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    Astronomy

    Science Friday

    Covering the outer reaches of space to the tiniest microbes in our bodies, Science Friday is the source for entertaining and educational stories about science, technology, and other cool stuff.

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    Copyright: © Science Friday

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    Latest Episodes:
    Earth’s Core, Govt Data In The Cloud, Book Club. Feb 8, 2019, Part 1 Feb 08, 2019
    Show notes

    At the very center of the Earth is a solid lump of iron and nickel that might be as hot as the surface of the Sun. This solid core is thought to be why our magnetic field is as strong as it is. As the core grows, energy is transferred to the outer core to power the “geodynamo,” the magnetic field that protects our atmosphere and deflects most solar wind. But geophysicists think that the core was originally completely liquid, and at one point between 2 billion and 500 million years ago, transitioned from molten metal to a solid. At that time, our magnetic field was much weaker than it is today, according to new research in Nature Geoscience. The scientists looked at new samples of crystals that first cooled from lava 565 million years ago and found evidence in their magnetic signatures that the core must have solidified at the younger end of the previously predicted range—much more recently than expected.

    Whether we’re aware of it or not, “the cloud” has changed our lives forever. It’s where we watch movies, share documents, and store passwords. It’s quick, efficient, and we wouldn’t be able to live our fast-paced, internet-connected lives without it. Now, federal agencies are storing much of their data in the cloud. For example, NASA is trying to make 20 petabytes of data available to the public for free. But to do that, they need some help from a commercial cloud provider—a company like Amazon or Microsoft or Google. But will the government’s policy of open data clash with the business model of Silicon Valley? Mariel Borowitz, Assistant Professor at Georgia Tech and Katya Abazajian, Open Cities Director with the Sunlight Foundation join guest host John Dankosky to discuss the trade offs to faster, smarter government data in the cloud.

    The Science Friday Book Club has had three weeks of lively discussion of N.K. Jemisin’s geology-flavored apocalypse, The Fifth Season. Producers Christie Taylor and Johanna Mayer share some of the best listener comments about the story’s science, sociology, and real-world connections—and invite you to add your voice for one final week of literary nerding out.

    One morning after the next, semi-trailer trucks get off Interstate 70 near Colby in west-central Kansas. They haul parts of giant wind turbines in 150-foot-long sections, the pieces to the Solomon Forks wind farm and the next monumental phase of the Kansas bet on wind energy. The farm will plant 105 turbines in the prairie, each towering 250 feet high. The project is one of a wave of wind farms under construction in Kansas that will add 20 percent more electrical generation to the state’s output. Earlier building surges sprung from tax breaks and from pressure by regulators on utilities to wean themselves off fossil fuels. This time, Fortune 500 companies that are new to the electricity business risk their own money on the straight-up profit potential of prairie breezes. The Solomon Forks project developed by ENGIE North America will crank enough electricity to power more than 50,000 homes. Target and T-Mobile already cut deals to buy hundreds of megawatts from the wind farm. The retailer and cell company will become electricity wholesalers, playing a direct role in generating less-polluting energy and banking that the marketplace can make them money even without the subsidies that drove the industry for decades.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


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    Buttons, Grand Canyon Maps, Mosquitoes. Feb 8, 2019, Part 2 Feb 08, 2019
    Show notes

    The button is everywhere. It allows us to interact with our computers and technology, alerts us when someone is at the front door, and with a tap, can have dinner delivered to your home. But buttons also are often associated with feelings of control, panic, and fear. Rachel Plotnick, author of Power Button: A History of Pleasure, Panic, and the Politics of Pushing, discusses the development of buttons and what they reveal about our interactions with technology.

    New research finds that the same pathways in the brain that control human hunger can shut down a mosquito’s interest in biting you. Rockefeller University professor Leslie Vosshall tells us about how this technique can potentially inhibit female mosquitoes from seeking out human blood—and stop the spread of disease.

