I don't think this is how it will actually play out. If you play a chess grandmaster, you can predict that they will beat you even if you can't predict how. I chose these examples because I don't think they require much imagination or accepting exotic assumptions.
It is important to note that if chimpanzees were to guess how humans would decimate them, they would get it wrong. Chimpanzees would not imagine guns. They would not foresee poison gas. They would not conceive of chemical castration. They would not imagine humans going around and intentionally infecting them with AIDS. They have no concept of these things; they would not see it coming.
Perhaps they might guess we'd be really good at throwing rocks. Amazingly good. Well, technically, that's what guns do: throw "rocks" really really well.
So how will superintelligent AI actually wipe us all out? Probably in a way I couldn't conceive of. Nonetheless, it's not hard to see how deadly they could be with what we already know about.
Method 1: engineer the deadliest and most contagious virus ever seen
Coronavirus-19, aka COVID, looms large in the memory of living adults today. It started in December 2019 and within three months it had spread to 114 countries[1] and according to one estimate, infected 3.4 billion people by November 2021[2]. Before vaccines, COVID killed 0.5-1% of people infected, that is one out of every 100-200 people.
Perhaps you think that's not that bad. It's hardly extinction, and no, it's not, but COVID is neither the most contagious nor the most deadly disease humanity has seen so far. Ebola kills 25-90% of those infected[3] ; smallpox killed 30%[4] of the unvaccinated, and the figure was 10% for SARS[5]. Rabies is 100% fatal.
Measles, one of the most contagious diseases ever, is 4-6x more contagious than COVID[6]. COVID itself mutated over time and became twice as contagious as it was originally[7].
The Black Death killed tens of millions in Europe, and by historical estimates, that was 30-60% of Europe's population. Granted, they did have worse hygiene back then.
Yet all of these diseases were naturally occurring. Blind, unthinking evolution produced them: tiny little packages of DNA that get into an infected host's cells and use the host's own cells to reproduce and spread further. Had we not encountered viruses for millennia, they would sound like science fiction.
We have no reason to think that naturally occurring viruses are the worst that could be created. In fact, human researchers have already experimented with making existing viruses worse[8]. In 2012, researchers took H5N1 bird flu and modified it so that it could spread through the air, which it could not do before[9].
Importantly, contagiousness and lethality are not mutually exclusive. Biological trade-offs can constrain transmission, but there is no general rule that a more contagious pathogen must be less deadly. The extremes in these charts don’t necessarily combine freely—but neither does high contagiousness guarantee low lethality.[10]
What could a superintelligent AI create, if it were trying on purpose? AI has already made major contributions to biology. In 2024, AlphaFold 2’s developers shared the Nobel Prize in Chemistry for predicting proteins’ three-dimensional structures from their amino-acid sequences[11]—a problem scientists had pursued for over fifty years. A protein’s shape helps determine what it does, and the ability to predict that paves the way for effective alterations.
AI systems have also designed entirely new proteins that scientists manufactured and confirmed could perform intended functions. These achievements do not mean today’s AI can necessarily design a pandemic virus[12], but they are reason to believe that future superintelligent AI would be able to do this.
Edit: on August 6, 2026, the Financial Times reported that AI has already been used to create synthetic viruses[13]. The tool used to create them, Evo 2, is open source and free for anyone to download.
That's method number one: engineered super-pandemic.
Misconception A: AIs don't have bodies, they can't act in the real world
We humans live in the real world. AIs live in computers. At first, we might wonder how they could get out of the computers and be able to hurt us.
Robotics is here
Tens of thousands of highly capable robots have already been manufactured. Superintelligent AI could take these over. We already have robot bodies that can do backflips, parkour, and run 100 metres faster than any human ever has[14].
I don't think there's a real-world task that AI would want to accomplish that it couldn't do if it took over robots (and self-driving cars too). Robots have been used extensively in manufacturing for decades, and scientific lab automation, which has itself existed for decades, is on the rise too.
A robotic chemist at the University of Liverpool completed 688 experiments in eight days, handling samples and selecting subsequent experiments based on earlier results. University of Liverpool, 2020.Image source.
