Sunday, June 21, 2026

Can private corporations offer a chance to respond? To the new challenges in space?

 



“SpaceX launched the NROL-179 mission for the U.S. government early Friday morning (June 19) from Vandenberg Space Force Base in California. (Image credit: SpaceX) (Space.com, SpaceX launches new batch of US spy satellites from California (video))

SpaceX  launched NRO recon satellites from Vandenberg. Details of those satellites are classified. But because NRO operates reconnaissance satellites. Those satellites’ mission is  connected to intelligence operations. This means that the U.S. strengthens its spaceborne abilities. 

But that launch itself. It causes discussions. About the role of Elon Musk and the SpaceX corporation in governmental operations. Those satellites play a vital role in space-based targeting and other types of missions. And they offer the ability. To see things that are hidden from other actors. The space gives SpaceX the possibility to rule those areas. And people are concerned about the strength. Of the SpaceX corporation. 

NASA attempts to save the SWIFT telescope. It can also have dimensions. That we ever imagined. The Katalyst corporation is the actor behind the satellite. That should do the mission. 

The same rockets that can transport things.Like satellites to space. They can also be used to carry killer satellites. NASA plans to launch. A miniature satellite that takes the Swift telescope by using manipulators. The satellite can push the SWIFT telescope into the right trajectory.  By using the hydraulic piston. The satellite can also use manipulators to throw the telescope. Or a miniature satellite. It can be used as a space tug. That pulls the damaged telescope to the right trajectory. The satellite that should do that mission is made  by the Katalyst corporation. 

And the knowledge of the satellites' trajectories is the thing. That allows them to affect them. And we know that the same system. That can push  space telescopes. Into another trajectory. That system can also throw other satellites into the atmosphere. This makes the attempt to rescue the space telescope by using another satellite. That will be launched by using the Pegasus rocket. The Pegasus is an airborne-launched system. That rocket. It can transport a small satellite to the orbiter. And the satellite. It can use similar systems. These are used in the case of the Swift telescope. For pushing the targeted satellite back into the atmosphere. And those kinds of systems. 



The mission profile for that service flight. For the rescue SWIFT telescope. 



They can be used to find and affect killer satellites. Or. So-called sleeping FOBS (fractional orbital bombardment system) satellites. Those spaceborne nukes. They  can be used for surprise attacks. The FOBS satellite. It can be used as a nuclear-based EMP(electromagnetic pulse) system. In simulations. The EMP impulses can be used to prepare the opponent for a nuclear strike. The idea in those systems is that a high-power nuclear explosion at high altitude paralyzes electronics before the nuclear mass raid. In 1962, the high altitude nuclear test “Starfish Prime” was conducted above Honolulu. The 1,4 megaton exoatmospheric nuclear explosion caused electronics to be destroyed all around Honolulu. 

Modern electronics are more vulnerable to spaceborne nuclear explosions and their EMP pulses than 1960’s primitive technology. The EMP causes a situation. All communications are shut down. The jetfighters. They cannot rise to defense. And it’s possible that missiles cannot be launched because the EMP destroyed their electronics. Or the transmitters that should transmit launching signals are destroyed. The ability to find those FOBS satellites. It makes it possible to deny the surprise attacks using the sleeping nuclear detonation satellites. There is. The ability to push them into the atmosphere is the thing. That makes them unable to complete their missions. 

The problem with the nuclear-powered EMP is that. The 1,4 megaton hydrogen bomb is not the limit of those weapons. The EMP weapon. It can be much more powerful than the 1,4 megaton bomb. Used in Starfish Prime. The EMP satellites can also form a network all around the world. The large-scale EMP strike can have a destructive effect on fleet and ground-based infrastructure. 