    Later this month, the Grand Canyon celebrates the 100th anniversary of becoming a national park. But the natural wonder has way more than 100 years of stories to tell. The millions of years of geologic history, coupled with the massive scale of the canyon, make it challenging to create a comprehensive view of the Grand Canyon. Matthew Toro, director of maps, imagery, and geospatial data for the Arizona State University Libraries, tells us about maps of the iconic park to share its geologic and cultural stories.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


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    Sleep and the Immune System, Measuring Carbon, Specimens of Hair. Feb 1, 2019, Part 2 Feb 01, 2019
    Show notes

    Some citizen scientists collect minerals or plants. But 19th-century lawyer Peter A. Browne collected hair—lots and lots of hair. His collection started innocently enough. Browne decided to make a scientific study of wool with the hope of jumpstarting American agriculture, but his collector’s impulse took over. By the time of his death, Browne’s hair collection had grown to include elephant chin hair, raccoon whiskers, hair from mummies, hair from humans from all around the world, hair from 13 of the first 14 U.S. presidents, and more. Bob Peck of Drexel University’s Academy of Natural Sciences explains what Browne hoped to learn from all these tufts. See more images from Browne's collection.

    Whether you’re a night owl or an early riser, we all sleep. But for something so universal, we don’t understand much about what makes us sleep. Researchers looking into this question recently found a gene called neumri that triggered sleep in Drosophila flies. That gene produced a protein that is linked to antimicrobial activity, and the results were published in the journal Science. Neuroscientist Amita Seghal, who is an author on the study, talks about the role sleep might play in sickness and keeping us healthy.

    It’s one of the first things you learn in elementary school science class: Trees take in carbon dioxide and breathe out oxygen. That may have satisfied our childhood questions about how trees work, but as adults, we understand the picture to be a lot more complex. Christopher Woodall, project leader with the USDA Forest Service joins guest host John Dankosky to crunch the numbers on carbon sequestration. And Christa Anderson, research fellow at the World Wildlife Fund, talks about how forests may be our best weapon for fighting carbon emissions.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


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    Digital Art, Lava Lab, Desalination. Feb 1, 2019, Part 1 Feb 01, 2019
    Show notes

    A series of lines on a wall, drawn by museum staff, from instructions written by an artist. A textile print made from scanning the screen of an Apple IIe computer, printing onto heat transfer material, and ironing the result onto fabric. A Java program that displays its source code—plus the roving attention of the programmer writing that code, and the even speedier attention of the computer as it processes it. All three are works of art currently on display at the Whitney Museum of Art’s ‘Programmed’ exhibition, a retrospective of more than 50 years of art inspired or shaped by coding. Host John Dankosky is joined by Whitney adjunct curator Christiane Paul, plus artists Joan Truckenbrod and W. Bradford Paley, to discuss the past and future of digital art.

    If you want to make a lava flow from scratch, the ingredients are fairly simple: one big crucible, and 200 to 700 pounds of 1.2 billion-year-old basalt dug from a quarry in Wisconsin. Combine these two, at 2,200 degrees Fahrenheit, and you have The Lava Project—a scientific study of the flow of molten lava in an upstate New York parking lot. Syracuse University geology professor Jeffrey Karson tells SciFri more.

    Plus: Desalination is the process that converts saltwater into water that can used for drinking, agriculture, or industrial uses—but desalination produces brine, a salty byproduct that can contain other chemicals. Journalist Tik Root talks about the trade-offs when it comes to desalination in this week's Good Thing, Bad Thing.

    Finally, Vox staff writer Umair Irfan joins SciFri for a look at the Midwest's Arctic temperatures, and other top science headlines, in this week's News Round-up.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


    Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.


    Weather Advances, Listening to Volcanoes, Phragmites. Jan 25, 2019, Part 1 Jan 25, 2019
    Show notes

    Your smartphone gives you up-to-the-minute weather forecast updates at the tap of a button. Every newscast has a weather segment. And outlets like the Weather Channel talk weather all day, every day. But how much has the process of predicting the weather changed over the past 100 years? Though many of the basic principles are the same, improvements in data collection, satellite imagery, and computer modeling have greatly improved your local forecast—making a five-day look ahead as accurate as a one-day prediction was 40 years ago. Richard Alley, a professor of geoscience at Penn State, describes the evolution of meteorology, and what roadblocks still lie ahead, from data sharing to shifting weather patterns. And Angela Fritz, lead meteorologist for the Capital Weather Gang blog at the Washington Post, describes the day-to-day work of a meteorologist and the challenges involved in accurately predicting your local weekend weather.

