What means superior, when we are talking about biological creatures?
The thing is that even some creature would not self operate on the surface of some planet, it can operate in extreme hostile areas by using remote-controlled systems. We must understand that humans use remote-controlled robots on the surface of Mars, and also underwater areas can research by using remote-controlled submarines and other underwater robots. Also on the battlefields are starting to operate the more or less independent operating robots.
What kind of alien could be superior to humans? That is the question, what we must think before we can give any kind of answers for the form of hypothetical aliens. The key question is, what we mean superior in that case.
Are we mean the muscles or some other physical strength, or simply the creature, what is more, intelligent than we are. So when we are starting to think that question, we must realize that human brains are very effective, and if we are thinking about aliens, their brains must work more effectively, if they are more intelligent than we are.
So there is one thing, that might make almost every creature more intelligent than humans are, and that is the superconducting brains. This means that the alien would be creature, what lives on the planet, where the temperature would be extremely low, and the alien itself would be the Helium 3 based life form, which would have an extremely slow metabolism.
And that would mean, that the creature would be otherwise extremely slow. Even traveling about meter would take even years for that alien. But its nervous system would be extremely effective. Those creatures could live only in the planets, which is extremely cold. Those super neural systems would work only in the superconducting conditions.
The other one would be the alien, which has just more neurons than humans. If we would increase the number of neurons in the brains, we would face the thing that the head would become heavy, and that's why those creatures must live in the artificial worlds, or in space stations, where the weak gravity allows this kind of advantage of skull and brains.
That kind of big-head alien would be the race, what has advanced in the space colonies, where the gravity is extremely low. They could be the post-planetary civilization, and when their home planet has been destroyed, those hypothetical aliens would move to space, and start to live in giant spacecraft.
If we think that kind of cases of evolution, the changes in the genomes or genetic material happen slowly, and it takes generations, that this causes visible changes for a look of the body of an alien. But in the case, that the entire civilization would start to travel in the space for looking at the new planets, the time has no mean. Evolution has time in that kind of situation, and if the entire civilization travels in space, that means that the travel can make by using slow spaceships, what can travel in the speed, what the only couple of percent of the speed of the light.
And those spacecraft can form artificial gravity by using the rotation movement. Travel to other solar systems takes thousands of years, and then at that time, evolution can cause transformations for the structures of genomes. In the low gravity field, the weak muscles can support the head, and the limit of that alien would be that it needs a weak gravity field for surviving. If that creature would land on some planets, it would be crushed because of gravity. That kind of thing would live only in some big artificial world.
Showing posts with label superconducting. Show all posts
Showing posts with label superconducting. Show all posts
Monday, October 28, 2019
Thursday, October 10, 2019
Vainamoinen the ancient sage
Vainamoinen the ancient sage
Vainamoinen is the major creature in Kalevala and that character is very similar to Merlin, the sage in the Beowulf. That means that there might be a connection between those characters, and somebody has explained that the origin of this character would be some ancient druid, who might escape the penalty, what is given when the druid would take the wrong bite of the cake. If the bite is carboned, that means that the druid was sacrificed, and some people are thinking that Vainamoinen has been druid, who escaped from ancient Denmark to Karelia, or wherever the tales about that character has come from.
But there is another explanation about that character. There is claiming that also Vainamoinen is a symbolic creature. Symbolic creature means, in this case, the character, what would be a collection of many characters could be the creature, what everybody should want to be. Or the writer of Kalevala, Elias Lonnrot wanted to be. And there is a possibility, that the people, who told those stories wanted to be like Vainamoinen.
And the thing is that other characters of Kalevala could be the incarnations of Vainamoinen. The series of the characters would be the road or advantage, what Vainamoinen would be during his training. That means that the characters are symbolizing the learning of the skills, what are the road to be the greatest of all witches or sages and magic men.
