Thursday, June 22, 2023

What makes chaos interesting in next-generation quantum computing?

Chaos can protect order. 


Nanotechnology requires a new type of computer. And the answer for nanomachine control could be atom-size quantum computer systems. 


Superposition between quarks in baryons can use in quantum computers. That is smaller than an atom. Those systems can use in intelligent nano-machines. And they can revolutionize almost everything. Theoretically, there is the possibility that this kind of quantum computer can hybridize with living neurons. 

The quantum-size quantum computers can also transport information to the nervous system. The nano-quantum computer can fly to the axons and transport information to neurons. And that makes this kind of system an interesting tool. This kind of system can also make it possible to restore destroyed neurons. The information that can be saved will transport to the cloned neurons by using a nano-size quantum computer. 

Those small-size quantum computers don't need very much power. So it can take electricity for the ultra-small microchips from the nervous system. And that kind of bio-hybrid quantum computer can be the most powerful system in the world. The nano-size quantum computers also can use living cells to make electricity for those systems. 

Nano-size quantum computers can be the qubits themselves. In this model, the computing system sends the quantum computer to the receiver. And that thing makes it possible to transport information over extremely long distances. And maybe that kind of system is used in nano-size probes that travel in the solar system and beyond. 

The nano-size probes could form a cloud that researches multiple objects. They can enter many places where regular probes cannot go. And in some visions, the nano-probes can even research alien bodies if we someday find other species in some other solar system. In that model, those systems slip into the target body and make their missions. 




"A spinning neutron disintegrates into a proton, electron, and antineutrino when a down quark in the neutron emits a W boson and converts into an up quark. The exchange of quanta of light (γ) among charged particles changes the strength of this transition. Credit: Image courtesy of Vincenzo Cirigliano, Institute for Nuclear Theory" (ScitechDaily.com/Reimagining the Universe: Right-Handed Currents and Neutron Decay Interaction)




Chaos can protect order. 


Mathematical algorithms that find stability in chaos are the next-generation tools for quantum technology. The idea is that the information. That the system sends can hide in chaos, which makes it hard to detect the information carriers. The idea is like hiding the hard disk in the sand pile. And in a quantum system, the information carrier would be some kind of electron that travels in the whirling electromagnetic field. 

The skyrmion that is made around the electron (or photon etc.) qubit can protect information when it travels between transmitter and receiver. That thing makes it hard to detect the information transporter. The electromagnetic field can also protect the qubit when it travels in a quantum channel. 

One way to protect information against outside attackers is to store it in short-term particles. When the system downloads information from short-term particles those particles can divide or be destroyed after use. And that increases the data security. 

Hiding the information transporter is one way to keep the quantum system safe. The quantum system can drive information in short-term particles or neutrons. Neutrons or quarks, internal particles of neutrons can act as quantum computers. In that model, the system drives information to the neutron. Then the quantum system in the neutron will work with the solution. And when a certain time is gone, the system divides neutrons and drives information back to the binary system.

This thing is called the "closed box" model. The closed box is one variation of the famous Scrödinger's cat. The idea of this type of computing is simple. The data handler is like the person who sits in the box. Then the outside actor gives a mission to that actor, and after a certain time, the actor must show the answer or result. The idea is that outside actors cannot affect the data handler who sits in the box. The idea is that the outside actor needs only an answer. 

And how the outside actor confirms that there are no mistakes. That actor can give work to multiple boxes at the same time. And if the answers are identical. That tells that there is a big possibility. That there are no errors in the answer. And the outside actor can give the same mission to the system twice. That thing denies the possibility that some common non-predicted effect affects at the same time to all data handlers. 


Removing outside effects is a vital thing in computing. If the system works wrong, there is no difference in what causes the error. The error means that the system cannot make its duty. 


This is why things like Majorana particles are interesting in quantum computing. When the operator sends the second pulse of the missions to the system those data-handlers should be identical. The cloned actors make it possible that the system can make similar operations in precisely similar ways. The idea is that. When the missions come the qubits are doubling the data. In that process, some qubits are storing data that they get. When the first pulse travels through the system it waits for a moment. And then it sends the second pulse of identical data. 

