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"content": "\u003cp>Bees – for some reason – seem to fascinate many of us. Perhaps it’s their social structure: the queen, the workers, the drones, producing honey and baby bees and living their short lives in a super-organized way that would be the envy of any business. Like many an enterprise today, they even have guards outside the hives to sound the alarm if things get out of hand.\u003c/p>\n\u003cp>So when five years ago the world learned that bees in America and Canada were dying in large numbers, and hives were becoming defunct, the agricultural community and the beekeepers and just plain people became alarmed. Hives were deserted, the bees gone, presumably dead, honey production stopped, and the bee industry crippled.\u003c/p>\n\u003cp>The problem was called \u003ca href=\"http://en.wikipedia.org/wiki/Colony_collapse_disorder\">Colony Collapse Disorder\u003c/a>, and it threatened California’s very profitable almond industry, which is dependent on bees to pollinate the trees and keep the nuts growing. And not just almonds: 130 crops in California alone depend on honey bees. Beekeepers from around the nation load their hives on trucks and bring them to California and rent them out to growers. As the disease, or whatever it is, spread, the price of renting ever-more-scarce bees went up.\u003c/p>\n\u003cfigure id=\"attachment_27537\" class=\"wp-caption alignright\" style=\"max-width: 639px\">\u003cimg class=\"size-full wp-image-27537\" title=\"114a_2007_05_22_Bees_SarahSkikne (15)\" src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2011/11/114a_2007_05_22_Bees_SarahSkikne-15-e1321647984490.jpg\" alt=\"\" width=\"639\" height=\"425\" srcset=\"https://ww2.kqed.org/app/uploads/sites/39/2011/11/114a_2007_05_22_Bees_SarahSkikne-15-e1321647984490.jpg 639w, https://ww2.kqed.org/app/uploads/sites/39/2011/11/114a_2007_05_22_Bees_SarahSkikne-15-e1321647984490-400x266.jpg 400w\" sizes=\"(max-width: 639px) 100vw, 639px\">\u003cfigcaption class=\"wp-caption-text\">Honey bee hive at UC Davis\u003c/figcaption>\u003c/figure>\n\u003cp>Once the news media started reporting heavily on the plight of the bees and the beekeepers, interest soared. Researchers at universities around the country started looking into the problem; money was donated to figure out what was killing the bees. Stories appeared frequently about the scientific efforts to figure out what was causing Colony Collapse Disorder (CCD) and what would cure it. With all that attention you’d think they would have solved the problem.\u003c/p>\n\u003cp>But what the scientists have discovered is that they really don’t know very much about bees. They don’t have a baseline of what goes on on the microscopic level in the hives. What viruses already exist in healthy colonies? You’ve got know that before you can start to understand if a virus is normal or abnormal and may be killing bees. Scientists like \u003ca href=\"http://derisilab.ucsf.edu/\">Joe DeRisi\u003c/a> at the University of California San Francisco say they’ve made great strides, even though they haven’t found a culprit.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>\u003cem>DeRisi: “I think there’s been tremendous progress. One of the frustrating things with CCD is it doesn’t look like there’s any one single agent or culprit that you can point the finger to that’s causing all of these problems. It looks to be a confluence of things that is several different pathogens or situations or environmental conditions that are coming together to cause losses that are more than would be expected. And that’s what’s frustrating people. What has occurred because of the interest in honeybees and because of the large losses caused by CCD is people like myself and other researchers around the country applying new techniques and tools to honeybees which they normally would not have done so, and so we’ve learned an incredible amount about the ecosystem in the bee and around the bee. And what we now know is that there’s a whole host of pathogens no one knew anything about and that certain combinations of these appear to be associated with higher losses than would otherwise be expected during the season. “\u003c/em>\u003c/p>\n\u003cp>DeRisi’s lab discovered four new viruses that exist in healthy hives they never knew existed before. But that didn’t solve the problem at hand.\u003c/p>\n\u003cp>The disease remains a serious threat, with about a third of all bee colonies affected, and no cure in sight. But many among the other two-thirds of the beekeeping community think they have it under control, because their hives are doing well. They claim they take better care of their bees, feed them better, and use various medicines and techniques to keep the hives healthy.