During the learning and exercises, that person would learn to make machines, tame animals and train them as servants. And lead troops in a difficult situation. The end of the line of the advantage would be Vainamoinen, the person who knew things. But there is some other kind of explanations for that character, what could live forever.
Here we should describe what living would mean? Would that character made notes and those notes would make people remain him after centuries? But there is another version of this very interesting explanation, and that explanation is that this witch would store his memory to some kind of machine. In some theories, the ancient magicians tried to save their knowledge in the magic crystals, which makes it possible to transform memories into another person.
But those things remain in theories or pseudoscience until that kind of idea has proven true by using empiric methods. And the truth is a success and try are very different things. This is one version of the topics, that Vainamoinen could be some kind of superconducting storage for electricity. That storage or machine could transform the knowhow of the people for the next generations by using cerebral cortex stimulation, where stored EEG would transfer in the straight to the brains of the person.
Vainamoinen is the major creature in Kalevala and that character is very similar to Merlin, the sage in the Beowulf. That means that there might be a connection between those characters, and somebody has explained that the origin of this character would be some ancient druid, who might escape the penalty, what is given when the druid would take the wrong bite of the cake. If the bite is carboned, that means that the druid was sacrificed, and some people are thinking that Vainamoinen has been druid, who escaped from ancient Denmark to Karelia, or wherever the tales about that character has come from.
But there is another explanation about that character. There is claiming that also Vainamoinen is a symbolic creature. Symbolic creature means, in this case, the character, what would be a collection of many characters could be the creature, what everybody should want to be. Or the writer of Kalevala, Elias Lonnrot wanted to be. And there is a possibility, that the people, who told those stories wanted to be like Vainamoinen.
And the thing is that other characters of Kalevala could be the incarnations of Vainamoinen. The series of the characters would be the road or advantage, what Vainamoinen would be during his training. That means that the characters are symbolizing the learning of the skills, what are the road to be the greatest of all witches or sages and magic men.
During the learning and exercises, that person would learn to make machines, tame animals and train them as servants. And lead troops in a difficult situation. The end of the line of the advantage would be Vainamoinen, the person who knew things. But there is some other kind of explanations for that character, what could live forever.
Here we should describe what living would mean? Would that character made notes and those notes would make people remain him after centuries? But there is another version of this very interesting explanation, and that explanation is that this witch would store his memory to some kind of machine. In some theories, the ancient magicians tried to save their knowledge in the magic crystals, which makes it possible to transform memories into another person.
But those things remain in theories or pseudoscience until that kind of idea has proven true by using empiric methods. And the truth is a success and try are very different things. This is one version of the topics, that Vainamoinen could be some kind of superconducting storage for electricity. That storage or machine could transform the knowhow of the people for the next generations by using cerebral cortex stimulation, where stored EEG would transfer in the straight to the brains of the person.
Tuesday, July 16, 2019
How to store history?
How to store history?
Data can be stored in the CD-disks, which are made by using diamond glass
There are many documents and other things what we should store perfectly because those files are containing information, which is vital to our culture. The thing is that those special files must be able to open in the cases, that every other archive are lost, and one of the best ideas to store files in digital form in the CD-disk, what is made by using the diamond glass, what is similar, that is used in the spacecraft.
That storage would be perfect if there would be found the computer, which can read that information. But the problem is that the computers are advancing, and maybe in the future would be not found the computers, which can open those files. They might involve data of our genomes, and the entire genetic chart of the human and other animals can be stored in digital form. And then the nanotechnology or sharper saying nanomachines can remake the DNA if that thing would be necessary.
The microfilms can also be stored in the diamond glass core, and the microscopes can store with those microfilms.
The other way to think, how to make the storage, what cannot be harmed is to store the data in the microfilms. Then those microfilms can put in the diamond glass, which is one of the strongest material on the Earth.
And of course, the stored data must be allowed to read even in the case, where are no computers left for that purpose. The solution is simple, just store the microscopes with those microfilms, and then that data can be read after the millennium.
