Friday, June 10, 2022

This new robot got its inspiration from mythic Centaurs.


Image 1:

The new centaur robot can operate on the moon. But there is also the possibility that that robot's wheels would equip with propellers that are giving the centaur robot the ability to fly and operate underwater. These kinds of innovations are interesting because the same robots can use in many areas. The centaur robot can operate alone or with a team of humans or other robots. 

If the size of the robot is big enough it can carry four to ten service men or robots. The number of carried people depends on the size of the robot. And it can have the ability to get wounded people to get medical attention or simply carry equipment to the places like building sites.



Image 2:

The centaur robot can carry wounded people on its platform and the man-shaped part of it can give medical attention while the vehicle travels to the hospital. If that robot can fly it can travel straight in the hovering VTOL aircraft like V-22 "Osprey" or helicopter. The fact is that the robots are multi-use tools. The same system can carry equipment to the building site or they can evacuate wounded people. Those robots can also operate in radioactive areas. 

The man-shaped robots can have ultra-sound or x-ray sensors in their hands and they can also detect the EEG curves if those systems have necessary sensors. In the combat zone that robot can carry a large number of Javelin missiles and shoot them independently or by using a remote control. The limits of the robots are depending on imagination. 


https://interestingengineering.com/lunar-rover-cross-centaur-robot

https://en.wikipedia.org/wiki/Bell_Boeing_V-22_Osprey

Image 1:) https://interestingengineering.com/lunar-rover-cross-centaur-robot

Image 2:) https://en.wikipedia.org/wiki/Centaur

Photonic microprocessors can be the next generation revolution in AI.



New photonic microchips are the most powerful tools in the world. The quantum computer can make the thing where the regular computers use 9000 years in 36 nanoseconds. And that means the quantum computers would be the tools that are turning the mind-blowing fantasies true. 

The quantum computers will turn the AI to a new level. And that thing will make many new things that are thought impossible before. The quantum computers can communicate with the robots by using WLAN. But in the wildest visions, the drones or other robots of the future use the half-organic microchips. The half-organic microchips mean that over the microprocessor are the living neurons. 

Communication between non-organic and organic microchips requires. The system can turn neural electricity into the form that the microchip understands. And then the microchip must turn its internal data signals into the form so that the neurons understand what the non-organic part of the system "wants to say". 

And small LED lights can use the bioelectricity of the neurons to communicate with the computer. And when those neurons are receiving data from the computer they can use tiny silicon electric cells for chancing the light that the computer sends to electric signals that will conduct to the neurons. The interactive communication between organic and non-organic layers is important so that the system will work perfectly. 


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The biological photonic brains. 


The phonic brains can consist of neurons that have the retina cells in their synapses bladder. The neuron can use the bioluminescence light to transfer the information to another neuron. 

The retina cell will transform the flashes of light into the electric impulses that are traveling in the neural system. Researchers can make that kind of brain by using genetic engineering. 


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Quantum computers are tools that can control things like robots through the internet. But the fact is that the photonic microchips are opening roads to the new type of hybrid systems where living neurons communicate with microchips. The photonic microchip uses photonic neurons for making the operations. 

In some wildest visions, in the future. There could be photonic microprocessors between animals' neural systems. Or even the human neural system can boost by using a photonic system. These kinds of futuristic systems are making it possible to boost the power of neural systems. The higher thinking would be in the living neurons. And the reflexes of the system could be at the non-organic part of the microchips. 

But there is the possibility that the small LED light or another photon source will connect to the living neuron. And that thing can make it possible to create a new type of half-biological quantum processor. There is also the possibility that the neurons would be genetically engineered by connecting the genome that makes them shine. 

And they can send bioluminescence light to the computer. The thing is that those neurons must adjust the level of the bioluminescence light so that they can communicate with the non-organic microchips. In the half-organic microchips, the system has two layers. Those layers are living neurons and regular (binary or quantum processors). In those systems, the reflexes of the computer would control by using the non-biological microchips. That thing makes those systems very powerful and fast. 



https://singularityhub.com/2022/06/07/a-photonic-quantum-device-took-microseconds-to-do-a-task-a-conventional-computer-would-spend-9000-years-on/


https://www.thetimes.co.uk/article/ministry-defence-develop-quantum-computer-battlefields-c2cjnfp95


Image: ) https://www.tomshardware.com/news/photonic-chip-images


https://miraclesofthequantumworld.blogspot.com/


 

Thursday, June 2, 2022

The new cockroach-inspired robots can be the next-generation recon tool.




There are many types of robots. And the new cockroach-inspired robot looks like trash. This type of system can serve law enforcement and intelligence for many missions. The robot can slip into the house and eavesdrop and otherwise observe people who are inside it. The fact is that robots can benefit from the oscillation of the structures for recording and re-transfer speech. 

Those very flat and invisible robots can also come over microchips and observe the electricity in those systems. The fact is that this type of robot is the next version of the eavesdropping and reconnaissance tools. The mission of those reconnaissance tools is being unseen. And deliver information about their entirety.

