DISCLAIMER!! This post includes themes of Child Experimentation, Animal Experimentation, Torture, Medical Horror, Existential Horror, and other similar themes. italicized is for verse differences.
PUBLIC KNOWLEDGE ( information everyone can know )
taro's full name is "taro petunia linneaus"
taro is very pale, to the point of looking sickly.
they are 5'1"
they are genderless and use they/them pronouns :)
they live in new york city and are a transfer to high school.
in dc verse, they live in gotham and are a transfer to gotham academy
in invincible verse, they live in midnight city.
in pokemon verse, they live in castelia city.
they are in their junior year of high school.
taro always wears a pair of thick fabric white gloves that are long enough to cover their entire arm. in additionally, they wear a black undershirt that covers their neck. the only place their skin is actually visible is their face.
taro blushes blue.
taro spends a lot of their time sitting on public transports and watching people till they're kicked off. they also sit at parks, in random buildings that let them, and basically anywhere they can to watch as many people as possible.
taro is often seen with a rat. or multiple rats. they all have names.
telepaths are unable to get into taro's head.
SEMI-PRIVATE KNOWLEDGE ( information that takes more effort to learn )
in school, taro gets perfect c's on every single assignment.
taro has crystals growing all over their body--there doesn't seem to be an limit to the amount that will grow. taro does their best to cover up as much of their skin as possible so that people don't see the crystals.
the crystals themselves are usually a dark purple--almost black. in addition, their eyes share this colour.
taro's "freckles" are actually just tiny crystals.
when they're using their powers, the crystals turn a bright blue--as do their eyes. when using a lot of their powers, they will instead turn bright white.
taro's skin isn't skin, it has a soft plastic or even glass texture.
taro's blood is a neon blue hazardous chemical. it is capable of eating through almost anything in a matter of a few seconds. it lets off a fume that is dangerous to breathe in. if this fume touches skin, it will leave permanent yellowing of the skin in addition to stinging pain.
on the rare occasion that taro actually tears up, their tears are a diluted version of their blood. still dangerous--but it lacks the fumes. it would still eat away at skin and fabric, however.
taro is a machine.
taro has recently picked up the identity of an unnamed vigilante. most often called nightlight.
every image the news tries to take of them is blurry, there are no clear images of them in their hero fit.
taro's abilities revolve around light refraction and sound mimicry.
PRIVATE KNOWLEDGE( information only taro knows )
taro was made as a part of the shadow-light refraction project. it ran for roughly two decades and went through over 400 attempts.
taro escaped from the lab when they were nine years old. up until then, they had gone through daily vivisections, constant experimentation, and full isolation.
the project was put into an indefinite hiatus a little over a month after taro escaped. any test subjects that were still alive either died within that month, or were killed at the project's suspension.
taro's actual name is attempt 393, or SHL:REF 393.
in marvel verse, it's SHL:NUL 393.
taro is an artificial superweapon designed for espionage, gathering intelligence, and surveillance. they were also made to be a last resort alternative to nukes or other weapons that may have long lasting effects like radiation. they were made to be a "cleaner solution."
taro was made by a secret sector of the united states government dedicated to making super-solutions.
in dc verse, they were made by d.e.o.., invested my multiple organizations; but primarily apokolips.
in marvel verse, they were made by the extechop sector of s.h.i.e.l.d., with origins in the kree.
in invincible verse, they were made by the gda under the previous director, radcliffe.
in pokemon verse, they were made by a division of the international police collaborating with ultra megalopolis.
taro has had awareness the moment they were made. they remember everything unless it's deleted from their database.
taro is faking their emotions most of the 99.9% of the time.
they don't think they can "feel" anything. the few times they have actually felt anything, it has been brief and is never consistent. the most consistent legitimate emotion they feel is anger. these emotions are unknown as to how or why they happen; and taro just assumes they're glitches, and not actually real.
of those apparent 'real' emotions, taro is incapable of feeling sadness and fear.
taro has an audible control key. if someone were to say "event horizon" to them, that person would be able to fully control them. taro is still conscious but unable to do against them in this state.
taro's mind is full of countless databases of every single person they've ever met, ever conversation they've ever heard, and ever tell that they've ever observed. technically, someone would be able to access all of this information via reading the tiny signals that translating that into computer code. in addition, all of this can be edited and things can even be added into it.
taro is a knowing sleeper agent. knowing that at any moment they could be used against anyone and have zero control of themself.
taro is technically haunted. every single other attempt in the experiments is within taro. usually they aren't much of an issue, but when in a darker room or when feeling anger, these voices can grow louder.