Data can also be stored in satellites
One of the most fascinating ideas to store the data is sending it to satellites, what are in the Oort cloud. That kind of satellites are in the superconducting conditions, and the data can be stored easily to the metal wires, what is an in the temperature of the absolute zero degrees of Kelvin.
The data what must be stored in those satellites can send from Earth, and those data satellites can also operate like the hard disks, where the extremely important data would be stored by using RAID-5 technology. Those data storage would be extremely expensive, but very fascinating tools for data sciences of tomorrow.
Maybe we would someday send the supercomputers to the edge of our solar system, where they would be in superconducting conditions. And that thing makes them extremely fast. Also, those supercomputers would be safe from conflicts, and they can remote-controlled from Earth. The thing is that those systems might not build in our lifetime, but the systems might use highly sophisticated artificial intelligence to solve problems, what the system would get from the Earth.
Data can be stored in the CD-disks, which are made by using diamond glass
There are many documents and other things what we should store perfectly because those files are containing information, which is vital to our culture. The thing is that those special files must be able to open in the cases, that every other archive are lost, and one of the best ideas to store files in digital form in the CD-disk, what is made by using the diamond glass, what is similar, that is used in the spacecraft.
That storage would be perfect if there would be found the computer, which can read that information. But the problem is that the computers are advancing, and maybe in the future would be not found the computers, which can open those files. They might involve data of our genomes, and the entire genetic chart of the human and other animals can be stored in digital form. And then the nanotechnology or sharper saying nanomachines can remake the DNA if that thing would be necessary.
The microfilms can also be stored in the diamond glass core, and the microscopes can store with those microfilms.
The other way to think, how to make the storage, what cannot be harmed is to store the data in the microfilms. Then those microfilms can put in the diamond glass, which is one of the strongest material on the Earth.
And of course, the stored data must be allowed to read even in the case, where are no computers left for that purpose. The solution is simple, just store the microscopes with those microfilms, and then that data can be read after the millennium.
Data can also be stored in satellites
One of the most fascinating ideas to store the data is sending it to satellites, what are in the Oort cloud. That kind of satellites are in the superconducting conditions, and the data can be stored easily to the metal wires, what is an in the temperature of the absolute zero degrees of Kelvin.
The data what must be stored in those satellites can send from Earth, and those data satellites can also operate like the hard disks, where the extremely important data would be stored by using RAID-5 technology. Those data storage would be extremely expensive, but very fascinating tools for data sciences of tomorrow.
Maybe we would someday send the supercomputers to the edge of our solar system, where they would be in superconducting conditions. And that thing makes them extremely fast. Also, those supercomputers would be safe from conflicts, and they can remote-controlled from Earth. The thing is that those systems might not build in our lifetime, but the systems might use highly sophisticated artificial intelligence to solve problems, what the system would get from the Earth.
Monday, June 24, 2019
How the aircraft could operate by using the theoretical zero-point engines?
How the aircraft could operate by using the theoretical zero-point engines?
This is writing about theoretical motors. The zero-point engines of the aircraft would base the extreme cold conditions. When the outer layer of the craft, what is hovering on air would transform the superconducting, it would start to react with the magnetic field. The rising super-cold liquid helium will make the rise of this craft, which can hover silently on the air.
This system can also load its batteries simply by flying above the radio antennas, which can send the electricity for that craft wirelessly. But the thing is, that it can work only in the extremely low temperature. If the temperature rises, the craft will drop.
When we are thinking about the zero-point engines, and they use in aviation, we can think a very simple solution. This solution would be the stick where is the hole in the bottom of it. The liquid helium would be released from that hole, and it would be pulled upwards by using magnets. That thing might make possible that the craft would rise airborne.
If we would think about, how to fly this thing, we can use radio waves in that thing. In the middle of the craft would installed the crystal, where is targeted the radio wave. The purpose of the crystal is to aim the radio waves in a certain direction. Then those radio waves would be targeted to the tubes, where they would push the craft to the vertical directions.