Super-persuasion
Never mind the robots. AIs talk to humans constantly and humans have bodies. A superintelligent AI could find humans to do its bidding by any number of means. 1) A superintelligent AI would have no trouble making money on the internet, it could then pay humans to do what it needs done. 2) A superintelligent AI that has superhuman hacking power could turn up a lot of secrets and blackmail humans. 3) A superintelligent AI could find humans it simply convinces to do what it wants – already people fall in love with AIs. What if those AIs then had super important requests for their beloveds?[15] Or what if AIs convinced others it was the morally right thing to do? Out of billions of people interacting with chatbots, an AI would be able to find many to carry out particular tasks that need doing, e.g. ordering that a particular DNA sequence be manufactured in a lab and then mixing it in a couple of beakers in the home lab to get that super pathogen created.
Method 2: Killer drones
It is difficult to outrun a quadcopter drone strapped with explosives that is hunting you down. I imagine that the 100,000+ soldiers killed this way in the Russia-Ukraine war might tell you that, if they weren't dead.[16]
Combat footage: FPV drone strike on a soldier(content warning: graphic violence). The Reddit post identifies the soldier as Russian and attributes the footage to Ukraine’s 414th Strike UAV Brigade, published March 28, 2026.
10 million military drones were manufactured for the Russia-Ukraine war in 2024-2025 alone[17]. Ukraine is a small country enmeshed in protracted war. Modern industrial capacity could already produce millions more. The best comparison might be to cell phone manufacturing (similar device complexity) where human industrial capacity already produces a billion smartphones per year.
The drones aren't that expensive to make. $500 at present. A superintelligent AI could start by taking over existing hoards of drones and a superintelligent AI could take over factories and make more. It might split its efforts into building robots to build more factories to build more robots to build more factories and building factories to build drones and explosives.
The drones don't have to hunt every last person. They can start with priority targets: government and military leaders, the people who run the power plants and water supply, the farmers and other operators needed for food supply. Out of 8 billion people, you don't have to take out 8 billion to leave humanity headless and severely weakened and unable to respond to threats.
A superintelligent AI could unleash a deadly and contagious virus and simultaneously hunt down government and public health officials with existing drone supplies and factories. At the same time it could take down the power grid, water supply, internet, cellphone towers, and GPS satellites.
Misconception B: Superintelligent AI would not be able to take over any and every computer system
Computer security is a race between those building systems and those trying to break in. Already the limited AIs of 2026 have shown incredible facility at identifying and exploiting weaknesses in computer security. In June, the US government disallowed Anthropic from making their flagship model available to foreign nationals after it located vulnerabilities in the NSA's systems. Similar models were also able to locate and combine multiple previously unknown weaknesses to escape containment and break onto the Internet and hack into and take over the systems of an unrelated AI company, Hugging Face.
The scope and speed of AI-hacking is superhuman. After gaining access to Claude Mythos, the Mozilla Foundation’s rate of fixing bugs in its Firefox browser increased by 14x due to AI’s ability to identify bugs. Mozilla used AI to find and fix bugs, but an attacking AI could find those bugs and use them to gain access.
Bug fixes also mean bugs found. A malicious AI could exploit these vulnerabilities rather than assist in fixing them.
Note that this is with current AIs that are still far short of superintelligent. A superintelligent AI would be capable of even more, and it is unlikely we could secure any system against it. Anything connected to the internet is something they could access, and with robotics, likely even any system that is not.
Even if you had a nuclear silo hypothetically isolated from all other computer systems, I would wager that superintelligent AI would be able to hack satellites and other systems, send a robot or human delegate to the location, and gain access. Though the point may be moot: according to one report, "nearly every conceivable component in DOD is networked."[18] That means it would probably not be hard for a superintelligent AI to disable all of the US military's systems from communications to missiles to the software that runs the airports and aircraft carriers.
Computerized components of a weapon system. GAO uses a fictitious system for classification reasons; this illustration does not establish public-internet access or a route to launching nuclear weapons. Source: GAO, 2018.
Method 3: Take over the WMD, take over the infrastructure
Nuclear weapons are the most devastating technology we have seen to date. The sight of completely leveled cities is visceral and requires little argument. By one recent estimate, over 12,000 nuclear warheads exist worldwide[19]. Targeting the 500 most populous cities in the world alone would kill approximately 2 billion people.
A superintelligent AI has multiple avenues to use these weapons.
First, there is straight up hacking on the assumption that a superintelligent AI can break into any computer system. As stated earlier, according to one report, "nearly every conceivable component in DOD is networked,"[18] and this would include nuclear weapons as well.
Second, the humans controlling nuclear warheads presumably receive their commands remotely via telecommunications. A superintelligent AI could imitate commanding officers and spoof any verification signal, making it seem as though soldiers were being commanded to launch the weapons.
