Monday, May 19, 2025

The cheap AI can be the greatest military advantage in history.


The AI has a similar effect on the military as the steam engine had on logistics. Cheap and effective AIs, like the small language model, SLM is the tool that can make the system more effective than ever before. The thing is that the AI and its cloud-based applications can run in network-based solutions. Drones and other applications like traffic cameras, satellites, and aircraft. Along with other sensors, like ground-based and airborne radars can act united. 

That makes the AI more flexible and effective. The AI can be quite hard to program. But when it's ready and trained, operators can download it into new systems quite easily. 

The drone swarm can form a morphing neural network with the other sensors. In that model, the drone swarm operates as one large vehicle. Drones can share information with other drones and systems. The drone can be very flexible. Its propeller frames can turn into the wheels that allow drones to travel on the ground. 

The drone can move near the target underwater by following water routes. Then the drone can move on the ground and then in the final moment, it can jump up. The drone can be the next-generation tool. It can capture enemy actors. Two drones act like bula and bind the target. Then larger drones put that person into the box and transport that enemy over the lines. Drones can also steal enemy weapons. 

And they can transport escape tools, or help the POWs to escape. The drone can lay a rope to the prison camp and fly away with the person. It can drop weapons to POWs or regular prisoners. Those drones can be delivered from the aircraft. And they can take the person to the hovering "Osprey" or some other VTOL aircraft. 

Or it can drive into the airplane hangar and explode itself. Non-centralized computing gives even small drones the possibility to make complicated actions. The drone can sit by the side of the road, and when it sees a target it can send information to the command center and then attack that target. 

The image recognition tools can tell important things about the targets. It. can tell about the damage of targets, and it can count the enemy straight and analyze things like the abilities of their vehicles. The AI sees many things that humans cannot see. The AI can see how deep track marks and tire tracks the enemy vehicles leave. 


Drones can destroy targets. They can select targets there and their warheads effect if they know what warhead they carry. Another thing is that drone swarms can also update their datasets straight from the Internet. 

An interesting moralistic discussion is about the independently operating killer drones. The question is about the moment. When the killer drone gets its orders to attack. The neural network allows the system to scale target data through drone swarms and other systems. When one drone gets a target image it sends that data to other drones. 

The principle is that humans decide to attack. The problem is that the advanced jamming system locks the drone's communication. And if the control signal cannot travel through the jamming the drone is useless. The kamikaze drone patrols over the enemy area, and when it sees a promising target, it attacks. 

The AI is a computer program. That means operators can download it into any server. They can also download it into drone swarms. Those drones share their computer capacity. That means drone swarms can operate independently. The drone swarm can communicate with each other using radio transmission or lasers. The thing is that counter weapons must be developed. 

Those counter-weapons must have things like directed energy capacity. Modern drones require a very fast reaction time. There is the possibility that if the drone swarm with morphing capacity makes an attack there is not enough ammunition or missiles that can destroy all small drones that can have High-explosive anti-tank, HEAT and anti-personnel warheads. 


https://www.freethink.com/artificial-intelligence/cheap-ai-military-advantage


https://en.wikipedia.org/wiki/High-explosive_anti-tank

Saturday, May 17, 2025

The first gene therapy given to babies for deadly hereditary diseases.



The U.S. researchers gave genetic therapy with the customized CRISPR gene-editing therapy first time to a human baby. That therapy can be the new path for the next-generation medical treatment that replaces vaccines and medicine with new types of genetic editing. Genetic engineering makes it possible to create individuals that have modified immune defenses. 

The modified immune cells can remove dirt from blood vessels. They can remove unwanted chemicals. Those cells can travel into the wanted position. Then the customized DNA turns them into new cells that can fix damages or remove the unwanted cells. The idea is that the hereditary ill cells will turn into wealth cells by changing the DNA in their nucleus. The problem is how the system selects and makes that change in large numbers of cells. 

That modification can boost the immune cell's ability to recognize and destroy things like zombie cells more effectively. In high-accurate genetic engineering and gene therapy. The system uses enzymes or nutrients that the targeted cell type uses. And then that package transports the new DNA into the targeted cells. The molecular machine destroys the old DNA. 