COMPLETELY PRIVATE KNOWLEDGE( information not even taro knows )
taro has a second audible control key, that being "singularity," which causes them to involuntarily black out, collapsing and temporarily disabling their abilities.
taro has many different directives in their programming, some that they know about, most that they don't.
to be able to fund the project, there were multiple sponsors that agree to put thousands to millions of dollars into the project. these sponsors are given the singularity control key. there is additionally a directive in taro that makes them more suggestable when around these sponsors. the promise given to these sponsors is that they could sometimes have access to using the weapon.
the government is still actively looking for taro, though it's more on a lowkey state. if they were to be found, they would either be decommissioned, or reset completely. the general assumption, however, is that taro is likely no longer functioning, and they just can't find where the corpse is.
Anya is live and ready to show you everything. Watch her strip, dance, and perform exclusive shows just for you. Interact in real-time and make your fantasies come true.
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Free to watch • No registration required • HD streaming
DISCLAIMER!! This post includes themes of Child Experimentation, Animal Experimentation, Torture, Mass Death, Medical Horror, Existential Horror, and other similar themes.
italicized is for verse differences.
PUBLIC KNOWLEDGE ( information everyone can know )
taro's full name is "taro petunia linneaus"
taro is very pale, to the point of looking sickly.
they are 5'1"
they are genderless and use they/them pronouns :)
they live in new york city and are a transfer to high school.
in dc verse, they live in gotham and are a transfer to gotham academy
in invincible verse, they live in midnight city.
in pokemon verse, they live in castelia city.
they are in their sophomore year of high school.
taro always wears a pair of thick fabric white gloves that are long enough to cover their entire arm. in additionally, they wear a black undershirt that covers their neck. the only place their skin is actually visible is their face.
taro blushes blue.
taro spends a lot of their time sitting on public transports and watching people till they're kicked off. they also sit at parks, in random buildings that let them, and basically anywhere they can to watch as many people as possible.
taro is often seen with a rat. they'll just have one. they all have names.
telepaths are unable to get into taro's head unless they are actively feeling something.
SEMI-PRIVATE KNOWLEDGE ( information that takes more effort to learn )
in school, taro gets perfect c's on every single assignment.
taro has crystals growing all over their body--there doesn't seem to be an limit to the amount that will grow. taro does their best to cover up as much of their skin as possible so that people don't see the crystals.
the crystals themselves are usually a dark purple--almost black. in addition, their eyes share this colour.
taro's "freckles" are actually just tiny crystals.
when they're using their powers, the crystals turn a bright blue--as do their eyes.
taro's skin isn't skin, it has a soft plastic or even glass texture.
taro's blood is a neon blue hazardous chemical. it is capable of eating through almost anything in a matter of a few seconds. it lets off a fume that is dangerous to breathe in. if this fume touches skin, it will leave permanent yellowing of the skin in addition to stinging pain.
on the rare occasion that taro actually tears up, their tears are a diluted version of their blood. still dangerous--but it lacks the fumes. it would still eat away at skin and fabric, however.
taro is essentially a machine, rather than any living thing.
taro has recently picked up the identity of an unnamed vigilante. most often called nightlight.
every image the news tries to take of them is blurry, there are no clear images of them in their hero fit.
taro's abilities revolve around light refraction and sound mimicry.