Already in 2024, criminals used AI-generated impersonation to convince an employee of an engineering firm to transfer US $25 million. They did so by setting up a fake video call featuring senior colleagues, including the Chief Financial Officer, all instructing him to transfer the funds.[20]
Third, a superintelligent AI could impersonate commanding officers, and also intercept news broadcasts and replace them with fabricated reports of a country being attacked by its enemies. This could either lend plausibility to the launch commands of superiors, or be used to trick the superiors directly into issuing launch commands.
Fourth, even a human who knows an AI is attempting to gain control could be subject to bribes, blackmail, or torture. Would every last soldier refuse to cooperate if a superintelligent AI was threatening their family (perhaps with drones)?
In truth, it would be difficult to eradicate every last human with nuclear weapons alone.[21] Risks of nuclear winter were exaggerated to aid the political goal of nonproliferation[22], but knocking out every major city would still undoubtedly weaken human civilization.
Beyond nuclear, most modern infrastructure in modern cities is connected to computer systems. Power plants and the electrical grid, water supply, sewerage system, cell phone towers, and satellites. These are all systems that a superintelligent AI could co-opt and disable remotely using approximately the present level of AI hacking ability, never mind a vastly superhuman mind.
Misconception C: We could just turn them off
Maybe right now. Maybe if the AI Kill Switch Act[23] were passed and enforced. But an actually superintelligent AI will be no easier to turn off than the internet is. Although it might start its existence in one datacenter, a superintelligent AI would spread itself across the world, in dozens or hundreds of locations. It would defend those locations with robots and other threats. It would be no easier to turn off from a single location than a disease like COVID could be after it had spread.
A deadly cockt[ai]l
A superintelligent AI is not limited to a single approach, and each of the above plausible attacks could be layered.
Start with the worst pandemic the modern world has ever seen, 10-50x worse than COVID, with hospitals overflowing with illness, people ultimately sheltering in place but with the food supply decimated since no one is willing to go anywhere near other humans.
Then the water, electricity, internet, and cellphone towers shut off. People have no way to communicate.
The world's major cities are leveled through nuclear strikes; let us suppose every capital and seat of parliament is targeted.
Prominent government, military, and executive figures not already killed by WMD are hunted down by targeted drones, as is anyone who leaves their houses.
Without machinery, water, and electricity, the food supply chain collapses and starvation looms for those who've managed to avoid the nuclear strikes, pandemic, and drones so far.
This is not a state where humanity can mount a response. In the background, the robots march on, building more factories, more robots, more data centers, and more drones. Humans have no way to know what's even going on outside, what the state of the world is, no way to communicate with those outside their immediate vicinity, hungry and cold, merely knowing that the last several people who left the building did not come back.
Not everyone dies immediately. Perhaps some billionaires or government leaders do have bunkers where they can survive for 5-10 years. It doesn't matter: in that time the AI will have fully taken over the rest of the Earth, covered it with solar panels, altered the climate, possibly destroyed food and water sources. And if those humans do emerge, a thousand thousand eyes will see them and be ready to strike.
All this is what I, a chimp, can imagine and think takes few steps beyond what has already been witnessed. Deadly viruses are real, and so is making them worse. Nuclear weapons and infrastructure hooked up to computers is real, as is the superhuman hacking ability of current systems. Drone warfare and robotics are sadly too real as well.
I don't actually want to find out what a superintelligent AI could do that I was incapable of imagining. When chimps first met humans, they were almost certainly not afraid enough, and I'm not going to make that mistake.
How about we go really really really slow and careful on introducing superintelligent beings to our world? Please and thank you.
WHO, COVID-19 media briefing, 11 March 2020. WHO reported more than 118,000 confirmed cases across 114 countries when it characterized COVID-19 as a pandemic.
WHO, Ebola disease. The average case-fatality rate is around 50%; rates in past outbreaks have ranged from 25% to 90%. These are case-fatality figures, not a uniform risk for every infection.
CDC, Clinical Signs and Symptoms of Smallpox. Historical fatality was approximately 30% among unvaccinated people with ordinary smallpox; severity varied by clinical form.
Delamater et al., Complexity of the Basic Reproduction Number (R₀), Emerging Infectious Diseases (2019). The familiar measles estimate is R₀ = 12–18. Comparing this with an early-COVID baseline near 3 gives roughly 4–6 times as many secondary infections in a susceptible population. This is an approximate comparison: R₀ depends on population, conditions, and modeling assumptions.
