Skip to content ↓

Topic

School of Engineering

Download RSS feed: News Articles / In the Media / Audio

Displaying 16 - 30 of 3399 news clips related to this topic.
Show:

Scientific American

Scientific American’s Adam Kovac highlights a paper by Associate Prof. Areg Danagoulian that proposes a satellite to detect and police hidden nuclear weapons in space by detecting spallation, the ejection of neutrons, from the bombardment of high energy protons, and uranium atoms. “If you detect those neutrons, that itself can be a telltale sign that there is an unusual amount of uranium on the satellite, and it’s most likely to be a nuclear weapon,” Danagoulian says.

The New York Times Magazine

Research Affiliates Mathilde Poyet and Mathieu Groussin are featured by The New York Times Magazine reporter Jeneen Interlandi for their comprehensive fieldwork collecting diverse, microbial samples from communities across the globe to understand how differences in diet, lifestyle and industrialization affect microbiome health. “Microbes don’t like antibiotics, for obvious reasons,” Groussin says. “They don’t like C-sections, which rob them of the opportunity to colonize new human territory. And they hate ultra processed diets. All three of those are more prevalent in an industrialized world.” 

Hotel Mars

Prof. Paul Lozano and alumna Amelia Bruno PhD ‘25 join John Batchelor, host of the "Hotel Mars” podcast, to discuss their work developing a new propulsion system that could improve small satellite mobility. “This technology [electrospray thrusters] came from our own research on how to miniaturize propulsion for small satellites,” says Lozano. “There is a big need to actually provide these little satellites with mobility, so that we can actually explore space and use it more effectively.” 

Physics World

MIT researchers have developed a non-invasive, wearable pacemaker that stimulates the heart using ultrasound, writes Physics World reporter Tami Freeman. “For cardiac pacing, we envisage that the final goal of NUP [Non-Invasive Ultrasound Pacemaker] technology is to be a permanent alternative to a long-term implanted pacemaker,” says Prof. Xuanhe Zhao. “More broadly, we are interested in expanding ultrasound-enabled bioelectronic medicine beyond cardiac pacing toward other organs and therapeutic applications where non-invasive, spatially precise modulation could have clinical impact.” 

The Boston Globe

For the Boston Globe, reporter Aaron Pressman features MIT startup VulcanForms, a 3D printing manufacturer expected to create over 1,000 jobs with a new 1-million-square-foot-plant in Devens, MA. The facility will bring capacity for more customers in medical devices, aerospace and defense, and consumer goods industries. “MIT professor John Hart started the company with grad student Martin Feldmann [‘14] as a way to bring 3D printing techniques using lasers and powdered metals to larger-scale manufacturing jobs,” writes Pressman.

Forbes

Writing for Forbes about efforts to improve air travel safety, Tanya Eves highlights the Air-Guardian system, an eye-tracking monitor for pilots developed by CSAIL researchers that assists when attention wavers. “In tests, it reduced flight risk and improved navigation success rates,” writes Eves. “It's a model for how the virtual co-pilot relationship should work: not replacement, but a seamless, intelligent partnership that understands when to act and when to stay silent.”

Forbes

Writing for Forbes, contributor Ron Schmelzer highlights Describe Anything, Anywhere, at Any Moment (DAAAM), a new system developed by MIT researchers that could enable robots to capture details of objects they see while exploring an environment. In the future, the system could allow factory workers to send robotic assistants to find items. DAAAM “lets a robot build a detailed map of a space, attach descriptions to objects in that map, and answer plain English questions later,” Schmelzer explains. 

Axios

For Axios Boston, reporter Steph Solis highlights “Anita,” a solar-electric boat created by alumnus James Worden ‘89 that is due to launch this year. The boat was previewed at the 80th anniversary Charles River sail-a-thon. “The prototype, named ‘Anita’ after Worden's late wife, moves silently with no fumes or exhaust and uses LiFePO4 battery cells with a battery management system (it lets you charge the batteries while they're in use),” writes Solis. 

Bloomberg News

Writing for Bloomberg, Prof. Simon Johnson and Prof. Elisabeth Reynolds describe how the U.S. can maintain its technological leadership by investing in research focused on critical minerals, semiconductors, biotechnology, quantum computing, drones and advanced manufacturing.  “Invention is important, but technological leadership in the 21st century will go to the country that adopts these new ideas rapidly and applies them in clever ways,” Johnson and Reynolds write. “And that will require the U.S. to build vibrant innovation and industrial ecosystems that adopt and diffuse new technologies, including AI.”

Scientific American

Scientific American reporter Deni Ellis Béchard spotlights graduate student Alex Zhang for the publication’s special section featuring 28 rising young scientists. “The types of research that I want to work on are things that I think should be shared for the benefit of people in general,” Zhang says of his work aimed at improving AI user experience with recursive language models. 

Scientific American

For Scientific American’s special section “The Young American Scientists” Bob Mumgaard PhD ‘15, co-founder and CEO of Commonwealth Fusion Systems, speaks with Tara Haelle about the commercialization of fusion science and how automated tools have accelerated research. “Whether in areas such as fusion—or in drugs by design for diseases such as Alzheimer’s and Parkinson’s or in [the creation of] materials we never thought possible—our ability to use new tools to tackle some of these big, meaty problems is super exciting,” says Mumgaard. 

Scientific American

For the Scientific American special section “The Young American Scientists,” Institute Prof. Robert Langer speaks with Megha Satyanarayana about the “spectacular” history of American innovation and education, and why he feels it’s important to celebrate scientific achievements in the same way we honor celebrities and sports stars. “I’m just a big believer in the resilience of people,” says Langer. “I look at the history of American innovation and education over the past 250 years, and it’s been spectacular. We’ve had world wars, you know, we’ve had depressions, and people keep persisting and keep learning. They keep discovering and they keep inventing.”

Scientific American

Visiting Scientist Alice Stanton speaks with Scientific American reporter Tanya Lewis about her work developing miBrain, a 3D model of the human aimed at helping scientists “better understand neurological diseases such as Alzheimer’s and Parkinson’s so researchers can develop personalized treatments for them.” Says Stanton of the need for stable support for scientific research: “When we have a loved one who gets sick, we want a treatment—we want something to cure them. It doesn’t come out of thin air.”

Popular Science

Popular Science reporter Laura Baisas showcases an ingestible, berry-size thermometer developed by MIT researchers that could offer continuous monitoring for sick patients. The sensor “could make it easier to determine whether a patient is sick and if they’re at risk of developing a dangerously high fever. It can also help for people tracking their fertility or those under anesthesia," writes Baisas. "The team is now working on combining the temperature sensor with different sensors that could measure other vital signs such as heart rate." 

Scientific American

Scientific American reporter Clara Moskowitz spotlights a new study by Prof. Seth Lloyd that explores the feasibility of black holes sending information back in time. In the study, Lloyd and his colleagues calculate how much information can be sent backward via closed timelike curves, intensely bending, rotating space found around spinning black holes. “Spacetime can curve around so much that you can be innocently going forward in time and then you meet yourself in the past,” says Lloyd.