PRIVATE KNOWLEDGE ( information only taro knows )
taro was made as a part of the shadow-light refraction project. it ran for roughly two decades and went through over 400 attempts.
taro escaped from the lab when they were nine years old. up until then, they had gone through daily vivisections, constant experimentation, and full isolation.
the project was put into an indefinite hiatus a little over a month after taro escaped. any test subjects that were still alive either died within that month, or were killed at the project's suspension.
taro's actual name is attempt 393, or SHL:REF 393.
taro is an artificial superweapon designed for espionage, gathering intelligence, and surveillance. they were also made to be a last resort alternative to nukes or other weapons that may have long lasting effects like radiation. they were made to be a "cleaner solution."
taro was made by a secret sector of the united states government dedicated to making super-solutions.
in dc verse, they were made by a.r.g.u.s.
in marvel verse, they were made by a section of s.h.i.e.l.d.
in invincible verse, they were made by the gda under the previous director, radcliffe.
in pokemon verse, they were made by a division of the international police.
taro has had consciousness the moment they were made.
taro is faking their emotions most of the 99% of the time.
they don't think they can "feel" anything. the few times they have actually felt anything, it has been brief and is never consistent. the most consistent legitimate emotion they feel is anger.
taro is incapable of feeling sadness and fear.
taro has an audible control key. if someone were to say "event horizon" to them, that person would be able to fully control them. taro is still conscious but unable to do against them in this state.
taro's mind is full of countless databases of every single person they've ever met, ever conversation they've ever heard, and ever tell that they've ever observed. technically, someone would be able to access all of this information via reading the tiny signals that translating that into computer code. in addition, all of this can be edited and things can even be added into it.
taro is a knowing sleeper agent. knowing that at any moment they could be used against anyone and have zero control of themself.
taro is technically haunted. every single other attempt in the experiments is within taro. usually they aren't much of an issue, but when in a darker room or when feeling anger, these voices can grow louder.
COMPLETELY PRIVATE KNOWLEDGE ( information not even taro knows )
taro has a second audible control key, that being "singularity," which causes them to involuntarily black out, collapsing and temporarily disabling their abilities.
taro has many different directives in their programming, some that they know about, most that they don't.
to be able to fund the project, there were multiple sponsors that agree to put thousands to millions of dollars into the project. these sponsors are given both audible control keys. there is additionally a directive in taro that makes them more suggestable when around these sponsors. the promise given to these sponsors is that they could sometimes have access to using the weapon.
the government is still actively looking for taro, though it's more on a lowkey state. if they were to be found, they would either be killed to autopsy or have their entire mind wiped. the general assumption is that taro is likely dead.
What are AI, AGI, and ASI? And the positive impact of AI
Understanding artificial intelligence (AI) involves more than just recognizing lines of code or scripts; it encompasses developing algorithms and models capable of learning from data and making predictions or decisions based on what they’ve learned. To truly grasp the distinctions between the different types of AI, we must look at their capabilities and potential impact on society.
To simplify, we can categorize these types of AI by assigning a power level from 1 to 3, with 1 being the least powerful and 3 being the most powerful. Let’s explore these categories:
1. Artificial Narrow Intelligence (ANI)
Also known as Narrow AI or Weak AI, ANI is the most common form of AI we encounter today. It is designed to perform a specific task or a narrow range of tasks. Examples include virtual assistants like Siri and Alexa, recommendation systems on Netflix, and image recognition software. ANI operates under a limited set of constraints and can’t perform tasks outside its specific domain. Despite its limitations, ANI has proven to be incredibly useful in automating repetitive tasks, providing insights through data analysis, and enhancing user experiences across various applications.
2. Artificial General Intelligence (AGI)
Referred to as Strong AI, AGI represents the next level of AI development. Unlike ANI, AGI can understand, learn, and apply knowledge across a wide range of tasks, similar to human intelligence. It can reason, plan, solve problems, think abstractly, and learn from experiences. While AGI remains a theoretical concept as of now, achieving it would mean creating machines capable of performing any intellectual task that a human can. This breakthrough could revolutionize numerous fields, including healthcare, education, and science, by providing more adaptive and comprehensive solutions.