\u003c/p>\n\u003cp>One technique some beekeepers swear by is splitting the hives every year or even more frequently. That means taking half the bees out, getting a new queen (you can buy queens!), and making two hives out of one. \u003ca href=\"http://entomology.ucdavis.edu/faculty/facpage.cfm?id=mussen\">Eric Mussen\u003c/a>, a university extension bee specialist at the University of California at Davis, thinks splitting works – up to a point:\u003c/p>\n\u003cp>\u003cem>Mussen: “When you make these splits, you more or less take the pathogen load, all the problems, you kind of split it in half and then you’ve got these little colonies that have to build up really quickly and when that happens frequently they can outrun some of the parasites. They can outrun some of the disease problems for awhile, so those colonies get up and they make it and they’re, they’re good for a season. Okay, had you not split it, it seems like in many cases the microbes and the parasites become overwhelming and the colony dies, so my terminology is starting from packages, making splits, if you could keep your colonies forever young it looks like that’s a, a way that helps deal with the problem. Nothing’s perfect.\u003c/em>\u003c/p>\n\u003cp>Q: Why hasn’t that completely eradicated this problem then? Why isn’t everybody splitting?\u003c/p>\n\u003cp>\u003cem>Mussen: Well, a number of people are splitting, either by default or some by design. They’ve, they’re now understanding what the problem is and, and how this helps. But the problem is that I think some of the equipment has or whatever the CCD problem is, is kind of innate in the equipment and so it really doesn’t matter what bees you put in and how you deal with them, it’s always right there, right on the edge ready to create a real problem. So you do the best that you can to try to just stay a little bit ahead of that.”\u003c/em>\u003c/p>\n\u003cp>[ad floatright]\u003c/p>\n\u003cp>The research goes on – and so does pollination. The almond industry is surviving, and in fact, thriving. Last year was the largest crop ever. The crisis mentality seems to have passed, but the problem remains. While beekeepers are used to cycles where their bees die off, and then come back, Colony Collapse Disorder seems to be more persistent than previous die-offs, and shows little sign of abatement. While it hasn’t been decoded nor cured, it has focused attention on a unique part of agriculture that seems to need the attention. And that’s not honey-coating the progress that has been made.\u003c/p>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>Bees – for some reason – seem to fascinate many of us. Perhaps it’s their social structure: the queen, the workers, the drones, producing honey and baby bees and living their short lives in a super-organized way that would be the envy of any business. Like many an enterprise today, they even have guards outside the hives to sound the alarm if things get out of hand.\u003c/p>\n\u003cp>So when five years ago the world learned that bees in America and Canada were dying in large numbers, and hives were becoming defunct, the agricultural community and the beekeepers and just plain people became alarmed. Hives were deserted, the bees gone, presumably dead, honey production stopped, and the bee industry crippled.\u003c/p>\n\u003cp>The problem was called \u003ca href=\"http://en.wikipedia.org/wiki/Colony_collapse_disorder\">Colony Collapse Disorder\u003c/a>, and it threatened California’s very profitable almond industry, which is dependent on bees to pollinate the trees and keep the nuts growing. And not just almonds: 130 crops in California alone depend on honey bees. Beekeepers from around the nation load their hives on trucks and bring them to California and rent them out to growers. As the disease, or whatever it is, spread, the price of renting ever-more-scarce bees went up.\u003c/p>\n\u003cfigure id=\"attachment_27537\" class=\"wp-caption alignright\" style=\"max-width: 639px\">\u003cimg class=\"size-full wp-image-27537\" title=\"114a_2007_05_22_Bees_SarahSkikne (15)\" src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2011/11/114a_2007_05_22_Bees_SarahSkikne-15-e1321647984490.jpg\" alt=\"\" width=\"639\" height=\"425\" srcset=\"https://ww2.kqed.org/app/uploads/sites/39/2011/11/114a_2007_05_22_Bees_SarahSkikne-15-e1321647984490.jpg 639w, https://ww2.kqed.org/app/uploads/sites/39/2011/11/114a_2007_05_22_Bees_SarahSkikne-15-e1321647984490-400x266.jpg 400w\" sizes=\"(max-width: 639px) 100vw, 639px\">\u003cfigcaption class=\"wp-caption-text\">Honey bee hive at UC Davis\u003c/figcaption>\u003c/figure>\n\u003cp>Once the news media started reporting heavily on the plight of the bees and the beekeepers, interest soared. Researchers at universities around the country started looking into the problem; money was donated to figure out what was killing the bees. Stories appeared frequently about the scientific efforts to figure out what was causing Colony Collapse Disorder (CCD) and what would cure it. With all that attention you’d think they would have solved the problem.