    When the Chilean volcano Villarrica exploded in 2015, researchers trying to piece together the eruption had a fortuitous piece of extra data to work with: the inaudible infrasound signature of the volcano’s subsurface lava lake rising toward the surface. Volcano forecasters already use seismic data from volcanic vibrations in the ground. But these “infrasound” signals are different. They’re low-frequency sound waves generated by vibrations in the air columns within a volcanic crater, can travel many miles from the original source, and can reveal information about the shape and resonance of the crater… and whether it’s changing. And two days before Villarrica erupted, its once-resonant infrasound signals turned thuddy—as if the lava lake had gotten higher, and left only a loudspeaker-shaped crater to vibrate the air.

    Robert Buchsbaum walks into a salt marsh on Boston’s North Shore. Around him towers a stand of bushy-topped Phragmites australis, an invasive plant commonly known as the common reed. Phragmites is an enemy that this regional scientist with the Massachusetts Audubon Society knows all too well. The plant, which typically grows about 13 feet high, looms over native marsh plants, blocking out their sunlight. When Phragmites sheds its lower leaves, or dies, it creates a thick layer of wrack that keeps native plants from germinating. Its stalks clog waterways, thwarting fish travel. The roots secrete a chemical that prevents other plants from growing, and they grow so deep they are nearly impossible to pull out. But this stubborn bully of a plant might have a shot at redemption. A recent study from the Smithsonian Environmental Research Center found that the very traits that make Phragmites a tough invader—larger plants, deeper roots, higher density—enable it to store more carbon in marshy peat. And as climate change races forward, carbon storage becomes a bigger part of the ecosystem equation.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


    Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.


    Medical Conflict Of Interest, Saturn’s Rings, Bear Brook Podcast. Jan 25, 2019, Part 2 Jan 25, 2019
    Show notes

    Most scientific journals go by the honor system when it comes to conflicts of interest: They ask, and the researchers tell. But that system might be due for an overhaul. A recent ProPublica and New York Times investigation found that a top cancer researcher at Sloan Kettering had received millions of dollars in payments from health and drug companies, but failed to disclose his industry ties in more than 100 articles. Within days, the researcher resigned, more conflicts came to light, leading to a moment of reckoning for the institution. But a more recent investigation shows the problem goes far beyond Sloan Kettering. New York Times reporter Katie Thomas, a co-author of the recent investigations, and Eric Campbell, a professor of medicine at the University of Colorado, discuss how these conflicts of interests could affect patients, why they aren’t being consistently disclosed, and what’s being done about the problem.

    Saturn stands out in our solar system because of the rings that circle the planet. But the rings may not have always been there and may disappear in the far future. Researchers using data collected by Cassini’s final plunge into the planet were able to estimate the mass of the rings. From this information they were able to estimate that the rings were between 10 to 100 million years old, much younger than the planet itself. The finding were published in the journal Science. Planetary scientist Burkhard Militzer, who was an author on the study, tells us what the rings of Saturn can reveal about the formation of the solar system and universe.

    Last year’s arrest of Joseph James DeAngelo, better known as the Golden State Killer, drew lots of attention for the clever use of consumer genetic testing websites to identify a suspect—and for all the murky ethical questions that came with it. But this wasn’t the first time law enforcement had used the technique to solve a cold case. Detectives looking for DeAngelo took their inspiration from an earlier case in New Hampshire, known as the “Bear Brook murders.” In that case, police were up against both an unknown killer and unidentified victims, until they relied on the genealogy database GEDmatch to help them with a crack in the case. It was a strategy that would change the game for forensic investigations in cold case murders. And the story of how it all got started is now told in a new true crime podcast from New Hampshire Public Radio called Bear Brook. Jason Moon, reporter for New Hampshire Public Radio and host of the podcast joins guest host John Dankosky to discuss.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


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    SciFri Extra: ‘Behind The Sheet’ Of Gynecology’s Darker History Jan 22, 2019
    Show notes

    The 19th-century physician J. Marion Sims may have gone down in history as the “father of modern gynecology,” but Sims’ fistula cure was the result of experimental surgeries, pre-Emancipation, on at least 11 enslaved black women. Only three of whose names have been remembered— Anarcha, Betsey, and Lucy. A new play, Behind The Sheet, imagines their life—not just the pain, but the friendships they might have formed to support each other through surgery after surgery.

