The giant fullerenes and neutron balls
There are no limits of the size of fullerene, which means that those carbon balls would, in theory, grow the size of the planet. And that thing brings fascinating visions of the spacecraft of the future, what are as well lightweight and lasting.
The thing in that kind of hypothetical spacecraft, what would consist only one layer of carbon atoms is that it can be used as the giant quantum bit or qubit, which can send across the universe by using the giant radio maser, what would be the artificial version of the black hole. The mission of this system would be forming the virtual wormhole between two points of the universe.
When we are thinking that kind of thing, we might realize that creating this kind of hyper fullerene is theoretically possible. And it would revolutionize space travel and other kinds of things. In this scenario, the giant iron ball would be covered by using graphene, and then the steel ball would be removed from inside the graphene ball by melting it.
In this technology, there would be left the hole in the graphene layer, that the melted iron can be removed from that hole, and then the bite of graphene would be used for fixing the hole, what makes possible to create the giant carbon ball, what is extremely lightweight. And the connection of the graphene bites together would happen by magnetizing those atoms. And if the graphene layer must disappear, the magnetism of that molecule must only be removed, and then the carbon ball would just disappear.
If we think the planet is formed by single type elements, that would make it act like one giant hyper atom. So if this kind of structure would be pure carbon, and there would not other this kind of atoms, there is a possibility, that it starts to form incredible large-size molecules with other similar particles.
This thing could happen only in the absolute stable universe, which means that this kind of thing is still a pure theory. If that kind of planets or superatoms can form somewhere, that thing would make possible that those particles and structures are making similar bridges with each other like molecules make on Earth, but the size of those structures would be enormous.
And that thing would work also with ball-shaped giant molecules. This is a really fascinating thing in the chemistry and theoretical way to think. There are no limits for imagination, and maybe that thing would happen in the universe when it turns colder. As I have written recently.
But even more, the fascinating idea would be to create the ball by using neutrons. Or the fullerene ball would be covered with neutron layer, and that thing means that every neutron would be in the same way with each other. The neutrons would touch other neutrons with the polar, and that would make possible to create the neutron ball, which has some extraordinary qualities. That means that the neutron ball could fly across the universe without external fuel because neutrons would push the ions across the outer layer of the ball, and that makes it the WARP-craft.
Showing posts with label giant molecules. Show all posts
Showing posts with label giant molecules. Show all posts
Sunday, October 13, 2019
Saturday, October 12, 2019
Nothing is stable than changes and advancing in the universe
Nothing is stable than changes and advancing in the universe
Nothing is stable at the universe and that thing consists of the universe itself. Even the universe itself is advancing all the time, and then that thing means that the universe itself is not lasting forever. Someday the last hydrogen atom is turned helium, and in that universe what would be existed in the billions of years in the future, the main element could be helium.
So when we are looking at the advancing of the universe from the beginning, it has started as the quark plasma. But then the quarks are starting to make contact together and form protons and neutrons, and this thing has caused that the universe has turned to the atomic universe.
That thing required decreasing the temperature, that the electrons could take their place in the cores, what are orbiting the protons and neutrons. After the temperature has been decreased enough, the atoms have started to make contact with another atom and formed the molecules. So this universe, where we are living can be called as that molecular universe. But then the temperature of the universe would continue decreasing, and that makes possible to forming super-large molecules.
The decreasing temperature along with increasing helium level causes that the form of material has turned to another. In that universe is also forming stars, but they are bigger, and they are fewer because those stars are burning helium in the fusion reaction. And the universe continues it's advancing and transformation because the stars are burning always the lightest elements. In the helium universe, the planets are looking at the same what we know, but they might form the same homogeneous elements, and that would turn them another type, that we ever can imagine.
After the helium universe, the advantage would turn to the carbon universe. In there the main elements in the space is carbon. There are lots of supernovas in that universe, and there are also only a few stars. Those stars are forming of the carbon, and other materials are forming the molecule balls. In that universe, the planets can turn to giant fullerene balls, and that would make them fascinating and different than we ever thought.
The thing in that universe is that it is very cold but gravity would win the expanding someday. The decreasing of temperature is causing because the size of the universe is getting larger, but there is the same amount of energy or electrons, which means that the density of energy is decreasing. And here we must remember, that gravity always wins, and then happens the big crush. Before the big crush is the moment, what we can call as the "big silence".
At this moment the universe is in its largest point, and then the particles would start to drop in the point where everything has begun. So when the density of the universe is growing, the temperature is rising, and the universe would start to repeating the sequences, what it went over during the expanding process. And this makes the universe so interesting and mysterious thing.
Image:
https://upload.wikimedia.org/wikipedia/commons/thumb/c/c5/M101_hires_STScI-PRC2006-10a.jpg/1280px-M101_hires_STScI-PRC2006-10a.jpg
Nothing is stable at the universe and that thing consists of the universe itself. Even the universe itself is advancing all the time, and then that thing means that the universe itself is not lasting forever. Someday the last hydrogen atom is turned helium, and in that universe what would be existed in the billions of years in the future, the main element could be helium.
So when we are looking at the advancing of the universe from the beginning, it has started as the quark plasma. But then the quarks are starting to make contact together and form protons and neutrons, and this thing has caused that the universe has turned to the atomic universe.
That thing required decreasing the temperature, that the electrons could take their place in the cores, what are orbiting the protons and neutrons. After the temperature has been decreased enough, the atoms have started to make contact with another atom and formed the molecules. So this universe, where we are living can be called as that molecular universe. But then the temperature of the universe would continue decreasing, and that makes possible to forming super-large molecules.
The decreasing temperature along with increasing helium level causes that the form of material has turned to another. In that universe is also forming stars, but they are bigger, and they are fewer because those stars are burning helium in the fusion reaction. And the universe continues it's advancing and transformation because the stars are burning always the lightest elements. In the helium universe, the planets are looking at the same what we know, but they might form the same homogeneous elements, and that would turn them another type, that we ever can imagine.
After the helium universe, the advantage would turn to the carbon universe. In there the main elements in the space is carbon. There are lots of supernovas in that universe, and there are also only a few stars. Those stars are forming of the carbon, and other materials are forming the molecule balls. In that universe, the planets can turn to giant fullerene balls, and that would make them fascinating and different than we ever thought.
The thing in that universe is that it is very cold but gravity would win the expanding someday. The decreasing of temperature is causing because the size of the universe is getting larger, but there is the same amount of energy or electrons, which means that the density of energy is decreasing. And here we must remember, that gravity always wins, and then happens the big crush. Before the big crush is the moment, what we can call as the "big silence".
At this moment the universe is in its largest point, and then the particles would start to drop in the point where everything has begun. So when the density of the universe is growing, the temperature is rising, and the universe would start to repeating the sequences, what it went over during the expanding process. And this makes the universe so interesting and mysterious thing.
Image:
https://upload.wikimedia.org/wikipedia/commons/thumb/c/c5/M101_hires_STScI-PRC2006-10a.jpg/1280px-M101_hires_STScI-PRC2006-10a.jpg
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...
