Showing posts with label innovation. Show all posts
Showing posts with label innovation. Show all posts

Friday, July 4, 2025

The AI that beats humans is at the door.



Mark Zuckerberg says that he wants to create an AI that is more intelligent than humans. The AI can have better cognitive skills than humans because they learn differently. Every skill that the AI has is like a macro in its memory. There is no limit for the number of those macros, or automatized actions that the computer stores into its memories. The limit is the memory storage. The AI will not forget humans. That makes it possible for the same robot can cook. 

Clean and make almost limitless numbers of operations without errors. If we want to make the AI that makes food for us we must create a huge number of variables for that thing. But there can be a shortcut to that problem. The AI can involve certain modules. So, if the user wants meatballs that AI downloads the meatball algorithm and databases to the robot. That makes it possible to make the system operations lighter. The databases or datasets can be created separately. 

Cognitive AI means that it can create a dataset independently. And for computers, each dataset is a certain skill that it has. 

The AI is the man-created alien. Are aliens already here? The fact is that if Mark Zuckerberg wants to build AI that is more intelligent than humans that thing is an alien. Human-made aliens are things like genetically engineered species and artificial intelligence. And then we can ask is artificial intelligence really intelligent? Can it think? The AI can do many things. It can advance its skills and it can learn from other AIs and from films. Turing’s test is the thing that measures the AI’s ability to think. 

The AI can mimic humans. It can transfer all movements that humans make to the human-shaped robot. That thing is the thing that makes the system seem intelligent. The cognitive skills that AI has made it possible to create learning systems that can control robots on the ground following certain parameters. When a robot fails in its mission the system also knows what it should not do next time. The physical robots are good subjects for modeling the cognitive systems. 

The AI can learn autonomously by using the same methods as humans. If it fails some mission that means there is an error. The cognitive system learns by using a method there failure means that the system must not try that thing again. Learning by mistakes is easy to explain by using a model where the AI controls a robot group. There are let’s say 5 paths that the robots can use for traveling from point A to point B. That AI sends a robot to make its mission. When a robot fails like falling into a canyon the system learns what it should not do with the next robot. 

The system creates the model of the landscape and then it creates the model of the path that the AI selects for the robot. When a robot succeeds in its mission the AI stores the data about the environment for the next time use. The system can also store the data about failures so that it knows what it should not do. Failures are also important for developers. The robot makers need knowledge about what caused their product failure. 

The robot should know how steep the slope the robot can rise. When we talk about robot success and things that the robot should not do, we must realize that the robots cooperate. The human-shaped robots can cooperate with flying quadcopters that send data about the landscape and other things that those robots require. 

But then we can think about AI as a mathematician. The system must also recognize the mission that it has. When the AI recognizes the mathematical formula, it can connect the data that it collected to that formula. The problem is this. If the mission is not well-explained AI will not simply understand that work. The AI must dare to say that thing. If the mission is not clear the AI must not try to make anything. The main problem with learning systems is this. They simply connect a new subprogram or macro in them. And that makes them look very intelligent. But the main question is: can that system think? 

For computers, every skill is a database or dataset. A learning system is described as a system that can get new skills and then link those skills with other skills. Or, otherwise, we can say that the self-learning system can create new datasets and link those datasets with other datasets. 

It can connect data and data frames into one entirety. But the fact is this. The AI simply mimics subjects. It seems that the subject makes something, and then the AI makes the same thing if it faces a situation that matches that case. But we humans also learn from mimicry. When we see that the teacher makes something at the front of the classroom we can mimic that thing. 

When we learn something new with teachers we simply mimic things that the teacher makes. And then we store that data model in our memory for the next time use it. That is the rigid model. The rigid model includes basics for some computer skills. And then we must simply connect that model with other things. This ability to interconnect that new model with other things makes it flexible. The model turns into a thing that is like an amoeba. 

The system can connect that new model to many other skills. When we talk about things like image processing programs, we can also connect skills that this program requires with things like writing skills. The fact is this: the AI must not do everything that the user wants. It must have the possibility to refuse to follow orders if the user wants to use it for criminal activities. The other thing is that the AI must have certain orders for what it must do. The AI must have the ability to use virtual models on the screens that it really makes when somebody gives certain orders. 

When we think about cases in which the robot acts as a mover there are some human-shaped mannequin statues that can cause a bad situation. If the mannequin statues are not well described to robots, that system can also transport humans to the lorry. In those cases, the AI must know all the details about their subjects. They must know that the mannequin statues are plastic and other details. 



Wednesday, June 11, 2025

Do it Yourself, DIY hobbyist-made homemade, portable lasers that can melt even steel.