The idea is that this application removes the possibility that things like FRBs are interacting with the entire system where all data handling lines acting, in the same way, are wrong. In that model quantum computer's lines give identical answers but those answers could be wrong. Before the second data pulse is sent the qubits would also send information back to the sender to make sure that there are no changes in information while it's stored. 


https://www.quantamagazine.org/flow-proof-helps-mathematicians-find-stability-in-chaos-20230615/


https://scitechdaily.com/reimagining-the-universe-right-handed-currents-and-neutron-decay-interaction/

The problem with military "whistleblowers" is that they don't have any scientific evidence about the military and UFOs or extraterrestrial cooperations.

70 years whistleblowers claim that the government and extraterrestrials have some kind of contract. The problem is that they don't have hard evidence about this kind of thing. The only things that officially support the existence of the UFO are some films claiming extraterrestrial kidnapping or "UFO abductions". 

The problem is that nobody confesses to keeping aliens in the freezer or hosting extraterrestrial habitats. This is the thing that makes UFOs interesting. Those crafts or at least some of those crafts are real. But then there is nobody who confesses being the manufacturer of that kind of system. We know that the air force or at least the USAF tested saucer-shaped aerial vehicles. 

And the saucer-shaped aerial vehicles could have perfect stealth shapes. Some of those flying saucers can be the new airships meant for industrial work. Or some saucer-shaped systems also are meant for special rescue purposes. 



The term extraterrestrial doesn't necessarily mean that actor is extraterrestrial. That thing can be the codename for the advanced research teams. that work with highly classified information. Like some kind of portable nuclear reactor. But then we are returning to the problem that I mentioned earlier. There is no scientific proof of the cooperation with extraterrestrials. 

Sometimes things like Nazi UFOs are claimed to be a purposeful hoax. The purpose of those things like "Die Glocke"  or "V-5 Hönebru" claimed to make UFO research more difficult. There is claiming that "Die Glocke" was some kind of electric jet engine that the Allies wanted to keep secret. Or maybe "Die Glocke" was some kind of EMP weapon. 

The system would install in the floor hatch of the aircraft. And then it could send the EMP vortex to the ground.  And nothing denies that the V-5 Hönebru could be the concept aircraft with radial jet engines. That structure could give that system very dramatic maneuverability. But the thing behind that thing could be Lockheed Martin. 


Sometimes is claimed that UFOs are purposely made hallucinations. Operators who operate those systems could create those hallucinations or fake memories by using some electromagnetic systems. Or they can simply use holograms that are meant to make people look in the opposite direction when some highly classified aircraft are operating in the area

The problem is that those stories cannot be proven because there are no films or images about those things. So without lie detection tests, nobody can prove that they are talking true. The thing that can open new channels for UFO discussions could be sodium amytal injection connected with magneto angiography or positron-emission tomography. Some reports are highly classified. 

Some psychological researchers wrote those reports about the UFOs in the MKULTRA program. And officially those papers are classified to protect the interviewed person's identity. The thing is that there must be something that can prove that person will not lie. Another thing is that somebody might give disinformation about UFOs. The reason could be that they want to hide something like the ability to create artificial memories for people. 


https://bigthink.com/13-8/military-whistleblowers-ufos-70-years/


https://en.wikipedia.org/wiki/MKUltra

Majorana particle and superposition.

Could the particle itself be its antiparticle? Could that particle have those positions at the same time? Italian physicist Ettore Majorana (1906-possible after 1959) believed that is possible. At least he believed that some particles can turn spontaneously its an antiparticle. We know one group of fermions, Dirac fermions, that have different antiparticles. But there is no clear evidence about the existence of Majorana particles or Majorana fermions. In this text term, Majorana-particle means the same as Majorana fermion. 

The reaction that makes a hypothetical Majorana particle interesting is that it can change its spin depending does it face antiparticles or particles. So that kind of particle that spin changes very easily, could have no annihilation. The particle- or antiparticle that comes near that particle can change its spin before annihilation is possible. Annihilation requires that the particle interacts with its mirror particle. And if the spin changes that means there is no annihilation.  

Majorana-particle is the particle that is its antiparticle. But it's theoretically possible that the Majorana particle could be at the same time its antiparticle and particle-pair. There is the possibility that the internal superposition of the particle makes this thing possible.

But even if Majorana particles can "only" spontaneously switch their form from anti-particle to particle and oppositely that could be the most fundamental thing in physics. The internal superposition allows researchers to make protected qubits. If particles can have internal superpositions that are making them into their antiparticles. That thing could be a revolution in quantum computing. 