Wikipedia says the Russian killer satellite program is like this: “Nivelir (Russian: "dumpy level"; Project 14K167) is a class of Russian military low Earth orbit (LEO) satellites widely believed to be co-orbital anti-satellite weapons (ASAT) with secondary space surveillance missions. The spacecraft are often compared to Matryoshka "nesting dolls". As each contains a smaller inspector subsatellite, which can itself. Deploy one or more kinetic kill vehicles (KKV).” Wikipedia, Nivelir) 

The first of those satellites was launched in 2022. And there is a possibility that the Russians plan to create Earth-orbiting nuclear-armed satellites. Those satellites can drop a nuclear bomb on cities. Or they can detonate their internal warheads in surprise attacks. Detonating those satellites is not very difficult. The system is like a high-tech car bomb. When that satellite is in the right position. The system. It gives a launching code. Then the nuclear warhead detonates. The only problem is that EMP also destroys friendly satellites. 


https://www.nro.gov/Portals/135/Documents/news/Press%20Kits/10463_Press%20Kit%20book_Launch_Pro-Arch179_6.11.26.pdf?ver=0v03xnXSpOK_ni7ywyhemw%3d%3d


https://roboticsandautomationnews.com/2025/10/01/nasa-awards-30-million-to-katalyst-space-technologies-to-rescue-500-million-satellite/95080/


https://www.space.com/space-exploration/launches-spacecraft/spacex-spy-satellite-launch-nrol-179-nro


https://www.the-sun.com/news/14598954/russian-killer-satellite-us-spacecraft/


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


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


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


Sunday, June 14, 2026

18 stealth ships can protect the entire U.S carrier fleet.



“San Francisco, Calif. (Mar. 18, 1999) The U.S. Navy Sea Shadow (IX-529) craft gets underway at dusk to participate in events associated with Fleet Battle Experiment-Echo, sponsored by Commander, Third Fleet and the Maritime Battle Center. Sea Shadow was reactivated this year to support the evaluation of future Navy ship designs and technologies, including automation for reduced manning, propulsion concepts, and characteristics of surface ship stealth.” (Wikipedia, Sea Shadow (IX-529))

The new ship designs are based on stealth technology. In the new designs and visions for fast reconnaissance, patrol, and attack craft. The craft itself can look a little bit like a blackbird. That biomimicking outfit makes radar impulses to slide away from the transmitter. The craft itself would be catamarans with two underwater keels. And the boat would look like. Being lying on two torpedoes. Those underwater structures give them incredible speed. The Sea Shadow retired and was scrapped in 2012. But  modern specialists think that 18 stealth crafts can protect the entire U.S. carrier fleet. 

These two crafts. Retired Sea Shadow and the Ghost boats can operate. Along with bigger ships. The Sea Shadow uses technology. Developed for F-117 Night Hawk. The Sea Shadow can drop torpedoes or launch missiles between its keels. That makes it possible to open fire without. Breaking the stealth form of the craft. If the torpedo or missile hatches are at the bottom of the craft. The craft can drop those weapons into the water. And those launches will be harder to detect. Especially if some kind of drone. 

It carries the weapon a certain distance from the Sea Shadow. That craft is one of the stealth ships in service. The Juliet Marine System’s Ghost boat is a smaller and very fast stealth boat. “Juliet Marine Systems Ghost is a super-cavitating stealth ship. The ship's experimental hull design can reduce hull friction to 1/900th that of conventional watercraft. Ghost was designed, developed, and built by the private American company Juliet Marine Systems.” (Wikipedia, Juliet Marine Systems Ghost)










Juliet Marine System Ghost. The craft could carry two Harpoon or SLAM missiles under its hatches. 



The Corsair drone boat. That picked the downed Apache Crew. Out Of The Gulf of Oman

That system can operate with special forces or attack craft. There is also a possibility of using that system as a surface drone. The surface drone can be used for reconnaissance or attack missions. The kamikaze-sea drone can carry an internal. Conventional or nuclear explosives. The drone can also carry other drones or missiles. That makes them more versatile. 

Or they can save things like pilots. Who were shot down. This kind of mission is made. In the Hormuz Strait. When the U.S AH-64 “Apache” helicopter was shot down by Iran. The sea drone picked the crew out of the water. The drone was not the Ghost boat. But the mission introduced a new doctrine in naval operations. 