Then it replaces that DNA using the new, artificial DNA. The artificial DNA is manipulated by connecting the other DNA bites to the new entirety. That thing can make it possible to reprogram cells. In those cases, the system can use the modified "B"-cells that normally create antibodies. If researchers want to give gene therapy to adult people they must be sure, that there is enough DNA and nanomachines that can transport enough DNA to large enough cell groups. 

The ability to manipulate DNA is the thing that makes it possible to transform cells into another. This technology allows to creation of synthetic tissues from skin to nerve tissues. Those systems make it possible to make the "spare parts" for people. And the customized DNA can allow to turn bacteria into the receiver's own cells. There are models where the researchers create customized immune cells in the laboratory. Then those cells produce viruses whose mission is to transport DNA into the selected cells. 


https://interestingengineering.com/health/first-personalized-crispr-gene-therapy


AI: the illusion of consciousness.



We are facing an interesting problem. When we talk about consciousness.  We call certain actions and reactions consciousness. When somebody asks whom and what you are, we answer: "I'm "Jack", I'm male, and I'm a member of the human species". "Or I'm "Jill", female and a member of the human species".  Maybe, we can tell that we are engineers, researchers, teachers, etc. And that means that we can say that we understand who we are. Or is that thing so easy? 

The AI can answer that question like this: "I'm Gemini, or Bing, a Large language model. A large group of computer algorithms that can search information". That seems very impressive.

But we can actually make the voice file that this kind of question can activate. We can make multiple inputs that include the most common ways to ask "Who and what are you? ". There are multiple ways to ask questions about technical details, and one answer fits all.

But then we can ask: can the machine understand what it says? We can even teach 4-year-old kids to tell about things like DNA molecules. The idea is that those 4-year-old children can repeat worlds. They can learn complicated terms as words. But they will not understand the meaning of those words. In the same way, we can read almost any language in the world if we have descriptions of how to pronounce those words. The phonetic markings and written words are easy to say, but in that case, we don't know what that word means. 

The machine and consciousness are topics for interesting philosophical discussions. When we think about a machine that has consciousness we can ask how we can see that consciousness. If we think that consciousness is an ability to defend itself the AI can turn violent if somebody tries to shut it down. But then we can turn the computer dangerous even without the complicated AI. 

We can write a program that if the person tries to shut the computer, the computer must remove that person. There are two ways to make that thing. We can put the extra cover to protect the main power switch. And if somebody raises that cover that activates the removement program. The other way is harder. We must describe the situation where the person is going to shut the system down. That parameter can be that the voltage level goes too low. Then the system can turn to use backup power input. 

This thing doesn't make machines intelligent or conscious. The machine reacts to things that are programmed into its memories. The illusion of consciousness is the result of multiple algorithms or computer programs' cooperation. When programmers make the AI, or LLM, they create the computer program for every case that the system must respond to. The large number of reactions creates the illusion of consciousness. 

When we think about the algorithms and their complicated codes, we must realize that the computers don't think. They follow the direct line of the codes. The AI that uses the morphing neural networks can be effective. Only if it can follow multiple code lines at the same time. The neural network allows the system to drive multiple linear codes at the same time. The system can have multiple inputs and multiple connections. There it can combine information. The thing that makes a linear program an algorithm is this. The system can retake the program or event if there is no match in the answer. 

But the thing that makes this system effective is that: the AI will not retake the situation with the same program. The algorithms are like a bunch of programs that are sorted by their purpose. Those bunches or databases can involve algorithms that sort under topics like "social situations", "walking on streets", and "visiting shops". 

So if one of those programs does not give the right response, the AI selects another program. And the neural network allows it to run multiple programs. At the same time. 

The number of data-handling lines determines the effect of the system. The neural network allows the system to drive multiple variables side by side. And that makes the system effective. 

When we think about cases like 2001, A Space Odyssey where the fictional HAL9000 supercomputer kills almost the entire crew of the spacecraft, we can say that the little shortcut in the programmer's head can cause that kind of situation. The computer has orders to remove everything that risks the mission. 

And then it sees the case, that somebody slips the tool. That causes a situation in which HAL9000 thinks that the person who slips the tool is the risk and that it must be removed. The reason for the situation is that the programmer forgets to describe the risks and things that the system must remove. The system's logic is that the person who cannot make the mission 100% right is garbage. 

Things like AI or LLMs are complicated. Those things require training. The system requires a description of the garbage and the human should confirm every movement that the computer should do. If the computer does not have a valid description of the garbage. The problem is that the computer doesn't think. It follows its programs. 

