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When the host loses consciousness, the built-in AI senses the danger and temporarily takes over control of the host's body. The AI will not automatically shut down until the host regains consciousness, or the crisis is eliminated.
If the host still does not regain consciousness after the crisis has been resolved, the AI will put the top soldier into the optimal defensive state and then go to sleep, and try to help the host regain consciousness. To prevent Badr from unlimited activities (especially sabotage) in the AI state, the AI mode has a time limit. Appearing only in Badr, also known as the "Storm Form", Badr is not controlled by the host, nor is it controlled by the AI, fighting entirely on its own biological instincts.
It is speculated that it may be due to the fact that the AI entered a state of "deep interference" with the host when it helped the host regain consciousness, causing Badr to completely lose control, and if the host is attacked at this time, the nano-armored Badr will fight back with his biological instincts.
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1. Surface effect. That is, the ratio of the number of atoms on the surface of nanocrystals to the total number of atoms increases sharply with the decrease of particle size, which causes the property to change. The decrease of nanocrystalline particles leads to the rapid increase of surface heat, surface energy and surface binding energy, resulting in high activity.
For example, the average particle size of TiO2 produced by the Imperial Chemical Company of Japan is 15 nm, and the specific surface area is as high as 80 100 m2 g. 2. Volume effect, when the size of the nanocrystalline particle is equal to or less than the de Broglie wave of the conductive electron, the periodic boundary conditions will be destroyed, so that its magnetism, internal pressure, light absorption, thermal resistance, chemical activity, catalysis and melting point are all greatly changed compared with ordinary particles. For example, the melting point of silver is about 900 degrees, and the melting point of nano silver powder is 100 degrees, and the melting point of general nano materials is 30 50 of the original bulk material.
3. Quantum size effect, that is, when the particle size of nanomaterials reaches a certain value, the electron energy level near the Fermi level changes from a quasi-continuous energy level to a discrete energy level, and the absorption spectrum threshold moves to the short-wave direction. As a result, the nanomaterials have high optical nonlinearity, specific catalytic and photocatalytic properties, strong oxidation properties, and reducibility. Nanomaterials also have macroscopic quantum tunneling effects and dielectric confinement effects.
Nanomaterials can continue to maintain superparamagnetism at low temperatures, have a strong ability to absorb light, can absorb a large amount of ultraviolet rays, and also have strong absorption characteristics for infrared, and still have high strength, high toughness, excellent stability, etc. at high temperatures, so nanomaterials are known as cross-century high-tech new materials.
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The nano core of the nano tip is the "tactical top soldier", that is, the tactical force, that is, the front-line troops that fight the enemy with real swords and guns, whether it is the regular army, special forces, militia reserves, as long as it is necessary to confront the enemy head-on, it is a tactical level of troops.
The Nanospike is the ultimate weapon secretly developed by the Subhumans to strike fear into the hearts of all human armies. Due to the use of a lot of dangerous technologies that are still in the theoretical stage, the entire development process is strictly secret, and even ready to destroy the development materials at any time. As far as the project itself is concerned, only a very small number of people within the subhuman community are aware of the existence of the project.
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The three main features that distinguish nanotechnology from classical chemistry are as follows:
1. At the nanometer level (10 (-9 power) meters), it is possible to observe and process a single molecule without the need for operation at the level of n molecules (Avogadro's constant to the power)).
2. At the nano level, the boundary between inorganic and organic substances no longer makes sense, and in many projects nano and biotechnology are combined.
3. Molecules, supramolecules, as well as genes and proteins, are seen as robots that perform specific tasks rather than building blocks of matter.
Invention of nanotechnology:
1. Robots.
Nanorobots are designed and manufactured according to the principles of molecular biology as prototypes, allowing them to work in nanospace. They are also known as molecular robots. The research and development of nanorobots has become a hot topic in the field of science and technology today.
2. Waterproof material.
On August 4, 2014, Australia made a groundbreaking T-shirt from a newly invented fabric. No matter how soaked people are, the t-shirt retains good water resistance.
3. Clothing. The addition of nanoparticles to textile and chemical fiber products can remove odor and sterilize. Although the chemical fiber cloth is strong, there is an annoying static electricity, and a small amount of metal nanoparticles can be added to eliminate static electricity. <>
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"Nanometer" is the translation name of "nanometer", that is, nanometer, which is usually used.
nm". In physics, a nanometer is a unit of length, 1 nanometer to 10-9 meters. For comparison, a nanometer is only as long as 3 atoms.