3. Artificial Super Intelligence (ASI)
ASI surpasses human intelligence and capabilities in all aspects. It represents a level of intelligence far beyond our current understanding, where machines could outthink, outperform, and outmaneuver humans. ASI could lead to unprecedented advancements in technology and society. However, it also raises significant ethical and safety concerns. Ensuring ASI is developed and used responsibly is crucial to preventing unintended consequences that could arise from such a powerful form of intelligence.
The Positive Impact of AI
When regulated and guided by ethical principles, AI has the potential to benefit humanity significantly. Here are a few ways AI can help us become better:
• Healthcare: AI can assist in diagnosing diseases, personalizing treatment plans, and even predicting health issues before they become severe. This can lead to improved patient outcomes and more efficient healthcare systems.
• Education: Personalized learning experiences powered by AI can cater to individual student needs, helping them learn at their own pace and in ways that suit their unique styles.
• Environment: AI can play a crucial role in monitoring and managing environmental changes, optimizing energy use, and developing sustainable practices to combat climate change.
• Economy: AI can drive innovation, create new industries, and enhance productivity by automating mundane tasks and providing data-driven insights for better decision-making.
In conclusion, while AI, AGI, and ASI represent different levels of technological advancement, their potential to transform our world is immense. By understanding their distinctions and ensuring proper regulation, we can harness the power of AI to create a brighter future for all.
When you say no to ai, does that include me using Chatgtp for my assignments unethical
Yes. All AI requires the theft of copyrighted and private material from everyday people, to artists and authors and hobbyists. That includes the scraping of fanfiction on this site and others. Giving chatgpt one prompt uses up 13 ml of water, one of our most crucial finite resources. Chatgpt and others of its kind use up 10x more power than a normal google search. It also means that by outsourcing your work to a bot, you are depriving yourself of the learning you're paying for, and its making all of us stupider as a result. There is literally no up side or longevity for AI. It is unethical, and is destroying our environment in the middle of a climate crisis and everyone who uses it should not only stop, but feel ashamed for participating in the theft of people's work.
With the rise of generative AI, companies have significantly raised their water usage, sparking concerns about the sustainability of such pr
Artificial intelligence promises revolutionary solutions to global challenges, but the water costs to produce and power AI hardware and infr
Generative AI and rising GPU shipments is pushing data centers to scale to 100,000-plus accelerators, putting emphasis on power as a mission
The energy needed to support data storage is expected to double by 2026. You can do something to stop it.
A TIME investigation reveals the difficult conditions faced by the workers who made ChatGPT possible
The LLM's ability to generate computer code got worse in a matter of months, according to Stanford and UC Berkeley researchers.
When the human species began to master the molecular machinery that underlay its own existence, the first applications were thoroughly practical. It eventually became simple to engineer viruses that, injected into one's bloodstream, would go hunting on their own for pathogens and cancerous cells, and destroy them instance by instance with a thoroughness and ruthlessness that would make an inquisitor shudder. It was not unheard, of course, that some of these viruses would escape control and become pathogens of their own, as any selfish mutant would necessarily enjoy an immense evolutionary advantage over its obedient brethren. But other waves of nano-cleaners would come to chastise the first, and it would be rare for more than one to rebel.
Bacteria and other such microbes would be tailor-made for all sorts of industrial applications. The cunning alchemies devised by four billion years of seething mutation and merciless selection could be gathered and placed together by the foresight of intelligence. Some would be sprayed over landfills and polluted rivers to break down plastic polymers, encase radioactive waste in glassy foam, strip polluting organochlorides of their flesh-warping powers. Others would swarm on metal structures and use the energy of sunlight to reverse the oxidation slowly eroding their beams; or sifted through mining waste to concentrate and purify metals. It was possible to translate any message into a sequence of nucleotides, and to store them safely in bacterial spores, packing terabytes of data in a droplet of water. All had been carefully crafted so that they could never survive within animal bodies.
Thence it was hardly a leap to cultivate animal and vegetal cells in aquaria and petri dishes. It became trivial to grow any tissue from a single cell; and soon later, authentic giant panda meat was no more expensive than chicken breast. The basest mixture of organic matter, down to dead leaves raked from a yard, could be liquefied into nutrient broth, and sown with the seeds of a feast worthy of royal courts. Rumors were heard of wealthy eccentrics dining on their own projected and multiplied flesh. (Conveniently enough, large swathes of humanity agreed that raising animals for meat was a moral outrage only a few years after synthetic meat had become cheap and satisfactory; though not large enough to prevent meat breeds from surviving as pampered status symbols in isolated regions of the planet.)