If the robot has not got a description of important merchandise. And we order it to clean the office, it also removes furniture. The robot doesn't make any difference between furniture and dust. It thinks that all things in the office are garbage if the important merchandise is not described for the AI. That means the AI requires very accurate programming. The programmers must understand that one error in billions of code lines can cause failure in the AI. 


https://bigthink.com/neuropsych/the-illusion-of-conscious-ai/


https://en.wikipedia.org/wiki/2001:_A_Space_Odyssey


https://en.wikipedia.org/wiki/HAL_9000


Friday, May 16, 2025

Physics and consciousness.





Sometimes, when we open the net, we can read about things, like the intelligent universe and the quantum origin of consciousness. The last one is a sometimes misunderstood version of quantum calculations, where large neuron groups take part in some action. That means the brains use quantum calculations, but that is not about physics. 

The quantum calculation means that the system shares the mission with multiple subsystems. In human brains, neurons are the subsystems that send information between three layers. So, we can say that the brain cells and neurons play ping-pong with data or information. The diencephalon selects information that brains, or we think we need later. But that doesn't mean that this thing has something to do with physics. 

In human brains, neurons send information between each other using axons. Axons load information into the neurotransmitters that act as the chemical qubits. There is the possibility to create a system that mimics human brains by using advanced computers. The artificial neuron could be the ball that the microchip controls. Data travels between those balls through artificial axons. 

The axons can involve multiple quantum channels like nanotubes or optic fibers. When those quantum channels send data to each other, that system acts like a quantum computer. The number of activated quantum channels determines the state of the qubit. 

But then we can go to the imagination or idea of the intelligent cosmic structure. The idea is taken from Isaac Asimov's short novel "The Last Question" and the fictional supercomputer called "Multivac", which some people sometimes translate to "Multiple vacuums". That causes the idea that the qubits can be multiple internal false-vacuums or voids, and the void channels the wormholes can connect those things together. 

Those vacuums would form a bubble-shaped structure where internal electromagnetic fields control and route information. One of those models is the theoretical black hole network where the plasma bubbles around black holes form a quantum-computer-style system. And black hole's relativistic jets transport information between them. 

The idea is to form a model where gravitation can form intelligent structures. And of course, the intelligent universe theory creates the model where the entire universe acts like a giant computer, and we are part of that computer's thoughts or simulations. That is the so-called radical and expanded model of the Multivac. There are mysterious structures in the universe that we cannot just leave without notice. But the argument against the "Universe is a simulation" is "Who made that simulation, and what is that person's motive". 

In some SciFi novels, the simulated universe is created for training space travelers while they sleep in the cryostatic sleeping on space trips that take millenniums. In some models, those creatures would travel in interstellar space in the form of neurons. When the craft goes to the long-distance one-way space trip that crew dies. The system copies their memories and other things to artificial neurons. Those neurons can be clones of the traveler's neurons. Then the system loads those neurons into the culture medium. The system can create two or three neuron groups and when the last neuron group turns old system transfers the data from them into the next culture. 

When the craft arrives into Destiny the travelers will get their bodies back. The highly advanced biotechnology makes it possible to change DNA from the cell's nucleus. That allows the user to create the copy of the traveler. Then that traveler requires training and in that case, the system can use simulated reality and metaverse along with neuro-implants. Maybe that thing is possible in the future. 

Galaxies and galaxy clusters are part of the giant superstructure called "the cosmic web", or "cosmic neural network", because those structures look like the neural network. There are also giant plasma flows between galaxies and galaxy clusters. That thing formed a model where artificial neurons could be the plasma ball. 

The ball's shell controls the ion flow that travels in those tubes between the balls. The ions that travel in that ion flow are the neurotransmitters. The artificial axon is a bunch of quantum channels. By adjusting the position of the electric-, or magnetic points on the ball the system can adjust the ion flow and aim it into the right tube or ion channel. The microchip can control this system with a very high accuracy. 

https://bigthink.com/starts-with-a-bang/physics-consciousness/

https://futurism.com/physicist-gravity-computer-simulation. 


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

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

Solar storms and cyber attacks can shut down electricity.