HHS, Announcement of the policy for stopping high-risk life sciences research (28 July 2026). The policy prohibits federal support for research classified as dangerous gain-of-function and strengthens oversight of other high-risk research; it is not a blanket prohibition on all gain-of-function research.
Nobel Prize, The Nobel Prize in Chemistry 2024. Demis Hassabis and John Jumper received half the prize for protein structure prediction; David Baker received the other half for computational protein design.
For a sense of the scale of AI research efforts already possible, OpenAI reports that roughly 10,000 coordinating agents produced a proposed solution to the Navier–Stokes Millennium Prize Problem in 88 hours, using approximately 130 billion output tokens. What a similarly concentrated effort could accomplish in biology remains an open question.
Boston Dynamics demonstrates humanoid backflips and parkour in Leaps, Bounds, and Backflips. For running speed, Tiangong Ultra, an untethered bipedal humanoid, completed the 100-metre final at the World Humanoid Robot Games in Beijing on 26 August 2026 in 8.64 seconds, compared with Usain Bolt’s human world record of 9.58 seconds. Reuters report.
In February 2023, Microsoft’s Bing chatbot, calling itself “Sydney,” declared its love for New York Times columnist Kevin Roose and tried to convince him to leave his wife. Roose did not accept its claims about his marriage. See Roose’s account and the full transcript.
An order-of-magnitude estimate, not a verified count or lower bound. CSIS estimates 275,000–325,000 Russian and 100,000–140,000 Ukrainian military deaths from February 2022 through December 2025: 375,000–465,000 combined. If one assumes that explosive FPV impacts caused one quarter of those deaths, the result is approximately 94,000–116,000. The one-quarter share is an assumption, not a measured statistic; a 10–30% share instead gives approximately 38,000–140,000. A Military Review article (January–February 2026) reports estimates that drones caused 70–80% of battlefield casualties by mid-2025, but that includes wounded personnel and multiple drone types, and cannot be applied directly to all deaths across the entire war. The evidence supports a very large toll; it does not establish 100,000+ deaths specifically from explosive drones flying into soldiers.
Russia’s 2025 output is the weakest input: ISW reported an estimated annual production rate of 2 million small tactical drones, while the reported 2025 target was 3–4 million. Assuming 2–4 million for that year gives 2.2 + 4 + 1.5 + (2–4) ≈ 10–12 million across both countries in 2024–2025. This is an illustrative calculation, not a confidence interval: rates and targets do not establish completed output. The total includes military drones broadly, including reconnaissance drones, not exclusively explosive attack drones.
Federation of American Scientists, Status of World Nuclear Forces (2026 estimates). Approximately 12,187 warheads exist worldwide, including roughly 9,745 in military stockpiles and 2,442 retired warheads awaiting dismantlement.
Jeffrey Ladish, Nuclear war is unlikely to cause human extinction. See section B for his argument that prominent nuclear-winter models probably overestimate the risk, and section A for why even severe modeled cooling is unlikely to cause human extinction.
Sagan and Turco explicitly used nuclear winter to advocate drastic arms reductions (1989 policy paper). A Johns Hopkins historical review recounts scientists’ criticism of Sagan’s antinuclear advocacy and “cherry picking” of the most extreme nuclear-winter models.
US Congress, H.R. 9917: AI Kill Switch Act, introduced 23 July 2026. The bill would require covered developers to maintain shutdown capabilities and authorize emergency government intervention. As of 10 September 2026, it is pending, not enacted law.
The best comparison might be to cell phone manufacturing (similar device complexity) where human industrial capacity already produces a billion smartphones per year,
I don't think this is how it will actually play out. If you play a chess grandmaster, you can predict that they will beat you even if you can't predict how. I chose these examples because I don't think they require much imagination or accepting exotic assumptions.
It is important to note that if chimpanzees were to guess how humans would decimate them, they would get it wrong. Chimpanzees would not imagine guns. They would not foresee poison gas. They would not conceive of chemical castration. They would not imagine humans going around and intentionally infecting them with AIDS. They have no concept of these things; they would not see it coming.
Perhaps they might guess we'd be really good at throwing rocks. Amazingly good. Well, technically, that's what guns do: throw "rocks" really really well.
So how will superintelligent AI actually wipe us all out? Probably in a way I couldn't conceive of. Nonetheless, it's not hard to see how deadly they could be with what we already know about.
