Skip to main content

The laser can create miniaturized machines from bubbles.

 

.


The laser can create miniaturized machines from bubbles.

The ionized water molecules that are forming in the nanobubbles can create the fundamental new type of nano- or quantum machines. If the single water molecule can be ionized its tracks can control very sharply. 

The laser can create the 3D liquid holograms by using bubbles, and that thing can make it possible to create the new type of liquid machines. The bubble-machine can create bubbles in some areas, and then the bubbles can turn to the form that the operators want. And if the bubbles are used the magnetic material can be used as an example to clean the layers. Or it can use to fix the holes in the tubes and other systems. 

But there is the possibility to use lasers for ionizing things like water molecules. Like I wrote earlier. If the single water molecule can ionize that allows driving the molecule by using the magnetic fields or extremely thin laser rays. 

The ionization of the water molecule will happen in nanobubble. The molecule will inject into the bubble, where it will stress the electromagnetic radiation. And that turns the molecule into an ionized form. Also in that process, the electric load of that molecule can increase, which makes it suitable as an example the cytostatic medical treatment.

The laser-ray or magnetic field can be used to control the direction of the water molecule. The ionized water molecule can shoot to layer and use the extremely sharp cutter. And if it will load with high power electricity. That ionized water can use to as a radiological medicine. When the ionized water is touching the cell, it can give an electric impulse to the cell. 

Along with the nanobubbles that can use to make the nanomachines. That technology is one of the most interesting visions in surgery. The nanobubble is the thing that turns every single liquid material into a solid. The principle of nanobubbles in the liquid where is small but extremely small bubbles. The material can store in the bottle, and when it releases the liquid the system creates those bubbles in the liquid. 

The nanobubbles can be used to fill the veins that are taking the nutrient to the tumor. And when the tumor cure the nanofoam can turn back to liquid. The nanofoam is the thing that allows creating the new things like heat shields to the spacecraft. The shield material could be in the tanks under the outer layer of the body of the spacecraft. If that shield is needed the foaming material will pull out the nanobubbles will be released to that layer. That allows making the repairing for the craft very easily. 

The shield material can be foaming liquids, and then the system creates nanobubbles in that material.  But another thing is that the nanobubbles can use in materials like urethane, which turns it very hard. So every material is suitable for creating the nanobubbles. And the large layers can cover by using that fundamental invention. 

Sources: 

https://en.wikipedia.org/wiki/Nanofoam

https://www.sciencedaily.com/releases/2021/01/210121131944.htm

Image: https://sites.google.com/a/hawaii.edu/klaus-sattler-lab/carbon-nanofoam

Comments

Popular posts from this blog

Plasmonic waves can make new waves in quantum technology.

"LSU researchers have made a significant discovery related to the fundamental properties and behavior of plasmonic waves, which can lead ot the development of more sensitive and robust quantum technologies. Credit: LSU" (ScitechDaily, Plasmonics Breakthrough Unleashes New Era of Quantum Technologies) Plasmonic waves in the quantum gas are the next-generation tools. The plasmonic wave is quite similar to radio waves. Or, rather say it, a combination of acoustic waves and electromagnetic waves. Quantum gas is an atom group. In those atom groups, temperature and pressure are extremely low.  The distance of atoms is long. And when an electromagnetic system can pump energy to those atoms. But the thing in quantum gas is that the atoms also make physical movements like soundwaves. It's possible. To create quantum gas using monoatomic ions like ionized noble gas. In those systems, positive (or negative) atoms push each other away.  When the box is filled with quantum gas and som

The breakthrough in solid-state qubits.

Hybrid integration of a designer nanodiamond with photonic circuits via ring resonators. Credit Steven Burrows/Sun Group (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) ****************************************** The next part is from ScitechDaily.com "JILA breakthrough in integrating artificial atoms with photonic circuits advances quantum computing efficiency and scalability". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "In quantum information science, many particles can act as “bits,” from individual atoms to photons. At JILA, researchers utilize these bits as “qubits,” storing and processing quantum 1s or 0s through a unique system". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "While many JILA Fellows focus on qubits found in nature, such as atoms and ions, JILA Associate Fellow and University of Colorado Boulder Assistant

Metamaterials can change their properties in an electric- or electro-optical field.

"Researchers have created a novel metamaterial that can dynamically tune its shape and properties in real-time, offering unprecedented adaptability for applications in robotics and smart materials. This development bridges the gap between current materials and the adaptability seen in nature, paving the way for the future of adaptive technologies. Credit: UNIST" (ScitechDaily, Metamaterial Magic: Scientists Develop New Material That Can Dynamically Tune Its Shape and Mechanical Properties in Real-Time) Metamaterials can change their properties in an electric- or electro-optical field.  An electro-optical activator can also be an IR state, which means. The metamorphosis in the material can thermally activate.  AI is the ultimate tool for metamaterial research. Metamaterials are nanotechnical- or quantum technical tools that can change their properties, like reflection or state from solid to liquid when the electric or optical effect hits that material. The metamaterial can cru