"People walk down the street between flashlights and light reflections during the power outage that affects Spain nationwide in Granada, Spain, on April 28, 2025. (Image credit: Fermin Rodriguez/NurPhoto via Getty Images)" (Space,Solar storms and cyberattacks can both cause blackouts. Knowing the difference could save billions of dollars)


The difference between those things is that the danger to the system is that cyber attacks can destroy the computers by mixing or destroying data from the hard disk using the computer's internal commands. Things like backup hard disks can restore electricity immediately. The solar wind is a different kind of thing. 

The solar wind means fast ions and electrons that come from the sun. Those electrons and high-energy particles can push the Earth's ion field like Van Allen belts so low, that they can even touch the atmosphere. Along with those particles the Sun sends high-energy radiation. When those particles and radiation impact Earth's magnetic field they can form things like northern lights near the poles. Those particles can destroy satellites that orbit the sun. When they hit other particles those particles send gamma and X-ray radiation. 


When those particles and radiation hit the Earth's atmosphere they send electromagnetic radiation. The effect is similar to the nuclear weapon detonation at Earth orbiter. When that electromagnetic radiation hits electric wires it causes overvoltage in electric wires. That overvoltage causes physical damage to computers and other electronic systems. 

The problem with those solar winds and other kinds of things is that they cause physical damage. The Coronal mass ejections, CMEs are cases where the plasma causes extremely powerful electromagnetic effects to satellites and electric wires. This thing can cause a situation in the safety systems that will shut down things like nuclear power plants. The overvoltage can also burn things like microchips. 

The thing that tells about the CME's power is the case where that high-energy plasma hits Jupiter's magnetic field. That CME pushed Jupiter's magnetic field and its plasma ring to touch Jupiter's high atmosphere. That raised its temperature about 500 degrees. This tells us that solar storms are very dangerous. 



The EMP weapons are synthetic CMEs


The high-power CME can have a similar effect as the nuclear test "Dominic Starfish Prime". The nuclear test was made over Island Oahu Hawaii islands. That thing caused the EMP impulse that blackened the entire Oahu. The Starfish Prime detonated in 1962. At that time electronics were not as vulnerable as it is today. So, we can imagine that a similar explosion would happen today. 

That destroys electronics in large areas. There is the possibility that things like ion thrusters. That is pointed to the atmosphere can create a similar effect as Dominic Starfish Prime. The ion systems can replace the nuclear weapons in the EMP systems. The system can act like the Hawking plasma engine. It collects plasma around high-power magnets, heats it with microwaves, and then laser or particle accelerators can send those superheat ions to the atmosphere. That superheat plasma can have a similar effect as nuclear weapons. 

"Starfish Prime was successful. The Thor missile carried the test instrumentation and the W-49 warhead/Mk-4 RV payload to 248 miles. The test appeared quite spectacular from Hawaii (800 miles away) and at Kwajalein (1600 miles away), with impressive light displays from an artifical aurora lasting up to seven minutes. The electromagnetic pulse (EMP) from this test sent power line surges throughout Oahu, knocking out street lighting, blowing fuzes and circuit breakers, and triggering burglar alarms." (https://nuclearweaponarchive.org/Usa/Tests/Dominic.html)


https://nuclearweaponarchive.org/Usa/Tests/Dominic.html


https://scitechdaily.com/jupiters-defenses-collapse-under-massive-solar-storm-scientists-shocked-by-500c-heat-surge/


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


The new microchips can combine the camera and computer into one package.

The new microchips think like humans and see like eyes. Those systems combine the camera and computer into one entirety.  It makes the lightning-fast reactions for robots possible. Those microchips can revolutionize robotics. They can act as an intelligent eye prosthetic. There is the possibility to connect the retina microchips with the optic nerve. 

But if the optic nerve is damaged that system can communicate with a Neuralink-type brain implant that stimulates the viewing center. That kind of tool can also be used in small-size robots and drones. Those systems can connect those new microchips with the drone's control systems. And that allows developers to make smaller systems. 

The system can be used in systems that should see in every direction. These kinds of microchips can turn the observation abilities to a new level. If we cover some vehicles using those systems that makes it possible to see and react fast to things like incoming meteorites or maybe they can be used in tanks. If that kind of system is connected with the protective systems like Trophy that allows the system to react faster to incoming missiles. The system can begin the counter-actions faster. Another thing is that these kinds of systems can also protect satellites against incoming antisatellite weapons. 