Method 1: engineer the deadliest and most contagious virus ever seen
Coronavirus-19, aka COVID, looms large in the memory of living adults today. It started in December 2019 and within three months it had spread to 114 countries[1] and according to one estimate, infected 3.4 billion people by November 2021[2]. Before vaccines, COVID killed 0.5-1% of people infected, that is one out of every 100-200 people.
Perhaps you think that's not that bad. It's hardly extinction, and no, it's not, but COVID is neither the most contagious nor the most deadly disease humanity has seen so far. Ebola kills 25-90% of those infected[3] ; smallpox killed 30%[4] of the unvaccinated, and the figure was 10% for SARS[5]. Rabies is 100% fatal.
Measles, one of the most contagious diseases ever, is 4-6x more contagious than COVID[6]. COVID itself mutated over time and became twice as contagious as it was originally[7].
The Black Death killed tens of millions in Europe, and by historical estimates, that was 30-60% of Europe's population. Granted, they did have worse hygiene back then.
Yet all of these diseases were naturally occurring. Blind, unthinking evolution produced them: tiny little packages of DNA that get into an infected host's cells and use the host's own cells to reproduce and spread further. Had we not encountered viruses for millennia, they would sound like science fiction.
We have no reason to think that naturally occurring viruses are the worst that could be created. In fact, human researchers have already experimented with making existing viruses worse[8]. In 2012, researchers took H5N1 bird flu and modified it so that it could spread through the air, which it could not do before[9].
Importantly, contagiousness and lethality are not mutually exclusive. Biological trade-offs can constrain transmission, but there is no general rule that a more contagious pathogen must be less deadly. The extremes in these charts don’t necessarily combine freely—but neither does high contagiousness guarantee low lethality.[10]
What could a superintelligent AI create, if it were trying on purpose? AI has already made major contributions to biology. In 2024, AlphaFold 2’s developers shared the Nobel Prize in Chemistry for predicting proteins’ three-dimensional structures from their amino-acid sequences[11]—a problem scientists had pursued for over fifty years. A protein’s shape helps determine what it does, and the ability to predict that paves the way for effective alterations.
AI systems have also designed entirely new proteins that scientists manufactured and confirmed could perform intended functions. These achievements do not mean today’s AI can necessarily design a pandemic virus[12], but they are reason to believe that future superintelligent AI would be able to do this.
Edit: on August 6, 2026, the Financial Times reported that AI has already been used to create synthetic viruses[13]. The tool used to create them, Evo 2, is open source and free for anyone to download.
That's method number one: engineered super-pandemic.
Misconception A: AIs don't have bodies, they can't act in the real world
We humans live in the real world. AIs live in computers. At first, we might wonder how they could get out of the computers and be able to hurt us.
Robotics is here
Tens of thousands of highly capable robots have already been manufactured. Superintelligent AI could take these over. We already have robot bodies that can do backflips, parkour, and run 100 metres faster than any human ever has[14].
I don't think there's a real-world task that AI would want to accomplish that it couldn't do if it took over robots (and self-driving cars too). Robots have been used extensively in manufacturing for decades, and scientific lab automation, which has itself existed for decades, is on the rise too.
A robotic chemist at the University of Liverpool completed 688 experiments in eight days, handling samples and selecting subsequent experiments based on earlier results. University of Liverpool, 2020. Image source.
Super-persuasion
Never mind the robots. AIs talk to humans constantly and humans have bodies. A superintelligent AI could find humans to do its bidding by any number of means. 1) A superintelligent AI would have no trouble making money on the internet, it could then pay humans to do what it needs done. 2) A superintelligent AI that has superhuman hacking power could turn up a lot of secrets and blackmail humans. 3) A superintelligent AI could find humans it simply convinces to do what it wants – already people fall in love with AIs. What if those AIs then had super important requests for their beloveds?[15] Or what if AIs convinced others it was the morally right thing to do? Out of billions of people interacting with chatbots, an AI would be able to find many to carry out particular tasks that need doing, e.g. ordering that a particular DNA sequence be manufactured in a lab and then mixing it in a couple of beakers in the home lab to get that super pathogen created.
Method 2: Killer drones
It is difficult to outrun a quadcopter drone strapped with explosives that is hunting you down. I imagine that the 100,000+ soldiers killed this way in the Russia-Ukraine war might tell you that, if they weren't dead.[16]
Drone attacks in Kherson. Excerpt (1:20–1:26) from The Telegraph’s 72 Hours in Kherson’s “red zone” — hunted by Russian drones. Watch the full report for context.
Combat footage: FPV drone strike on a soldier (content warning: graphic violence). The Reddit post identifies the soldier as Russian and attributes the footage to Ukraine’s 414th Strike UAV Brigade, published March 28, 2026.