\u003c/p>\n\u003cp>But what the scientists have discovered is that they really don’t know very much about bees. They don’t have a baseline of what goes on on the microscopic level in the hives. What viruses already exist in healthy colonies? You’ve got know that before you can start to understand if a virus is normal or abnormal and may be killing bees. Scientists like \u003ca href=\"http://derisilab.ucsf.edu/\">Joe DeRisi\u003c/a> at the University of California San Francisco say they’ve made great strides, even though they haven’t found a culprit.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>\u003cem>DeRisi: “I think there’s been tremendous progress. One of the frustrating things with CCD is it doesn’t look like there’s any one single agent or culprit that you can point the finger to that’s causing all of these problems. It looks to be a confluence of things that is several different pathogens or situations or environmental conditions that are coming together to cause losses that are more than would be expected. And that’s what’s frustrating people. What has occurred because of the interest in honeybees and because of the large losses caused by CCD is people like myself and other researchers around the country applying new techniques and tools to honeybees which they normally would not have done so, and so we’ve learned an incredible amount about the ecosystem in the bee and around the bee. And what we now know is that there’s a whole host of pathogens no one knew anything about and that certain combinations of these appear to be associated with higher losses than would otherwise be expected during the season. “\u003c/em>\u003c/p>\n\u003cp>DeRisi’s lab discovered four new viruses that exist in healthy hives they never knew existed before. But that didn’t solve the problem at hand.\u003c/p>\n\u003cp>The disease remains a serious threat, with about a third of all bee colonies affected, and no cure in sight. But many among the other two-thirds of the beekeeping community think they have it under control, because their hives are doing well. They claim they take better care of their bees, feed them better, and use various medicines and techniques to keep the hives healthy.\u003c/p>\n\u003cp>One technique some beekeepers swear by is splitting the hives every year or even more frequently. That means taking half the bees out, getting a new queen (you can buy queens!), and making two hives out of one. \u003ca href=\"http://entomology.ucdavis.edu/faculty/facpage.cfm?id=mussen\">Eric Mussen\u003c/a>, a university extension bee specialist at the University of California at Davis, thinks splitting works – up to a point:\u003c/p>\n\u003cp>\u003cem>Mussen: “When you make these splits, you more or less take the pathogen load, all the problems, you kind of split it in half and then you’ve got these little colonies that have to build up really quickly and when that happens frequently they can outrun some of the parasites. They can outrun some of the disease problems for awhile, so those colonies get up and they make it and they’re, they’re good for a season. Okay, had you not split it, it seems like in many cases the microbes and the parasites become overwhelming and the colony dies, so my terminology is starting from packages, making splits, if you could keep your colonies forever young it looks like that’s a, a way that helps deal with the problem. Nothing’s perfect.\u003c/em>\u003c/p>\n\u003cp>Q: Why hasn’t that completely eradicated this problem then? Why isn’t everybody splitting?\u003c/p>\n\u003cp>\u003cem>Mussen: Well, a number of people are splitting, either by default or some by design. They’ve, they’re now understanding what the problem is and, and how this helps. But the problem is that I think some of the equipment has or whatever the CCD problem is, is kind of innate in the equipment and so it really doesn’t matter what bees you put in and how you deal with them, it’s always right there, right on the edge ready to create a real problem. So you do the best that you can to try to just stay a little bit ahead of that.”\u003c/em>\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>The research goes on – and so does pollination. The almond industry is surviving, and in fact, thriving. Last year was the largest crop ever. The crisis mentality seems to have passed, but the problem remains. While beekeepers are used to cycles where their bees die off, and then come back, Colony Collapse Disorder seems to be more persistent than previous die-offs, and shows little sign of abatement. While it hasn’t been decoded nor cured, it has focused attention on a unique part of agriculture that seems to need the attention. And that’s not honey-coating the progress that has been made.\u003c/p>\n\n\u003c/div>\u003c/p>",