Those small robots can also slip into the ammunition storage or at the roof of the tanks. And they can guide smart weapons to their targets. As I wrote before, imagination is the limit of the use of robots. The robot is a good servant but a bad master. And another thing is that they are revolutionizing the world. Robots can make many things that are been impossible before. 

When we are looking at robotics we should see their opportunities. Most of the missions that are planned to transfer to robots are not surgical operations. They are works like masonry or cleaning. So most of the robots are not operating in the military area. They are operating in the regular works like cleaners. And those cleaner robots are good for data security. 

They are not taking unauthorized pictures of startup companies' introductions and putting them on social media. And those robots are not going to bars after work to tell about things that they see in business parks. The problem with low-paid human workers is that they are easy to recruit for industrial espionage. 

So the robots are partially solving this type of problem. But there is always the possibility that somebody uses robots as the eavesdropping and intelligence platform. The cleaner robot can of course act as a spying tool as well as humans do. The thing is that the programming determines the role of the robots. 

But we must realize one thing. Robots are platforms. And the types of equipment and programs are the thing that is limiting their use. The thing is that the works where robots are planned to use are low-pay, and some people want to buy those services rather from robots than humans. 


https://www.sciencealert.com/engineers-built-a-cockroach-inspired-robot-that-can-t-be-squashed

The next-generation medicals can be tiny nano-drills.



The schematics show two variants of light-activated molecular machines developed at Rice University that drill into and destroy antibiotic-resistant bacteria. The machines could be useful to fight infectious skin diseases. Credit: Tour Research Group/Rice University (Scitechdaily/Molecular Machines: Bacteria-Killing Drills Get an Upgrade)


Molecular robots are tools that can use for many purposes. Molecular nano-drill can destroy bacteria mechanically. When nano-machines are used for medical treatment. The system can remove those systems from the body quite easily. There are two ways how to make that thing. 

The first way is by connecting some magnetic metal to those molecules. Then the magnetic field can use to pull those molecular machines out from the body. Another way is to use special enzymes that are destroying the molecule. The problem is that the nano-drill bases benzene molecules and those molecules cause cancer. 

And that makes it the next-generation antibiotics. The problem with antibiotics is that it turns immune against antibiotics. But there is no way, how the bacteria can resist nano-machines. 

Nano-drills can do many more things than acting just like a bacteria killer. They can remove the waste from the body. And in some visions, those nano-drills can remove plaque from the synapsis. And that thing can be the next-generation treatment for Alzheimer's. 

The nano-drills can also remove things from the blood vessels. And that thing can open closed blood veins in the case of an infarct. The benefit of those nano-drills is that they can go to places where regular scalpels cannot operate. They can also remove single cancer cells from the body. 

The molecular nano-drills can use also for drilling holes in the cancer cells' protein membrane. The aiming of those molecular machines to the right cells will happen by connecting certain enzymes or nutrients to those molecules. And then the own immune system will transport the nano drill to the right cells. 

The problem with nano-drills is how they can aim at the right cells and how to deny them to destroy other cells. If there is some special nutrient that the targeted cells are using the nano drill can benefit that thing. The nutrient can involve enzymes that are making the protein-membrane weaker. Then the nano-drills can use feely because the cells must be prepared so that the nano-drills can make the hole in the membrane. 


https://scitechdaily.com/molecular-machines-bacteria-killing-drills-get-an-upgrade/


Image:) https://scitechdaily.com/molecular-machines-bacteria-killing-drills-get-an-upgrade/

Wednesday, June 1, 2022

The SAR technology



SAR or Synthetic-aperture Radar is a tool that is giving extremely good images from the ground. In that technology radio or microwaves are put to jump from the ground. And that helps to create the 3D maps of ground areas. The SAR radar is basing the idea that the radar is put on an instantly moving platform.

And makes the system possible to detect small-size, 3D targets from the ground. The wavelength of the radar determines how big objects they can see. When radar radiation comes from different sides it can create a structure's 3D models. Modern commercial SAR systems can detect even single vehicles from the ground through clouds.  The SAR technology allows us to see what happens in the Ukraine war. 






Diagram of the SAR system. The thing is that this system can be in two different satellites. (Wikipedia/Synthetic-aperture Radar)


The virtualization of the SAR systems is making them very hard to destroy. The small-size satellites can operate as a swarm. And the laser systems can be used as the laser-SAR systems. But the laser rays can also use to create the radio waves. When lasers are giving the electromagnetic stress to air molecules they send electromagnetic radiation like radio waves. The laser ray can use to create the virtual antenna for the radar system. The system can use two laser rays. 

One is giving the EM stress to air molecules. And the second one measures the echoes from the environment. The next-generation quantum systems can make it possible to see even a single sand bite from the ground. The idea of those systems is the same as the scanning tunneling microscopes. They can hover things like electrons or protons at the front of the radar. 