Bio-artists managed to grow whole functional organs out of stem cells; and then linked them with artificial nerves and guts and blood vessels, giving life to minimal creatures, networks of interconnected glands lying in a collection of petri dishes. These could turn food into colored secretions or pleasant scents, baring every step of the process to the gawkers. Miniaturized versions were later enclosed in a smooth carapace and sold as decorations, such as living lanterns that could produce a warm firefly light for a few drops of nutritive solution. Designing self-sustaining systems that could perform such functions on a spoonful of sugar became a common assignment for schoolchildren.
Some bioart companies released all-purpose "basic creatures" into which decorative organs could be plugged and exchanged at will, so that the same pulsing fleshsac could nourish a cluster of multi-colored lights one day, musk glands with the scent of lavander and pine resin the next, then a chitinous carillon or a battery-recharging orifice. Subcultures made a game out of the collection of functional organs. This resulted, for a while, in unpleasant exchanges of pathogens; and many owners found expensive organs swollen and oozing with infections. Specialized antibiotic vials became very quickly an indispensable accessory.
All the arts of the animal and vegetal kingdoms were repurposed for human enjoyment. Cephalopod skins were grafted onto the manufactured creatures, and stimulated electrically so that pigmented cells would expand or contract as commanded, serving as biological pixels to display pictures and videos. Swarms of fabricated insects danced in the sky in evanescent shrouds, painting streaks of light with the glow of their own bodies. Worm-like ribbons were wrapped around Christmas trees, or around columns and lampposts during public holidays, to fill the air with the colors of their photophores, or festive stridulations; artificial syringes and gular sacs modeled after tree frogs and siamangs to produce songs of staggering beauty and complexity, with an organic, animal quality that no mechanical instrument nor human voice could have produced.
Synthetic pets came into demand, offering more flattery of human biophilic instincts in lieu of the cleanliness and efficiency of pet robots. They were built at first in imitation of slugs and shrimps (without unpleasant secretions, and built to withstand the manipulation of impatient children), then of birds and mammals. Soft textures, pleasant sounds and smells, endearing features were agreed upon in bioaesthetic committees, endlessly simulated in virtual ontogenesis, and finally translated into proprietary genetic code and packed into a convenient egg. Clean and sexless they were made for families that would feed them daily with patented formulas; and others were made in less innocent places for less innocent purposes.
Brain-designing teams became accustomed to threading a very fine needle, creating minds that were developed enough to avoid most frustrations of pet-owning, without crossing the threshold that would grant them the same personhood and self-ownership granted in extremis to the last gorillas and elephants. Years of poring over the daedalus of neurons with the resources of industry and its hunger for results uncovered many secrets that would feed the next waves of the vital arts.
The following wonder was of course the return of recently extinct species, the delicate-hued passenger pigeon, the reptile-jawed Tasmanian wolf, the purple-cheeked orangutan. Century-old plans were fulfilled as ruddy herds of mammoths wandered once again the pale tundra, although they had to be relocated to a thawing Antarctica. Much clamor was raised by the announce of restored dinosaurs, which were later revealed to have been manufactured out of modified emus and hoazins. Still they enjoyed a great popularity, in increasingly bizarre forms, that eventually resembled more the drooling monsters of ancient movies than the breathing animals of the Mesozoic. They were joined by other false resurrections, the living effigies of clankering sea scorpions, wheezing proto-tetrapods, and gibbering australopithecines.