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"content": "\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/05/kyledawson-5-5-08-zebra.jpg\">\u003cem>Infrared image of a zebra from the London Zoo.\u003cbr>\nCredit: Steve Lowe\u003cbr>\n\u003c/em>\u003c/span>\u003cbr>\nRight now I am very excited about the possibility of working on a new small telescope in southern Utah. This telescope was funded by a private donation and will be run by the University of Utah. We even found a \u003ca href=\"http://www.peakbagger.com/peak.aspx?pid=3596\">mountain top \u003c/a>in the middle of nowhere that this telescope will call home.\u003c/p>\n\u003cp>Why this particular mountain? There are essentially three reasons:\u003c/p>\n\u003cp>It's dark\u003cbr>\nIt's clear\u003cbr>\nIt doesn't make the stars twinkle\u003c/p>\n\u003cp>The first two reasons are so obvious that I am almost embarrassed. The last reason is not quite so intuitive. What makes a star twinkle and why do we care? This goes back to a \u003ca href=\"http://ww2.kqed.org/quest/2007/09/24/testing-the-limits-of-optical-telescopes/\">post \u003c/a>I made a few months ago.\u003c/p>\n\u003cp>The basic idea here is that the churning atmosphere blurs your astronomical image. Local geography and weather patterns can either mitigate or exaggerate this effect. It is difficult to predict and many measurements need to be done to determine what is actually happening. Cameras were placed all around southern Utah on various mountain tops to observe the \u003ca href=\"http://www.badastronomy.com/bad/misc/badpole.html\">North Star \u003c/a>over the course of the year. The mountain top that produced the highest resolution image of the star won the competition. That was Frisco Peak.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>The telescope that will be placed on Frisco Peak was built by a very \u003ca href=\"http://www.dfmengineering.com\">specialized company\u003c/a>. This is quite rare--more typical are either large custom-made telescopes or small amateur telescopes. This telescope falls in the middle. It is bought off the shelf but is far superior to the commercially made amateur telescopes.\u003c/p>\n\u003cp>We are now discussing plans for this telescope, like the type of cameras that should be used. There is a strong interest in building an \u003ca href=\"http://coolcosmos.ipac.caltech.edu/cosmic_classroom/ir_tutorial/\">infrared camera\u003c/a>. This allows us to see through \u003ca href=\"http://apod.nasa.gov/apod/ap060219.html\">large clouds of dust\u003c/a> and allows us to see \u003ca href=\"http://www.astronomycafe.net/cosm/expan.html\">very distant galaxies\u003c/a>.\u003c/p>\n\u003cp>Like most people, I am much more experienced with cameras in the visible spectrum. I work on \u003ca href=\"http://www-ccd.lbl.gov/\">CCDs\u003c/a> in Berkeley and have barely used anything in the infrared. CCDs are made of silicon which is sensitive to light that can be seen with the naked eye (plus a little more red than what can be seen).\u003c/p>\n\u003cp>However, there is a lot of information in the sky that is too red to be seen with the naked eye and too red to be detected with a silicon detector. New materials are required for detectors in this wavelength range. One of the major new materials for infrared detectors is a blend of mercury, cadmium and telluride, usually called Mer-Cad-Tell in the astro community. The wavelength range of the detector can be tuned by changing the amount of mercury in the blend.\u003c/p>\n\u003cp>Clearly, a lot of the legwork has been done for this new telescope. We have the funding, we have a vendor, and we have a location. Now all that's left is to prioritize our science goals and to figure out how to get our hands on some mer-cad-tell.\u003c/p>\n\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/imp/icon_kdawson.jpg\">\u003c/span>\u003cem>\u003cstrong>Kyle S. Dawson\u003c/strong> is engaged in post-doctorate studies of distant supernovae and development of a proposed space-based telescope at \u003ca target=\"_blank\" href=\"http://www.lbl.gov/\">Lawrence Berkeley National Laboratory\u003c/a>\u003c/em>.\u003c/p>\n\u003cp>\u003cbr clear=\"all\">\u003c/p>\n\u003cp>\u003c/p>\n\u003cp> 37.8768 -122.251\u003c/p>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/05/kyledawson-5-5-08-zebra.jpg\">\u003cem>Infrared image of a zebra from the London Zoo.\u003cbr>\nCredit: Steve Lowe\u003cbr>\n\u003c/em>\u003c/span>\u003cbr>\nRight now I am very excited about the possibility of working on a new small telescope in southern Utah. This telescope was funded by a private donation and will be run by the University of Utah. We even found a \u003ca href=\"http://www.peakbagger.com/peak.aspx?pid=3596\">mountain top \u003c/a>in the middle of nowhere that this telescope will call home.