I don't know how effective that kind of system would be, but if the temperature of the core of this kind of hovering craft would be near the zero-kelvin degrees, that surface will be superconducting. And that causes the effect that the craft is flying with magnetic power lines. If there would be wind generators, it could fly very long time in the atmosphere.
This is writing about theoretical motors. The zero-point engines of the aircraft would base the extreme cold conditions. When the outer layer of the craft, what is hovering on air would transform the superconducting, it would start to react with the magnetic field. The rising super-cold liquid helium will make the rise of this craft, which can hover silently on the air.
This system can also load its batteries simply by flying above the radio antennas, which can send the electricity for that craft wirelessly. But the thing is, that it can work only in the extremely low temperature. If the temperature rises, the craft will drop.
When we are thinking about the zero-point engines, and they use in aviation, we can think a very simple solution. This solution would be the stick where is the hole in the bottom of it. The liquid helium would be released from that hole, and it would be pulled upwards by using magnets. That thing might make possible that the craft would rise airborne.
If we would think about, how to fly this thing, we can use radio waves in that thing. In the middle of the craft would installed the crystal, where is targeted the radio wave. The purpose of the crystal is to aim the radio waves in a certain direction. Then those radio waves would be targeted to the tubes, where they would push the craft to the vertical directions.
I don't know how effective that kind of system would be, but if the temperature of the core of this kind of hovering craft would be near the zero-kelvin degrees, that surface will be superconducting. And that causes the effect that the craft is flying with magnetic power lines. If there would be wind generators, it could fly very long time in the atmosphere.
Thursday, May 23, 2019
Antimatter motor
Antimatter motor
Antimatter would be an effective fuel for interstellar spacecraft
Antimatter would be the most effective power source in the world. It will be the most suitable motor for interstellar spacecraft, but the problem is that thing is very reactive. And actually one of the biggest problems with this kind of motor is that the gram of antimatter would turn the entire planet to the molecular nebula. So this kind of motor can produce only outside of our solar system. Producing antimatter would need large particle accelerators, and that kind of systems might look like giant donuts, what is floating on the space.
There are two ways to create the antimatter motor, one is to store the anti-ions in the magnetic bottle, where the pushing magnetic field will keep those ions away from the wall of the bottle, and then the antimatter would conduct to the water or some other particle. The huge explosion or annihilation reaction would send the rocket to a very high speed. The antimatter would also produce in the spacecraft itself, but there is need the enormous systems to create the thing.
The producing the antimatter would happen the same way, what it is made in the CERN or other particle accelerators. And there might be used the anti-electrons or positrons in this kind of system. Positrons would produce in the particle accelerator, and then they would conduct to the particle, what is made by normal material, and they can create a huge punch for the spacecraft.
Antimatter would store in the superconducting magnetic balls.
But if we would not want to make spacecraft, what has the ability to create the antimatter itself, we can play with some balls. If those balls are extremely low temperature, they would be superconducting, and that antimatter storage would not need an external power source.
This system has given an idea for "Teller's bomb". The satellite, what will store the ball, which involves the antimatter in the thermos bottle, and then it will shoot that ball to the target. When the ball will impact, the core will turn to pancake, and then the antimatter would contact the material.
The antimatter would be stored in the magnetic balls at the place, where it will produce, and then those balls will transfer to the spacecraft, and after that, it will just break. And that would make the antimatter contact with the material, and sometimes there have been plans to use the abrasive blast to that thing.
The sand or snow or another kind of dust would target the magnetic ball, what is made by using iron, and at the first laser or some other electromagnetic radiation would break the core of that ball, and then the dust will blow to the antimatter. The thing is that the magnetic iron ball would keep the anti-matter ions away from the core of that ball.
