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Greetings,

I'm hoping to be able to float a few ideas here so that I can at least get a few sets of eyes on them.  I'm not worried about attribution and my work is in the Public Domain.  I have four hypotheses to present, at least to start with, although I expect to add others over the course of time.  It's a bit much to post here, so I think it would make sense to leave a link to my Internet Archive page and to give a very brief description of each of the first four ideas ITT.

https://archive.org/details/Public_Domai...ical_Ideas

Publication #1 - Concerning the Performance Benefits of Music-Listening During Exercise (2026 May 9)

I propose in this paper that it's not the release of endorphins leading to an analgesic effect, as it currently believed, which causes this performance boost, but rather, that it is related to the way in which music suppresses irregular breathing patterns and improves the precision of the running cadence by providing a metronome which enhances the accuracy of our innate perception of time.

Publication #2 - After-Meal Lethargy Phenomenon Explained by Ketone Concentration Increase, Leading to Mild Brain Edema (2026 May 10)

After-meal lethargy is most often currently attributed by doctors to the diversion of blood to the intestine to support digestion, but this lethargy does not impact everyone and seems to have a greater effect under certain conditions, which I have outlined.  I conclude in this paper that people experience extreme sleepiness after eating large meals in social settings not because of the size of the meal or because of alcohol, but because of the indirect way in which dehydration causes ketone levels to spike.  Certain types of social gatherings e.g. a Thanksgiving meal result in attendees not drinking enough water as a consequence of people being afraid to ask for water (the formal setting makes many believe they are precluded from asking for water.)  Ketone levels increase and cause mild brain edema, causing the lethargy.

Publication #3 - Global Weather Forecast Models Might be More Accurate if We Ignore the Southern Hemisphere (2026 May 17 A)

The current prevailing logic of meteorologists is that the use of global forecast models is optimal because it is more accurate than the old system of creating regionally-applicable models guided by historical patterns.  By making the leap directly from regional, historical models to global models, meteorologists skipped over the possibility of using hemispheric models.  A "Hemispheric" model meant to predict weather in the Northern Hemisphere would ignore weather information from the Southern Hemisphere and would not include the Southern Hemisphere in model outputs, reducing computational load.

The basic logic of this approach is that the opposing direction of air currents in the Northern and Southern Hemispheres behaves in much the same way as an "air curtain" used to keep cold air out of the foyer of a business by generating a powerful current of air which prevents cold air from seeping in during the winter months.  Models can be further enhanced in their accuracy by assigning variable values of certainty to the predicted movements of pressure systems according to latitude.  Systems near the equator and near the poles are most predictable, but those within 15 degrees of the 45th Parallel are least predictable.  All weather systems obey the Coriolis Effect and tend to curve parabolically toward the poles; a behavior which is not explicitly anticipated in global models.

Publication #4 - Modifying Proximity Sensors to Measure the Fullness of Containers and the Flow Rate of Fluids Through Pipes (2026 May 17 B)

A proximity circuit could, with a slight modification, be used in order to achieve both of these goals, provided a high temporal resolution and the incorporation of the introduction of a modest amount of acoustic energy from outside of the pipe.  In medical contexts, observation must be made of a radioactive tracer as it profuses blood vessels in order to identify areas in which fluid flow is inappropriately dilatory.  If a proximity sensor would coupled with an ultrasonic emitter, flow rate could be non-invasively determined by measuring high-frequency changes to perceived material density as measured by the proximity sensor downstream from the point of introduction of acoustic energy.  Acoustic energy is introduced at "Point A" like a buoy tossed into a stream.  The current carries the buoy a certain distance and a series of closely collocated sensors look for rhythmic changes to density consistent with the ultrasonic frequency.  Although the acoustic energy would tend to bounce directly back to the source in a standing fluid, it would be "carried" by the stream of a flowing fluid to different extents depending upon the flow rate in much the same way that a voice can be carried by the wind.

In fact, one might even create an improved anemometer in this manner which measures the flow of air over a larger area than a single turbine.  Ultrasonic noise could be generated from a central point and a series of microphones could be used to detect the timing of receipt of the sound up to 100 meters away.  With multiple detectors, the precise direction of air flow and the precise speed could be more accurately estimated than with extant technologies.

I hope this is not too verbose and would welcome any feedback.  If you know anyone who might be interested in these ideas, please feel free to pass them along.
Greetings,

https://archive.org/details/Public_Domai...ical_Ideas
Link failed..I don't think Firefox trusted it.