Illustration of a groundbreaking 250-watt handheld laser device created by YouTuber Styropyro. Image generated by AI. (SustainAbility Times, “I Built a Laser from Hell”: YouTuber Unleashes World’s Strongest Handheld Beam That Instantly Melts Metal and Ignites Anything)



Above: (SustainAbility Times, “I Built a Laser from Hell”: YouTuber Unleashes World’s Strongest Handheld Beam That Instantly Melts Metal and Ignites Anything)


Laser is not a toy. One single laser LED can burn the paper. In the second film, you see that the 1W laser LED can put newspaper on fire. But, the most powerful hand-held, homemade laser can make much more. The YouTuber named Drake Anthony made that thing. And its introduced in many media pages. The first film is about that, the most powerful hand-held laser. 

The 250 W laser uses LED-based technology. That makes it possible to make portable lightweight, high-power laser systems. That laser can melt steel and those things make them very dangerous in the wrong hands. The laser system that shoots a laser beam through the laser lead-made laser beams binds that energy into those beams. This effect is known as the maser effect. 

The requirement for that thing is that laser rays that come from the bottom of the system are stronger than beams that come from its sides. Another way to make that system is to use high-power holograms. Those high-power or high-energy holograms inject energy into that laser beam. And that can raise its energy level to higher than the creator predicts. Another way is to aim multiple laser- LEDs at the same point. 

In the wrong hands, those portable systems can be dangerous. They can be used to cut electric wires. And if they are aimed at things like aircraft. They can scratch to the wing. That means those systems can be dangerous and at this time dangerous means both purpose and non-purpose damages that the high-power laser rays can cause. A single laser LED that injects energy into organs like eyes or skin can cause deep burning injuries. And that makes those systems dangerous.




Above: The most powerful hand-held laser.  



Above: 1W laser LED burns newspaper. 


When we think about military applications, high-power portable lasers can make a similar revolution as drones. The ability to interconnect laser communication lasers and laser weapons makes it possible to create systems. They can also destroy drones and other targets. Laser systems can drill holes in cannons and engines. And that makes them ideal for sabotage. 

If multiple drones aim laser beams at one point, that can destroy even large, and well-armored targets. Those lasers can cooperate with drones. If the drone has a mirror and the laser beam is aimed at it, that system makes it possible to shoot laser beams around the corner. The mirror drone that hovers above the battlefield can aim those laser beams over the hills and other blockage. 

The fact is that laser weapons are also deadly tools. If somebody uses a laser rifle as an assassination tool, there is no bullet that nobody can compare like police normally make in gunshot cases.  High-power laser rays that are shot at the water balloon can cause extremely powerful explosions when they cause sudden vaporization of water. 

The power of that explosion depends on how powerful that laser ray is. And how fast it can transfer its energy to that water. If that evaporation happens very fast. That can create a powerful pressure effect that can damage things. That is around it. So that makes it an effective stun gun. 


https://www.sustainability-times.com/energy/i-built-a-laser-from-hell-youtuber-unleashes-worlds-strongest-handheld-beam-that-instantly-melts-metal-and-ignites-anything/


Sunday, December 22, 2024

The Chinese humanoid robots challenge the "Optimus".



The Chinese startup introduced humanoid robots that should challenge Elon Musk's "Optimus". And we know where that robot is meant. The fact is that the humanoid robot is a multipurpose tool. And that tool can make almost everything that humans. 

And that means. It has a role in military and civil marketing. The humanoid robot can have semi-automatic or full-automatic modes. 

The idea is that in semi-automatic modes. The robot can be like a remote-controlled tool. That means. The controller can operate the robot. By using things like a joystick and arrow keys. If the programmer programs a robot to go shopping for that person. 

The system operator can use large language models, LLM, and virtual reality tools like data gloves for that operation. The operator teaches the action. And then. The robot can make it automatically. 



And those robots also have automatized actions.  That the robot can do automatically. 


In full-automatic models. The operator makes the action list for the robot. That it should make during the day. 

Programming robots. Is a similar operation. To teach a child The operator controls every operation. When a robot takes action for the first time. 

Then that robot. Or it's computer records that action. After that, the operator must only choose necessary actions from the library of those records. 


 A robot can make those things. Without separated commands.


If those robot operators can use brain-computer interface, BCI and brain-machine interface 

That thing might look like cute. But the problem is that the same robot, that builds houses for people can also act as a combat robot. The humanoid robot can fly aircraft or act as an infantryman. Humanoid robots will turn more and more independent the higher-power microchips and photonic processors decrease the need for networks. 

And maybe in the future. Some warships can operate using those humanoid robots as crew. The humanoid robots can turn any ship or other vehicle into a robot. And that is one thing that we should worry about. The same robots that operate on battlefields can operate on the Moon and other planets. Maybe the first landers to another planet are human-shaped robots that collect samples and test technology. 

Those robots can be covered by sensors and they might test the space suits and heat protection. And maybe those robots will make comfortable stations far away from the Earth.  

The humanoid robots can travel to outer planets and operate there under AI control. That means people must not spend long-term periods of their lives on those journeys. 


https://interestingengineering.com/innovation/china-powerful-humanoid-robot-unveiled

Tuesday, November 12, 2024

The tiger awakens.