But also, if Majorana particles are separated. And they can change their form from particle to antiparticle and oppositely.  That makes it possible to transport information between two qubits. The first qubit was made of particle-pair. And the second is made by using anti-particle pairs. 


Ettore Majorana (1906- possibly after 1959) 

Could there be a particle that has particle- and antiparticle states at the same time? 


The superposition is the thing, that makes the quantum computer operate. Theoretically, one single particle can form a quantum computer if that particle has multiple internal superpositions. That means superposition is not necessary between particles. It might be the internal structure of a particle. 

This is the reason why researchers are interested in Majorana particles. Those hypothetical particles are themselves their antiparticles. That thing gives possible to create new and powerful quantum computers. The particles like electrons have Majorana-ability. They can change their form to their antiparticles when they travel through the thin gold layer. But spontaneously happening Majorana particles are not seen. 

The thing that makes Majorana particle possible is the whisk-looking structure of elementary particles. In that model, the superstrings can change the direction of their spin. And that means the Majorana particle can turn into its antiparticle. Or is the thing so simple? Did Ettore Majorana mean that a particle can turn to its antiparticle? 

Or did he mean that particles can be anti-particles and particles at the same time? Could that thing be possible? If superstrings are forming the particle shell. There is the possibility that the particle can be at the same time as its antiparticle. We can call this hypothetical particle a black-and-white particle. But if something forms this thing. Could the internal structure of that particle cause internal annihilation? Or could that particle be stable? 


https://en.wikipedia.org/wiki/Ettore_Majorana


https://en.wikipedia.org/wiki/Majorana_fermion

Higgs field and hypothetical negative mass are making it possible to cross the speed of light.

The Higgs mirror field may exist. The Higgs boson interacts with weak nuclear force. or it releases W and Z bosons. So the weak interaction is one of the things that affect the Higgs boson. And that causes the idea that maybe gravitation, or hypothetical graviton particle, can be found between weak and strong nuclear forces. 

The thing that makes Higgs field interesting is that it gives mass to particles. The mass is the thing that denies that particles with mass cannot reach the speed of light. But otherwise, particles with no mass have only one speed. And that is the speed of light. 

That thing causes an idea if there is negative mass, the particle can cross the speed of light. But nobody ever made negative mass. There is a possibility that some kind of extremely high-power impact can turn the Higgs field opposite and create the hypothetical thing called the Higgs reverse field. And Higgs reverse field makes it possible that the particle would have negative mass. 

The Higgs reverse field or Higgs mirror field would be opposite to the Higgs field. That thing would pull energy through the particle. Which turns them back to four fundamental interactions. There is the possibility that a mythical or hypothetical faster-than-light particle called Tachyon is just impacting with the Higgs field so strong that it turns the Higgs field and its interaction (Higgs mechanism) opposite. 




Or what happens? The tachyon impacts Higgs field. That field transfers energy to the tachyon. In some models, the Higgs field covers that hypothetical particle. And that makes it possible that the wave motion with the same frequency as the Higgs field just pushes the Higgs field away from that particle. Or it makes Higgs field act oppositely than usual. But how to confirm that thing? Confirmation requires proof that the tachyon exists. And this means this is only theory. 

The field superposition can someday make it possible to create the Higgs reverse field. The idea is that Anderson (a strong) localization traps wave movement. And then some kind of energy impact would turn that trapped wave into its mirror. The detail in superposition is the thing that supports this model is that in superposition the superpositioned particles are spinning opposite ways. 

So does that thing turn the power fields like Higgs field opposite? That is one of the things that maybe can be solved in the future. The model of the power field is like a membrane that oscillates. The oscillation is the wave movement and when the energy level rises at the other side of the wave movement. The other side will create electromagnetic low-pressure. And then some other type of wave movement starts to fill that electromagnetic low pressure. 

The Anderson effect, along with field superposition is one of the things that makes the Higgs reverse field possible. The idea is that in superposition the electromagnetic fields would put spin in opposite ways. And that thing makes it possible to create the mirror model of the Higgs field. 

The Higgs field is a similar electromagnetic field to other electromagnetic fields. The frequency of that field is different from other EM fields. 

There is the possibility that the electromagnetic field is forming superstrings. The superstring is the thing that spins in some direction. So in the mirror field, the superstrings are rotating in the opposite direction than in the original field. The other electromagnetic fields have push and pull effects. And that means all other electromagnetic fields except gravitation have their counter field. So why not a Higgs field can have similar structures to other electromagnetic fields? 