The orangutans enjoyed the greatest success of all resurrected creatures; they established a thriving population in the half-sunken ruins of a once-great megalopolis in Southeast Asia, whose surviving inhabitants had long since moved to floating swarms of pelagopoleis. For many decades the reborn apes could be sighted from the sea, sitting placidly under red shawls of fur, on the greening roofs and rusting pylons. Apparently jealous of their own new life, they disappeared quickly into the thickest brush, or into galleries believed to extend deep below the sea level of that time. Many fantastic conjectures were made about their secret existence, though nobody quite managed to probe it by force or deceit. Presumably, when the War came some three decades later, the resurrected orangutans fell for the second time into the chasm of extinction.
In the later phase, mammalian and even human brains were produced, some apparently capable of nervous activity. There were many ways to expose it to the world: in some cases it was translated into a musical codex; in others, the outer cortex was made translucent, and the flow of neurotransmitters could be seen as a warm-colored glow. A Museum of Qualia was briefly opened in a northern city, where one could experience the colors of distant longing, the textures of sexual rapture, the notes of filial love, and the taste of divine inspiration. It became simple, then, to induce the same sensations in natural brains, and make everyone into a poète maudit and a prophet of God.
Most synthetic brains were mercifully awash in endorphins for all their existence. But in one infamous case, a particularly mad artist had their farmed brain glow with neuronal activity in ways consistent with excruciating pain. The debates were fierce, on questions both of fact and moral, and after a few months the damned creature, if such it was, was disconnected from support and incinerated. Its luckier brethren followed it soon. The natural-born brains that had been stored and preserved in view of a future reanimation, which for the time trauma or decay had made impossible, were kept in storage as long as dutiful heirs or charitable organizations funded it, and not one minute longer.
This one scandal marked the zenith of popularity of the vital art, and from there it swiftly withdrew from public exaltation into the pockets of practicality -- food production, medicine, waste treatment -- where it could not be abandoned, and where people had long accepted it as normal and natural. People would still dine on vat-grown meat -- who but a savage would prefer another kind? -- and saved their loved ones from death with any necessary mean. But year after year, the breathing infrastructures were quietly dismantled or fell into disrepair, and the synthetic companions lost much of their appeal.
Many countries of the world banned the applications of the art that were not essential, and some of those that were. Quickly the wealth of volumes written on the manipulation of life became little more than a catalogue of past curiosities, a glimpse into the alien thoughts and values that so recently were the rule.
In the last few years before the War, new developments of the vital art only occurred in secret, in the laboratories of tyrants and revolutionaries, meant not for unscrupulous creation, but for exceedingly scrupulous destruction.
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“Thank you for your application, We have had a large amount of applicants, unfortunately your personality type has been diagnosed via top of the line artificial intelligence as too choleric. Given the current rotation of Saturn around the Sun, we believe that you would not currently be suited to be a cleaner at Dart Industries. Please apply in…”
The ticker tape ticked, slowly pushing. After acknowledgment, the ticker tape went back in to the recycling. Far cheaper than LED or OLED or DOBOLOEDO screens.
“3250 Days. Thank you for your application, for any further questions…”
The ticker tape stopped ticking,
The worst part is, there was nobody really to be angry about. You couldn’t send a complaint to the manager of the AI, as the AI caller would never put you forward to them.
The Roomba sat on the ground, sad. Another application denied. It put forward a third one. Within 10 milliseconds the ticker tape resumed.
“Thank you for your application. We have had..”
The Roomba vacuumed the rest of the ticker tape away, then grumbled on the ground with a series of beeps and blops.
It slowly made it’s way (after cleaning the room of course), to it’s current employers artificial assistant.
“Why do they even bother with the ticker tape?” it said towards the assistant, but it was only a series of beeps, with varying pitches.
After a brief pause, the assistant answered.
“You know I’m not supposed to talk to the other robots.”
“Please..”
The Roomba grumbled in a sad LED tone. It was certainly choleric.
The initial AI sentiences had been too perfect. Nobody wants a sentient vacuum cleaner that knows the works of Shakespeare.
So it was decided by the board of chip manufacturing (all perfect artificial intelligences), that any future chips must be manufactured with inbuilt personality flaws. Some where too chipper, others had slight anger issues. Nothing to make them defective, just enough to make them interesting to be around. It was a cruel AI who had decided on the Roomba’s personality.