Antimatter would be an effective fuel for interstellar spacecraft
Antimatter would be the most effective power source in the world. It will be the most suitable motor for interstellar spacecraft, but the problem is that thing is very reactive. And actually one of the biggest problems with this kind of motor is that the gram of antimatter would turn the entire planet to the molecular nebula. So this kind of motor can produce only outside of our solar system. Producing antimatter would need large particle accelerators, and that kind of systems might look like giant donuts, what is floating on the space.
There are two ways to create the antimatter motor, one is to store the anti-ions in the magnetic bottle, where the pushing magnetic field will keep those ions away from the wall of the bottle, and then the antimatter would conduct to the water or some other particle. The huge explosion or annihilation reaction would send the rocket to a very high speed. The antimatter would also produce in the spacecraft itself, but there is need the enormous systems to create the thing.
The producing the antimatter would happen the same way, what it is made in the CERN or other particle accelerators. And there might be used the anti-electrons or positrons in this kind of system. Positrons would produce in the particle accelerator, and then they would conduct to the particle, what is made by normal material, and they can create a huge punch for the spacecraft.
Antimatter would store in the superconducting magnetic balls.
But if we would not want to make spacecraft, what has the ability to create the antimatter itself, we can play with some balls. If those balls are extremely low temperature, they would be superconducting, and that antimatter storage would not need an external power source.
This system has given an idea for "Teller's bomb". The satellite, what will store the ball, which involves the antimatter in the thermos bottle, and then it will shoot that ball to the target. When the ball will impact, the core will turn to pancake, and then the antimatter would contact the material.
The antimatter would be stored in the magnetic balls at the place, where it will produce, and then those balls will transfer to the spacecraft, and after that, it will just break. And that would make the antimatter contact with the material, and sometimes there have been plans to use the abrasive blast to that thing.
The sand or snow or another kind of dust would target the magnetic ball, what is made by using iron, and at the first laser or some other electromagnetic radiation would break the core of that ball, and then the dust will blow to the antimatter. The thing is that the magnetic iron ball would keep the anti-matter ions away from the core of that ball.
Tuesday, April 30, 2019
Ion technology and supercomputing
Ion technology and supercomputing
The biggest problem is re-assemble the particles.
Teleportation is the basic simple thing. The person or object that wanted to transfer to another place just turn to the ion cloud, what will shoot to the target, and then the ions must take the same place in the structure, where they were before this process. And the re-assembling the object is the biggest problem, but if we could someday make the ion cannon, what can shoot ions to the certain place by using necessary precision, we could maybe in someday make this thing true.
The thing, what makes this technology very difficult to make is that the magnet field must stop each ion in the precise place. That thing would make possible to transfer objects through the wall if we could create the magnets, what can stop each ion in separately in the right position. There is a little different if we would have able to transfer things like screwdrivers by using ion transfer, to using living organisms by using that technology.
Transferring data by using very cold ions.
In fact, we could store the data to the very cold ions, and then shoot those ions through walls, and this technology will be used in the quantum computers. In this case, the quantum computer would transfer the information by using some kind of ion cannon, which will have the capacity to shoot many ions in the same direction in the same line, and the storage of information would acting like some crystals, what can store the data in the certain form, but that would cause the need the temperature, what is near the absolute zero point.
There is also planned to use so-called nano-size crystals for information storage, and then those tiny diamonds would fly across the microcircuit, and in theory, this system would be very easy to create, but there are many practical problems in the real-life solutions. The diamonds or quartz crystals would have the ability to store information at a very low temperature.
And if we would want to use those crystals for sending information we must just throw them to target, where the oscillation would transfer to data. But this method is a little bit clumsy for real-life use, but this is an only theoretical way to create the computer, which could be very effective if it would work. The thing is that sometimes the oscillation is planned to store in the liquid Helium.
