Showing posts with label Nutrient. Show all posts
Showing posts with label Nutrient. Show all posts

Monday, November 4, 2019

Spacesuits, electricity, and biotechnology


Spacesuits, electricity, and biotechnology

This might be the technology of the future spacecraft. If we are thinking about the life-support systems of the spacecraft and space suits, we must realize that by using biotechnology, we can create remove carbon dioxide from the air, and at the same time give the nutrient to astronauts. In the case, where the core of the spacecraft has been damaged, the crew could live a very long time in the spacesuits, if they will get nutrient and liquid in that case.

The liquid can be recycled by the system what will clean waste from the blood. But the production of the nutrient for astronauts would be the problem. And that kind of problems must be solved if we would start to send space shuttles behind the moon. The thing is that the core of the spacecraft can be damaged, but also damaged spacecraft can bring astronauts back to Earth if those persons would have the ability to operate the systems of that spacecraft.

Also, there is a possibility that some astronauts would slip to space during the spacecraft. That means that the rescue craft must send after them, and that craft must also go to those persons, what might take a couple of days if that craft must send from Earth. So the spacesuit must get electricity for every system, what it has. In the space near planet Earth, the spacesuit can get electricity from the solar panels, which can be opened from the back of the suit.

But farther in the solar system would the suit need RTG for creating electricity for a long period. The fuel cells are effective, but they have problems with the use period. They need fuel, so in emergencies, they are not suitable for a power source. And in that case, the RTG (Radioisotope Thermal Electricity) or plutonium battery would be a suitable energy source, because it can deliver electricity for the suit even for years.

Biosuite, what would clean air and feed body

A new type of materials and biotechnology allows creating the life support system, which fits in the small space. That kind of system would be effective to use in the spacesuit or the sleeping chambers if the craft uses a sleeping crew.

In the last case, the crew has been put to sleep while the long period space trip, because of the hibernation would save nutrients, but it's a good way to avoid social problems. The hibernation can also make inside the spacesuits, which are equipped with the remote-controlled HULC-exoskeleton. That allows the central computer of the craft to communicate with the spacesuits and move the crew inside the spacecraft.

The new type of protective suit, what is made by using the hollow fibers, which are filled with living cells. Those cells would live in nutrition, and they can be vegetarian cells, what creates sugars and nutrient for the user. That kind of system can transfer nutrients straight to the user's blood, which means that the user must not eat by using the mouth or stomach.

If we are thinking about this kind of suit, it can also freash air in the spacesuit by using photosynthesis in that thing. And it can also feed the astronaut's body. In this case, there would be synthetic solar light, which is created by using LED:s.

That thing would increase the operating time of astronauts, and this kind of biotechnology would allow the astronaut to increase the ability to operate in the spacesuit. That kind of system would be an effective and good thing for astronauts because it would give them nutrients and also separate oxygen from carbon dioxide.

Saturday, April 27, 2019

Robots of tomorrow would eat the same nutrient with animals

Robots of tomorrow would eat the same nutrient with animals

https://kimmoswritings.blogspot.com/

Soft, silicon core robots can act like amoebas.

Nano-size fuel cells, what is looking like mitochondrial have given ideas for creating artificial cells, what would be made by silicone. Those mitochondria could also connect to normal cells. The soft robots would use special fibers for movement. Those fibers can be controlled by magnets. And they can be carbon fibers, where is the iron bites. Or in a simpler solution, the silicone bag would be filled with liquid, that reacts to magnets or electricity. That means that the electrodes, what is installed to those cells would change the form of the core.

This is how natural amoebas would move in nature. If we would use the thermoelectric element we could send those robots to search volcanic areas and especially geysers and hot rivers. They could be very useful in that purpose because they could use external temperature as the electric source. And the silicone layer would protect the electronic observation systems from the other heat.

The electricity would get from artificial mitochondria. The nucleus would be removed and replaced by using the microchip if the machine is created by using natural cells, but in the thing would also be the single silicon bag. The microchip what controls that machine would use the thermoelectric element for creating electricity.

