Showing posts with label calculation. Show all posts
Showing posts with label calculation. Show all posts

Monday, October 14, 2019

Why gravity waves are interesting?

Why gravity waves are interesting?

Cosmologists and physicians are always getting grey hair because of gravity. Gravity is the only force in the physical world, what effects in long distances. It is the most important and dominating force in the universe. And it cannot fit with any theories, and calculations, what is created to explain the universe. 

Sometimes some people have said that without gravity we would have the great Unity theory, but the problem is that we cannot combine gravity theories with other base forces of the universe. Electric force, weak nuclear force and strong nuclear force can put in the same theory, but gravity is so special. The electric force would keep the electron layers orbiting atom, weak nuclear forces keep the nucleus of the atom together, and the strong nuclear force keeps quarks together in the nucleus particles, which are neutrons and protons. 

So because the gravity is so special it has brought theory in the minds of scientists that there could be the fifth base force. There have been observations about the existence of this force, what we can call as "top force" (1). But those things are only references, what are basing the decomposition of the one beryllium atom. And there would need more research, that we could understand this force. 

Gravity waves are interesting because, in theory, a human being could use them in the interstellar spacecraft propellant. The idea of this kind of theoretical motor is that the system would create two nano-sized black holes, and then those black holes would be impacted together. 

That effect would cause the gravity waves, what is pushing or pulling spacecraft forward. But there is a problem with those systems, and one of them is this kind of system needs very much energy for creating those quantum black holes. But the thing is that we should create so enormous systems, that we cannot even imagine, what kind of supporting technologies that kind of things need

But gravity waves are a very good example of the thing, where theory has become true. With another gravity phenomenon, what is called the gravity lens, that thing is a very good example of the phenomenon, what has proven true. And the gravity lens is proven that gravity has an effect light, what is one thing, what makes that force interesting. The thing is that gravity is problematic because it cannot fit any physical theories or calculations. 

It is an only force, that effects the light. It can turn the trajectory of the photon. And that ability makes it special. Of course, things like glass lenses can turn the route of photons, and silicon can turn photons to electricity. The effect in the solar panel happens, when the photon hits the silicon atom, it would make the electron layer oscillate, and then the electron would jump to another atom, which is causing the photoelectric reaction, where the next atom would release extra electron to another. So the solar panel doesn't turn the photon to the electron.  

(1)

Friday, September 13, 2019

The element Copernicium (Cn) (Element 112)

The element Copernicium (Cn) (Element 112)

Element 112 in the periodic table of elements or copernicium (chemical symbol: Cn)  is the 12th group of elements. That means this metal is so-called transition alcalde metal, and in the same group with mercury, zinc, and cadmium. That means that the copernicium might be liquid metal, and sometimes people have thought, that could the strange quicksilver, what is connected with UFO-power systems of high-energy lightweight nuclear reactors copernicium?

If we would someday benefit that kind of nuclear material in some still theoretical reactors, we must put that element in the particle accelerator, what would slow the time on the radioactive mass. The thing is that superheavy elements make possible to create extremely powerful, but small size reactors.

The problem is that storing those elements what can be existed is extremely difficult, and that means the benefiting of those particles would become in use of practical solutions in the future. But who knows what is going on those special laboratories, where this kind of research work is done. 

The evidence for that thing that the mysterious mercury could be copernicium is mentioned, that the longest life isotope of copernicium lifetime is 32 seconds, and the researchers should conclude the form of this element. But here we must say, that there have been only a couple of atoms of that element ever existed. The thing is that I don't know, what method the finder of that element used to produce copernicium. If that man used low-energy linear particle accelerator, that means that the production of a couple of atoms of copernicium would be easy, but this kind of things have a couple of problems if we would try to make this kind of things in practical life.

The first thing is that we must find two elements, what we want to use in a fusion reaction. Those elements should have ion form, what have different polarity because the opposite polarity would help to aim the ion ray. And then the ions would shoot through the particle accelerator to the chamber, where those atoms would connect if the fusion would have enough energy.

Or actually, the energy level must be precisely right, or the particles would destroy each other in the impact if the accelerators would operate in too high energy level. And fusion method has a couple of other problems. When the particles impact together, there is a possibility that part of them would turn to energy, and that's why we cannot produce any elements just by shooting two ionized lighter elements together.