The new and powerful technology is the tool, that is one of the most dangerous things in the wrong hands. Wrong hands are our counter-players in the global theater. The image in the middle of the text introduces the new Chinese large-size sea drone. The robot ship can be the tool for next-generation naval power. The ship itself looks like some kind of yacht, but it's armed and dangerous. Fast and powerful sea drones that use things like Mach-6-10 railguns are feared things. 

The Chinese military is interested in AI. It is a tool that can make many systems more trusted than manned systems. The problem with manned submarines. A and warships is that they are out of control when they are at sea. That is problematic for the People's Republic of China. The authoritarian communist party causes hate, and especially new high-accurate weapons make warships dangerous for the nation's leaders. The Chinese military has modernized its weapons and other systems. The new tools are large-scale surface and underwater drones. 



"China unveils ‘Killer Whale’ stealth drone ship. The vessel which has a range of more than 7,000km will go on display alongside a collection of aerial drones at the Zhuhai air show" (SCMP, China unveils ‘Killer Whale’ stealth drone ship"

Those large- or full-size surfaces and underwater robots are following predictions. The large-size warships and nuclear submarines have space and electricity for highly advanced computers. That the AI is required to control those systems. The predictions about the full-size nuclear submarine drones that can patrol years underwater were made over 20 years ago. Those nuclear submarines can host any supercomputers. 


"A new photo has emerged of China’s mysterious stealthy corvette or light frigate, an intriguing design with low-observable features, which you can read more about here. In fact, the latest photo raises more questions than it answers, in particular, the presumed HQ-10 surface-to-air missile launcher at the rear of the deckhouse apparently being something else entirely." (TWZ.com, Our Best Look At China’s Stealthy Experimental Corvette)

The new robot surface combatants are a demonstration of the ideas and innovations. The People's Liberation Army wants to introduce the Western navies. When it demonstrates its power. The Chinese military uses industrial spying to steal information. That makes it possible to create new tools for the PLA. The PLA's new stealth corvette looks very much like Swedish Visby class corvettes. The thing is that things like magnetic rail guns that accelerate the ammunition to the speed of Mach 6-10 are things that make those corvettes deadlier than any Western vessels. Those railguns can sweep bunkers out from the beach and damage even large vehicles. 


"China’s rail gun sends smart bomb into stratosphere at hypersonic speed, then something goes wrong. Winged projectile achieves Mach 5, reaching altitude of 15km in test but was sent off course by rotation speeds, investigation shows. Lu Junyong and his team identified the cause of the problem with the help of artificial intelligence and propose solutions in peer-reviewed paper" (SCMP. China’s rail gun sends smart bomb into stratosphere at hypersonic speed, then something goes wrong)

The underwater systems that can shoot missiles, including hypersonic missiles are a very bad threat to Western navies. Those, possibly, nuclear-powered systems can hide underwater even years. And then they can also wait at the enemy, or predict enemy coasts to attack. The large-size robots can carry smaller robots that can slip into the enemy area. 

The new advanced systems are tools that can bring global politics and U.S. support to a critical point. The new advanced systems require more advanced counter systems than predicted. This means that the Pentagon must share also its latest equipment with the Far East and European theaters. 


https://interestingengineering.com/military/china-claims-breakthrough-in-electromagnetic-rail-gun


https://www.scmp.com/news/china/science/article/3262607/chinas-rail-gun-sends-smart-bomb-stratosphere-hypersonic-speed-then-something-goes-wrong


https://www.scmp.com/news/china/military/article/3285955/china-unveils-killer-whale-stealth-drone-ship


https://www.twz.com/sea/our-best-look-at-chinas-stealthy-experimental-corvette


https://en.wikipedia.org/wiki/Visby-class_corvette

Tuesday, October 22, 2024

The quantum computer can be the answer to AI requirements.



The combination of pressure and low temperature makes it possible to create new types of superconductors. That thing allows researchers to create new fundamental quantum computers. And as you see advancing of quantum computers advance their advance. When quantum computers participate in quantum computer research and development, that thing makes them more advanced than ever before. 

Another thing is that: quantum computers advance slower or less dramatically than the first quantum computers. The quantum computers are the most advanced tools that we can imagine. When we think about their role in high-power computing, those systems will become more and more effective. When more people and laboratories participate in those quantum computer R&D processes. That makes them more effective than before. 

The "less dramatic" advance means that. Quantum computer advances happen in places. Where the users cannot see. That thing is the increase in the qubit states. Or making more advanced AI. That can control qubits. Somebody is sometimes the next breakthrough in quantum computing.

The next big breakthrough is the room-temperature quantum computer. But to make that thing real researchers must work hard. Things like crystal technology, artificial diamonds, and extremely stable conditions can make the room-temperature quantum computer real quite soon. 

It's possible. The quantum computer's super cold heart is in the pressurized and very cold gas in miniature tubes. Then there can be the thermos tube there vacuum isolates the superconducting part of the quantum computer. The idea is that the pressurized and low-temperature part of the system is as small as possible. 