The needed temperature is near zero Kelvin
Or actually the superfluid, what is ionized, and then the ion cannon would shoot that very cold liquid in the microchip, or in theory, regular pumps would allow transferring the superfluid in the tubes, what is connected to the sensors, where the data would be released. This kind of versions are only thoughts, what kind of computers we could make in the day of tomorrow, and as I have many times written in the future, we might send he supercomputers to space far away from the Earth. In fact, places like the Kuiper belt is offering a very interesting place for supercomputers, what should be in the superconducting condition.
Of course, those computers can be installed many RTG-generators, but there is a possibility to use nuclear reactors. If we would send that kind of computer to the moons, where is the volcanic temperature, those systems could use geothermal energy. In this case, the liquid gas, what might be liquid nitrogen or methane can rotate the turbines as well as water, and if we would have human-shaped robots in use, those robots can use the artificial intelligence to assemble the computer in the distance, and in this scenario, those bases would be unmanned.
Robots can use to assembly the superconducting computers on the icy moons of the Neptune and Pluto in the future.
The robots will be programmed to assemble the base by using virtual reality, where the robots would teach to use the tools and put the microcircuits in a certain place. And in practice, this thing would happen that the assemblers would use data gloves and data suits in the assembly, and those actions will be recorded to those robots.
In this futuristic case, the problem is that those robots must also know if the microchips are installed properly, and act in the right way if they drop the screwdriver. The tools and microchips can equip with RFID-systems, what would tell which place they should be installed and when the microcircuit in the properly installed. The radio transmitter would tell that to those robots, what must operate independently in the distance, where the radio transmitting would take many hours to reach those robots.
That kind of robots must use advanced telemetry and network for those processes. But if some case would feel too difficult, the robots would ask the assistance from the command center, what will send the instructions like movement tracks to the robots, what might operate in the surface of some icy moon.
The biggest problem is re-assemble the particles.
Teleportation is the basic simple thing. The person or object that wanted to transfer to another place just turn to the ion cloud, what will shoot to the target, and then the ions must take the same place in the structure, where they were before this process. And the re-assembling the object is the biggest problem, but if we could someday make the ion cannon, what can shoot ions to the certain place by using necessary precision, we could maybe in someday make this thing true.
The thing, what makes this technology very difficult to make is that the magnet field must stop each ion in the precise place. That thing would make possible to transfer objects through the wall if we could create the magnets, what can stop each ion in separately in the right position. There is a little different if we would have able to transfer things like screwdrivers by using ion transfer, to using living organisms by using that technology.
Transferring data by using very cold ions.
In fact, we could store the data to the very cold ions, and then shoot those ions through walls, and this technology will be used in the quantum computers. In this case, the quantum computer would transfer the information by using some kind of ion cannon, which will have the capacity to shoot many ions in the same direction in the same line, and the storage of information would acting like some crystals, what can store the data in the certain form, but that would cause the need the temperature, what is near the absolute zero point.
There is also planned to use so-called nano-size crystals for information storage, and then those tiny diamonds would fly across the microcircuit, and in theory, this system would be very easy to create, but there are many practical problems in the real-life solutions. The diamonds or quartz crystals would have the ability to store information at a very low temperature.
And if we would want to use those crystals for sending information we must just throw them to target, where the oscillation would transfer to data. But this method is a little bit clumsy for real-life use, but this is an only theoretical way to create the computer, which could be very effective if it would work. The thing is that sometimes the oscillation is planned to store in the liquid Helium.
The needed temperature is near zero Kelvin
Of course, those computers can be installed many RTG-generators, but there is a possibility to use nuclear reactors. If we would send that kind of computer to the moons, where is the volcanic temperature, those systems could use geothermal energy. In this case, the liquid gas, what might be liquid nitrogen or methane can rotate the turbines as well as water, and if we would have human-shaped robots in use, those robots can use the artificial intelligence to assemble the computer in the distance, and in this scenario, those bases would be unmanned.
Robots can use to assembly the superconducting computers on the icy moons of the Neptune and Pluto in the future.
