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sci / sci.engr / Artificial Intelligence in Healthcare.

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o Artificial Intelligence in Healthcare.Joe Mardin

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Subject: Artificial Intelligence in Healthcare.
From: Joe Mardin
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Date: Sun, 23 Jul 2023 12:52 UTC
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Subject: Artificial Intelligence in Healthcare.
From: joemardin5@gmail.com (Joe Mardin)
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well, basically this one just requires a person to say, yowza, (slight "wow thats a lot of new tech applied to a simple application", yet mild enthusiasm)
magnetic refrigeration works with atomic spin cooling, its an actual published thing, yet the amount of energy is teeny. to catalyze ch4 to longer hydrocarbons cheaply would make liquid fuel about 7 times cheaper (15$ same numbers of BTUs as 100$ of oil) as well as permitting huge reserves of ch4 to be transported as liquid fuels, so i will describe this anyway. if you pass ch4 through Big Magnets(tm) or shine Groovy lasers(tm) at it will spin polarize, possibly very cheaply from many permanent magnets at narrow apertures. Now here is the thing, other people have suggested catalytic processes using actual catalyst surfaces or particles to make ch4 be longer hydrocarbons so the idea is actually spin polarizing a microfine powder (nanopowder) so that it is hyperreactive when it meets the ch4. I havent read about spin polarizing microsolids yet I think it is possible. so whats the largest spin polarizable molecule you can spin polarize cheaply, like with a NIB magnet with aerosol flow apetures. It could be that something like PVDF linked to a metal atom, possibly Fe or Co has spin polarizability with long duration as well as high energy as a result of the fluorine bunching up all the electrons on one side of the molecule. so, if you like hype, this is a high field concentration electret of polarized spin, that just happens to have a known catalyst metal like Co (or ni or fe or Mg) as part of its structure. its possible that accumulation of potential energies will make catalyzing ch4 to longer alkanes functional at lower tempoeratures as well as lower pressures. a fairly simple research would be to see if spin polarized hydrogen attaches to other molecules differently. if it does, then you could use similar effects at a variety of chemical reactions
I heard something about near polar regions being an area of greater hydrocarbon exploration these are polar or near polar region petroleum geology technologies
these ideas also go better with greater factual depth or possibly hype. the concept that stands out is that artic surface hydrocarbon wells really value reliability, the effort to move, repair, or even diagnose them mechanically is greater at -100 F than at say 77F many machines as a result of slight thermal variations shift tolerances, if its -100 on part of an oil rig yet -30 at another part, or even a balmy 20 degrees the mechanical stresses as well as eccentricities are going to affect reliability as well as wear so this is a way to regularize the temperatures throughout an oil rig to make it more reliable as well as run more predictably. Its a slightly new kind of snow blanket researchers have described a water shedding shape known as a negative contact angle, this causes water falling on things to stay dry, so I think artificial ice crystals made with negative contact angles will actually repel as well as shed liquid water. a snow blanket of this might have warm spots without slush I also think a custom blend of ice crystals might have less slumping or liftability from high winds so this is actually a suggestion that artic oil rigs have a temperature regulation blanket of custom crystal engineered structural ice crystals placed on their containment buildings
the idea is its as cheap to make as artificial ski resort snow, is highly durable, while it regularlizes temperatures at an oil rig building

visualize a nested pipe ( o) the little pipe is actually a waveguide, a microwave energy pathway of engineered shape much like 1970s communications waveguides. having a plurality of temperature sensors as well as varying the microwave frequency slightly could move standing wave blobs of microwaves anywhee along the pipe, keeping it warm to specifications or possible warning the hydrocarbon a little. a funner way to look at this is a neon advertising tube with a weird transformer, a little lengthof travelling light blobs appears, you could move them from place to place if you varied the transformer so that a visual version, this just does that with any area along a microwave waveguide that is part of a nested pipe, it permits spot warming anywhere without valves or conduits, it also provides spot warming to keep everyplace at the temperature the software suggests
I think that oil at polar or near polar regions might be kind of goopy from the cool, it is possible that a peristaltic pump o|8 could actually work on a woven flexible, actually porous (the leak is kind of the plug as it its targoop) cause its moving tube of woven metal, sort of like a radial tire metal mesh tube between rollers more effeciently than heating the goop to liquid, then using liquid contact pumps on it.