The small vehicles can be carried to the operational zone on bigger ships. The ships could carry those smaller boats in the dry pools. In their hull. When those bigger ships require their drones. They can fill that pool with water and release them against the enemy. The idea is taken from the model. Of the WWII tactical scenario. There are landing ships that normally carry small landing craft. Could carry torpedo boats.  When the enemy attacks, those torpedo boats will be released from that dock. The large-sized landing ship could also carry those sea drones. 


https://www.businessinsider.com/juliet-marine-systems-ghost-boat-2016-11


https://theaviationgeekclub.com/18-sea-shadow-stealth-ships-could-protect-the-entire-us-navy-carrier-fleet-remembering-the-warship-that-used-the-stealth-technology-of-the-f-117-nighthawk/amp/


https://www.twz.com/news-features/ah-64-apache-crew-rescued-by-drone-boat-after-going-down-near-strait-of-hormuz


https://www.twz.com/sea/this-is-the-corsair-drone-boat-that-plucked-the-downed-apache-crew-out-of-the-gulf-of-oman


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


https://en.wikipedia.org/wiki/Sea_Shadow_(IX-529)


Thursday, June 11, 2026

The key element of drones: flexibility.




As we know the drone. It can transport pizza to the right balcony. But the thing that we don’t normally think about is this. The same drone that delivers pizza at a certain point in the city. It can also transport grenades or bombs to the same point. This is the reason. For why this AI-controlled Skyways drone is so interesting. The drone can transport equipment and food. Into the precisely right position. The drone can make the same thing. With grenades and depth charges. Or it’s pizza can be replaced by using the radar antenna. So those drones can operate as miniature AWACS platforms. 

Those drones with radar systems can see at least larger drones. That flies below them. The radar observation drone can map underground tunnels. A swarm of those drones can communicate. With command, control, and communication platforms. This means that the AWACS platform outsourced its radar to other aircraft.  And that helps the crew to survive if the anti-radiation missile locks on those radars. 

So that makes those drones very versatile. Even if they are standard versions. The bigger drone. It can also operate with other drones. The bigger drone can carry a smaller drone. 

This means that the quadcopter strike drone can be dropped near the target. And those drones. They can use those drones. As aerospace relay satellites. The drone that flies over the area can also send a signal to eavesdropping systems.  To deliver the data that they recorded. Those “sleeping systems”. They can be extremely dangerous. The scanner doesn´t see those passive systems that record speech or data. When the system sends a radio signal, it sends recorded data to that drone. 

Or. It can pull another drone or missile behind it. That kind of system can launch the drone from the right position. And that increases their ability to operate. The pizza drone can also drop a quadcopter into the right position. And those copters can operate as reconnaissance or kamikaze missions. In pure reconnaissance missions, drones can be equipped with microphones or seismic sensors. That can deliver information to the command centers. 

This ability makes drones more versatile than traditional systems. The kamikaze drone can also send reconnaissance data for its operators. The thing about the quadcopters is that. Those drones. They can also transport guns like automatic pistols or small submachine guns. So they can be the most dangerous things in the wrong hands. 

 

Wednesday, June 10, 2026

New microchips are necessary to boost the AI.


"Scientists have demonstrated a breakthrough method. For building true 3D silicon chips. By stacking multiple layers of circuits. Without damaging existing electronics. The advance could help extend Moore’s law and deliver faster, more efficient computing as traditional chip scaling reaches its limits. Credit: Shutterstock." (ScitechDaily, The Next Computing Revolution May Come From Stacking Chips Like Skyscrapers)

The paradox of computing is this. There is never enough power for those systems. The new high-power computing that revolutionizes mathematics. Forces to develop new systems. That can resist attacks from new systems. The ability to create new protective algorithms. That can resist new complicated malware. Requires high-power computing. The problem is that. The microchips that run those AI-based algorithms. Running with full power. And that means. When new applications come. 

The entire physical system must be changed. The new types of quantum computers are tools. That can break any code. The role of those systems is simple. They can create new, ultra-long quantum prime numbers. The attacking systems require those prime numbers to crack the codes. And when the quantum computers launch an attack. Or assist the attack by generating quantum prime numbers. The only thing that can resist is another quantum computer. 

New AI-driven control systems require new and powerful physical systems. And the thing that can help to solve problems is new quantum computers. The paradox is this. A fully functional quantum computer requires highly effective AI to control it. The operating systems of those quantum computers are very complicated. They require powerful microprocessors. But in mobile systems, the space is limited. 