The robots will be programmed to assemble the base by using virtual reality, where the robots would teach to use the tools and put the microcircuits in a certain place. And in practice, this thing would happen that the assemblers would use data gloves and data suits in the assembly, and those actions will be recorded to those robots.
In this futuristic case, the problem is that those robots must also know if the microchips are installed properly, and act in the right way if they drop the screwdriver. The tools and microchips can equip with RFID-systems, what would tell which place they should be installed and when the microcircuit in the properly installed. The radio transmitter would tell that to those robots, what must operate independently in the distance, where the radio transmitting would take many hours to reach those robots.
That kind of robots must use advanced telemetry and network for those processes. But if some case would feel too difficult, the robots would ask the assistance from the command center, what will send the instructions like movement tracks to the robots, what might operate in the surface of some icy moon.
Sunday, April 21, 2019
Teleportation and quantum computers
Teleportation and quantum computers
Wires are problematic in very fast microprocessors
In very fast microprocessors the wires are making the resistance, which causes the rise of the temperature in the wires. The rising temperature will oscillate the wires and disturb the data transmission. For the solution to that problem, the system would use extreme thin wires, which can be actually the lines of the carbon or metal atoms.
But those wires would not stand the heat, which causes because the oscillation of electricity will raise the temperature in the computer. The problem is also that the thin wires are damaging very easily, and that forces to make them too strong. In the bold lines, the voltage must be higher, because that denies the resistance, which will cause that the electricity will disappear in the wires.
And the too low voltage causes that the disturbance what is caused by the electromagnetic radiation will deny the data transmission inside the electric wires. The answer to that problem is suggested the superconducting, but that causes the situation, that the computer must install in the special environment, where the temperatures near the absolute zero point Kelvin can be made safely.
Superconducting would be the solution for oscillation, which caused by electromagnetic radiation.
Disturbance, what is caused by electromagnetic radiation, what comes from nature or outside the microprocessor force to use higher voltage, which causes the heat, and the heat is causing resistance in the microprocessor. So if we would want to create the extremely fast microprocessor, we must use very thin wires in the microchip. And the thin wires would cut if the voltage level is too high.
So that means that is the very fast computers would put in the Faraday cell, that would cause the radio waves that are coming from the outside would be eliminated. But the problem is that also the electric sources of the computer cause electromagnetic radiation, and that's why every single electric component must be isolated also from the radio waves, what are causing the disturbance to those electric wires.
If those microprocessors would allow separating from the radio waves, what comes from the electric sources and other electric wires, that would allow using lower voltages. That would allow keeping temperatures in the microprocessor lower, and that would allow driving those processors with higher clock frequencies. But that thing needs very deep caves, where the electromagnetic and other disturbance must be eliminated.
Quantum bytes would make quantum processors possible
In those cases, the temperature would be extremely low, which means the superconducting temperature, were those extremely thin wires are in the condition, there is no oscillation. And in that temperature would be possible to make the thing what is called as the quantum computers.
The problem with a quantum computer is that it handles the bytes in the line, not in the row. And that means that the computer could operate very fast. But there is one problem, the wires that are made by using the carbon or metal atom rows are not the answer to that thing, because the quantum computer needs the ability that the electrons must go in the row at the same wire.
The Fullerene or other nanotubes (nanosize particle accelerators) can be the answer to that thing
There is a possibility that the electric wires would be replaced by using the miniaturized particle accelerators, which can drive ions inside them. In this solution, the electrons or information would be packed in other atoms, what are stressed by microwaves or radio waves. That thing is called the teleportation in the world of nanotechnology and quantum physics.
That would cause the situation, that the atom would start to oscillate with the same frequency, what the electromagnetic radiation will use as the stressing process. After that, the atoms would shoot to the receiver, what will disable the frequency back to quantum bytes.
In theory, this technology is simple. Let's take the electrons or stressed atoms, and put them to the box like in the dog race. After that the boxes would be open and then those particles will fly in the lines to the receiver, but how to make that thing in real life. One version is to use fullerene tubes, extremely low temperatures and radiation isolation for creating the thing, what is the greatest dream in the world of science.