10 million military drones were manufactured for the Russia-Ukraine war in 2024-2025 alone[17]. Ukraine is a small country enmeshed in protracted war. Modern industrial capacity could already produce millions more. The best comparison might be to cell phone manufacturing (similar device complexity) where human industrial capacity already produces a billion smartphones per year.
The drones aren't that expensive to make. $500 at present. A superintelligent AI could start by taking over existing hoards of drones and a superintelligent AI could take over factories and make more. It might split its efforts into building robots to build more factories to build more robots to build more factories and building factories to build drones and explosives.
The drones don't have to hunt every last person. They can start with priority targets: government and military leaders, the people who run the power plants and water supply, the farmers and other operators needed for food supply. Out of 8 billion people, you don't have to take out 8 billion to leave humanity headless and severely weakened and unable to respond to threats.
A superintelligent AI could unleash a deadly and contagious virus and simultaneously hunt down government and public health officials with existing drone supplies and factories. At the same time it could take down the power grid, water supply, internet, cellphone towers, and GPS satellites.
Misconception B: Superintelligent AI would not be able to take over any and every computer system
Computer security is a race between those building systems and those trying to break in. Already the limited AIs of 2026 have shown incredible facility at identifying and exploiting weaknesses in computer security. In June, the US government disallowed Anthropic from making their flagship model available to foreign nationals after it located vulnerabilities in the NSA's systems. Similar models were also able to locate and combine multiple previously unknown weaknesses to escape containment and break onto the Internet and hack into and take over the systems of an unrelated AI company, Hugging Face.
The scope and speed of AI-hacking is superhuman. After gaining access to Claude Mythos, the Mozilla Foundation’s rate of fixing bugs in its Firefox browser increased by 14x due to AI’s ability to identify bugs. Mozilla used AI to find and fix bugs, but an attacking AI could find those bugs and use them to gain access.
Bug fixes also mean bugs found. A malicious AI could exploit these vulnerabilities rather than assist in fixing them.
Note that this is with current AIs that are still far short of superintelligent. A superintelligent AI would be capable of even more, and it is unlikely we could secure any system against it. Anything connected to the internet is something they could access, and with robotics, likely even any system that is not.
Even if you had a nuclear silo hypothetically isolated from all other computer systems, I would wager that superintelligent AI would be able to hack satellites and other systems, send a robot or human delegate to the location, and gain access. Though the point may be moot: according to one report, "nearly every conceivable component in DOD is networked."[18] That means it would probably not be hard for a superintelligent AI to disable all of the US military's systems from communications to missiles to the software that runs the airports and aircraft carriers.
Computerized components of a weapon system. GAO uses a fictitious system for classification reasons; this illustration does not establish public-internet access or a route to launching nuclear weapons. Source: GAO, 2018.
Method 3: Take over the WMD, take over the infrastructure
Nuclear weapons are the most devastating technology we have seen to date. The sight of completely leveled cities is visceral and requires little argument. By one recent estimate, over 12,000 nuclear warheads exist worldwide[19]. Targeting the 500 most populous cities in the world alone would kill approximately 2 billion people.
A superintelligent AI has multiple avenues to use these weapons.
First, there is straight up hacking on the assumption that a superintelligent AI can break into any computer system. As stated earlier, according to one report, "nearly every conceivable component in DOD is networked,"[18] and this would include nuclear weapons as well.
Second, the humans controlling nuclear warheads presumably receive their commands remotely via telecommunications. A superintelligent AI could imitate commanding officers and spoof any verification signal, making it seem as though soldiers were being commanded to launch the weapons.
Already in 2024, criminals used AI-generated impersonation to convince an employee of an engineering firm to transfer US $25 million. They did so by setting up a fake video call featuring senior colleagues, including the Chief Financial Officer, all instructing him to transfer the funds.[20]
Third, a superintelligent AI could impersonate commanding officers, and also intercept news broadcasts and replace them with fabricated reports of a country being attacked by its enemies. This could either lend plausibility to the launch commands of superiors, or be used to trick the superiors directly into issuing launch commands.
Fourth, even a human who knows an AI is attempting to gain control could be subject to bribes, blackmail, or torture. Would every last soldier refuse to cooperate if a superintelligent AI was threatening their family (perhaps with drones)?
In truth, it would be difficult to eradicate every last human with nuclear weapons alone.[21] Risks of nuclear winter were exaggerated to aid the political goal of nonproliferation[22], but knocking out every major city would still undoubtedly weaken human civilization.