\u003c/p>\n\u003cp>Why this particular mountain? There are essentially three reasons:\u003c/p>\n\u003cp>It's dark\u003cbr>\nIt's clear\u003cbr>\nIt doesn't make the stars twinkle\u003c/p>\n\u003cp>The first two reasons are so obvious that I am almost embarrassed. The last reason is not quite so intuitive. What makes a star twinkle and why do we care? This goes back to a \u003ca href=\"http://ww2.kqed.org/quest/2007/09/24/testing-the-limits-of-optical-telescopes/\">post \u003c/a>I made a few months ago.\u003c/p>\n\u003cp>The basic idea here is that the churning atmosphere blurs your astronomical image. Local geography and weather patterns can either mitigate or exaggerate this effect. It is difficult to predict and many measurements need to be done to determine what is actually happening. Cameras were placed all around southern Utah on various mountain tops to observe the \u003ca href=\"http://www.badastronomy.com/bad/misc/badpole.html\">North Star \u003c/a>over the course of the year. The mountain top that produced the highest resolution image of the star won the competition. That was Frisco Peak.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>The telescope that will be placed on Frisco Peak was built by a very \u003ca href=\"http://www.dfmengineering.com\">specialized company\u003c/a>. This is quite rare--more typical are either large custom-made telescopes or small amateur telescopes. This telescope falls in the middle. It is bought off the shelf but is far superior to the commercially made amateur telescopes.\u003c/p>\n\u003cp>We are now discussing plans for this telescope, like the type of cameras that should be used. There is a strong interest in building an \u003ca href=\"http://coolcosmos.ipac.caltech.edu/cosmic_classroom/ir_tutorial/\">infrared camera\u003c/a>. This allows us to see through \u003ca href=\"http://apod.nasa.gov/apod/ap060219.html\">large clouds of dust\u003c/a> and allows us to see \u003ca href=\"http://www.astronomycafe.net/cosm/expan.html\">very distant galaxies\u003c/a>.\u003c/p>\n\u003cp>Like most people, I am much more experienced with cameras in the visible spectrum. I work on \u003ca href=\"http://www-ccd.lbl.gov/\">CCDs\u003c/a> in Berkeley and have barely used anything in the infrared. CCDs are made of silicon which is sensitive to light that can be seen with the naked eye (plus a little more red than what can be seen).\u003c/p>\n\u003cp>However, there is a lot of information in the sky that is too red to be seen with the naked eye and too red to be detected with a silicon detector. New materials are required for detectors in this wavelength range. One of the major new materials for infrared detectors is a blend of mercury, cadmium and telluride, usually called Mer-Cad-Tell in the astro community. The wavelength range of the detector can be tuned by changing the amount of mercury in the blend.\u003c/p>\n\u003cp>Clearly, a lot of the legwork has been done for this new telescope. We have the funding, we have a vendor, and we have a location. Now all that's left is to prioritize our science goals and to figure out how to get our hands on some mer-cad-tell.\u003c/p>\n\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/imp/icon_kdawson.jpg\">\u003c/span>\u003cem>\u003cstrong>Kyle S. Dawson\u003c/strong> is engaged in post-doctorate studies of distant supernovae and development of a proposed space-based telescope at \u003ca target=\"_blank\" href=\"http://www.lbl.gov/\">Lawrence Berkeley National Laboratory\u003c/a>\u003c/em>.\u003c/p>\n\u003cp>\u003cbr clear=\"all\">\u003c/p>\n\u003cp>\u003c/p>\n\u003cp> 37.8768 -122.251\u003c/p>\n\n\u003c/div>\u003c/p>",
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"title": "Pixels are so 20th century - say hello to 'spaxels'",
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"content": "\u003cp>\u003cstrong>Making Every Photon Count\u003c/strong>\u003c/p>\n\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/04/tube_telescope_eng.jpg\">\u003c/span>Last week I went to a talk given by the leader of \u003ca href=\"http://snfactory.lbl.gov/\">the Supernova Factory\u003c/a> collaboration at LBNL. What is SN factory? This is an ambitious project to study supernovae like never before. I mentioned this project briefly in a \u003ca href=\"http://ww2.kqed.org/quest/2008/03/24/excellent-conditions-for-skiing-and-supernovae/\">previous post\u003c/a> , now that they are so close to releasing their results I want to discuss it a bit more.\u003c/p>\n\u003cp>The main idea of this project is to study several hundred nearby supernovae using an instrument known as the Supernova Integral Field Spectrograph, or \u003ca href=\"http://www.lbl.gov/Science-Articles/Archive/Phys-SNIFS.html\">SNIFS\u003c/a>. This type of instrument is essentially \u003ca href=\"http://ww2.kqed.org/quest/2008/01/09/catching-rainbows-from-distant-galaxies/\">a blend between a traditional imaging camera and a spectrograph\u003c/a>.