The idea is that those superstrings act like propellers. That structure pulls energy through particles to the Higgs field. And that thing makes the particle flat. So if that version of Higgs field works the opposite way. That makes it possible that this version of the Higgs field turns the mass negative. The idea is simple. The Higgs opposite Higgs field pumps energy to the particle. And that particle starts to hover above the Higgs field. 


The reason for aging could be that the Higgs field pulls other wave movement types through it. 


The idea is that material or elementary particles are things. That are channeling other electromagnetic fields to the Higgs field. The power fields or fundamental interactions are like chains of particles. That string-looking power fields connect. When some particle travels through that structure (or structure travels through particle) that structure called a power field pumps energy to the particle. 

Electromagnetic fields and aging are interesting things. We know that we can increase the particle's lifetime by stressing them with electromagnetic wave movement. But then we are facing the thing, that I mentioned in some other texts. Spin plays a big role in the particle's lifetime and existence. If we think that the particle is like a whisk. Superstrings are forming its shell. And when the particle spins, that whisk-looking structure will push other electromagnetic wave movements away from the particle. 

The model is that the Higgs field pulls four fundamental forces through the particle. The idea is that all four interactions, strong and weak nuclear forces with electromagnetism and gravitation are all wave movements. But the frequency of the wave movement is different. There is a transportation particle that transports those four fundamental interactions. 


Does Higgs field make mass to particle only if itself or some other power fields travel through the elementary particle? 


But all fundamental interactions have the wave movement mode. And when the Higgs field pulls those wave movements through the particle. That thing causes electromagnetic low-pressure under those superstrings. That electromagnetic vacuum will act like normal low-pressure and sooner or later that electromagnetic low pressure in the whisk-looking structure in elementary particles pulls that particle to flat. Or otherways saying, the Higgs field causes the collapse of the particle. The shortest living particles have a slow spin or their spin is zero. 

When we think about photons, we can ask if photons spin so fast that they will not allow the Higgs field to travel through that particle. So does Higgs field give mass to the particle only of itself, or do other electromagnetic fields travel through that particle? 

That thing causes a situation. Where the Higgs field pulls other wave movements just through the particle. And that thing causes the particle's collapse because its internal interaction with the Higgs field pulls the particle into the 2D mode or turns it to wave movement. So the particles with fast spin live longer. 

The reason, why fast spin makes particles live longer is that the Higgs field will not pull energy or wave movement through spinning particles. When the energy level of a particle rises that increases its spin. And that's why a high energy level increases a particle's lifetime. 

https://en.wikipedia.org/wiki/Anderson_localization

https://en.wikipedia.org/wiki/Superposition_principle

https://en.wikipedia.org/wiki/Higgs_boson

https://en.wikipedia.org/wiki/Tachyon

https://en.wikipedia.org/wiki/W_and_Z_bosons

Wednesday, June 21, 2023

The difference between symmetry and asymmetry is interesting.


Information travels in asymmetric systems. When the system reaches energy symmetry information will not flow. The reason for that is simple. All systems attempt to reach a stable or symmetric energy state. The reason why no system can reach energy stability is that all systems are part of other systems. And finally, the biggest known system the universe is part of space. That causes a situation in that energy travels out from the universe. 

Researchers can store information in symmetrical systems. If systems are fully symmetrical. They can trap things like radio waves or even light inside them. Because all particles are sending energy waves at the same time. They cannot break the structure. So in symmetrical systems the information hovers between particles. Symmetrical systems can stand more energy than asymmetrical systems. 

Things like neutron poisoning where neutrons hover because of their radiation is a good examples of a symmetrical system. Neutron poisoning mean a situation where neutrons hover in a symmetric energy field. There is no problem. But if something hits that system it causes asymmetry that pushes the structure out of balance. The same way trapping light in a 3D structure base is in symmetry. 

Trapping light in 3D crystals is one of the most interesting things in history. Trapped light can use for making research on trapped waves, and the trapped light can be the key to next-generation sensor systems. Trapping light in 3D crystal bases the idea of Anderson localization. 