Almost every day we can read about some fundamental advances in quantum computing. The next-generation materials require very complex models. The manufacturing systems must react immediately if something in the environment changes. Those next-generation materials are things that quantum computers require. 

Quantum computers require new types of encryption. But they can also run the new AI models. The new large language models, LLMs are things that are more and more advanced. Every new skill that the LLM has spreads its size. And LLM requires lots of machine power. The new LLMs are more multitasking and versatile. That means they are larger. And those larger LLMs require new types of database structures and new types of code control. 

Quantum computers are the answer to the computer requirements that the new large AI models require. And even if the LLM does not turn larger or more versatile. The growing number of users means that the physical systems, or iron must increase its power. And that is one of the things where quantum computers can give a response.  The quantum computer itself can be energy efficient. But all its support systems like large-size cooling systems require lots of energy. 


https://aiandnaturaldemo.blogspot.com/2024/10/the-quantum-computer-can-be-answer-to.html

Saturday, September 30, 2023

The BAE's solar power military drone: Called the Phasa-35 can replace geostationary satellites.

 The BAE's solar power military drone: Called the Phasa-35 can replace geostationary satellites. 


Phasa-35-drone is one of the HASPs or (High-Altitude Pseudo Satellites). Most of those drones are solar-powered aircraft that use small electric engines. Those high-flying pseudo-satellites can replace orbital satellites at least in AWAC (Aiborne Warning and Control) and airborne observation systems. The typical HASP is a system that uses solar power in the daytime. And night time the system uses batteries. 

The high-flying solar-powered aircraft might look slow. But that kind of aircraft can control areas and make ELINT and other kinds of missions like in civil and military sectors. Those high-flying aircraft can use low-observable technology like stealth materials and intelligent, AI-based jammer systems. They can equipped with lidars, radars, and laser pointers that can point targets from the ground. The high-flying solar power aircraft can offer radar- and radio communication over selected areas. 








The solar-powered drone can get electricity from laser systems. The Humwee-based 10 Kw laser can deliver electricity for those HASPs. But same way things like radio masers can deliver energy to those high-flying platforms. The thing is that the ion-based stealth technology can make those systems survive.

The HASP can also act as a laser platform that points to the targets from the battlefield. And the laser or microwave-based EMP weapon can stop the incoming missiles. The laser weapon that hangs over the battlefield can drop low- and medium-altitude aircraft or drones. That kind of system can be a powerful tool. 

The fact is that the HASP system can be hypersonic if it uses the right propulsion. The electric jet engines or nuclear power can make HASPs more powerful than their creators ever imagined. 

However, the HASP can also use RTG (radioisotope thermoelectric generators). That makes it possible to travel at nighttime. The engineers can mount the RTG system in smaller drones like Predators. The RTG can rotate the same electric engines with solar power systems. 

In some visions, very large drones can use full-scale SMR (Small modular reactors). Those portable modular nuclear reactors or microreactors can give 20 kW power output for their electric power. In some visions. The idea of those high-altitude drones is taken from Convair NB-36H nuclear-powered strategic bomber. The modern systems are more capable than those 1950's systems. Those systems can use electric jet engines for traveling. And they can be highly supersonic stealth bombers or even space planes that can operate either atmosphere or orbital trajectories. 


https://www.dailymail.co.uk/sciencetech/fb-5686833/WHAT-PHASA-35-SOLAR-POWERED-DRONES-KEY-STATS.html

https://interestingengineering.com/military/bae-drone-replace-geostationary-satellites

https://www.reuters.com/world/us/westinghouse-unveils-small-modular-nuclear-reactor-2023-05-04/

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

https://en.wikipedia.org/wiki/Convair_NB-36H



Saturday, September 23, 2023

What would a room-temperature superconductor give to us?

    What would a room-temperature superconductor give to us? 


Some of the most fundamental power sources require superconducting wires. Researchers developed a system that uses natural humidity to create electricity. That system can interconnected with another fundamental power source. The system that makes electricity from droplets can make the power source more effective. 

The system can use a membrane or layer that collects water. Then those droplets can travel over nano-size water mills that are boosting the energy production of that system. That system that uses droplets as an energy source can be suitable in nanotechnology. The system that produces energy for 100 LED bulbs might not be very impressive. But that kind of system can connect into series. And that makes them able to deliver energy even for large-size structures. We must remember that those systems operate along with other power sources. 

Room-temperature superconductor will change everything. The superconducting radio systems allow to harvest of energy from radio waves. And superconducting batteries can store data in its form. And that thing allows us to combine chemical batteries and data storage. Superconducting antennas can read thoughts from a great distance. An advanced computer can change the EEG curves into written text. 



"Researchers have successfully created new types of superconductors by arranging atoms one at a time, potentially leading to the development of innovative materials and quantum computing advancements. The study indicates a promising approach to overcoming the limitations of naturally occurring materials, paving the way for novel states of matter in future electronics and computing technologies."(ScitechDaily.com/Creating New States of Matter – Researchers Invent Two New Types of Superconductivity)



And you might imagine what abilities that thing brings to data technology and military and police work. The superconducting antennas can read data that travels in the computer's electric wires. That thing will break the data security. The superconducting wires make it possible to create room-temperature quantum computers. And that system would be far more powerful than modern binary laptops. The pocket- or wristwatch-size quantum computer that can communicate straight with the nervous system could to created. 