Robot what eats normal food would revolutionize the robotics

In theory, they could use ATP-synthesis for creating temperature, which makes thermoelectric elements for creating electricity to the small microchip. ATP is the normal power source for natural cells. And the thing will allow using normal nutrient for those robots. That kind of thing would make those things more independently and sophisticated. The softcore artificial cell would have many usages from the medical to scientific and military purposes.  Those soft robots can search the blood veins or digestive tract of the animals, and search what the fishes eat, and what influence the pollution would have to those species.

They can slip in the human body, and clean the blood veins, and in this case, the silicone bag would have a rough surface. If the system would work perfectly, it can wipe out the plaque from the veins, and make the blood run perfectly. But those machines can also close blood veins to the tumors. The problem is that those systems would be used also in military purposes. They can close the blood veins to the brains, and that would cause the death immediately, or the person would go unable to operate.

Wednesday, April 17, 2019

What could we do with bacteria, what can take a certain form?

https://kimmoswritings.blogspot.com/

1. What could we do with bacteria, what can take a certain form?

In the nanotechnology, the living organism and machine would be connected together. In the real world, the bacteria can be used as the nanomachine, which would be used to form the wires on the electric components. In this case, the bacteria can be put the small piece of metal, and then those bacteria would travel in the nutrient lines, what are put on the electric circuits.

That means that the bacteria would be dropped on the bacteria and the electric wires can be drawn to the surface by using a pen, where is the nutrient. And then the rest of the bacteria would die, and the bacteria that are in the place of the nutrient lines would stay alive. And then those bacteria would be killed, and the metal bites would form the electric wires to the component. Those metal bites would look like a little string, and when the bacteria would die, the rings will touch together.

The idea is that the only bacteria what is on the place, where is the nutrient can touch the layer, and the rest of those bacteria would wash away. That means that in the place of the nutrient must get a rough place because the bacteria must take contact on the layer, and then hold on that surface.

2. String looking metal bites would form the wires on the components when bacteria would die

The component itself would cover with varnish, and then the nutrient or bacteria, what would be in the place, where is the nutrient would melt the varnish away from that place. The problem is to create the layer, where bacteria can wash away if they are not in a certain place on the component, where the wire must be formed.

The thing would be made by using layer, what would be slippery, but the nutrient would make the bacteria create the acid or the nutrient itself contains the enzymes or some other chemical, what will break the surface layer, and uncover the rough surface under that varnish. The bacteria can touch that layer, and then they can be terminated by using the UV-light. The metal bites would look like little string, and when the bacteria would die, those metal bites would touch together, as I wrote at the beginning of this text.

3. Did František Kupka try to teach bacteria to take the form, what that man draw?

The famous avant garde-artist František Kupka (1871-1957)  had one little hobby, and that thing is that this man was very interesting about science, and he owned the microscope. Also, that man created bacteria cultures, what he observed. We all know that persons like Kupka are really interesting, and they might have interesting ideas, and maybe Kupka used the nutrient for making bacteria grow in a certain form. When we are thinking about that man's final work, there are interesting years below the signature, and they are 1913-1957, and there is a possibility.

That the man kept some bacteria cultures in the isolated dish, where they would create the own population, and that kind of tests are actually very dangerous. The reason for that is that those bacteria would degenerate in that isolation, and that thing would transform the genomes as the way, what could transform those bacteria very dangerous.

3. Never do this at home

Because if the multiple bacteria species would be in the same culture, they would change genomes, and in that process, the bacteria would transform in the very dangerous form. In that process, the core antigen of the bacteria can remain looking like the harmless bacteria but the genomes would be the dangerous bacteria. The thing is that the immune system would recognize the bacteria by its antigens and if the immune system would not be warned by the antigens, the bacteria can destroy the entire body of that victim, and the immune system would not even react to that attack against human cells.

If we would act and think the using the extraordinary methods as Kupka did, that man might be tried to make bacteria, what would follow the forms, that this man draw. Here I must say that the testing some things doesn't mean that the test would be successfully completed, but maybe Kupka put the nutrient in the certain forms in the dish, and maybe he got ideas of those forms and colors, what the bacterias take in the culture medium.

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