we talk about Brain-Computer Interfaces (BCI,) we are usually not talking about a two-way street, but rather, simply allowing a computer to interpret brain signals.  Although it’s not inaccurate to call these systems “interfaces,” these are interfaces in which the flow of information is moving from a brain and into a computer and in which two-way communication is not part of the design. When most people think of the term “interface,” it’s evocative of a two-way conversation.  A novel capability in the area of active emission optics may make it possible for a true two-way interface between a biological brain and a computer to be established, with a wide range of potential applications.

The advent of helical beam technology opens up new possibilities for BCI. Helical beams are useful for their scatter-resistant properties, making them useful for communication, LASER-based missile defense and for optical power transfer. Near-IR, which ordinarily would not be able to pass through bone, could, under the condition that it is helicized, accomplish this.

This technology can also be applied in order to support an entirely new type of Brain-Computer Interface which has as its function not simply the interpretation of brain signals, but to thoroughly map the corresponding RF output detectable from the exterior of the brain corresponding to stimulus applied to each of millions of possible discrete physical locations within the brain, with areas as particular as a few dozen neurons being “selectable” using such a mechanism. The ability to introduce incredibly subtle and structured (in terms both of the positions at which current is introduced as well as in terms of the rhythm of the pattern which is introduced) electrical signals using an array of helical beams affixed within a helmet-like mechanism, which, importantly, would not cause any damage to the brain, would open up entirely new possibilities in the field of neurology.

(see full publication for details concerning how helical beams may be generated and underlying theory)
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#30
PLCoulomb Offline
Publication #34 - Accelerometry Based Upon Timing-Controlled Magnetic Nudges to Individual Rubidium Atoms on Three Axes (2026 August 13)

Synopsis:

In certain types of accelerometers, a ball bearing is made to levitate at the center of a cradle and its changing proximity to the boundaries of that cradle is use to infer changes to angular momentum. Such systems are now four decades old and, although suitable for systems such as the Peacekeeper Missile, are not sufficient to enable aircraft and ships to be certain of their positions over the course of prolonged GPS outages lasting for weeks.

In the aforementioned systems, contact between the bearing and the housing is purposefully prevented. A crucial technology which wasn’t available even a few years ago are precision OASIC mechanisms compact enough to fit into an aircraft or a missile. These mechanisms work by using a LASER bolometer to measure changes to the temperature of the nucleus of an atom of a stable isotope caused by the very same alignments of electrons which happen according to a predictable rhythm which cause the decay of unstable isotopes. Those forces are, of course, present, even in stable isotopes and affect temperature even if they do not lead to a decay event (a proton is pulled off the nucleus and this liberates neutrons which can be counted if the isotope is unstable.) A fundamental failure to understand what predicated nuclear decay, aside from the weakened bonds of protons in systems with surplus neutrons, prevented OASICs from being proposed until 2021, a staggering 66 years after the first practical atomic clock was built.

Taking into account of the advent of that compact, practical precision-timing technology, an inertial navigation system predicated upon holding individual rubidium atoms at the center of magnetic traps and nudging them using temporally and potency-controlled magnetic pulses to cause them to touch the walls of the traps and measuring the length of time it takes for the atom to contact the wall, producing electrical current, should be possible. Rather than measuring the movement of a bearing, in this case, we would be purposefully causing movement of a controlled nature and inferring how the housing was moved on the basis of measuring the length of time it takes for the atom at the center to reach the boundary of the trap.

Three arrays of perhaps 40,000 of these trapped atoms could be constructed; one array for each axis along which acceleration needs to be measured. If the atoms and their traps are positionally stable, a magnetic pulse of carefully controlled intensity emitted from an electromagnetic a fixed distance from the traps should always cause the rubidium atom to take the same length of time to travel from the center of the trap to the wall.

This length of time would, obviously, be impacted by any change in the angular momentum of the overall mechanism, resulting in these times being affected by acceleration. These rubidium atoms would resonate within the traps a bit like a ringing bell and, therefore, would require a “cooling off period” before being nudged again in order to maintain the accuracy of the system, thus necessitating that arrays of tens of thousands of nodes be used in which any given atom/trap system is used only intermittently.

In such a mechanism, the accuracy of the clock would not be a limiting factor. Such chronometers are so accurate that a navigation system predicated upon this approach would remain accurate for many years without re-calibration, all things being equal. However, limiting factors would include the symmetry of the trap in terms of its shape and the position at which the trapped atoms come to rest within the trap. This might differ from one to the next, necessitating that each individual trap be calibrated before systems are put into the field.

Another limiting factor would be ensuring that the electromagnet for each trap exert precisely the same amount of magnetic force from precisely the same distance as all of the others in the array.

The overall system would need to be shielded from external sources of both magnetism and electromagnetic radiation, would need to be electrostatically neutral and would need to exist within an atmospheric vacuum. Temperature would have a adverse but predictable effect upon the size of the traps as well as the strength of the magnetism they exert, meaning that temperature would, at minimum, have to be accounted for, although it would not necessarily have to be controlled.

Provided that these elements are present, it should be possible to use precision measurements of the time that a pulse is initiated relative to the “wall contact time” to infer, with a high degree of accuracy, deviations to angular momentum happening between the time that a pulse is initiated and when wall contact occurs.

(Internet Archive is undergoing maintenance so it may not be available there right away, so what you see here is the full text)
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