founders walked away
| |

The AI founders who walked away from Bezos-backed Prometheus to model the universe

SAN FRANCISCO, USA – A research duo, once pitched to lead the Jeff Bezos-backed Project Prometheus, on Tuesday, August 25, unveiled what they’ve built on their own: an AI model that can take in and produce information so vast that a lone computer might not handle it.

Their company, Accelerated Understanding Inc, says it has developed a different type of AI model that in tests handled 5 trillion pieces of data in a single prompt. That is some 5 million times the size of what Anthropic and Google’s flagship models can typically consume — like reading Tolstoy’s “War and Peace” not once but 5 million times in one sitting.

The difference is that this new system is not built for understanding language. It is built for physics, said co-founders Anima Anandkumar and Benedikt Jenik, in an exclusive interview ahead of Tuesday’s corporate launch.

While systems like ChatGPT were created with the world’s text data, letting them predict the right next word in a sentence when talking to users, this alternative AI has learned to predict physical phenomena in space and time. It dispensed with the Google-invented Transformer architecture — the “T” in ChatGPT — and instead processes physics data based on technology that Anandkumar helped pioneer years ago, called neural operators.

“The language-centric view of intelligence is humans at the center. Putting physics at the center is a nature-centric view,” said Anandkumar, a Caltech professor of computing and mathematical sciences.

Various companies, including startups overseen by AI leaders Yann LeCun and Fei-Fei Li, are pursuing so-called world models that understand spatial reality better than AI trained on text. Accelerated Understanding’s bet is that a more generally capable form of neural operator that predicts phenomena even the eye can’t see is the best path — and can boost business.

One example is in chip design. While various companies are using AI that programs computers and reasons through text for semiconductor applications, Accelerated Understanding believes that a more intrinsic grasp of physics is key to optimizing materials and temperatures for a chip’s performance, with less trial and error in a lab.

The company also thinks the same AI can power robotics, predict extreme weather, or sift through geological data for energy companies. Instead of brittle and bespoke math models for each, one AI can handle any physics query for the business world, Anandkumar said.

The company is focused on enterprise deals rather than a consumer offering to start, the co-founders said.

Bezos-backed offer

A similar idea has interested some in the business world, including Bezos, Amazon’s billionaire founder.

Over dinner at an upscale restaurant in greater Los Angeles in late 2024, an investor and biotech entrepreneur named Vik Bajaj — who would go on to co-found Prometheus with Bezos — discussed a collaboration with Anandkumar and Jenik, according to meeting records seen by Reuters.

Anandkumar had previously worked as a scientist at Amazon, where she had attended intimate AI summits Bezos had hosted, and she had been a director at Nvidia for five years. Jenik, her husband, is an AI infrastructure engineer. The two had already started their company.

Bajaj later discussed an offer letter with them entitled “Project Prometheus.” In a copy seen by Reuters, the proposal said Anandkumar could be the public face of the company, a board member, and owner of its scientific vision. She and Jenik, to be a board observer, could get a 35% stake in the company, plus a combined $1 million annual salary that would double to $2 million after three months of work.

The offer letter outlined more than $2 billion in capital for what the letter called “committed rounds” of financing through Series B, from investors including Bezos.

Prometheus declined to comment.

Anandkumar and Jenik ultimately kept building solo, while Bezos and Bajaj went on to raise a $12 billion Series B for Prometheus in June 2026. Prometheus is targeting AI that can automate the manufacturing of complex physical systems.

Origins at Nvidia

Though Anandkumar declined to discuss funding, she already has partnerships with computing providers who furnished hardware clusters to develop and run Accelerated Understanding’s AI, she said. She declined to name the partners.

Nvidia did not reply to a Reuters question asking if it was backing the endeavor. Nvidia CEO Jensen Huang was the one who encouraged Anandkumar to pursue the idea in the first place, she said.

Hired by the chip designer in 2018, Anandkumar led a team of scientists who pushed forward on how Nvidia’s graphics processing units, or GPUs, could be used for frontier AI.

An early project showed how AI could speed up weather prediction with as much accuracy as the complex computations forecasters used. The results amazed Huang, who presented Anandkumar’s work on neural operators at Nvidia’s annual GTC Conference in 2021.