The fact is that our nervous system is one of the most effective quantum computers in the world. Even if it's too complicated to control the quantum computers with AI-based binary computers our neural system can used to control the small quantum computer. Room-temperature superconductors can deliver nervous signals into the processing unit without turbulence. 

The room-temperature superconductor could be a 2D copper or gold structure that is pressed into stable form between graphene layers and gigapascal-class pressure. The system could use carbon or metallic atom chains that pull through nanotubes. Then pressure will rise in those nanotubes until oscillation in those tubes is gone. 

The next-generation intelligent watches that use BCI or BNI (Brain-computer interface) or (Brain Neural interface) can connect the human nervous system directly with the Internet. And that thing is one of the most powerful tools that data researchers can even imagine. Room-temperature superconductors could decrease electric use and that thing would be a fundamental tool for the environment and stopping climate change. 



https://scitechdaily.com/creating-new-states-of-matter-researchers-invent-two-new-types-of-superconductivity/


https://scitechdaily.com/new-power-generator-produces-continuous-electricity-from-natural-atmospheric-humidity/


https://scitechdaily.com/new-droplet-based-electricity-generator-a-drop-of-water-can-light-up-100-led-bulbs/


Saturday, November 19, 2022

The brain-controlled robots are not science fiction anymore.



The idea of the BCI (Brain-Computer Interface) is taken from the biomechanic prosthesis. That gives people the ability to control prostheses by using neural signals. The modern versions of that prosthesis are using WLAN or Bluetooth communication. 

And that means the electrodes of those advanced systems are under the skin. There are no external wounds in that kind of system. And the transmitter gets its electricity from similar batteries that are used in pacemakers. Or the more futuristic systems can use neuro-electricity as an energy source. 

Paralyzed people can control their wheelchairs by using the BCI (Brain-Computer Interface). The key in the brainwave control robots is simple. The user of the robots uses those systems through a computer. 

BMI (Brain-Machine Interface) requires the BCI to operate. And teaching the BCI can happen by simulation. The key for those systems is that the computer must recognize the EEG that the brain sends at certain moments. 

And, the simulations can teach the BCI to connect the BCI to a certain action. The requirement for the perfect BCI system is that the computers know what kind of brain waves the brain sends when it wants to do something. 

Those BCI systems development is not as difficult as people normally think. The developers can use simulators as an example, a driving simulator where the person drives by using a virtual device. The computer will record those brainwaves while the person uses this machine. 



There are three stages in that process. 


*The driver will control the virtual device by using regular controls. And the system will record the EEG in those moments.  The system connects that EEG to the movements of the control systems. 


When as an example driver turns the wheel or presses the gas pedal the system connects that action with the EEG. And then that record can use for making the BCI system. 


*In the next stage the controller will not use physical control systems. That means the controller can make movements but the system compiles the EEG to the records that are made in the first moment. 


*And in the last stage, that data can connect to the other vehicles. The BCI might require that person moves hands or feet. 


But the goal of that kind of development process is that the user of that kind of system requires only a helmet where the electrodes are. The system can interact with users by using HUD glasses. 

Or in the most advanced visions, the system interacts with brains by stimulating the cerebral cortex or brain core. That kind of simulation makes the robot the external body of the user. The user cannot make difference between the senses. That is coming from robots and the user's senses. 

But how to eliminate the need to move hands or feet if the person uses BCI to control things like jet fighters? In some visions, the person just is paralyzed by using chemicals. Or who cares how the person who is remote-controlling some robot moves their hands or feet? 


https://www.psychologytoday.com/us/basics/brain-computer-interface


https://scitechdaily.com/not-science-fiction-paralyzed-people-can-navigate-using-mind-controlled-wheelchairs/


https://en.wikipedia.org/wiki/Brain%E2%80%93computer_interface


https://designandinnovationtales.blogspot.com/

Friday, December 20, 2019

The diversify data storages and their benefits

The diversify data storages and their benefits


When small units are forming the large entirety


Quantum computing means much more than the quantum processors. In data storage, quantum data means the bits, the smallest possible unit of data. If we want to store data safely, we must sacrifice comfortable. In this version, we can store our files that way, every single bit is in different hard disks. And if some of those hard disks will be damaged, the number of the lost data would be minimum.

Diversify solutions in computing are very effective and safe. The diversify computing means that every byte of data is stored in a different place, and if some allocation unit of the data storage is damaged, the rest of the data can be safe. And if we are thinking about the thing, what is called quantum computing, we might think that we are storing every single bit of data of the most important files in the own flash-memory around the world, that makes sure that in the case of damage the minimum number of bits is lost.