"Ultrafast optical field incident on material with broken spatial symmetry (blue), time-reversal symmetry (yellow), or both (green) to generate THz radiation. Insets illustrate various mechanisms that lead to rectified THz currents high-frequency optical fields. Credit: Hou-Tong Chen/Los Alamos National Laboratory" (ScitechDaily.com/Lighting Up Quantum Realms: Terahertz Spectroscopy and Symmetry-Broken Materials)


"Advanced computing has helped researchers solve a decades-old mystery about light localization in 3D structures. The study found that light can be trapped or “localized” in random packings of metallic spheres, paving the way for potential developments in lasers and photocatalysts. Credit: Yale University. (ScitechDaily.com/Trapping Light in 3D: Physicists Unlock the Longstanding Mystery of Trapped Waves)



The fullerene balls in steel can make it possible that there is space in metal where it can conduct energy that impacts the metal structure. 

The idea is that in optical systems the interference or superpositioning of the light wave is possible to trap the light inside the quantum system. When some kind of EM-stress impacts trapped light. That increases its energy. Then the trapped light can use as the sensor that tells if something stresses the system. 

The asymmetry in the system causes situations where information starts to move. Glass is one example of rigid material, that seems very hard  When something hits things those things there is no room where energy can be dumbed. So that means the energy asymmetry destroys the glass. When somebody hits glass by using a hammer that tool causes energy asymmetry in the system. And that asymmetry destroys the material. 

The reason why metals stand more impact is that in metals there is space where energy can go. That thing makes metals elastic. So when something hits the metal That impact pushes those atoms in the metal's structure inside. Things like steel are metal-carbon hybrid. The carbon forms the internal structures in steel.

 That makes space where energy can transfer in that material.  And that means the impact energy will transfer to metals like steel slower than glass. In ceramic structures, atoms cannot move at all, and impact energy transfers to the structure faster. And that is the thing that makes glass fragile. 

The reason why glass is fragile is also its homogenous silicon material. When something impacts class the energy causes resonation between those silicone atoms. And that resonation causes the standing waves that are pushing silicone atoms away. 

Steel is hybrid material where all atoms are not resonated. When iron resonates the steel can dump that energy in the carbon. And carbon pulls standing waves inside them. If there is fullerene in the steel those carbon balls make it possible to create space in the steel structure. That thing makes Damascus Steel so strong. 

Demon core means the subcritical mass of plutonium in the Los Alamos nuclear laboratory in 1945. When one participant in the nuclear program scratched that plutonium mass by using a screwdriver. That caused the situation where the radiation level in the laboratory rose and some people died. 

The demon core is one of the examples of how the asymmetry in the system causes the situation, where the system goes out of balance. And that is the thing that launches nuclear fission. Same thing: asymmetry in energy levels between the ends of the electric wires makes the electricity travel in the wire. All systems attempt to reach a stable position. And that's why energy always travels in lower energy states. 

When we think about things like demon core in nuclear physics we must realize that even small asymmetry in energy is enough that the fission reaction begins. The demon core means the situation where somebody just pushes plutonium or causes small local energy pike in plutonium that thing causes nuclear fission. 


https://scitechdaily.com/lighting-up-quantum-realms-terahertz-spectroscopy-and-symmetry-broken-materials/

https://scitechdaily.com/trapping-light-in-3d-physicists-unlock-the-longstanding-mystery-of-trapped-waves/?expand_article=1


https://en.wikipedia.org/wiki/Anderson_localization


https://en.wikipedia.org/wiki/Demon_core


https://en.wikipedia.org/wiki/Superposition_principle

https://en.wikipedia.org/wiki/Wave_interference


How does the coldest spot on the sun warms its million-degree corona?

The corona is the hottest point of the sun. The temperature of that area is about million of degrees of celsius. And this extremely high-temperature forms when the protuberances, flares, and radiation interacts with gas that forms a corona. The fact is that the corona is not gas in the form of gas in Earth's atmosphere. 

The pressure of the corona is not very high. The plasma that forms the corona can orbit the sun at a very high speed. Plasma follows the Sun's magnetic field's power lines. And that thing causes friction because Sun's south pole pulls ions to it. The anions or negative ions travel to the north or positive pole of the sun. The interaction in that plasma flow is quite complicated. There are plasma pikes like flares that cause more whirling in plasma around the sun.




The material that forms the corona is ionized gas or plasma. Radiation that comes from the sun shoots electrons out from the gas-atoms orbitals. That thing makes the plasma interact with magnetic fields. When the sun sends the protuberances and flares, that thing causes a situation where the plasma that surrounds the sun forming starts to whirl. Those whirls are increasing the temperature of that gas. 

