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Beneficial Genetics of avidly being and having "more there, there", phenylethylamine (PEA) effects trace amino acid receptors, and to my perception moves already my existing sentience to have "more there, there", dopamine drugs might do this too, the
genetics of simply having more TAAR receptors (and their locations) and dopamine and other receptors could determine at a sentience how much pleasant beneficial "there is there", this amount of how much "there is there" could also be upregulated with
epigenetics so a one pill way of improving an entire lifetime is a technology independent of stimulants, and it is possible the benefits of having "more there, there" is passed on epigenetically through multiple generations, also, besides the two I have
heard of (dopamine receptors and TAAR receptors) there could be numerous other receptors, and these could be quantified as to the actual enjoyability of having greater "there, at there" and only the genetics that heighten enjoyability from more receptors
could be made a part of the human (that is persons, people) genome, to quantify both the "more there is there" as well as quantify the enjoyability of a greater number of receptors human monozygotic (identical) twins could volunteer to do reversible
epigenetic modification of amount of "more there, is there" receptors upregulating the amount of receptors, also based on receptor location and kind it may even be possible to make genetics, epigenetics, and new greater "more there is there" drugs
TAAR receptors at the brain react to nanograms of trace amino acid receptor activators (wikipedia), so attaching a blood brain barrier transport peptide, protein, or moiety could make a "more there, there" drug as well as pleasure drug which due to fewer
milligrams or micrograms at the body has fewer unintended effects, a chlorophenoxy group or lipid tail branch could do or
Wikipedia says one TAAR receptor activator is a non-iodine thyroid chemical metabolite thyronamines, it is possible this could cause medically beneficial weight reduction, feel pleasant, and cause "more there, there", also PEA is medically described as
having "mild to moderate" voluntary readministration and is unexciting enough not to be a "street drug", the thyroid metabolite might be even milder at prompting readministration, I read that unwellness from being overweight was the leading cause of
death at both the developed and developing world, so a TAAR receptor that reduces weight possibly from both thyroid mechanisms as well as stimulant mechanisms is beneficial, attach cytomembrane/blood brain barrier transport facilitating peptides,
proteins or also moieties could make it hundreds or thousands of times more affordable and compatible with 1/10th of 1¢ inkjet printed doses, which enhance affordability and distribution at the developing world, microgram or less effective doses with
blood brain barrier transport could have fewer unintended bodyside effects
Oral Immunization to hold open TAAR receptors is a way to cause "more there, there", and pleasant enjoyment, it may have weight reduction benefits as well (I went from about 160 lb to 147 Lb at 5' 9.5" without exercise on PEA), holding open the receptors
could differ from just switching them on, it could, but might not, just make TAAR receptors more receptive to endogenously occurring TAAR activators
Disparate mz twins at weight, epigenetics of voluntarily weighing less, multigenerational benefit possible
A way to generate mz twins at laboratory mammals
More there there and the experience of other mammals 6,3 14 at rats, 114 at fish, if any one of TAAR 1-6 is most there there then finding that particular TAAR at nonhuman mammals could have applied be kind and vegetarian to animals
I think I saw drexlerian nanotechnology images with things like con
Make actin walkers that walk then swap out each atom with a different kind of atom to make inorganic (as much as possible) actin walkers
Spintronic pathways with side regions slow atoms on sides, fast atoms on path, jitter will make one side or other the more probabilistically likely to be followed, computers could be made with intersecting paths, if something meets an object (quite
possibly a portable or even moving object) then the two could effect each other to go on the AND path, another intersection could have a block or a different portable and be a NOT, at a more than 2 way intersection a loop with a three point turn can turn
a binary 10010 to a 01001, XOR
NOR gates can be used to make any other logic primitive and an entire computer, with tetris pieces travelling past a bunch of sa NOR can be made with a pantograph pulling something together or apart or together to look like/behave as a 1 object,
pantograph "frequency modulation/FM" can be used to do some other logic primitives, an or NOR is if the nanoobject has different values if placed on its side or flipped upside down, a loop De loop with a diamagnetic repeller at the center volume could
cause a two element or two molecule to flip over or sideways, bismuth on one side of a 9x9x9 atom cube and a spin zero (no response) molecule on the other, electret NOR could be a path of same polarity, a j shaped wheel-o type thing
Mobious strip loop with a side exit, one for each side, might be an OR, and a NOR could be a three lane path, any two bits other than two zeros gets pantographed or flipped, and two zeros