And if there is some kind of corruption in the files, the user of the computer can send the signal to the system, that it must start to create a new file by collecting those bits to one place. That thing could happen automatically if the program sends a signal to the data storage that there is an error in the code. In this case, the file contains two types of code. The file code, and the control code, what system uses to find out the problems in the file.

Artificial intelligence is an effective tool for securing the files. 


Every time, when the data is stored in the backup space,  every single part of that code is equipped with a tracking cookie. If the backup file is needed the artificial intelligence uses this code for tracking the code, what belongs to the file. And in this type of data storage, the system has multiple control mechanisms like mirror files and the storages, where is the length of the codes, and if some of those are changed, the algorithm starts to collect the new files from the secured sources.

If the size of the code has been changed, that might mean that there is a virus hiding in the file, and that means the code should be destroyed, and replace with a secured code. If those storages are as small as possible the firewall software would have a bigger chance to find out, if there is some kind of harmful code in those bits.

And then the system would start to collect the new file if it sees that the file, what is in the fast-use storage is somehow corrupted. If there is a problem the artificial intelligence can start to make the new file by using those control codes, which have the same mission with TCP/IP, and the storage system uses them to track the file code, which might be stored in multiple servers and hard disks.

So in this case, we must say that the human brains are also using the diversified computing solution. A large number of cells, which are handling quite a small number of data in each cell are making them very effective. The effectiveness means that every cell must not look for a very long time the data, what is stored in those cells, but there is one weakness in this way to handle data. And that is that human brains are a little bit slower than they could.

When human brains decide to work the signal goes across many layers of neurons, and the mission of some of those cells is controlling the signals. They are filtering the actions, which might cause unnecessary harm or danger for the environment.

Monday, December 9, 2019

Magnetotactic bacteria and nanotechnology.

 



Magnetotactic bacteria and nanotechnology. 


What would we do with bacteria, what we could control like a robot?

When we are seeing the article below this text (1), we are seeing how simple the magnetotactic bacteria guidance system is. The term magnetotactic bacteria means bacteria, which is always in direction with Earth's magnetic field. This thing means that this kind of bacteria is a really interesting target to use as a miniaturized robot. 

Moving the groups of those bacteria to a certain direction is very easy and that thing would be happening by using the magnetic fields. That would be a suitable method to control large groups of bacteria.

But what if we would want to move single bacteria in a certain direction. One version is to pull the magnetic crystals away from bacteria and replace those things by using the fullerene stick, which is installed with small size servo-motor, and then that thing would push the protein structure to a certain position. The guidance system of those bacteria is basing the magnetic crystals, which affects the protein Mam Y. Or the magnetic crystals can be pulled together by using the magnet, and then the structure would be turned to wanted direction. 

Connecting bacteria and the camera-equipped miniature submarine would be a fantastic idea. 

That would be quite easy to create, and if we would want to make the bacteria move in a certain direction, we must just the small motor and the stick, which can move those magnetic crystals in a certain direction. If that stick would be connected to the control circuit. Another way to make this thing is just creating the nano-submarine, which would have enough powerful magnet to adjust those magnetic crystals to a certain position. 

The small size nano-submarine that is equipped with magnet can swim ahead this kind of bacteria, and that bacteria will swim after the submarine, and this kind of system would allow the bacteria to make things, what we ever can expect. The nano-submarine would communicate with the control unit by using the wireless communication system. 

There could be many solutions to this kind of systems in the future

And the engines of robots would get their electricity by the same system. The operators can see the things by the camera, which is connected to the submarine. This kind of thing would make possible to create small-sized biological robot, which can be used in many missions. In theory, this kind of manipulated bacteria can be used to clean tubes and even blood veins and remove things like plaque from the head of the Alzheimer patients. 

(1)

Image:

Thursday, December 5, 2019

Could a computer someday debate itself to the doctor?



Could a computer someday debate itself to the doctor?

The artificial brains 

Could a computer someday debate itself to the doctor? This is one of the best questions, what has ever made in the field of artificial intelligence. For making this kind of thing possible, there is needed the system called the "neurocomputer". That thing is the artificial brains, which will learn things spontaneously. The learning process and structure of those machines are similar to human brains and in those systems, the nanomachines would make connections between the artificial neurons. And they can also remove those connections when they are not needed, which makes them act like human brains. 

When we are thinking about quantum physics that thing would offer also solutions for everyday life, and the solution would be the quantum computer. And that thing is really interesting because that machine will calculate things faster than any computer in the world. It will break every possible code, which is made by using a conventional computer. But that machine will not think. Thinking machines are the thing, that is called as neurocomputers. 

Neurocomputer will be some kind of 3D-model of the quantum computer, which means that the system would be made by using microprocessors, which is created by silicone. That system will use artificial neurons to create thoughts, and those artificial neurons would look like normal neurons, but there is a microprocessor in the place of the nucleus. Every single silicone-neuron would be covered by using the metal net, which makes it possible to emulate the core of neurons. 