And friction along with EM-radiation and impacting plasma rise the corona's temperature. There is also the possibility that some kind of fusion reaction can happen in the corona. When the other pole of the sun sends opposite polar ions that orbit the sun that causes a situation where those ions and anions are impacting. That thing can increase energy level.

So there are multiple reasons why the corona is so hot. And the reason why researchers are interested in this phenomenon is that these kinds of reactions can use as models for self-sustaining fusion reactions. Knowledge about mechanisms that can turn the very low-energy object to increase the energy level of other targets can make fully working commercial fusion systems possible. 


https://scitechdaily.com/solar-paradox-how-the-suns-coldest-sunspot-umbra-powers-its-million-degree-corona/?expand_article=1

New high-resolution systems can make it possible to create new types of nanomaterial.

When a system creates nanostructures. It requires high-resolution systems that can observe the position of every component in nanostructures. Some nanostructures require a medium to support them while the system creates those 3D structures. And in the medium the electromagnetic systems cause situation where the medium's temperature rises. Some of those complicated structures require certain temperatures and electromagnetic environments. That the system can put them together like a puzzle.

When some system is making nanomachines the system must see what happens. If the nanostructure requires extremely low temperatures like superfluid (liquid Helium). Electromagnetic systems can raise the temperature too high. And acoustic systems can make it possible to move objects in the liquid. 

The new mathematical model enhances ultrasound resolution. That thing might be useful in the new types of SONAR systems. Acoustic- or sonar systems can also act as extremely sharp LRAD systems.  But the high-ultrasound resolution can make it possible to use ultrasound systems to move objects and observe things like growing crystals and nanomaterials. High-resolution ultrasound sonars can move particles in the medium. And that thing makes it possible to create new types of long and complicated nanostructures. 

The new systems can also scan things like DNA molecules and find is there something wrong. The extremely high-resolution ultrasound can use to transport the amino acids in the precise right place in complicated structures. And the use of nanotechnology is increasing. Nanotechnology makes it possible to create new types of material where their structures plan from the atomic level. 

"Researchers at the University of Tsukuba have developed a mathematical formula that accounts for the compressibility of encapsulated microbubbles in the propagation of ultrasonic waves, potentially improving ultrasound imaging resolution and enabling more precise drug delivery". (ScitechDaily.com/Bubble Wonder – Researchers Develop New Mathematical Model to Enhance Ultrasound Resolution)



"MIT engineers have designed tissue-derived “smart” sutures, pictured here, that can not only hold tissue in place, but also detect inflammation and release drugs. The sutures are coated with hydrogels that can be embedded with sensors, drugs, or cells that release therapeutic molecules. Credit: Courtesy of the researchers." (ScitechDaily.com/Healing Innovation: MIT Engineers Create “Smart Sutures” That Can Deliver Drugs or Sense Inflammation)


X-21


The new intelligent sutures can use in many roles. 


Things like nano-flaps can give things like sutures new abilities. In that case, the long sutures are covered by nano flaps. And then those things are making it possible that hollow fibers can deliver medicines precisely in the right places. Intelligent sutures can use to cover the ship's hull or aircraft's body. 

Those sutures can use as aerodynamic troughs. That is used in X-21 test planes. That structure decreased the use of fuel. And the same structure can also observe things like how the aircraft's body stands against stress. The intelligent materials can also see if somebody touches the surface. The idea is that the nano flaps are open if something touches the surface. 

And that pulls air into the nanofiber. That thing can interact with some chemicals. Or the system can use nano-size pressure metering systems. when the nano flap opens it causes a change in the pressure. And a pressure sensor can detect that thing. Or the system can use laser light that is sent through those fibers. When the position of the fiber changes that affect the laser ray. And the system notices that something touches those structures. 

The new nanostructures are making it possible to create new intelligent materials. Those materials can make life safer. They can make it possible that things like clothes can see if there is fire. Or something like dangerous chemicals. Those new intelligent materials can use in normal clothes. Or they can look like Rya. Intelligent materials are the ultimate tool in many cases. 


https://scitechdaily.com/bubble-wonder-researchers-develop-new-mathematical-model-to-enhance-ultrasound-resolution/


https://scitechdaily.com/healing-innovation-mit-engineers-create-smart-sutures-that-can-deliver-drugs-or-sense-inflammation/


https://en.wikipedia.org/wiki/Northrop_X-21

A wild white paper says that consciousness is an interaction between brains and space.

The new neuroscientific white paper suggests that consciousness may be more than just an internal effect in the brain. This means that consc...