With an FM pantograph sandwich and three adjacent paths just travelling over an electret stripe pattern might be able to do logic primitives, two breads together is one, NOR stretches that to zero, two zeros traveling next to each other are extra wide so
they protrude onto the third path that pushes/solenoids them back into being a one sandwich which then fits on the two rightmost paths
How do you tell when a data word or stream starts and ends, well along with well known computer ways nano technological computers could make start and end tokens out of some other material than the data bits, one possibility is a diamagnetic thing made
out of bismuth, that moves strongly to one side, like a branch to a separate path because it is repelled, similarly the data bits could have rather than a midrange electret surface a non electret surface or a hyper electret surface, the data stream of
actual nanoobjects would pass a thing with an electrostatically moveable or glommable hinge, glom it, and change the path the data word or stream travelled on for further or different computation
Kind of like a case statement, or at a multiarray of railway-like turntables, noting at nanotechnology this could be like 8 turntables to billions (or more) a Swing set chain with tubes around it bends, but only at certain radii and angles "roller
coaster" twists with partial flexibility of data words on loop De loops, at a turntable like array possibly swingset chain ensheathed with tubes causez a finite number of angles of possible orientation on a sortation table (reminiscent of railroad
turntable) causing automatic degree alignment with say one of eight turntable paths, this is like a case statement, it is possible that turntables can make NOR logic (and an entire computer can be made of
Online it says the spin of a single electron can be measured with an atomic force microscope tip, and that differences in spin between two different zinc isotopes can make one of them do things with a protein 3-5 times faster, noting that it is possible
spin and charge that have a mechanical engineering and conduct or less electrostatic thing going on could do computation, particularly on or next to electret shapes
I read online it is possible to make an electret out of SiO2 as well as, or, or silicon nitride SiO2 is already a nanotechnological material Si has 23 isotopes with 4 different distinct spins available, I did not find any material about spin electrets
online, a thing, which when just sitting there would durably have electrons of all the same spin, notably at the surface, but it is possible just as Zn aqueous ions of a particular isotope always have the same spin that an SiO2 electret made from a spin
specific isotope would always have electrical charge at its surface with a particular spin, this I think benefits nanoassemblers, and nanocomputers
Nanotechnology and nanoassembler can have circles in them, rather than benzene, a radius 9 atom, 1 nanometer circle or sphere can be made, with surface area advantage over perceptions I have about drexlerian nanotechnology, it is possible highest area
foams where the circles and spheres sublime, diamagnetically wiggle away, turntable logic, stationary or rotating could be a thing, and annuli of electrets could even cause things to probabilistically center even with jiggle and Brownian motion
Getting atom clumps and elements from rock powder, annuli, circles of electrets could cause particles or atoms to center at particular locations, a bunch of radiating rays, each with a different spin and electret charge could be places where if a
particular element or molecule like Al2O3 landed on it it would be less likely to jiggle away, causing some kind of carrier nanoobject, likely with the same spin and charge to glom some of it and it would then travel to some productive location
Another multicircle rock dust element and molecule concentrator is concentric circles of different electrets, jiggling happens and molecules pile up where their particular form electrostatically sticks most optimally, then a nanoobject transporter
follows around the perimeter scraping up a big pile, an alternate version is a twister mat like electret spin dot pattern that accumulates a different element, atom, or molecule on a different dot, an arrangement of 900 dots wide and long could possibly,
depending on spin electret specificity, separate and concentrate 810,000 different elements and molecules for utilization, to increase specificity and concentration under or colocated at the twister electret dot could be piezoelectric or thermoelectric
material that could increase the charge strength orders of magnitude fluffing out the non optimal atoms and molecules, Milliken oil drop effects might even be useable, also, on a rock, outside of a nanoassembler millimeters to kilometers or meters of
this element and molecule twister mat concentrator could be produced and used to molecularly sort kilograms of material
Another nanoassembler thing with circles and rounded forms on it is parabolic dishes with a 3D focus
Another use for curved surfaces is to make bounce houses, I perceive gravity is ignored at nanoassembler and nanotechnology
Energy imparting pinball Bumpers could have numerous different round shapes, almost like how various curves of mirrors can focus (concentrate) things synchronized bumper binomat motion imparting things could cause waves which when they travel could
diffract, reflect, and possibly do anything water waves can do
