Skip to content ↓

Topic

Electrical engineering and computer science (EECS)

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

Displaying 286 - 300 of 1063 news clips related to this topic.
Show:

Forbes

Alumnus Jeremy Bilotti co-founded Rarify, a design furniture retail company, reports Lauren Mowery for Forbes. “Rarify uses the history of design to tell a story, educate our audience about the importance of notable designers, and push toward the future, bringing to light noteworthy manufacturers and designers that aren’t known or recognized to the degree that they deserve,” explains Rarify co-founder David Rosenwasser. Alumnus Jeremy Bilotti co-founded Rarify, a design furniture retail company, reports Lauren Mowery for Forbes. “Rarify uses the history of design to tell a story, educate our audience about the importance of notable designers, and push toward the future, bringing to light noteworthy manufacturers and designers that aren’t known or recognized to the degree that they deserve,” explains Rarify co-founder David Rosenwasser.

Mashable

MIT researchers have developed an ultra-thin solar panel that can adhere to any surface for access to immediate power, reports Jules Suzdaltsev for Mashable. “These ultra-portable panels can make the difference in remote regions where emergencies require more power,” writes Suzdaltsev.

Boston.com

Researchers at MIT have developed a new ultrathin solar cell that can adhere to different surfaces providing power on the go, reports Clara McCourt for Boston.com. “The new technology surpasses convential solar panels in both size and ability, with 18 times more power per kilogram at one-hundredth the weight,” writes McCourt.

Popular Science

Popular Science reporter Andrew Paul writes that MIT researchers have developed a new ultra-thin solar cell that is one-hundredth the weight of conventional panels and could transform almost any surface into a power generator. The new material could potentially generate, “18 times more power-per-kilogram compared to traditional solar technology,” writes Paul. “Not only that, but its production methods show promising potential for scalability and major manufacturing.”

Marketplace

Research affiliate Ramin Hasani speaks with Kimberly Adams of Marketplace about how he and his CSAIL colleagues solved a differential equation dating back to the early 1900s, enabling researchers to create an AI algorithm that can learn on the spot and adapt to evolving patterns. The new algorithm “will enable larger-scale brain simulations,” Hasani explains.

Forbes

Kevin Kusch ’17 co-founded Notemeal, an nutrition app used by athletes at the professional and college level, reports Tim Casey for Forbes. “Notemeal’s first clients used the app to build meal plans for players and track their nutrition information. After Covid-19 hit, the NFL did not allow players to gather for meals, so Notemeal developed a feature where players could order directly through the app, see nutrition information such as carbohydrates, proteins and calories and pick up the food prepared at team kitchens to take home,” writes Casey.

Boston.com

MIT researchers have developed “a programmable wireless device that can control light orders of magnitude more quickly than commercial devices,” reports Susannah Sudborough for Boston.com. “The device, which is called a spatial light modulator (SLM), will have impactful practical uses beyond creating holograms,” writes Sudborough.

The Boston Globe

Graduate student Kevin Frans co-founded OpenAI, a for-profit research lab that aims to provide free public access to artificial intelligence systems, reports Hiawatha Bray for The Boston Globe. “Our mission is to put AI is the hands of everyone,” says Frans.

Nature

Nature reporter Elie Dolgin writes that a new study by MIT researchers explores the role of the gene variant APOE4 in Alzheimer’s, and finds that the gene is linked with faulty cholesterol processing in the brain, impacting the insulation around nerve cells and potentially causing memory and learning deficits. “The work suggests that drugs that restore the brain’s cholesterol processing could treat the disease,” writes Dolgin. 

Boston.com

Boston.com reporter Clara McCourt spotlights how three MIT students - Jack Cook ‘22, Matthew Kearney and Jupneet K. Singh - have been selected as Rhodes Scholars. “The selected students — 32 in total — will go to Oxford University in England next October to pursue wide-ranging graduate degrees," writes McCourt, "with two or three years of study free of charge.”

NBC Boston

Matthew Kearney, John “Jack” B. Cook ’22, and Jupneet K. Singh have been named 2023 U.S. Rhodes Scholars, reports NBC Boston 10.

Forbes

Matthew Kearney , John "Jack” B. Cook ’22, and Jupneet K. Singh  are amongst the 2023 Rhodes Scholars, reports Michael T. Nietzel for Forbes. This year’s Rhodes Scholars "will go to Oxford University in England next October to pursue graduate degrees across the breadth of the social sciences, humanities, and biological and physical sciences,” says Elliot Gerson, American Secretary of the Rhodes Trust. “They inspire us already with their accomplishments, but even more by their values-based leadership and selfless ambitions to improve their communities and the world.”

Fast Company

Prof. Emeritus Tim Berners-Lee spoke at Lisbon’s Web Summit conference about Solid, an “open-sourced gambit to reinvent the web through new decentralized privacy-minded tools for wrangling data,” reports Harry McCracken for Fast Company. Solid was originally started as an MIT research project.

Los Angeles Times

Democratic Senator Alex Padilla ’94 has become the first Latino elected to represent California in the U.S. Senate, reports Seema Mehta, Hannah Fry and Terry Castleman for The Los Angeles Times. Padilla “graduated from MIT and returned home to work in engineering. But his career plans changed because of his outrage over Proposition 187, the successful 1994 ballot measure that sought to deny many taxpayer-funded services to immigrants in the country illegally.”

Fortune

Researchers from MIT and other institutions have found that an AI system called KataGo can be consistently tricked into losing at the strategy game of Go, reports Jeremy Kahn for Fortune. This research highlights potential similar vulnerabilities in “other AI systems trained in a similar manner,” writes Kahn.