“Researchers have shown that elusive magnetic excitations can survive far longer than previously thought, opening new possibilities for ultra-compact quantum devices. Credit: Shutterstock” (SvitechDaily,Magnon Breakthrough Could Shrink Quantum Computers to the Size of a Penny)

The answer to that problem is technology, known as vertical integration. In those systems, the microcircuits are like towers. And that makes it possible to increase the number of transistors in those new 3D circuits. The system can keep. The temperature is lowered by using the small air channels. Or a nanotube-based architecture. There, the nanotubes are connected to a heat exchanger. That exhanger. It can be the element. 

Connected to those nanotubes. And the cold gas or liquid travels through those elements. That pumps the temperature. Out of those microchips. These kinds of microchips can control quantum computers in the future. And those heat exchangers can be connected to the cooler systems of the quantum chips. 

The quantum computer. It can be the size of a penny. If those quantum processors turn operational. They can miniaturize. The size of computer centers. The 250-qubit quantum computer matches the 250 regular microchips. That is one of the most effective systems. These kinds of systems can use the superconducting qubits. 

Another version is to use magnons. Anyway, those qubits require. A very stable and low temperature. The small quantum computer requires high-power coolers. So, theoretically. It's possible to keep its temperature low. By putting it into the  thermos box. There, the system keeps the temperature at a low level. The system can also use pressure. To raise the temperature that the superconductor requires. 

Magnon it is. “A magnon is a quasiparticle, a collective excitation of the spin structure of an electron in a crystal lattice. In the equivalent wave picture of quantum mechanics, a magnon can be viewed as a quantized spin wave. Magnons carry a fixed amount of energy and lattice momentum, and are spin-1, indicating they obey boson behavior.” (Wikipedia, Magnon)

“A lifetime of 18 microseconds could turn magnons from weak intermediate links into strong quantum memories and efficient communication channels on a chip. They may be able to connect hundreds of qubits through a shared pathway, serving as a long-awaited quantum bus for scalable quantum computers.” (ScitechDaily, Magnon Breakthrough Could Shrink Quantum Computers to the Size of a Penny)




“The new MultiQ-IT prototype can cool, trap, filter, and redirect over a billion ions simultaneously, dramatically improving dynamic range and signal-to-noise. Credit: Lori Chertoff/The Rockefeller University” (ScitechDaily, Magnon Breakthrough Could Shrink Quantum Computers to the Size of a Penny)

In some very exciting models. The quantum chip can involve a laser network. The points where the laser beams interact can act as quantum dots. And superpositions could be made through or between those quantum dots. Those systems are exciting. But they are a little bit. Too complicated. For the existing modern technology. The ability to miniaturize the quantum computers is exciting. 

When the system requires the ability to control qubits. It must see them.  This is the reason. For why the new sensor is interesting. The ability to see the points of atoms and molecules makes it possible to control them. The ability to see atoms and particles. And the ability to inject energy into them. Makes it possible to use atoms as qubits. 

In the same way. Those sensors. They can observe the qubits. These are created between quantum dots. The mass spectrometers. They can see which. Of those atom groups are stressed. Mass spectrometers can also transform the atoms into information. They can observe atoms. And a certain atom group. It can be a certain qubit or a state of the qubit. 


https://scitechdaily.com/magnon-breakthrough-could-shrink-quantum-computers-to-the-size-of-a-penny/


https://scitechdaily.com/mass-spectrometry-breakthrough-detects-billions-of-molecules-at-once/


https://scitechdaily.com/the-next-computing-revolution-may-come-from-stacking-chips-like-skyscrapers/


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


Wednesday, June 3, 2026

The AI passed Turing test.



The AI passed the Turing test. And that means: AI becomes more human than human. The Turing test measures today can AI generate answers that are impossible. To separate from humans. The Turing test, originally called the imitation game by Alan Turing in 1949, is a test of a machine's ability to exhibit intelligent behaviour equivalent to that of a human. In the test, a human evaluator judges a text transcript of a natural-language conversation between a human and a machine. The evaluator tries to identify the machine, and the machine passes. If the evaluator cannot reliably. “ (Wikipedia, Turing test). 