The so-called nanomaterials refer to various solid ultrafine materials whose microstructure is modulated at least at the nanoscale (1 100 nm) in the one-dimensional direction, including zero-dimensional atomic clusters (aggregates of dozens of atoms) and nanoparticles. one-dimensional modulated nano-multilayer films; 2D modulated nanoparticle membranes (coatings); and three-dimensional modulated nanophase materials. Nanomaterials include nanoparticles and nanosolids: nanoparticles are usually 1 nm and can only be seen with an electron microscope; Nano-solid system nanostructured materials.
The dimensions are: 1 100nm nanoparticles are condensed and buried into blocks, curved films, multilayer films and fibers, which are divided into three categories: crystalline, quasi-crystalline and amorphous.
Nanotechnology refers to a comprehensive technical system that prepares, researches and industrializes substances at the nanoscale, as well as cross-research and industrialization of nanoscale materials.
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1. Nanotechnology, also known as nanotechnology, is a science and technology that uses a single atom and molecule to manufacture matter, and studies the properties and applications of materials with a structure size in the range of 100 nanometers.
2. Nanoscience and technology is based on many modern advanced science and technology, which is the product of the combination of modern science and the current and defeated technology, and nanoscience and technology will lead to a series of new science and technology, such as: nanophysics, nanobiology, nanochemistry, nanoelectronics, nanofabrication technology and nanometrology.
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Characteristics of Nano:
1. Surface and interface effects.
The main reason is that the diameter decreases, the number of surface atoms increases, and such a high specific surface area will cause some extremely peculiar phenomena, such as metal nanoparticles will burn in the air, inorganic nanoparticles will adsorb gases and so on.
2. Small size effect.
When the size of the nanoparticle is equal to or smaller than the wavelength of the light wave, the de Broglie wavelength of the conductive electrons, the coherence length of the superconducting state, the depth of transmission and other physical features, its periodic boundary is destroyed, so that its acoustic, optical, electrical, magnetic, thermodynamic and other properties present a "novel" phenomenon.
3. Quantum size effect.
When the energy level spacing is greater than the condensation energy of thermal energy, magnetic energy, electrostatic energy, magnetostatic energy, photon energy or superconducting state, the quantum effect of nanomaterials will occur, resulting in changes in their magnetic, optical, acoustic, thermal, electrical and superconducting properties.
4. Macroscopic quantum tunneling effect.
The magnetization of nanoparticles also has a tunneling effect that can pass through the potential barrier of the macroscopic system and change, which is called the macroscopic quantum tunneling effect of nanoparticles.
Nanotechnology: Nanotechnology is the science and technology of manufacturing substances with single atoms and molecules, studying the properties and applications of materials with structural sizes in the range of 1 to 100 nanometers, and is the product of the combination of dynamic science and modern science. <>
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The applications of nanotechnology are as follows:
1. Clothing. Adding nanoparticles to textile and chemical fiber products can remove odor and sterilize. Although the chemical fiber cloth is strong, it has an annoying phenomenon of static electricity, and a small amount of metal nanoparticles can be added to eliminate the static electricity phenomenon.
2. Food. Using nanomaterials, refrigerators can be antibacterial. Sterile tableware and aseptic food packaging supplies made of nanomaterials have been launched. The use of nano powder can make the wastewater completely clean and fully meet the drinking standard. Nano food is full of color, flavor and taste, and it is also good for health.
3. Live. The application of nanotechnology can improve the scrubbing resistance of wall coatings by 10 times. The surface of the glass and ceramic tile is coated with a nano thin layer, which can be made into self-cleaning glass and self-cleaning tiles without scrubbing at all.
Building materials containing nanoparticles can also absorb ultraviolet rays that are harmful to the human body.
4. OK. Nanomaterials can improve and improve the performance indicators of vehicles, nano ceramics are expected to become ideal materials for engine parts such as automobiles, ships, and aircraft, which can greatly improve engine efficiency, working life and reliability, and nanosatellites can provide traffic information to drivers at any time to help them drive safely.
Three concepts of nanotechnology:
According to this concept, molecular nanotechnology proposed by Dr. Drexler of the United States in his book "The Machine of Creation" can make the machine of combining molecules practical, so that all kinds of molecules can be arbitrarily combined and any kind of molecular structure can be manufactured.
2. Nanotechnology is positioned as the limit of micromachining technology, a kind of nano-level processing technology, grinding reputation also makes the miniaturization of semiconductors is about to reach the limit, even if the existing technology continues to develop, theoretically speaking, it will eventually reach the limit, if the line width of the circuit gradually becomes smaller, the insulating film that constitutes the circuit becomes extremely thin, which will destroy the insulation effect, in order to solve these problems, researchers are studying new nanotechnology.
3. From the perspective of biology, it is proposed that organisms have nano-scale structures in cells and biofilms, and the development of DNA molecular computers and cellular biocomputers has become an important part of nanobiotechnology.
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