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The Washington Post

Washington Post reporter Rachel Feltman writes that astronomers have observed a black hole consuming cold gas. Feltman notes that “this is the first time a black hole has been seen eating such a refreshing meal: Scientists previously had only observed black holes eating slow, steady meals of hot gas shed by the spiraling galaxies they call home.”

Time

TIME reporter Jeffrey Kluger writes that MIT researchers have designed an algorithm to produce an image of a black hole. Kluger explains that the algorithm will allow researchers “visualize the event horizon that surrounds the black hole at the center of our own galaxy.”

BBC News

A team of astronomers, including MIT Prof. Michael McDonald, has observed a black hole feasting on cold gas. BBC News reports that the team “discovered a supermassive black hole and saw clouds speeding towards it at 800,000 mph. The observation supports a theory black holes feed on clouds of cold gas.”

Marketplace

MIT graduate student Katie Bouman speaks with Ben Johnson of Marketplace about the algorithm she and her colleagues developed to allow people “to see the first image of a black hole.” Johnson notes the algorithm has uses beyond space exploration and could also potentially be used for MRI imaging. 

CNN

MIT researchers have developed a new algorithm to compile data gathered by the Event Horizon Telescope and create an image of a black hole, reports James Griffiths for CNN. The algorithm will “fill in the gaps and filter out the interference and noise caused by our own atmosphere,” Griffiths explains. 

The Washington Post

Washington Post reporter Brian Fung writes that MIT researchers have developed an algorithm to create images of black holes by compiling data from radio telescopes around the world. Fung writes that the algorithm “could give us the first true images of a celestial phenomenon that, for decades, we've left to artists to imagine and describe with pictures.”

Popular Science

An algorithm developed by MIT researchers could help produce the first image of a black hole, reports Ryan Mandelbaum for Popular Science. Mandelbaum explains that the algorithm gathers data from radio telescopes around the globe and then uses “other images from space as references to craft a sort of mosaic that best matches the data from the telescopes.”

Boston Globe

Boston Globe reporters J.D. Capelouto and Olivia Arnold write that MIT researchers have developed an algorithm aimed at producing images of black holes. MIT graduate student Katie Bouman notes that while there are predictions of what a black hole might look like, “it’s great to actually be able to probe it and…construct those images.”

Associated Press

Prof. Emeritus Rainer Weiss has been awarded the 2016 Kavli Prize in Astrophysics for his work on the first direct detection of gravitational waves, reports Malcom Ritter for the Associated Press. Ritter notes that “Einstein had predicted a century ago that the waves exist; the announcement that they'd been observed made headlines in February.”

Boston Globe

Boston Globe reporter Eric Moskowitz chronicles the life and work of Prof. Emeritus Rainer Weiss, from his childhood passion for tinkering with radios to the decades he spent dedicated to the search for gravitational waves. Kip Thorne, a professor at Caltech, remarks that Weiss “really is, by a large margin, the most influential person this field has seen.” 

Reuters

The researchers involved with the successful detection of gravitational waves have been honored with a Special Breakthrough Prize in Fundamental Physics, reports Joseph Ax for Reuters. "This is the first time we've seen the full force of Einstein's theory of gravity at work,” says Edward Witten, head of the selection committee.

New York Times

New York Times reporter Dennis Overbye writes that the scientists of the LIGO Scientific Collaboration have been honored with a $3 million Special Breakthrough Prize in Fundamental Physics for their work successfully detecting gravitational waves. 

Time

TIME reporter Jeffrey Kluger writes that researchers have discovered three potentially habitable planets. Kluger explains that the researchers observed the planets orbiting an ultracool dwarf star “at a distance at which water—the must-have ingredient for life as we know it—could exist in liquid form.” 

NPR

Dr. Julien de Wit speaks with Nell Greenfieldboyce of NPR about the three potentially habitable planets that he and his colleagues recently discovered. "These planets are Earth-sized, they are temperate — we can't rule out the fact that they are habitable — and they are well-suited for atmospheric studies," de Wit explains. 

Los Angeles Times

Los Angeles Times reporter Deborah Netburn writes that researchers have discovered three potentially habitable planets orbiting an ultracool dwarf star 40 light years away. "The team took a big risk even looking for planets around these stars," says MIT postdoc Julien de Wit, co-author of the paper. "But it has really paid off."