One of the things that this system can use is the water molecule. In that case, the water molecule will anchor to the layer by using the molecule's polarity. The hydrogen atoms can be in the layer and the oxygen can be outside. Then the system gives electromagnetic stress to the molecule that acts as the antenna. That type of system might be the key to the radar technology of the future. 


https://en.wikipedia.org/wiki/Synthetic-aperture_radar

Unmanned aerial vehicles are good tools for many things. And lasers make them more capable than ever before.



The nuclear-powered stratospheric drone can improve communications and support ground operations in war and peace. The RTG (Radio Thermal Generator) gives the stratospheric drone that uses electric engines almost unlimited operational time. The stratospheric drone is only a "Predator" with extremely long wings. The stratospheric drone can rise 20-30 kilometers high above the ground. And, if this aerial vehicle is built using stealth materials. It's hard to detect. 

That drone is a hard target because there is no infrared or radar signature that makes it possible to detect that type of drone. If the high-flying drone is equipped with a laser scanner that system can detect chemical components from the air. Lasers can also use to detect and measure earthquakes. Laser detects extremely small changes in the distance between satellite or drone and earth. 

When Earth is quaking the distance between the surface of Earth and the drone is changing. Also, the laser system can detect the changes in the distance to the windows and other layers when they are resonating. The laser microphone uses this type of technology when it records speech in the room. In many films, the system detects speech by using resonance that is coming from the window. But actually, laser microphones can benefit from resonance that is coming from all layers. 

It can also use lasers to eavesdrop on what people are talking about. A laser microphone benefits the resonance of the surfaces for detecting voices like speech. When some person is talking that speech resonates the surface. And laser will detect that resonance by measuring the changes in the distance to that layer. The 

The quadcopters can use in many operations. The larger drones or aircraft can drop them at the operational area. The quadcopters can use laser scanners for measuring things like the size of the trees. But the laser scanners can do many other things than just measure the size of some trees or vehicles. The laser rays can also observe the things like how the stomas are changing the gases. Laser scanners can use to observe, how the ion pumps of the plants are operating. 

Or they can smell the breath of the wild animals. That system sees if there are some poisons in the exhaust gases of the animals. The laser spectrometer just sees what kind of elements is in the gas that animal or tree releases. The laser spectrometer can also search for the things like exhaust gas of the vehicles. 

It can try to detect the certain chemical components that are involved in hydrocarbons. Those chemical compounds are involved in gasoline and gas inside the earth. And they can uncover the area where oil or gas is taken. Lasers can analyze the smoke of the grenades or other ammunition for uncovering the chemical construction of the explosives. That uncovers the manufacturer of those things. 

Stratospheric satellites




A stratospheric satellite means a hydrogen balloon that is in a very high atmosphere. The idea of that system was introduced by the researchers of the University of Amsterdam. 

The mylar balloon can fly in a high atmosphere or even in space. In the 1960s NASA send two mylar balloons called Echo-satellites that were just filled with gas in orbital trajectory. Similar balloons can fill hydrogen and send it to the high atmosphere. 

The fundamental technology that can improve communication and help people to travel to the space cheaper can be the group of mylar balloons. The mylar balloon that is filled using hydrogen can rise to extremely high altitudes. And that system can be modular. The gondola that is hanging below it is the mission pack for that system which can act as the stratospheric satellite system. 

The large-size mylar balloons can raise communication systems to the edge of the space. And they can partially replace traditional satellites. The high-flying atmospheric satellites can also have things like camera systems and laser- or regular radars and they can observe things that are below them. 



Image 2) The Echo II balloon satellite blew in full scale. 


Or they can rise the small rocket or space shuttle to the outer edge of the atmosphere. And that makes shooting satellites to orbiters cheaper.

But the stratospheric satellites can be small-size. They can use for taking air samples. The thing is that the balloon satellite network can also use to block the GPS. The idea is the plasma field is made between those balloons. And that denies the communication. 

The thing is that the high-atmospheric platform can replace the traditional GPS. The idea is that the own men will equip with laser pointers and the system follows the ground below it by using high-resolution cameras. The laser pointers are aimed at the air and they are visible in that high-resolution TV systems. 


By the way... 


The same technology that is used in the atmospheric satellites can use also for manned stratospheric laboratories. Of course, those laboratories can also be remote-controlled. 

There is the possibility that also the large-scale structures are hanging from the balloons. The idea is that the multiple balloons can use to hang even the large-scale stations. The hydrogen-based mylar balloon can use to carry manned modules. 

There is also the possibility that below the parachute is formed the hydrogen bubble. That raises the capsule to a high atmosphere. But a closed mylar balloon would be safer. 

And they can hang the module long time. In that model, the mylar balloon can simply be put below the parachute. And that thing can pull the module to a high atmosphere. 


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


Image 2) https://www.rocketstem.org/2014/03/12/bigelow-promises-more-space-at-less-cost-with-inflatable-space-habitats/

The system can create quantum-correlated photons from sunlight.

"Correlated photon pairs, generated via sunlight-pumped spontaneous parametric down-conversion in a nonlinear crystal, demonstrate ghos...