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"RMIT PhD scholar and study first author Thiha Aung inspects the team’s neuromorphic vision device. Credit: Will Wright, RMIT University" (ScitechDaily, This Tiny Chip Sees Like an Eye, Thinks Like a Brain, and Remembers Instantly)




"Princeton scientists have created a magnetic, shape-shifting metamaterial, part robot, part origami, that could revolutionize fields from robotics to medicine. Credit: Princeton University" (ScitechDaily, Princeton Engineers Develop “Metabot” That Is Both a Material and a Robot)

"This material can expand, change shape, move, and respond to electromagnetic commands like a remotely controlled robot, even though it has no motor or internal gears." (ScitechDaily, Princeton Engineers Develop “Metabot” That Is Both a Material and a Robot)

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That thing is very important in the new technologies like systems that turn a person invisible. The invisibility cloak or armor can look like samurai armor or Darth Vader's suit in Star Wars movies. There are screens on the suit. And the cameras on opposite sides of the suit can turn the person hollow. That kind of chameleon suit makes a person invisible to the human eye. The new microchips are also required in the new interactive materials, which are the same time robots and materials. Those systems can make the self-repairing structures possible. 

The idea is that structure. That you see as a solid, or united form of the small robots. Those robots are like Legos that can touch each other. If something breaks that structure, the repairments come from the warehouse, and then the damaged parts of the structure are removed. Those bites replace the damaged thing. 

The new system, called “Metabot" is the system that combines materials and robots. Those systems can be used in many missions like fixing leaking oil and gas tubes. The system must only find the point where the leak is. And then cover it. That makes this new microchip a very effective tool. 


https://scitechdaily.com/princeton-engineers-develop-metabot-that-is-both-a-material-and-a-robot/


https://en.wikipedia.org/wiki/Trophy_(countermeasure)


https://scitechdaily.com/this-tiny-chip-sees-like-an-eye-thinks-like-a-brain-and-remembers-instantly/


Houthi air defense gives a warning to stealth technology.

Image; TWZ


The Houthi air defense shot down 20 MQ-9 Reapers in the Red Sea operation. That causes the need to re-estimate the use of those drones. The slowly flying drone is a good target for air defense and even combat helicopters can destroy those systems. The Reaper's low survivability creates a need to develop new types of systems that have better survivability. But that was predicted. The alarming thing is that the F-35 was also under threat. The USAF must use B-2 bombers against that air defense. And it can cause questions, what if the Chinese military were at the place of Houthi? 

The USAF needs its top systems to operate against those rebels. And that causes questions about whether Western nations have enough capacity to act as trusted allies with African and Middle-, and far-East nations. If those African nations cannot trust the EU and the USA as allies, they will start searching for a safe haven from Russia and China. Things like piracy and armed rogue movements are big problems in those countries. And if Western nations cannot guarantee their transportation, those states will slide under the influence of China and Russia. And that is bad for democracy. 

The Houthi air defense could lock missiles into the F-35 Lightning II stealth aircraft. That shows how effective modern technology can be. The Houthi air defense used IR-, or modified IR-homing missile that gives a very short warning time. The system bases the mobile IR cameras and other passive sensors like optical telescopes that use CCD cameras and computers. The modification of the IR-homing missiles can be the seeker modification to use the image-homing system. The AI can control multiple sensors and connect their data. 

High-flying stratospheric aircraft or satellites can use optical cameras to detect stealth fighters. When we think about the high-resolution radars, those systems can see stealth aircraft against radio-reflecting backgrounds. The system sees scattered radar impulses because they disturb the background image. The system can also use laser radar called lidar to scan stealth aircraft. The AI can collect many sensors together. Those sensors are optical, radar, lidar, and acoustic systems that can detect stealth fighters. 

The one solution for tracking stealth can be nanotechnical or ionized particles that react to stealth aircraft. Stealth makes the aircraft invisible to the radar and maybe the human eye, if the system uses chameleon screens that make the aircraft "hollow". The camera system is at the opposite side of the aircraft. Sends images to opposite side screens that make the aircraft adapt to its environment. 



Chengdu J-20



Shenyang J-35




General-Atomics MQ-9 Reaper



Lockheed-Martin F-35 Lightning II

The system that cools the shell makes stealth hard to see in infrared. But if stealth is colder than the environment the system can see it against thermal objects. That kind of system makes stealth invisible but they cannot remove its existence. When the aircraft travels across the nanoparticle cloud it disturbs that cloud. And this thing makes it possible to detect stealth fighters. 