Wires are problematic in very fast microprocessors
In very fast microprocessors the wires are making the resistance, which causes the rise of the temperature in the wires. The rising temperature will oscillate the wires and disturb the data transmission. For the solution to that problem, the system would use extreme thin wires, which can be actually the lines of the carbon or metal atoms.
But those wires would not stand the heat, which causes because the oscillation of electricity will raise the temperature in the computer. The problem is also that the thin wires are damaging very easily, and that forces to make them too strong. In the bold lines, the voltage must be higher, because that denies the resistance, which will cause that the electricity will disappear in the wires.
And the too low voltage causes that the disturbance what is caused by the electromagnetic radiation will deny the data transmission inside the electric wires. The answer to that problem is suggested the superconducting, but that causes the situation, that the computer must install in the special environment, where the temperatures near the absolute zero point Kelvin can be made safely.
Superconducting would be the solution for oscillation, which caused by electromagnetic radiation.
Disturbance, what is caused by electromagnetic radiation, what comes from nature or outside the microprocessor force to use higher voltage, which causes the heat, and the heat is causing resistance in the microprocessor. So if we would want to create the extremely fast microprocessor, we must use very thin wires in the microchip. And the thin wires would cut if the voltage level is too high.
So that means that is the very fast computers would put in the Faraday cell, that would cause the radio waves that are coming from the outside would be eliminated. But the problem is that also the electric sources of the computer cause electromagnetic radiation, and that's why every single electric component must be isolated also from the radio waves, what are causing the disturbance to those electric wires.
If those microprocessors would allow separating from the radio waves, what comes from the electric sources and other electric wires, that would allow using lower voltages. That would allow keeping temperatures in the microprocessor lower, and that would allow driving those processors with higher clock frequencies. But that thing needs very deep caves, where the electromagnetic and other disturbance must be eliminated.
Quantum bytes would make quantum processors possible
In those cases, the temperature would be extremely low, which means the superconducting temperature, were those extremely thin wires are in the condition, there is no oscillation. And in that temperature would be possible to make the thing what is called as the quantum computers.
The problem with a quantum computer is that it handles the bytes in the line, not in the row. And that means that the computer could operate very fast. But there is one problem, the wires that are made by using the carbon or metal atom rows are not the answer to that thing, because the quantum computer needs the ability that the electrons must go in the row at the same wire.
The Fullerene or other nanotubes (nanosize particle accelerators) can be the answer to that thing
There is a possibility that the electric wires would be replaced by using the miniaturized particle accelerators, which can drive ions inside them. In this solution, the electrons or information would be packed in other atoms, what are stressed by microwaves or radio waves. That thing is called the teleportation in the world of nanotechnology and quantum physics.
That would cause the situation, that the atom would start to oscillate with the same frequency, what the electromagnetic radiation will use as the stressing process. After that, the atoms would shoot to the receiver, what will disable the frequency back to quantum bytes.
In theory, this technology is simple. Let's take the electrons or stressed atoms, and put them to the box like in the dog race. After that the boxes would be open and then those particles will fly in the lines to the receiver, but how to make that thing in real life. One version is to use fullerene tubes, extremely low temperatures and radiation isolation for creating the thing, what is the greatest dream in the world of science.
Subscribe to:
Posts (Atom)
Six clicks separate people from each other.
“A long-observed social phenomenon suggests that people across the globe are separated by surprisingly few connections. Credit: Stock” (Scit...
-
“A long-standing mystery surrounding an unusual superconductor has taken a decisive turn. By carefully applying shear strain to ultrathin cr...
-
Subconscious and quantum computing 1) Should computers have subconscious or ability to see dreams? When we are thinking about the p...
-
The "white life" of some secret societies When people who are members of the secret societies are claiming, that there is nothi...