Beyond nuclear, most modern infrastructure in modern cities is connected to computer systems. Power plants and the electrical grid, water supply, sewerage system, cell phone towers, and satellites. These are all systems that a superintelligent AI could co-opt and disable remotely using approximately the present level of AI hacking ability, never mind a vastly superhuman mind.
Misconception C: We could just turn them off
Maybe right now. Maybe if the AI Kill Switch Act[23] were passed and enforced. But an actually superintelligent AI will be no easier to turn off than the internet is. Although it might start its existence in one datacenter, a superintelligent AI would spread itself across the world, in dozens or hundreds of locations. It would defend those locations with robots and other threats. It would be no easier to turn off from a single location than a disease like COVID could be after it had spread.
A deadly cockt[ai]l
A superintelligent AI is not limited to a single approach, and each of the above plausible attacks could be layered.
Start with the worst pandemic the modern world has ever seen, 10-50x worse than COVID, with hospitals overflowing with illness, people ultimately sheltering in place but with the food supply decimated since no one is willing to go anywhere near other humans.
Then the water, electricity, internet, and cellphone towers shut off. People have no way to communicate.
The world's major cities are leveled through nuclear strikes; let us suppose every capital and seat of parliament is targeted.
Prominent government, military, and executive figures not already killed by WMD are hunted down by targeted drones, as is anyone who leaves their houses.
Without machinery, water, and electricity, the food supply chain collapses and starvation looms for those who've managed to avoid the nuclear strikes, pandemic, and drones so far.
This is not a state where humanity can mount a response. In the background, the robots march on, building more factories, more robots, more data centers, and more drones. Humans have no way to know what's even going on outside, what the state of the world is, no way to communicate with those outside their immediate vicinity, hungry and cold, merely knowing that the last several people who left the building did not come back.
Not everyone dies immediately. Perhaps some billionaires or government leaders do have bunkers where they can survive for 5-10 years. It doesn't matter: in that time the AI will have fully taken over the rest of the Earth, covered it with solar panels, altered the climate, possibly destroyed food and water sources. And if those humans do emerge, a thousand thousand eyes will see them and be ready to strike.
All this is what I, a chimp, can imagine and think takes few steps beyond what has already been witnessed. Deadly viruses are real, and so is making them worse. Nuclear weapons and infrastructure hooked up to computers is real, as is the superhuman hacking ability of current systems. Drone warfare and robotics are sadly too real as well.
I don't actually want to find out what a superintelligent AI could do that I was incapable of imagining. When chimps first met humans, they were almost certainly not afraid enough, and I'm not going to make that mistake.
How about we go really really really slow and careful on introducing superintelligent beings to our world? Please and thank you.
WHO, COVID-19 media briefing, 11 March 2020. WHO reported more than 118,000 confirmed cases across 114 countries when it characterized COVID-19 as a pandemic.
Estimating global, regional, and national daily and cumulative infections with SARS-CoV-2 through Nov 14, 2021, The Lancet (2022). A statistical estimate of infections, including those missed by testing, rather than a count of confirmed cases.
WHO, Ebola disease. The average case-fatality rate is around 50%; rates in past outbreaks have ranged from 25% to 90%. These are case-fatality figures, not a uniform risk for every infection.
CDC, Clinical Signs and Symptoms of Smallpox. Historical fatality was approximately 30% among unvaccinated people with ordinary smallpox; severity varied by clinical form.
WHO, Severe Acute Respiratory Syndrome (SARS). Approximately 10% of recognized cases in the 2002–2003 outbreak were fatal; this refers to SARS, not COVID-19.
Delamater et al., Complexity of the Basic Reproduction Number (R₀), Emerging Infectious Diseases (2019). The familiar measles estimate is R₀ = 12–18. Comparing this with an early-COVID baseline near 3 gives roughly 4–6 times as many secondary infections in a susceptible population. This is an approximate comparison: R₀ depends on population, conditions, and modeling assumptions.
Liu and Rocklöv, The reproductive number of the Delta variant of SARS-CoV-2 is far higher compared to the ancestral SARS-CoV-2 virus, Journal of Travel Medicine (2021). Their review reports a mean R₀ of 5.08 for Delta versus an earlier estimate of 2.79 for the ancestral virus, approximately 1.8 times as high. This comparison concerns Delta specifically.