At first, the energy level of the particle accelerator must adjust precisely right. Then the ion rays must target that way, the fusion would be possible. Aiming of the system is difficult, and then the spectroscope must aim at the right point. The camera what will take images of the spectrum line must operate with very high speed, that it can see the line, what the element, what has extremely short lifetime sends.

And those elements, what is researched in this way are very high radioactive. In fact, in theory, we could produce hundreds or thousands of new artificial elements, but the thing is that those elements must have some mean. Chemically the structure of the electron cores is always following the system what is involving in the periodic table of elements, but the spectroscope is the only way, how researchers can confirm the existence of the new element. The short existence along with the low number of those atoms makes chemical tests with those atoms impossible.

Friday, August 23, 2019

Quantum teleportation and nanotechnology brings quantum computers closer

Quantum teleportation and nanotechnology brings quantum computers closer


Nanomachines can be used as qubits


In the qubits, what are transporting data in the quantum computers has three values 0, 1 and 2. That means that those qubits can't be translated to data by simply cutting the electricity in the wires, but I will return that thing later. There are two ways to create qubits. One version is to create the molecule by using the nanotechnology.

This molecule would be a combination of the metal and some other atoms what are not conducting electricity. The mission of the atoms, what is between the metal atoms is to isolate them from each other. In this scenario, the "Y" shaped molecule would create the qubit in a very simple way.

But creating those molecules is quite difficult. One of the most promising version could be combined iron and some big sized atoms, and the magnet field would pull that molecule through the sensor, what detects the voltage or the position of that molecule.

 If one side of this molecule would touch the sensor or the gate the value of that molecule would be 0, if two heads of the molecule touch the gate, the value can be 1 and if the all heads of that molecule would touch the gate, the value of that molecule would be 3. This would be the nanotechnical version of qubits, and those molecules can be recycled.

The thing is that the molecule or later hydrogen atom must touch the gate for being registered. And that would make some problems for that kind of things. The value of the qubit would be determined with the level of voltage of those qubits, and if only one head of qubit touches the gate the voltage would be lowest. And the lowest voltage in that gate would be translated as 0.

Use of hydrogen atoms as the qubits

If we think about the short-distance quantum teleportation, we must realize that thing can move very small particles in the extremely high speed, or the speed what would ever reach before. And how this thing is connected with quantum computers. If we think the most complicated part of the quantum computers the forming qubits, the particles what are transporting data inside the computer and processors, we are facing the new opportunity for creating the system, what uses qubits as the information transporter.

The problem with qubits is that it has at least values 0,1 and 2 or even more, and the problem is that this kind of thing needs other ways to send numbers than just cutting the electricity of the wire. In normal bit computer, the system can just cut the electricity in the wire, and that causes the effect, where the break in the electricity, what takes a certain time is translated to 0. And in normal bits, there are two layers 0 and 1. But how we could create the qubit or particle, what has more levels than zero and one?

That thing would happen by using hydrogen atoms. If the atom comes to detector the electron ahead it, the atom would get value 0, if it comes to the sensor or the gate proton ahead, it would get 1 or if it comes that way, that both electron and proton would touch the sensor or gate in the same time, this data transportation particle would get value 2, what makes it operate as the qubit.

But the problem is that we cannot calculate the place of the electron when it orbits the nucleus sharp enough, that the hydrogen atom would reach the gate in a certain position. And that thing would be an extremely difficult and slow method to shoot hydrogen through the gate in the precise right time. But if we could stop the electron, while it orbits the nucleus, that thing would make possible to create the qubit. This thing means that we could simply shoot or transport the atoms through the gate by using extremely high speed, which means that the electron would not have time to move in the orbiter, while it would face the sensor.

So this sensor would be like the gate and the position of the hydrogen atom would determine the level of the qubit. This is one very interesting method to make the quantum computer, and if we could create the singularities across the microprocessor, that thing would make the moving those hydrogen atoms or qubits in the processor easy. But that thing would need little bit advantages, because of the system, where small size black holes are creating the wormholes would be hard to make.

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