Showing posts with label carbon. Show all posts
Showing posts with label carbon. Show all posts

Friday, October 25, 2019

Caffeine, nanotechnology, and science

Caffeine, nanotechnology, and science

The chemical formula of caffeine is C8H10N4O2 (I cannot make down indexes with this program), which means that it contains Hydrogen, Nitrogen, and Oxygen, and those elements are boosting the chemical reactions in the cells. Nitrogen works as a catalyst in many chemical reactions, and hydrogen and oxygen increase the power production in mitochondria. In this molecule, carbon works as an inhibitor, and if we remove carbon from caffeine, it would turn to super caffeine. But the problem is how to handle that molecule. 

Nanotechnology allows developing new molecules

If we would remove carbon from this molecule the formula is transforming to H10N4O2 (N4O2H10), but the public database doesn't seem to have that kind of combination. Or at least it is not used not the medical industry. That might cause because of it's high reactive form.-This kind of thing would turn interesting if we would connect this hypothetical molecule to the enzyme, which would make the feeding system of the body transport its precise right cells, we could make "super caffeine". The idea of this kind of molecules is that the enzymes of cells are cutting them in the precise point. These kinds of molecules need special transporter in the body because they can react in the wrong place. 

But the thing is that if the last molecule is stable it would be very high reactive, and if we want to use it for some purposes, we must make stable conditions for that kind of chemical combinations. And if we want to handle highly reactive molecules, we must handle them carefully and the thing is that those chemicals might explode very easily. So how we could handle this kind of reactive chemicals? 

We must close those highly reactive molecules to the capsules, where is no reactive gas, and that kind of thing would make this kind of chemical true. This kind of system can be a really small size, and that means that those capsules could be so small, that they can be visible in the microscope. This kind of nanotechnology can revolutionize the medical industry. 

Thursday, June 27, 2019

The other ways to make a lightweight nuclear reactor is to use radioactive gas as the fissile material.

The other ways to make a lightweight nuclear reactor is to use radioactive gas as the fissile material.

The is the successor of the writing about Element 115, and the thing is that the new types of lightweight nuclear reactors might use another kind of nuclear isotopes than the traditional versions. I don't know how many kinetic tests have been made by using nuclear reactors, what are using radioactive gas as the fission material, but this kind of solutions might be interesting.

Also, synthetic elements like Einsteinium and Californium might be planned to use as the fuel of the nuclear reactors. In most modern nuclear reactors the bite of the really highly radioactive material would be kept in the move in the cyclotron, that the heat of that material would not warm the only one place, and that will be hoped to deny the reactor melting.

Also, radioactive gasses are an interesting choice for nuclear fuel material. But the problem is, that nobody has experience of the use of gas as the fissile material and controlling those reactors would be extremely difficult, what keeps them in theoretical level

The control of those new type of nuclear reactors, which uses radioactive gas as the fuel would happen by using the carbon atoms or fullerene. Those extremely small parts of carbon would, in theory, work by a similar way with normal carbon sticks inside the nuclear reactor. The idea is that the normal carbon filter would remove the carbon from the gas,  or the carbon ions can be separated from the radioactive ions by using magnetic separator.

In this case, the magnet, what has opposite polarity with carbon ions can pull them out from the track, and decreasing the level of carbon in the tube would increase the power of the reactor. The magnetic system would be easier to work because carbon can return to the reactor easily when the operator wants to decrease the power of the reactor, and if the carbon would not cost, that allows to adjust the power of the reactor freely. The idea is that the radioactive gas has also opposite polarity with the carbon and that would make easy to separate those things.

The magnets will hover those extremely hot and radioactive isotopes. The system might use powdered radioactive metal, but also the radioactive gas like Astatine, Radon,  Livermorium (Element 116) and Oganesson (Element 118) what is supposed to be a highly radioactive noble gas is planned to use as nuclear fuel. Ionizing those radioactive elements would happen by using electromagnetic radiation. The idea of use that kind of systems is that the magnetic accelerator would accelerate those radioactive gases or their ions to the near the speed of light. 

Then the time on the surfaces of those atoms will be stopped, and that makes possible to use those short-living radioactive elements like the fuel in the theoretical nuclear reactors, what seems like torus or donuts. The gas-form radioactive elements are an interesting thing when we are thinking the new versions of the lightweight nuclear reactors, what are in the theoretical level in this day.

Tuesday, May 28, 2019

Using smoke to make knives and other tools

Using smoke to make knives and other tools

When we are talking about biomaterials, we always forget that those materials are actually food. And the hard biomaterial can replace the plastic in every part, where the strength or other conditions allow.  That means that macaroni can use to make even the machine parts, which are normally made by using plastics. So it can be used in the structures or gearwheels as well as plastic, but if some guy eats it, it would not be so dangerous. 

When we are thinking things like macaroni, we should ever forget, that this material can use as a weapon. Biomaterials can also be dangerous because they are nonmagnetic and quite easy to get. Even in prisons, people would get the stuff like macaroni or gelatine in their hands, and they can use that stuff as a weapon.

The thing is that the knife maker must just take the macaroni panels and sand them to the form of the knives or axes. But if the top of the macaroni stick would be sharper, that thing is a really dangerous weapon. This makes that thing very dangerous.

Smoke is made by fullerenes, which makes composite materials very hard

When we are talking about composite materials, we always forget that things like dough are actually composites. In fact, we could make many tools by using the combination of gelatine and ash, and that thing makes those bio-based composites very interesting things.

Smoke is actually carbon or sharper way to say fullerene carbon, which can be used in the machine building when it is connected to gelatin or some other things, and in the film below this text, some Far-East guy makes knives by using ash, what is got from smoke and gelatin, what is taken from macaroni. This kind of films are making me think, that may be in some days, there would be even guns, what are made by using biomaterials, and that makes possible to lose them by using very unseen places like compost or fireplace.

By using the same methodology, what this person uses, people can make parts of composite pistols, and every composite part of that pistol can be replaced by using this kind of material. If the pistol would want to be used only in once, the criminals would try to make those parts by using Macaroni dough. And those knives can slip in the airplane or prison because they are nonmagnetic.

When we are thinking about the very tough ceramic or carbon-based materials, they can use as the hacksaw, which means that any tool, like a wooden knife, can be equipped with the carbon composite hacksaw. And that might be the problem for the security, because, in theory, the prisoner can use even the toothbrush as the hacksaw.

But when we are thinking about the fullerene and nanotechnology, in the future the nanomachines can make equipment and then scatter the structure in the bites. That means that in the future somebody would just drop dust in the yard of the prison or in some other secured area, and then that dust would be ordered to take the form, what the controller wants. This is the thing in the world of technology.

https://www.youtube.com/watch?v=zUCEMjhsvaU

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