So when a stealth aircraft flies to a cloud it pushes molecules away from its route. If the system uses nanomachines they can deny the stealth aircraft simply making clumps in the stealth fighter's route. Or the drone swarms can try to close the route to the predicted target. There are also tested microwave or laser walls that can destroy stealth aircraft. There are two versions of the directed energy weapons. 

The ECM that just jams data links. The EMP can cause shortcuts and voltage pikes to the electronics. And the most high-power microwave and laser systems can simply melt the drone or aircraft. The laser weapons are basically modified industrial lasers that can cut wings off the aircraft. Those systems can also damage the aircraft's body. 

There are also acoustic systems that can cause cracks in stealth materials. A small drone that can come too close to the stealth aircraft base can cause very big damage to stealth fighters. Some stealth materials are so sensitive that people cannot even step on those aircraft's wings. And even the small damage can destroy the stealth system. 

The laser systems can also cut the optical communication cables that some drones use to avoid the ECM. When the system sees the cable-drone it can send a laser beam below the drone and cuts that wire simply moving that ray horizontally. The aircraft and hypersonic missiles can also use microwave systems to sweep those drones and nanomachines out of their route. Things like defensive laser and microwave systems can protect those aircraft against regular missiles. But microwave warheads can move the defense to a new level. 

The IR and visual cameras take images of the target. Then the missile homes into it using modified face-recognition software. That software can be installed in a laptop computer where the camera system inputs data. The network of optical and radar sensors can threaten all stealth aircraft. Also, things like lidar-based systems are under development or in use. The laser scanners can detect stealth fighters and the so-called indirect observation method can cause problems. 

The indirect method means that laser- or regular radars or IR sensors can detect the exhaust gas or air cone behind the stealth aircraft. The system sees the abandoned trail, and then the image-detection system that operates in visible, low-level light and IR areas can start to search the aircraft. The laser scanners and image-recognition systems can easily be installed into the old-time aircraft. AI-based systems can also make it possible to make full-automatic cooperation between all types of sensors and platforms. 

That case can give a warning about future conflicts. Even old-fashioned missiles can be modified to the anti-stealth roles by updating electronics and other systems. The rocket can be equipped with a datalink that allows it to communicate with ground and seaborne control systems. 

The big thing is that the Chinese, but Pakistani-operated old-fashioned fighter J-10 dropped the Dassault Rafale in air combat against India. That thing causes questions about the Western air combat capacity against China. Even if some Chinese jet fighters are old-fashioned like the Shenyang J-16 which is similar to the Su-27 those systems can be heavily updated. That means they might have the capacity to threaten stealth aircraft. 

But the new Chengdu J-20 and Shenyang J-35 are the new challengers. And it’s possible that the 4th. Generation Western aircraft have problems with those new stealth aircraft. The J-35 seems very much like the F-35 and that causes thoughts about industrial spying. The biggest difference between the Shenyang J-35 and the F-35 is that the Shenyang J-35 is a twin-engine system. There is the possibility that the J-35 can beat the F-35. Or it can be the heavy opponent for the F-35. And it's a big threat to older Western fighters. 

So, how many secrets have the Chinese stolen from those highly classified factories that develop and manufacture ultra-secretive technology? There is a possibility that the Chinese hacked at least part of the stealth technology. And that is a threat to at least older Western fighters. 

https://nationalinterest.org/blog/buzz/chinas-new-j-35-stealth-fighter-getting-ready-aircraft-carrier-duty-209819

https://www.twz.com/air/f-35-had-to-maneuver-to-evade-houthi-surface-to-air-missile-u-s-official


https://www.twz.com/news-features/what-air-defenses-do-the-houthis-in-yemen-actually-have


https://en.wikipedia.org/wiki/Chengdu_J-10


https://en.wikipedia.org/wiki/Chengdu_J-20


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


https://en.wikipedia.org/wiki/General_Atomics_MQ-9_Reaper


https://en.wikipedia.org/wiki/Lockheed_Martin_F-35_Lightning_II


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


https://en.wikipedia.org/wiki/Shenyang_J-16


https://en.wikipedia.org/wiki/Shenyang_J-35

Organoid-based computing is coming.

"A brain in a vat that believes it is walking" Organoids are replacing regular AI in systems. An organoid network connects so-call...