beauty technology
get all the advantages of a motion capture suit from glittery makeup app
groovy researchers as well as moviemakers use a suit with an array of locations on it to record precise motion I figure dancers like modern or ballet people could use these with an app that reminded them to ncrease the range as well as regularity n grace of their performance yet cosmetics are cheap so just put a dab of this nvisible yet IR glittery gel on a few body areas, then your iphone watches you dance just like you were wearing an actual motion capture suit, then gives encouragement to regularize or ncrease your range I though i might use this to rapidly improve my posture, which I read is linked to perceptions of others enjoyment I also thought it would communicate a little better with those americas next top model people
beauty pharmaceuticals
body conformation which is kind of like figure has been linked to perception of beauty, a recent statement being a .7 waist to hip ratio at a certain height proportion along with a D or DD breast size conformation is kind of a multimeasure form of secondary sexual characteristic SERMs which are estrogen receptor modifying drugs have varying effects on secondary sexual characteristics with a wider range of effects than estrogen
one possibility is that a strm could
Thus I think SERMs are useable to form figure particularly photoactivatable SERMS

this one is near my physics

I saw where a few KV through an nsulator caused a liquid crystal to change shape, then it kept changing shape, with pulses of activity every few moments for perhaps 3 seconds
Do hydrocarbon fluids have a electoactive High voltage characteristic, however slight, that could be detected that says something about them. The sides of a drill could measure that along with other data with a high voltage field then a relaxation sensor
It says matter duplicator, theres an image I do not know how it works. If it does work that’s pretty keen though. Theres a wave making double slit, a matrice of some kind, as well as some connectors apparently it describes the water around other molecules as they move, puzzling out what the actual atom is without disturbing it, just imaging its hydration surroundings as they are called. The hydration molecules that surround a molecule are particular near a molecule then become more predictable at the areas between molecules so as matter scanners that duplicate a tissue or a brain just imaging the hydration atoms is a vast data savings the thing is, how was I remotely viewing ndividual h20 molecules at high velocity
Now if there were spin polarized water that lasted a while like spin polarized xenon gas that last a few minutes then you could get more data
A slightly better, hopefully much better petroleum geology techgnology idea is using the coanda effect at natural gas pipes the coanda effect entrains moving gases to move 3 or 4 times more mass of air or ch4 with a given velocity of gas stream so making natural gas wellpipes that are two hulled with microcoanda effect generators on the sides could actually flow of gas stream pull a larger volume stream of gas out of a ch4 well per amount of time (might look like a cholla husk at a pipe) thus at wells where there was lots of ch4 yet only a few pipes you would produce more hydrocarbons with less funds uh, like two nested pipes, ( o )the coanda effect has higher velocity gas moving along the surface of o which pulls ch4 from the well through the porous or slotted sides of the ( ) the gas moving along the surface of o entrains the wellgas from ( ) to bring gas to the surface more rapidly than just presenting the pipe as a vacuum. So basically I think there can be a coanda effect that moves gas faster than gas responding to a vacuum, which causes more gas to move out of a well with fewer pipes which makes money faster with less equipment

Theres also a spin polarized ch4 catalysis idea . where I apparently think that if you spin polarize ch4, then when it relaxes polarization it must either warm or cool its contacting neighbor molecule, which means that spin polarized ch4 would behave differently on catalytic surfaces to possibly more easily form longer hydrocarbons noting that molecuses can be spin polarized with either big magnets or collisions , possibly a heavy gas like Kr or even xenon, mixed with ch4 could polarize the ch4, then the gas it naturally separating so purer spin polarized ch4 without filler kr or xenon reaches the contact surfaces of the catalyst. You have to wonder though if this effect is any different than something cheap like changimg the temperature a few degrees, however, what if Ch4 at human body temperature is catalyzable if it is spin polarized thus making it highly responsive to certain catalysts One thing about spin polarizing ch4 or any gas to be catalyzed it that it brings a predictable little package of energy with it so right at the catalyst contact surface you get a particular energeticness, (am I hinting at quantized energy benefit at the transition chemical species?) that could compare favorably with a thermal approach which has a distribution of different energies at each molecule, only some of which are sufficient to prodce catalysis, which means a given amount of catalyst is experiencing passiveness, yet if spin polarization gives a sufficient energy packet to every ch4 molecule then all of the catalyst is continuously used, rather than just a portion that responds to a part of a thermal distribution
This one is kind of theoretical my perception is that hydrocarbons are popular as a result of ease of transport at the engine, it flows, n atomizes n things as compared with say chunks of matter so apparently I thought of a new kind of engine that works on chunks of matter rather than fluids, which creates a greater range of possible power sources the main thing is that the travelling tube has a kind of
Ok think of an engine with a person putting a trash can inside another trash can yet the littler trash can or the base of the big trash can has a rapidly rotatingdisc which flings particulates at a distribution of particles even while the nested trashcans are travelling, that slightly airpopper whirl like action, although it is mechanically actuated makes sure a particulate has lots of surface area to gas ratio yet the rotating disc could have (((O))) rotation zones such that at biggest volume it could actually fling the waste combusted particles to troughs on the sides which would be um, pressure plenumed with a gasket so if you look into a trash can then visualize the concentric circles as being variously rotatable to either fling up particulates, or fling to the side post combustion materials that’s what it could look like. The point being to make a an “ICE” that could use particulates like powderized biomass or possibly dried energy rich biomaterials or dry bacteria as a conveyable fuel, as compared with a liquid hydrocarbon


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