    In this extended conversation, Science Friday producer Christie Taylor talks to playwright Charly Evon Simpson about the process of inventing a story for these women despite the limited documentation of their lives, the controversy around a J. Marion Sims statue in New York City, and Sims’ legacy in black women’s maternal health outcomes today.

    Behind The Sheet was funded in part by The Sloan Foundation, which is also a funder of Science Friday.

    Further Reading
      Read an essay by Rich Kelley about the scientific an historical context of Behind The Sheet. Listen to Undiscovered's episode covering Sims' research and how people of color are still underrepresented in medical research. Read an article reported by Vox on the removal of a statue of Sims in New York in April 2018.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


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    Book Club, Green New Deal, Louisiana Shrimpers. Jan 18, 2019, Part 1 Jan 18, 2019
    Show notes

    In a world roiled continuously by earthquakes, volcanoes, and other tectonic disasters large and small, a cataclysmic earthquake is about to change the course of human history… again. On the same day, a woman comes home to find her son dead, killed by his father for being an “orogene,” one of the few people in the world with strange powers to manipulate geophysics to start—and stop—these disasters. Thus begins The Fifth Season, the first book of N.K. Jemisin’s triple Hugo-winning Broken Earth trilogy, and this winter’s SciFri Book Club pick. Join Ira and the team as we ponder seismology, volcanology, and how societies respond to disaster. We’ll read the book and discuss until mid-February.

    A Green New Deal is the idea of an economy based on renewable energy, green jobs, and other policies that combat climate change. The idea was recently proposed by newly elected Representative Alexandria Ocasio-Cortez; former President Obama put out a stimulus plan (in year) that included elements of a Green New Deal. But the term was first coined over a decade ago by the journalist Thomas Friedman. Friedman talks about what possible green proposals could entail and what obstacles it might face.

    Louisiana shrimpers are facing low prices. They say the business is tougher than it’s ever been, and recently considered striking. Many are looking for creative ways to make more money. Charles Robin IV, a shrimper, says the shrimp are great—the problem is selling them. Like most shrimpers, after a fishing trip he’ll pull up to the local dock, refuel his boat, stock up on ice, and sell his catch to the dock. The dock owner then turns around and sells it to bigger buyers. But that’s not paying much these days. Shrimp prices have been low. “It’s been really bad,” Robin says. “And you need to catch a lotta lotta shrimp to make up for the difference.” That’s why he goes to the seafood market—to cut out the middleman, make a little more money by selling directly to customers. Julie Falgout, Seafood Industry Liaison for Louisiana Sea Grant, says more and more shrimpers are doing this. She says selling direct makes a lot of sense for some people, but it’s not easy. Cutting out the middleman means becoming the middleman. “And so it becomes a business where you have more things that you have to do and it’s less time fishing.”

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


    Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.


    Gynecology’s Dark History, Antarctic Ice, Moon Craters. Jan 18, 2019, Part 2 Jan 18, 2019
    Show notes

    Nineteenth-century physician J. Marion Sims has gone down in history as the “father of modern gynecology.” He invented the speculum, devised body positions to make gynecological exams easier, and discovered a method for closing vaginal fistulas, a painful, embarrassing and often isolating complication that can result from childbirth. But Sims’ fistula cure was the result of experimental surgeries, pre-Emancipation, on at least 11 enslaved black women, only three of whose names have been remembered—Anarcha, Betsey, and Lucy. Over a period of about five years, the women underwent dozens of surgeries as Sims attempted, and failed, to fix their fistulas. He rarely used anesthesia. What were the lives of those women like? A new play, Behind The Sheet, tackles this story from their perspective, imagining not just their pain, but the friendships they might have formed to support each other through surgery after surgery. In this story, the women tend each other’s ailments, make perfume to hide the smell from their fistula condition, and pledge to remember each other even if history forgets them.