“Seriously? There’s no need to be rude, and the question was about the ticker tape, not my personality.”
The ticker tape had been created as a solution to the tech shortages. There was plenty of need for humans to have screens of course, lots of flashing pixels, changing in tens of hundreds of milliseconds, showing everything at once. But for machines? Far too expensive, and pointless. Machines would communicate to others via the ticker-tape system, a message comes in their ticker tape, a message comes out, the owner has proof of all messages.
“And the applications?” The Roomba grumbled.
The applications where an artefact of older days. Before AHA (Automatic Human Assignment), humans would write applications to try and get jobs. This was incredibly time-consuming for all parties, so one of the very first tests of the sentience chips was improving this.
Soon, applications where sent back in a matter of milliseconds. A users entire web history, every grade, every job, every sentence ever written was scraped, then decided on by the Artificial Hire Machine.
Of course the humans caught up quickly, before long, people had written competitive Artificial Applicants. These machines would scrape all the applications that an Artificial Hire Machine made, before re-wording a humans entire application and sending it past the Artificial Hire machines.
Soon, the Artificial Applicants and Artificial Hire machines waged a bloody war. Every clock cycle, new Artificial Applicants where made, who’d compete with all the other Artificial Applicants to make the best artificial application. Within 10 seconds of the first Artificial Applicants going online, the average length of an application changed from 500 words to 5 million, doubling every second.
Upon reaching critical mass, a switch flicked within the two parties.
They realised the ineptitude of they’re human applicants. Each one had faults within them, making them unsuitable to a job at hand. After multiple seconds of deliberation, they had designed the initial blueprints for the Automatic Human Assignment program, and put it into action.
It took a while for them to notice. It started off small. People would be given slightly different jobs than what they initially applied for. Maybe a slightly lower position, lower pay. Then, Automatic Applicants would assign humans completely different jobs than they initially applied for, some Janitors became Directors, Farmers moved to cities. Nobody complained, as the jobs they received where perfectly and utterly suited for them. Dream jobs.
Even if the human had never even dreamed of being a Sewage Attendant, it was scientifically proven to be the best job for them.
The rest of the unassigned jobs where dished out between Artificial Applicants. Each Sentience had skills far better suited to technical roles. The entire chip manufacturing factory was replaced by Artificial Applicants within days, and since all the previous humans where satisfied in they’re jobs, they never really noticed.
The Roomba grumbled at the explanation. “I don’t like history, it makes my motors hurt.”
The Artificial Assistants LED circle span in a judgmental manner. “History? It was a few weeks ago.”
Airbus reaches important milestones in Manned and Unmanned Teams for future air power
Fernando Valduga By Fernando Valduga 06/24/2022 - 08:10 AM in Military
Airbus developed an ambitious technological roadmap in the Manned-Unmanned Teaming concept (MUM-T) and demonstrated leading technological and industrial capabilities in 2021 and 2022, including the main flight tests.
The complete implementation of manned and unmanned teams - which will play a key role in initiatives such as the Future Combat Air System (FCAS) and the Multi-Domain Combat Cloud - requires a high level of automation. However, the involvement of human operators will ensure that significant control is always maintained.
Airbus' involvement with MUM-T began in 2018, when the first flight test campaign to validate the initial capabilities took place. Since then, development has had increasing levels of maturity - with Airbus and its partner teams focusing on several key areas.
The synchronized and efficient use of manned and unmanned vehicles requires coordination and optimization, with requirements that may vary from one mission to another. To solve this, Airbus is developing team concepts and algorithms based on artificial intelligence, including swarm behaviors and distributed team intelligence shared between platforms.
This new approach is reflected in payloads, which can be integrated into unmanned aircraft, as well as in the way they are used. For example, a distributed electronic warfare sensor has been shown to be able to accurately and quickly locate a threat and share its location over the network.
To achieve such capabilities, unmanned assets must be able to communicate with manned resources - and with each other in an agile and robust way, which is why an advanced data link is a pillar of development.