“He just got so excited,” Anandkumar said. When she mentioned how AI could eat physics theorists’ lunch, Huang replied: “I want it to eat all their lunches.” – Rappler.com

Similar Posts

  • Britain unveils new strategy to boost AI and semiconductor industry

      The United Kingdom’s new government is placing advanced technology at the center of its economic and industrial strategy, with a strong focus on artificial intelligence, semiconductor manufacturing, and drone technology. The initiative reflects the government’s belief that success in the global AI race will depend not only on software development but also on the ability to design and manufacture the hardware that powers artificial intelligence systems. AI Minister Kanishka Narayan said the government aims to strengthen Britain’s domestic chip industry as part of a broader plan to modernize the economy while enhancing national security. He emphasized that AI chips and semiconductor technology are becoming increasingly important in global supply chains and represent a major source of long-term economic value. The strategy is being implemented under the leadership of Prime Minister Andy Burnham’s administration, which is combining artificial intelligence, chip production, and drone technology into a unified industrial policy. The government believes that investing in these sectors will help position Britain as a competitive player in the rapidly evolving global technology landscape. As part of the initiative, the government has committed £1.1 billion to support AI hardware development. The funding package includes £150 million specifically allocated for the direct purchase of AI chips from British companies. By becoming an early customer for domestic manufacturers, the government hopes to help local businesses expand production, strengthen supply chains, and improve their ability to compete internationally. Kanishka Narayan explained that financial investment alone will not be enough to achieve these goals. He said the government is also pursuing broader policy reforms aimed at creating an environment that encourages technological innovation and industrial growth. Among the proposed measures are changes to immigration policies designed to attract highly skilled engineers and technology specialists from around the world. The government also plans to simplify planning procedures for major infrastructure projects, allowing new manufacturing facilities and research centers to be developed more quickly. Continued public investment is expected to support research, innovation, and the commercialization of emerging technologies. Although Britain currently has a relatively small semiconductor manufacturing sector compared with major global producers, Narayan believes the country has a significant advantage in semiconductor design. British companies and researchers have earned an international reputation for designing advanced chip architectures, providing what he describes as a strong foundation for expanding domestic manufacturing capabilities. Alongside efforts to promote technological growth, the government has indicated that it intends to introduce regulations addressing the potential risks associated with artificial intelligence. Narayan stated that responsible AI development requires safeguards to protect jobs, national security, and public interests. He stressed that the government does not support unregulated technological expansion and believes innovation should be accompanied by appropriate oversight. The minister also linked Britain’s technology strategy to growing geopolitical tensions surrounding artificial intelligence and semiconductor technologies. He pointed to recent export restrictions imposed by the United States on advanced AI technologies as evidence that artificial intelligence has become a significant issue in international relations and global competition. Narayan also expressed concern about maintaining British ownership and influence over important technology assets. He highlighted Arm, the Cambridge-based semiconductor design company now owned by Japan’s SoftBank, as an example of British-founded innovation whose long-term economic value should continue to benefit the United Kingdom. As part of broader government restructuring, the administration has also announced plans to dissolve the Department for Science, Innovation and Technology, with its responsibilities expected to be integrated into other government departments. Through increased investment, policy reforms, and strategic regulation, the UK government aims to strengthen its position in the global technology sector. By supporting semiconductor manufacturing, encouraging AI innovation, and expanding advanced industrial capabilities, Britain hopes to secure long-term economic growth while enhancing its role in an increasingly competitive and technology-driven world.

  • |

    Google yanks Nano Banana from Earth after AI images spark chaos

    It took less than a day for Google’s newest AI experiment to become a lesson in how fast image-based misinformation can spread. On Thursday, Google rolled out its Nano Banana 2 model directly inside Google Earth. The feature allowed users to type any prompt and get back a photorealistic image, layered right onto real satellite, aerial, and 3D map data. The intended uses were fairly harmless. People could visualize their dream home or picture how a location might change decades from now. Within just a few hours, users pushed the tool in a very different direction. People began generating fake disasters, staged terrorist attacks, and fabricated sinkholes. Others created images showing refugees or protest crowds in places where nothing of the sort had actually happened. One researcher used the tool to create a fake blast crater in Los Angeles. Another generated an image showing protesters marching right outside Google’s California headquarters. Since the tool used real Google Earth maps as its foundation, these fabricated images looked disturbingly convincing. At first, Google defended the feature. The company pointed to its SynthID watermarking system as a safeguard. It also noted that tools like Gemini or Google Lens could help users check whether an image had been AI-generated. That response did not satisfy critics. Many pointed out that most people encountering a screenshot online rarely take the time to verify it. Critics also argued that the fake images did not even need to stay inside Google Earth to cause harm. Screenshots alone were already spreading fast across social media platforms. By Friday, Google confirmed it was pulling the feature entirely while working on stronger safeguards. The company maintained that every generated image had carried a watermark. It also said none of the images had appeared within the shared, public version of the Earth experience. This incident has reignited larger concerns around generative AI tools and how easily they can be misused, even when protective measures are already built in. It also raises fresh questions about whether watermarking alone is enough to stop confusion once fabricated content starts spreading widely online. For now, Google says its focus is on rebuilding the feature with tighter controls in place. Whether that will be enough to prevent similar situations going forward still remains to be seen.

Leave a Reply

Your email address will not be published. Required fields are marked *