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MassLive

MassLive’s Liesel Nygard spotlights the late Margaret Hamilton, “a pioneering computer scientist who helped establish the field of software engineering and led the MIT team that developed the onboard flight software for NASA’s Apollo moon missions.” Nygard writes, “Thanks to priority-driven ‘defensive’ software [in the lunar module’s computers] engineered by Hamilton and her team, the system automatically shut down unnecessary background tasks to focus on the landing, avoiding an emergency abort [of the Apollo 11 mission].”  

The Washington Post

The Washington Post’s Juno Carmel details how the late Margaret Hamilton “developed early computer software that helped pave the way for the digital world as we know it today” and led the team at MIT’s Instrumentation Lab that programmed the alarm code that played a crucial role in the Apollo 11 mission. Hamilton “was the lead developer for the software that powered the Apollo guidance computer, which weighed 70 pounds but had only 72 kilobytes of memory, a fraction of today’s smartphones,” notes Carmel. 

Smithsonian Magazine

Margaret Hamilton, “best known for her major contributions to the Apollo missions” at MIT’s Instrumentation Lab, “died on Sept. 30 at age 90, leaving behind a trailblazing legacy of problem-solving and entrepreneurship that paved the way for a new branch of computer science and engineering,” writes reporter Margherita Bassi for Smithsonian Magazine. Hamilton’s “coding foresight and prowess really made that mission a success,” says Smithsonian National Air and Space Museum’s Andrew Meade McGee. “She created the logical software basis for many of the critical systems we use to maintain our infrastructure today, and that silently power today’s modern aerospace world.” 

The Boston Globe

Margaret Hamilton, who developed the software that helped the Apollo 11 mission land safely on the moon and “whose historic accomplishments focused attention on the work of software engineers,” died on Sept. 30, reports Bryan Marquard for The Boston Globe. “She gave me, from the get-go, this notion that I could do anything, that there were absolutely no gender barriers,” says Hamilton’s daughter, Lauren. Hamilton’s life and work conveyed to her great-granddaughters “that very clear idea that they could have whatever future they wanted to create for themselves.” 

The New York Times

For The New York Times, reporters Carolyn Y. Johnson and Kenneth Chang spotlight the late computer scientist Margaret Hamilton and her role in the development of the field of software engineering, highlighting her work as a “trailblazing woman who played a crucial, largely unseen role.” MIT Presidential Advisor Maria Zuber shared: “When you see someone like her who went for it and lived her dream it makes it a little easier for the rest of us to dare to reach for the moon as well.” 

CNN

“Groundbreaking researcher,” Margaret Hamilton, “whose code helped land NASA’s Apollo astronauts on the moon to win the 20th-century space race has died,” reports CNN’s Jackie Wattles. “Through her work, Hamilton is also credited as one of the founders of the field of software engineering — a term she coined — by helping to establish it as a professional practice,” writes Wattles.  

The Guardian

The Guardian’s Uwa Ede-Osifo spotlights the life and legacy of the late Margaret Hamilton, “the computer pioneer whose software powered the first moon landing,” at MIT’s Instrumentation Lab. Prior to the Instrumentation Lab, Hamilton worked “on the software that could detect enemy aircraft,” at MIT’s Lincoln Laboratory,” writes Ede-Osifo. “When the institute received a Nasa contract to develop the Apollo onboard flight software, she jumped at the opportunity.”  

The New York Times

Margaret Hamilton, “who led the 100-person team [at MIT’s Instrumentation Lab] that wrote the onboard software for the Apollo missions, guiding Neil Armstrong and Buzz Aldrin to a safe landing on the moon,” died on Sept. 30, reports Trip Gabriel for The New York Times. “Her skills led to her promotion to director of software engineering on the project, which developed the two 70-pound onboard computers for the Apollo flights: one in the command module, which carried the astronauts from Earth, and the second in the lunar module, which set down on the moon’s surface,” writes Gabriel. 

Scientific American

The 2003 Cohn-Elkies method “for finding upper bounds on the density of sphere packings,” established by MIT Prof. Henry Cohn and Harvard University’s Noam Elkies, is highlighted by Jack Murtagh for the Scientific American. “Their recipe is almost mechanical: come up with a mathematical function, feed the function into their method, and an upper bound pops out,” writes Murtagh. “They provided the field with a machine: identify the right inputs, churn it through their method, and a breakthrough in sphere packing might emerge.” 

New Scientist

Prof. Joshua Tenenbaum discusses whether AI systems will perform better if they have increased awareness of the world around them with New Scientist’s Daniel Cossins. “One of the big misconceptions is that intelligence is a single thing, that there is a single world model in the brain,” says Tenenbaum. “What we actually have is the ability to run many different models depending on the context, task and goal.” 

Nature

Nature reporter Rachel Fieldhouse spotlights graduate student Lauren 'Ren' Ramlan’s work integrating the video game Doom into her research. Ramlan used “Escherichia coli bacteria to display a few frames of Doom,” explains Fieldhouse. “She attached a fluorescent protein to the bacterial cells that could be turned on or off, making them act like black and white pixels on a screen. She then translated and compressed the first few frames of Doom into black-and-white versions that matched the plate growing the cells. Ramlan says the project shows what living things can be engineered to do, and that bacteria are probably not suitable for computing or displaying images.” 

NBC News

Researchers at MIT have uncovered a variety of obstacles of AI in software development, reports Rob Wile for NBC News. They have found “the main obstacles come when AI programs are asked to develop code at scale, or with more complex logic,” writes Wile. 

New York Times

Prof. Armando Solar-Lezama speaks with New York Times reporter Sarah Kessler about the future of coding jobs, noting that AI systems still lack many essential skills. “When you’re talking about more foundational skills, knowing how to reason about a piece of code, knowing how to track down a bug across a large system, those are things that the current models really don’t know how to do,” says Solar-Lezama.

Bio-It World

Researchers at MIT have developed GenSQL, a new generative AI system that can be used “to ease answering data science questions,” reports Allison Proffitt for Bio-It World. “Look how much better data science could be if it was easier to use,” says Research Scientist Mathieu Huot. “It’s not perfect yet, but we believe it’s quite an improvement over other options.” 

The Boston Globe

Boston Globe columnist Scott Kirsner spotlights Prof. Mitchel Resnick, Prof. Neil Gershenfeld, and the late Prof. Emeritus Woodie Flowers and their work developing programs that “get kids excited about, and more proficient in, STEM.” Kirsner underscores: “Each of the initiatives brings some of the hands-on problem solving, messiness, and collaborative prototyping elements of MIT’s culture into the wider world. And they’ve all had a big impact on the way kids learn about technology.”