“To tell them apart. The results would not depend on the machine's ability to answer questions correctly. Only on how closely its answers resembled. Those of a human. Since the Turing test is a test of indistinguishability in performance capacity, the verbal version generalizes naturally to all of human performance capacity. Verbal. As well as nonverbal (robotic). (Wikipedia, Turing test). 

The ability to create AI that products cannot be separated from humans means new challenges for people. Whose mission is to control things like the thesis. The ability to create. This kind of AI that imitates humans perfectly makes it possible to use them to play humans. The AI agent that operates with workers can imitate real people. And that makes them very good tools for observations. The director can sit at the laptop and control AI agents that are virtual characters on the screen. Maybe in the future, the directors and team leaders can use the AI agents to follow the workers. 

Those AI agents can calculate how many times an hour the person takes breaks. Same way. Like in encoding work. The operator can operate virtual members of the workgroups. In the same way. The coder can operate virtual encoders. The director can operate virtual characters. The virtual character is actually an algorithm. That can act like a human. The virtual character can drop things and write notes. And many other things. In a virtual room that does not even exist in the real world. In that world, the office, the people whom you see. And things that you hear can be only virtual characters. Those characters can seem to make computer code in a nice office. But that office and the people who work there can be only algorithms. 

(Live Science) 



"The "standard interpretation" of the Turing test, in which player C, the interrogator, is given the task of trying to determine which player – A or B – is a computer and which is a human. The interrogator is limited to using the responses to written questions to make the determination." (Wikipedia, Turing Test)

The operators can use virtual characters to teach or train the AI. In that model, the AI creates the avatar. The virtual character, or digital twin. If we want to make a digital twin of certain people. That thing requires lots of data. But if we want to make and train a virtual character. That communicates with us. Only in the workplace. That thing requires less information. The virtual character who communicates with people. Only about work doesn’t require. A lot of training. And if the virtual character sees that somebody says something, that is outside the work. The order can be. “Back to topics. Time is money”. That allows. Controllers to avoid. The discussions that can uncover the virtual character. 

The AI agent can be a tool. That can collect information from the people. The AI agent can control tools like screen capture programs. The AI agent. With a very good dictionary. And very good articulation can be a good tool for social hacking. The virtual assistant. It can translate English into any language in the world. The virtual character. The algorithm can render. The performance and speech fit the desired character. 

That makes it possible to play any public person in the world. The AI agent must only see how the character speaks and acts. So, that kind of character can help to play even the presidents on screens. In those cases, the person who uses that kind of virtual actor can even use presidential authorities. And in the worst case, those virtual characters can cheat the micro support to create passwords with the same privileges. That president uses. The virtual character could pass the image recognition system. And that is the next-generation tool for identity thieves. 

Even if I just wrote that the digital twin. Made. To represent. A certain human. Or even a family member, requires lots of private data. But if the AI gets that data from somewhere. It is possible to create a virtual character. That can play. Even a family member. When we think about the work that this kind of thing requires. 

We must remember that every family has things. They talk with other family members. But if researchers. Or intelligence officers want to create. The digital twin of a public person. There is a lot of public data. About those kinds of persons. It’s possible that the agents got passwords for the Iranian digital infrastructure. Just before the U.S and Israel attacked Iran. Used some kind of digital actors. Like the Iranian leader’s digital twin as a social hacking tool. It’s possible that the agents. Used even Ali Khamenei’s digital twin to ask for passwords. Into that digital infrastructure. 


https://neurosciencenews.com/ai-passes-turing-test-30733/


https://www.psychologytoday.com/us/blog/the-future-brain/202605/ai-officially-passes-the-turing-test-landmark-study-shows


https://www.livescience.com/technology/artificial-intelligence/open-ai-gpt-4-5-is-the-first-ai-model-to-pass-an-authentic-turing-test-scientists-say


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


Can private corporations offer a chance to respond? To the new challenges in space?

  “SpaceX launched the NROL-179 mission for the U.S. government early Friday morning (June 19) from Vandenberg Space Force Base in Californi...