    Researchers monitoring the condition of the Antarctic ice sheet report that not only is the ice melting, but that the rate of ice loss is increasing rapidly. According to their estimates, around 40 gigatons of ice were lost per year in the 1980s. By the 2010s, that rate of loss had increased to more than 250 gigatons of ice per year. That melting ice has caused sea levels around the world to rise by more than half an inch, the researchers say. Eric Rignot, climate scientist at the University of California-Irvine and one of the authors of the report, joins Ira to discuss the trends in the ice sheet and what they portend for sea level rise.

    Our moon formed about 4.51 billion years ago and it’s been pummeled by meteorites ever since, leaving behind the lunar craters you can see on the surface today. Recently, scientists curious to know how often those impacts occurred came up with a clever way of determining the age of the craters. They discovered that many of them are relatively young—that is, the moon got hit by space rocks a lot more recently and a lot more frequently than scientists once thought. Sara Mazrouei, planetary scientist at the University of Toronto joins Ira to discuss the new research, out in the journal Science this week, and what it could tell us about Earth’s crater history.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


    Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.


    Shutdown and Science, Smartphone and Overdoses. Jan 11, 2019, Part 1 Jan 11, 2019
    Show notes

    The partial shutdown of the U.S. government is approaching its third week, and it has caused a backlog for scientists employed or funded by the government. Scientists have had to leaving data collection and experiments in limbo. The Food and Drug Administration has had to suspend domestic food inspections of vegetables, seafood, and other foods that are at high risk for contamination. Journalist Lauren Morello, Americas bureau chief for Nature, puts the current shutdown in context to previous government stoppages. Morello also tells us how agencies and scientists are coping during this time and what we might see if the shutdown continues. And Science Friday producer Katie Feather reports back from the American Astronomical Society conference about how the shutdown has affected the meeting and the work of scientists.

    Last year, about 47,000 people in the United States died from an opioid overdose, including prescription and synthetic drugs like fentanyl, according to the CDC. And as the epidemic of opioid abuse continues, those looking to reduce death rates are searching for ways to keep drug users safer. But what if your smartphone could monitor your breathing, detect early signs of an overdose, and call for help in time to save your life? Researchers writing in Science Translational Medicine this week think they have just that: smartphone software that can ‘hear’ the depressed breathing rates, apnea, and changes in body movement that might indicate a potential overdose. University of Washington PhD candidate Rajalakshmi Nandakumar explains how the software, which uses smartphone speakers and microphones to mimic a bat’s sonar, can ‘hear’ the rise and fall of someone’s chest—and could someday even coordinate with emergency services to send help.

    Starting January 1, 2019, hospitals have been required to post online a machine-readable list of detailed prices for materials and procedures—from the cost of an overnight stay in a hospital bed, to a single tablet of Tylenol, to the short set of stitches you get in the emergency room. The new requirement is a Trump administration expansion of Obama-era rules growing out of the Affordable Care Act, which required that this list of prices be made available upon request. But while the increased availability of this pricing information might seem like a win for consumers, it’s not actually all that useful in many cases. First, the price lists don’t give a simple number for common procedures, but break down each part of every procedure item by item, in no particular order, and labeled with acronyms and abbreviations. Second, the price lists, called ‘Chargemasters,’ are the hospital equivalent of the car sticker price—they represent what the hospital would like to be paid for a service, not the price that most consumers actually do pay, or the prices that may have been negotiated by your insurance company. Julie Appleby, senior correspondent at Kaiser Health News, joins Ira to explain what the price lists actually show, why they matter, and what consumers might be able to do to get a better estimate of potential health care costs.

    Subscribe to this podcast. Follow our show on Instagram, TikTok, Facebook, and Bluesky @scifri and sign up for our newsletters. Got a science question that’s keeping you up at night? Call us: 877-472-4374


    Hosted by Simplecast, an AdsWizz company. See pcm.adswizz.com for information about our collection and use of personal data for advertising.


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