This hypothetical system is created for replacing the destroyed neurons, but the system can also be used to form artificial brains. In this structure, the synapsis will be replaced by using the nanorobots, which allows them to move, and that thing makes possible to make artificial connections between neurons. And that kind of system could be a technical copy of the human brains. This kind of technology can be revolutionizing if it would someday work. But this kind of system is a purely theoretical level, and before we will do them, we must carefully think, is this kind of thing, what we want. 
One myth of Albert Einstein

There is one myth of Albert Einstein, and that is that this man had only excellent numbers in his high-school diploma (1). There was only one number three, which makes that thing very remarkable. In that matura the number six was the best, what was possible to get, and that thing makes some people think that this remarkable master-mind of the science was "only human". There are many myths about this man, and one clear thing is that many or sharper saying all universities and laboratories want that kind of student. He was a clever, sharp and fully devoted scientist, who made remarkable theories, which are many times proven to be true. 

So there is one thing, what we must remember when we are thinking about this kind of person. The thing is that when this man lived, there were not text editors and computers, which means that everything, what those men made must be written to paper, and have you ever handled very big and long numerical series in the night and very late. When a person is tired, there would be mistakes, and even today persons who are giving their thesis to the inspectors are making mistakes with things like the speed of light, and sometimes there is km/s, but the real value would be the m/s. 

Those mistakes confess that a person makes the master's thesis self. When we are thinking about the persons, who have lived in the early 20th. century, the tools of those people were very limited, when we compare them with modern scientists, who use supercomputers for checking the formulas, what they have created. Ability to use decimals, where are thousands of numbers make calculations sharper than ever before. And that thing opens the new roads to science. 

If we are thinking about the modern brain scanners, we can find out things, could some fish feel pain, or how the dogs are seeing things? That kind of thing is revolutionizing science. But there is still one thing, what we must realize, and that thing is that the science, observations, and research are different things than some kind of imposing things. When we are thinking about the bitumen test, which shows that the bitumen is liquid or very stiff liquid, that experiment would not be very impressive. 

The test was the funnel, there was a piece of bitumen. After twenty years that bitumen has been flown through the funnel, and researchers have proven that this thing was liquid. So why these kinds of experiments are really important? If we would fix the holes of the space station and high-pressure tanks, we cannot use bitumen for that kind of action. This kind of science would not seem very fantastic or it doesn't offer superlatives, but it's very important in everyday life.

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Tuesday, December 3, 2019

What is the difference between TR-3A and TR-3B? And are those planes real?




What is the difference between TR-3A and TR-3B? And are those planes real?

Is TR-3B (0) "Black Triangle UFO" or is it only the piece of paper? 

The study project, what is used to create advanced ideas for use of the nuclear-powered aircraft. Or is it the study project or black budget aircraft, where lost 2,3 trillion dollars (1)of the stealth bomber were gone. In this text is things, that might seem very difficult to accept, and when we are thinking about things like doubling the object or making it smaller by using huge layers of energy, nothing denies to test those things. But were those tests successful, there is no data about that in public Internet, so we must say that things like doubling the human or aircraft can be tested, but the results can be unknown. 

But in the source two is the tale, what seems like impossible, those men, who got Noble Prize put at first time one atom to the box, and hit it with photon one photon in the box and hit it with the atom. That kind of thing would be incredible. And make people think of science more carefully than ever before. (2)

If we are thinking about the plane, what was known as TR-3A "Black Manta" we can make an idea, that this aircraft was planned to use as a technical demonstrator for the TR-3B "Astra" (3), what is one of the most mysterious things in the world. So is the TR-3B meant for some kind of space shuttle? Or is it something more than some space plane? Or is it just study, what mission was to find out different abilities of the nuclear-powered aircraft, what might mean that this system would be the theoretical design. 

And the main question is that TR-3B the synonyms with " The Black Triangle UFO"?(4) The thing is that there are rumors that the nuclear-powered TR-3B is one of the most advanced aircraft in the world, and maybe the great secrecy around that plane is because it's nuclear powered. But then there is a story that there is a particle accelerator in that plane, and that thing makes possible that the TR-3B is even more exotic and advanced, what we ever thought. 

Why TR3B has claimed to have the particle accelerator in it?

Could TR3B make itself the projection and being in the two places at the same time (5), or is it planned to be the time machine, what stops time inside it? Or can it pull the electron layer of its atoms near to the nucleus, what would make possible to make that thing smaller? If there is a particle accelerator, that creature could do some of those things. 

So there is a possibility that the time would be stopped inside that aircraft. If the particle accelerator would accelerate the ions or electrons inside that system to the speed of light that the system can make TR-3B the time machine, but could it be possible. If there is an article accelerator on board, that thing can cause the effect, which is known as holoprojection.

Nothing denies testing things 

In that case, the photon or electron can be in the two places at the same time source five (5)is the article of discover magazine, where is explained, why people can't be at the same time in two places. The thing is that making that kind of projection would need a lot of energy, but the thing is that nothing denies testing those things.