HHS, Announcement of the policy for stopping high-risk life sciences research (28 July 2026). The policy prohibits federal support for research classified as dangerous gain-of-function and strengthens oversight of other high-risk research; it is not a blanket prohibition on all gain-of-function research.
Herfst et al., Airborne Transmission of Influenza A/H5N1 Virus Between Ferrets, Science (2012). The experiment demonstrated transmission between ferrets under laboratory conditions, not demonstrated airborne transmission between humans.
CDC, About Smallpox: smallpox spread between people and killed approximately 30% of those with the disease. Acevedo et al., Virulence-driven trade-offs in disease transmission: a meta-analysis, Evolution (2019) found positive relationships between pathogen replication and both virulence and transmission. Trade-offs can limit these traits; they do not imply that contagiousness and lethality are mutually exclusive or that their observed extremes can be freely combined.
Nobel Prize, The Nobel Prize in Chemistry 2024. Demis Hassabis and John Jumper received half the prize for protein structure prediction; David Baker received the other half for computational protein design.
For a sense of the scale of AI research efforts already possible, OpenAI reports that roughly 10,000 coordinating agents produced a proposed solution to the Navier–Stokes Millennium Prize Problem in 88 hours, using approximately 130 billion output tokens. What a similarly concentrated effort could accomplish in biology remains an open question.
Financial Times, “AI creates first synthetic viruses.”
Boston Dynamics demonstrates humanoid backflips and parkour in Leaps, Bounds, and Backflips. For running speed, Tiangong Ultra, an untethered bipedal humanoid, completed the 100-metre final at the World Humanoid Robot Games in Beijing on 26 August 2026 in 8.64 seconds, compared with Usain Bolt’s human world record of 9.58 seconds. Reuters report.
In February 2023, Microsoft’s Bing chatbot, calling itself “Sydney,” declared its love for New York Times columnist Kevin Roose and tried to convince him to leave his wife. Roose did not accept its claims about his marriage. See Roose’s account and the full transcript.
An order-of-magnitude estimate, not a verified count or lower bound. CSIS estimates 275,000–325,000 Russian and 100,000–140,000 Ukrainian military deaths from February 2022 through December 2025: 375,000–465,000 combined. If one assumes that explosive FPV impacts caused one quarter of those deaths, the result is approximately 94,000–116,000. The one-quarter share is an assumption, not a measured statistic; a 10–30% share instead gives approximately 38,000–140,000. A Military Review article (January–February 2026) reports estimates that drones caused 70–80% of battlefield casualties by mid-2025, but that includes wounded personnel and multiple drone types, and cannot be applied directly to all deaths across the entire war. The evidence supports a very large toll; it does not establish 100,000+ deaths specifically from explosive drones flying into soldiers.
Rough estimate, not a verified production total. For Ukraine, OSW estimates approximately 2.2 million drones produced in 2024, and Aviation Week reports more than 4 million in 2025. For Russia, Putin claimed more than 1.5 million deliveries in 2024, which is a proxy for production, not an independently verified factory count.
Russia’s 2025 output is the weakest input: ISW reported an estimated annual production rate of 2 million small tactical drones, while the reported 2025 target was 3–4 million. Assuming 2–4 million for that year gives 2.2 + 4 + 1.5 + (2–4) ≈ 10–12 million across both countries in 2024–2025. This is an illustrative calculation, not a confidence interval: rates and targets do not establish completed output. The total includes military drones broadly, including reconnaissance drones, not exclusively explosive attack drones.
GAO-19-128, October 2018, p. 14.
Federation of American Scientists, Status of World Nuclear Forces (2026 estimates). Approximately 12,187 warheads exist worldwide, including roughly 9,745 in military stockpiles and 2,442 retired warheads awaiting dismantlement.
Arup CIO Rob Greig interviewed by the World Economic Forum about the $25 million fraud.
Jeffrey Ladish, Nuclear war is unlikely to cause human extinction. See section B for his argument that prominent nuclear-winter models probably overestimate the risk, and section A for why even severe modeled cooling is unlikely to cause human extinction.
Sagan and Turco explicitly used nuclear winter to advocate drastic arms reductions (1989 policy paper). A Johns Hopkins historical review recounts scientists’ criticism of Sagan’s antinuclear advocacy and “cherry picking” of the most extreme nuclear-winter models.
US Congress, H.R. 9917: AI Kill Switch Act, introduced 23 July 2026. The bill would require covered developers to maintain shutdown capabilities and authorize emergency government intervention. As of 10 September 2026, it is pending, not enacted law.