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CNN

In this CNN video, Maya Dangerfield highlights the team of students from MIT participating in the SpaceX Hyperloop competition. The MIT team finished among the top three teams, and was honored with the Safety and Reliability Award. 

Wired

Prof. Robert Langer speaks with Kathryn Nave of Wired about the future of drug delivery. Langer explains that a problem facing medical professionals is that many drugs are not taken regularly or as prescribed, and describes how he is developing a “long-acting pill that you could swallow to release the right drug dosage for weeks.”

United Press International (UPI)

MIT researchers have developed a sensor capable of detecting single protein molecules, reports Brooks Hays for UPI. The sensor could be used “to aid efforts to better understand disease and develop drugs. The array could even help scientists engineer human cells to produce therapeutic proteins.”

Wired

In this video, Wired spotlights how Prof. Michael Strano and his team developed spinach plants that can detect explosives in groundwater. Strano explains that in the future he thinks people will be “surprised about what you can do with a living plant.” 

Boston Globe

Cynthia Graber writes for The Boston Globe Magazine that MIT researchers developed a robot to collect sewage samples, in an effort to gain a better understanding of public health problems. The samples can pinpoint harmful environmental factors as well as “neighborhoods with high rates of infectious diseases or even obesity, levels of illegal drug use, and pollutants.”

Boston Globe

Prof. John Leonard prepared a free video lesson explaining the science behind the Deflategate controversy, writes Adam Vaccaro for The Boston Globe. Vaccaro writes that Leonard explained he hopes the lesson will help students “understand the physics of air pressure and temperature by connecting them to a major event in popular culture.”

Salon

In an article for Salon about extreme weather, Paul Rosenberg highlights a new study by MIT researchers that shows climate change could cause California to “experience three more extreme precipitation events per year by 2100, although the number could be reduced by half that if aggressive policy measures are pursued.”

Radio Boston (WBUR)

Prof. Emanuel Sachs, who is credited as one of the inventors of 3-D printing, discusses the manufacturing method’s origins and its increasing popularity with Meghna Chakrabarti of Radio Boston. Sachs explains that 3-D printing is an increasingly popular academic tool because “it takes so long to make prototypes any other way and…3-D printing really enables people to make.”

BBC News

MIT researchers have created a new strong, yet lightweight material by using a 3-D printer to fuse flakes of graphene into a sponge-like object, reports Nick Kwek for BBC News. “The newfangled product could be used in the construction of airplanes or buildings,” says Kwek. 

CNN

MIT researchers have used computer models to turn flakes of graphene into 3-D structures, creating one of lightest, strongest materials, writes Nicola Davison for CNN. "Once they combine and fuse together, all the flakes contribute to the strength of the overall structure," research scientist Zhao Qin explains. 

Inside Higher Ed

Inside Higher Ed reporter Carl Straumsheim writes that researchers from MIT and Harvard have released the latest findings from an ongoing study analyzing learner engagement and behavior in 290 MOOCs. Among other findings, researchers found that “about one-third (32 percent) of the people who participate in edX MOOCs work or used to work as teachers.”

Wired

Researchers at MIT have fused flakes of graphene into a sponge-like shape, creating one of the strongest lightweight materials, writes James Temperton for Wired. Flakes of graphene were compressed using heat and pressure, then 3-D printers were used to create a “strong, stable structure similar to some corals” for stress tests. 

Forbes

Writing for Forbes, Eric Mack highlights a study by MIT researchers that shows extreme precipitation events in California should become more frequent due to climate change. The researchers found that by 2100, California “should expect between one and three more extreme precipitation events…every single year.”

CBS News

MIT researchers have developed a new ultra-light material that is ten times stronger than steel, reports Tia Ghose for CBS News. Ghose explains that in the future, the material could potentially be used to build bridges, “which would be ultrastrong, lightweight, and insulated against heat and cold because of all the myriad air pockets in the material.”

United Press International (UPI)

By fusing graphene into a porous 3-D form, MIT researchers have created a strong, lightweight material, writes Brooks Hays for UPI. “The findings suggest a 3D material's tensile and compressive properties are dependent on the geometry of its structure, not the strength of the 2D material from which it is derived,” explains Hays.