This thing would need extreme high energy load, but if that thing would be possible, it would make the craft invincible. And of course, there is a third possibility, what TR-3B could make. That is that if the energy in the body of that craft will increase to high enough, the electrons of the electron layers of atoms would be pulled in, which can decrease the size of the vehicle. So is this the secret of TR-3B? Or is that aircraft the study experiment, what mission is to research this kind of things. When we are thinking about this mythical aircraft, we must remember that it is not conventional aircraft.

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Monday, December 2, 2019

Can computers steal your memories?




Can computers steal your memories?

The computer has not own will

In this text, I will use the words "computer wants" and at the beginning, I must say, that the computer itself doesn't want anything. If the computer would kidnap some people, it makes that thing, because the program inside it would translate it's codes that it must trap somebody, and that means that the computer itself doesn't make mistakes.

Every mistake, what computers make are made by programmers. So if the computer would be programmed to require some kind of identification, while a person would go through some gate, it would close everybody who has not that mark outside. Same way if the computer, what is connected to the robot is programmed to take the fingerprint from every person on the street, the robot would follow the orders and make that thing. Robots ever apply for orders, what they get.

They do exactly, what the programmer would do, without caring about the things like how much trouble the order would cause. And this thing makes computers very effective for things as military actions. In that world, the actor must do exactly what superior would say, and they must not apply anything. But if the opponent would break the algorithm, it can predict every movement, what the opponent will do.

This makes difficult to make programs for autonomous drones

And this is the thing, that makes the creation of the autonomous drone very difficult. When the opponent would learn, how the drone moves, when it's under attack, shooting down of that thing would be quite easy if the opponent would know, what direction the drone would turn.  Have you seen the movie "Tron"? In that movie, the hero would be trapped in the computer memory. But could that thing be possible in real life? Could computer copy our mind or thoughts in its memory, and turn them to part of it? And why it would make that thing?

The thing is that if the high-power radio wave would travel through the human brains, it would start to oscillate with the same amplitude with the electricity of the nervous system if the frequency of the radio wave is the same with the electricity, what travels in the nervous system, and that electromagnetic radiation can be detected by using normal radio receiver. The system can also use highly targeted radio ray, what can go through the pineal gland, and that thing can be used to record the electric phenomenon of the pineal gland. This organ has been connected with abstract thinking and imagination.

What if computers steal our imagination and ability for abstract thinking?

So the computer steals our imagination. And this is why computers would do that thing, and record the electric phenomenon of the nervous system. They need our productivity. The human being is the only organism on our planet, which has the ability to abstract thinking. And productive thinking is the ability to transform the abstraction to the image on the paper, or ability to create the plans and construction orders from the mind. And this is the thing, why computers would need humans.

Even the most intelligent and advanced artificial intelligence is hopeless if it cannot produce new things. And the thing is that artificial intelligence cannot create anything new. Computers are playing chess better than most of the people, but do you know, why chess is used in the tests of artificial intelligence? In the real world, chess has quite a limited gaming area and strict rules. This makes the programming the chess program quite easy if we want to compare that process with the process, where the computer must drive the car in traffic.

Why computer is better chess-player than we are?

The thing that makes artificial intelligence so effective chess-player in the world is the capacity to calculate things very sharply. It can calculate tens or even millions of ways to move the buttons on the chessboard, and it can make gaming models by using those calculations. In this case, the actions of artificial intelligence base the idea, that there are multiple models of the game stored in the memory of the computer, and it would select the best, what is possible in that case.

Why a computer cannot operate that way in everyday life. While the car is driving in traffic, in that environment it is strict and clear orders, but there are many things, which are called "surprising variables". So if we are programming the computer to follow traffic lights we must remember, that some people might have a red or green skirt, and that's why the system is extremely hard to program. And traffic is a really good example of the environment, where the reality is away from stimulations, models, and theories.

But if we would want that robot would make the same things, what we are doing in everyday life, that kind of thing would be too hard to make, because for that thing is needed so many models, that we cannot create them all, and how many programmers would even know them all? What kind of things would a person do, while going to shop? When we would think the case, that computers would want to make some kind of designs, that thing would turn really difficult.

What if computers could benefit the brain waves during the creation process?

So what if we want to make a computer or artificial intelligence, what designs the building, we must understand that the reason, why architects are hired is the please the customer. So how a computer can please its customer? The answer is simple, the brainwaves are telling, does something please the person, who is sitting in the front of the screen, and then the computer can start the creative process.

That process is based on the methodology, where the computer would use simple forms like triangle, square and circle at the beginning of the process. And then the computer would put more and more details in the image. During that process, the system would follow the EEG of the customer, and then it can select the forms and things, that would please the customer. In that case, the chair would have the radio-transmitter behind the head of the person, and the radio receiver would observe the changes of the EEG, what would be moved to that system.

Of course, the system would need data about the formulas and other rules for buildings of that area, but the solution might satisfy every customer on Earth because the EEG would uncover if we like or dislike something. But this kind of thing is the vision of tomorrow. And maybe someday the artificial intelligence would create buildings and act in development missions.

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