Publication #1 - Concerning the Performance Benefits of Music-Listening During Exercise (2026 May 9)

No knowledge or opinion on this.

Publication #2 - After-Meal Lethargy Phenomenon Explained by Ketone Concentration Increase, Leading to Mild Brain Edema (2026 May 10)

I'd also suspect (agree) that dehydration is an under-appreciated problem. Every good spread should have a jug of water at the centre and glasses within easy reach.

Publication #3 - Global Weather Forecast Models Might be More Accurate if We Ignore the Southern Hemisphere (2026 May 17 A)

From memory.. most of the land mass is in the Northern hemisphere. At best you'd halve your calculation by treating the south as a mirror. Anything less than an order of magnitude probably isn't worth thinking about. At worst you lose credibility and have an unknown biting your tail .. so I'd keep the Southern hemisphere even though its a nuisance.

Publication #4 - Modifying Proximity Sensors to Measure the Fullness of Containers and the Flow Rate of Fluids Through Pipes (2026 May 17 B)

I'd guess this is a mature 'field'. If you measure doppler shift with a time of flight detector .. it is what it is.
Publication #6 - High-Throughput Optically-Generated RNG via Quantum Trajectory Deviation Amplification (2026 May 28)

(For the full version, please see the Internet Archive page)

Synopsis:

A traditional fiber splitter is modified to include a precision waveguide which guides generated light directly toward the bifurcation in the split fiber.  Ordinarily, this splitter would cause half of the wave to pass through the left fiber and half through the right, thereby creating a duplicated wave.  However, if quantum mechanical influences exerted on the light after it exited the waveguide caused even an extremely minute change in trajectory, that deviation could be amplified using glass nanospheres which are kept in perfect alignment and which are situated somewhat before the bifurcative median.

If a light wave deviates by half an angstrom to the left due to quantum-mechanical influences, when it interacts with the first sphere, it will be directed to the right by several angstroms.  When it reaches the next sphere, it's going to land in the right hemisphere of that sphere and an additional lensing step would put it a few nanometers off-course.  When it reaches the third, its trajectory deviation is restored to the original direction but with a degree of deviation which exceeds the phase height of the light, resulting in the wave going exclusively down one fiber or the other rather than being split.

This would constitute and extremely high-throughput RNG and could also be modified to act as a bit-flipper by using an optically-controlled magnetic field to bias the quantum trajectory changes upon which the system is based.  The system could be made most useful by directing the light toward a RAM module in which voltages are gated with a sensitive thyristor and light from this system strikes the thyristor, creating a voltage potential and opening the gate.  Thus, data can be loaded directly from the Optical Trajectory Deviation Amplification (OTDA) system into RAM to support cryptographic bruteforcing or other applications.

Eventually, this kind of technique could be used to support integration systems which allow for optical and electronic processing systems to be integrated with a minimal of bottleneck.
Publication #7 - Magnetically-Controlled Vapor Antennae for Fine Frequency Control (2026 May 31)

Synopsis:

A bespoke magnetic field may be used to condense a filament of gaseous vapor in order to cause it to exceed a specific density threshold.  Below that threshold, passing current through the vapor would not produce a transmission.  Above the threshold, current passed through the gas would produce a signal.  The length of the filament, although it is gaseous, would dictate the frequency of the emission.  A sufficient level of granular control over the magnetic field would allow the boundary between the sub-threshold gas and the supra-threshold gas to be tuned by as little as a single atom and for the length of the antennae to be adjusted at a high rate.

This may indicate a practical pathway toward the creation of flat walls of electromagnetism in which the constituent photons are not prone to absorption by metallic structures as traditional EM would be.  In a more conventional mode of operation, it could conceivably increase the rate of transmission of data via electromagnetism substantially by allowing "gap frequencies" between the frequencies of solid-state antennae to be used.
Publication #8 -  Link Between Quiet Voice and Cardiac Problems Due to Diminished Lung Inflation Secondary to Pericarditis (2026 June 2)

Synopsis:

Recent studies indicate a correlation between patients reporting speaking in a quieter voice and sudden onset cardiac problems, even without other warning signs being present.