Sandwich compressor as sensor, if it compresses a sandwich then it has also sensed something, moving a pole, the amount the pole has moved is. What it thinks it sensed
Weird new best of three computer data representations could be made, mercury tube memory
Isotopes have varied spin proclivities and these can effect the velocity of organic chemistry processes "However, 25 Mg 2+ ions with magnetic nucleus 25 Mg were shown to suppress enzymatic activity by two to three times with respect to the enzymatic
activity of polymerases [at DNA]" nanotechnology applications different than mass and " the ATP-generating activity of enzymes loaded with Mg 2+ ions containing magnetic nuclei 25 Mg was shown to be two to three times higher than the activity of enzymes
with non-magnetic spinless nuclei 24 Mg and 26 Mg " from a drexlarian nanotechnology perspective, atoms that are 2-3 times more or less likely to to react chemically could durableize the nanotechnology components and products (a new kind of water
resistance)
Isotope versions of Halogenated drugs, ordinary chlorine is about 49/51 of two different isotopes, if one of them is highly spin different and effects halogenated drug effects on the body that could have value
Noting the ±200-300% isotope spin chemistry activity effect was described in protein, protein drugs antibody drugs, vaccines (antigens), and long physiological duration of atom areas of the body like brain tissue could benefit from 2-3 times faster
activity or 2-3 times more gradual degradation or reaction, the authors of the paper
https://academic.oup.com/nar/article/41/17/8300/2411006 buchachenko and others, do mention use of spin isotope effects in treating brain disease,
At nanotechnology applications silicon has 23 naturally occurring isotopes with four different spin values
Diamagnetic susceptibility of different spin isotopes could be very different with use at nanotechnology, the paper suggests 2-5 times difference (also, more accurately none to has spin, with various spin numbers) at one kind of difference, a diamagnetic
bismuth mold releaser/jiggler that is 2-5 times more responsive or responsive has benefit, perhaps the volume of a thermoelectric utility nanobject could be 5 times eentsier, or nano manufacturing could double or higher in velocity with isotope spin
nanotechnology engineering
There is a paper where nanobjects are doped with isotopes and thermal conductance is about 1/3 different near STP, that suggests isotopic nanotechnology could have 1/3 less nonpurposed stochasticism causing faster more functional nanoassembly, my
perception is this is from isotope mass effect not spin effect
Spin neutral argon, spin neutral nitrogen as sparse gases at nanoassemblers could be tidier and less stochastic
Noting the .33 to 5 times advantage of isotopes at nanosized things, nanoassemblers could make isotope makers, my perception is that beta particles are absorbed thoroughly at about 7 mm aluminum if alpha particles can be used that is about 500
micrometers of paper as the size of an isotope farm
Isotopic spintronics has almost no references online (I found similar things but not actually that) although 15 minute spin polarized xenon gas, inhaled is used as a MRI lung contrast agent, and isotope spin can make protein guided processes 2-5 times
faster are things, that suggests many new technologies can be produced with isotope spin effects at spintronic (kind of like electronic) devices the first that comes to mind is spin effects on Si and dopant elements at semiconductor lasers for computer
data, spin could effect output laser light polarization before a modulator, heightening efficiency and possibly removing a part,
As to nonspin isotope effects it is possible optical fibers made with the Si isotope that is 4% plentiful could have a different, more beneficial absorption spectra, I think spin effects refractive index as well
Based on the spin isotope effects on DNA described at the paper, it is possible spin Isotopic optimized telomeres last longer, doubling or halving their processing velocity could make them last longer, that could be a longevity technology
Plasma coat things like steel with picograms of the least reactive cheapest isotope to isotope spintronic reaction gradualization effect to make things last longer, zinc isotopes also change the velocity of chemical reactions, and might be affordable
Isotopically pure epigenetics drugs could exist, DNA polymerase can go 2-3 times faster or more gradually
Heighten velocity and possibly sensitivity at medical diagnostics (like antibody pee tests), noting proteins do things 2-5 times faster when interacting with Zn isotopes from spin effects (paper), it is possible that spin-effecting
Inkjet nozzle printers (and 3D printers) might have spin effects with spin isotope inks like different focus ability of the electrostatic field that I think guides and shapes the dots, on the cheap side is deuterium that has a different spin than
hydrogen and D2O is about $4 a gram retail, so all the hydrogens at the organic chemicals in inkjet inks or solvents could be replaced with deuterium and possibly do something
More there there drugs and physics observer effects
They should make a list of the million things people frequently do, combine some of them
Longevity technology
Do more or tighter histones cause greater longevity, if so histone genetics and alleles could be new longevity genes
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