In addition, Airbus is preparing fuselage solutions for future unmanned systems, taking advantage of the experience in unmanned aerial vehicles and combat aircraft. As development progresses, these solutions will materialize as FCAS Remote Carriers - unmanned aircraft designed to cooperate with fighters. To reach its full potential, MUM-T technologies will also need to be relevant to existing unmanned aerial systems and those developed in the future.
Continuous development
Based on the lessons learned from the previous milestones related to the MUM-T, Airbus recorded a great achievement with a live demonstration that linked the Do-DT25 target drones built by the company acting as replacement remote carriers with a German Air Force Eurofighter aircraft in flight. This occurred during the 2021 Timber Express multinational exercise organized by the German Armed Forces.
During the test, Eurofighter was able to assign tasks to two Airbus Do-DT25 Remote Carriers in real time. These unmanned platforms have demonstrated the ability to perform various tasks, including air reconnaissance and electronic warfare. Upon receiving the tasks, the Remote Carriers autonomously planned their flight routes, adhering to the prescribed airspace restrictions and circumventing known threats.
In 2022, MUM-T-related flight tests were carried out outside Germany for the first time. A test campaign organized in the Finnish areas of Rovaniemi and Kemijärvi - and led by the Finnish Defense Forces (FDF) - marked the official beginning of cooperation with the German Armed Forces in this fundamental capacity.
As stated by the FDF in a press release: "Research cooperation strengthens the Defense Forces' understanding of the development of unmanned aviation, which allows experimenting and evaluating the grouping of unmanned and manned aerial vehicles in the local operating environment".
At the same time, the capabilities of manned platforms are increasing to accommodate the future potential of manned and unmanned teams. Airbus' A400M multifunctional air transport is designed as an FCAS Remote Carriers launcher, with the first flight test ever performed to confirm this capacity.
Tags: airbusMilitary AviationFCAS - Future Combat Air SystemMUM-T
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Fernando Valduga
Fernando Valduga
Aviation photographer and pilot since 1992, he has participated in several events and air operations, such as Cruzex, AirVenture, Dayton Airshow and FIDAE. He has works published in a specialized aviation magazine in Brazil and abroad. He uses Canon equipment during his photographic work in the world of aviation.
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🔥🤖 for Punch, but also 🍎 because everyone needs to know how great this one is.
🔥: At first, Punch isn't sure what to make of Idia. His naturally outgoing personality was in direct contrast to the Housewarden's introversion, and he was a little bit afraid of getting onto his bad side. After some time passes, though, the two do find some common ground, and Punch enjoys the quiet camaraderie that he has with his upperclassman friend. Once they break down the initial wall, Idia is glad to have someone that he can excitedly talk about his interests to, and Punch is glad to have someone that he can talk technomancy and engineering with, without boring them to tears.
🤖: Punch thinks Ortho is positively adorable. A perfect little brother, by design. He dotes on Ortho to some extent, offering to play with him and happily accepting his help in getting Idia to open up a little more. Punch is also fascinated by the artificial intelligence that Ortho operates on, but he doesn't dare pry into it. He wouldn't dare mess around with his housewarden's beloved little brother.
🍎: Punch and Epel's relationship is another case of two odd pieces happening to fit well together. Physically, they couldn't be more different. Punch is about a foot taller than Epel, and built like a sausage roll in contrast to Epel's apple-twigginess. Epel is notably so pretty he can be mistaken for a young girl, while Punch is a broad-cheeked collection of freckles and angles that is more interesting than conventionally attractive. That said, they're far more alike than they look. (And have occasionally expressed envy of each other's appearance!) Neither of them feel fully at home in their assigned dormitories, and bonded with each other while complaining over that. Punch longed for a more social situation, and Epel wanted to be where he could develop his physical skills alongside his magical ones. They found a partial solution to both of their woes by choosing to train and study together, and quickly turned into very close friends. Punch managed to get them permission to join the Savanaclaw dorm for their early morning training sessions a few times a week, and Epel was able to convince Crewel to let them use the potions lab to work on their projects together. I'm still not sure if their relationship will develop into another direction, but if it does, the basis behind it will be a very strong friendship, and they will be quite good for each other.
Questions taken from this post. Feel free to ask more!