This correlation could be attributable to pericarditis, which might cause lungs to inflate only partially, leading to the voice becoming quieter as a compensation mechanism.
Publication #9 - Optical Signal Routing by Polarity Uniforming and Trajectory Deviation Amplification without Signal Reprocessing (2026 June 2 B)

Synopsis:

ISPs could route traffic without needing to use signal processors by employing a mechanism consisting of a polarity-uniforming mechanism, an atomic-scale semiconductor dopant within an optical fiber and the subtle magnetic force generated by light interacting with that dopant in order to produce subtle deviations to angular momentum within the switching mechanism.  Sub-angstrom deviations to angular momentum could be amplified used the glass nanospheres mentioned in a previous publication.  The switching mechanism would deliver waves of light to one of several possible fibers on the other side of the junction, but the polarity of the light would ultimately determine its route.  ISPs would tell end-users when (on the scale of microseconds) when to send data in order to ensure it is routed correctly.

This would reduce latency by allowing light to travel "non-stop" rather than having to be processed and re-transmitted at each ISP router.  It could also serve to enhance security by allowing data to be sent without being logged at the ISP level.  It would reduce cost-overhead by eliminating the need to process each packet sent and would entail only the need to handle timing control packets.
Publication #10 - Proposal for Particle Acceleration by Photonically-Magnetized Multi-Beam System Featuring Tri-Focal, Three-Ring Particle Accelerator (2026 June 5)

Synopsis:

A traditional particle accelerator is modified so that three beams are created instead of one.  Two supplementary beams with a different composition shadow the primary beam.  The system is augmented by an extreme X-Ray LASER source which is capable of rapid switching.  LASER energy is directed at the secondary beams in order to render them as powerful magnets which are capable of leveraging more magnetic energy than the superconducting magnets as a result of their nearer proximity.  The magnetism of the superconducting magnets is then restricted to the secondary beams after the LASER-based accelerator is activated.

All three beams are accelerated to a high percentage of C by the primary magnets and then the primary magnetism is restricted only to the secondary beams, which act as pincers when they are illuminated by the extreme LASER source.  The close proximity of the magnetic source and the ability to switch the LASERs more rapidly than the primary magnets can be switched should allow for unprecedented velocities to be achieved by only slightly modifying existing equipment.
Publication #11 - Nano-Scale Strike-Position-Dependent Frequency-Shift Prisms for Optical Transistor Functionality with Ability to Handle Large Supra-Binary Values (2026 June 7)

Synopsis:

A frequency-multiplexing prism of nano-scale is used in conjunction with doped optical fibers in order to alter the frequency of single-mode light according to which part of the prism is transited; a value which can be made to vary depending upon the degree of angular momentum deviation occurring within the fiber.  Results of previous computational cycles are relayed fermionically to light-emitting sheaths surrounding the fiber which bombard relatively intense IR light upon the semiconductor used to dope the fibers.  The intensity of this light determines the magnetic field strength, which determines the degree of angular momentum deviation, which determines the frequency shift.

This system would generate little heat, operate at light-speed and would allow for large numerical values to be handled.
Publication #12 - IR-Band Ambient Light Phase Drift Analysis via Stereoscopic IR Camera Configuration for Aircraft Wake Detection (2026 June 8)

Synopsis:

Day or night, a so-called low-observable aircraft be readily be detected by situating two infrared cameras some distance apart and linking these cameras to a precision clock miniaturized sufficiently to be carried aboard a fighter jet (extant technology.)

Rather than monitoring for IR emitted by the aircraft itself, which is likely to have its engine exhaust pointing in the opposite direction of the standard IR sensors on our own fighter jets, we would monitor for subtle changes in the arrival times of IR light which is ambient in nature and which originates from atmosphere behind the aircraft being detected.  Sections of turbulent atmosphere created by aircraft can be a mile wide and several miles long and, given such a large aggregate volume of atmosphere, ambient IR would be caused to take a wider variety of paths through the turbulent atmosphere which cause sensors separated by a few feet to be able to see differences in arrival time stemming from this atmospheric turbulence.  A baseline for standard turbulence could be established and multiple samplings could be used to confirm the presence of aircraft-wake-associated turbulence.  If there is turbulence but there is no RADAR signature, this could be used to infer the unauthorized presence of stealthy aircraft from several hundred miles away.

This would allow something comparable to Schlieren Imaging to be accomplished from a great distance away and without the need for the use of mirrors or for laboratory-controlled conditions.
Publication #13 - Role of Interstitial Pressure in Modulating Acute and Chronic Pain and in CSF Pressure Disorders (2026 June 9)

Synopsis:

Interstitial pressure should be treated as its own independent metric of health and has a demonstrable effect upon the perception of pain.  Interstitial pressure should be investigated for its role in chronic and acute pain as well as its relationship to CSF pressure, which seems to feature a hysteresis period of a few hours.
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