\u003c/p>\n\u003cp>The resolution in an integral field spectrograph is defined in \u003cem>spaxels \u003c/em>instead of the pixels that have become all too familiar with the advent of digital cameras. A spaxel is quite similar to a pixel, there aren't nearly as many and each one carries at least \u003cem>a 1000 times as much information\u003c/em>.\u003c/p>\n\u003cp>In your digital camera, the light passes through the lens and directly onto the CCD. Each pixel on the CCD counts the number of photons in the red, the blue, and the green. Typically, there are millions of pixels, each counting photons from a slightly different region of the subject of your photograph.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>Now imagine that instead of just counting red, green, and blue, that each pixel counts the entire rainbow of light from your subject. Now you have a spaxel. In an intregral field unit, the light passes through an array of microlenses and prisms before landing on the detector. We would call each set of microlenses and prisms a spaxel. The resulting image carries information about every wavelength of light from every region of your target.\u003c/p>\n\u003cp>\u003cspan class=\"right\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/04/sn2204ca_spectrum.jpg\">\u003cem>Spectrum of the first SN observed with SNIFS\u003c/em>\u003c/span>The advantage to an integral field spectrograph like SNIFS is that you gain a lot more information than either an imager or spectrograph alone. With an integral field spectrograph you can basically identify and organize every photon that reaches the telescope.\u003c/p>\n\u003cp>Specifically designed to observe supernovae, SNIFS is being operated at the \u003ca href=\"http://www.ifa.hawaii.edu/88inch/\">88-inch telescope on Mauna Kea\u003c/a>. Spaxels are quite expensive - this particular instrument has only 225. However, this is more than enough to observe the entirety of a galaxy, a supernova, and the background.\u003c/p>\n\u003cp>The members of the SN Factory have now observed over 100 SNe using this new camera. Last Thursday, I saw the data from the first 25 well-calibrated supernovae and was very impressed. The data showed the evolution of each supernova and the properties of the host galaxy in great detail. I'm sure the supernova community will be equally impressed when they first see these new results.\u003c/p>\n\u003cp>\u003cbr clear=\"all' /></p> <p><span class=\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/imp/icon_kdawson.jpg\">\u003cem>\u003cstrong>Kyle S. Dawson\u003c/strong> is engaged in post-doctorate studies of distant supernovae and development of a proposed space-based telescope at \u003ca href=\"http://www.lbl.gov/\" target=\"_blank\">Lawrence Berkeley National Laboratory\u003c/a>\u003c/em>.\u003c/p>\n\u003cp>\u003c/p>\n\u003cp> 37.8768 -122.251\u003c/p>\n\n",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003cp>\u003cstrong>Making Every Photon Count\u003c/strong>\u003c/p>\n\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/04/tube_telescope_eng.jpg\">\u003c/span>Last week I went to a talk given by the leader of \u003ca href=\"http://snfactory.lbl.gov/\">the Supernova Factory\u003c/a> collaboration at LBNL. What is SN factory? This is an ambitious project to study supernovae like never before. I mentioned this project briefly in a \u003ca href=\"http://ww2.kqed.org/quest/2008/03/24/excellent-conditions-for-skiing-and-supernovae/\">previous post\u003c/a> , now that they are so close to releasing their results I want to discuss it a bit more.\u003c/p>\n\u003cp>The main idea of this project is to study several hundred nearby supernovae using an instrument known as the Supernova Integral Field Spectrograph, or \u003ca href=\"http://www.lbl.gov/Science-Articles/Archive/Phys-SNIFS.html\">SNIFS\u003c/a>. This type of instrument is essentially \u003ca href=\"http://ww2.kqed.org/quest/2008/01/09/catching-rainbows-from-distant-galaxies/\">a blend between a traditional imaging camera and a spectrograph\u003c/a>.\u003c/p>\n\u003cp>The resolution in an integral field spectrograph is defined in \u003cem>spaxels \u003c/em>instead of the pixels that have become all too familiar with the advent of digital cameras. A spaxel is quite similar to a pixel, there aren't nearly as many and each one carries at least \u003cem>a 1000 times as much information\u003c/em>.\u003c/p>\n\u003cp>In your digital camera, the light passes through the lens and directly onto the CCD. Each pixel on the CCD counts the number of photons in the red, the blue, and the green. Typically, there are millions of pixels, each counting photons from a slightly different region of the subject of your photograph.\u003c/p>\n\u003cp>\u003c/p>\u003c/div>",
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"content": "\u003cdiv class=\"post-body\">\u003cp>\u003c/p>\n\u003cp>Now imagine that instead of just counting red, green, and blue, that each pixel counts the entire rainbow of light from your subject. Now you have a spaxel. In an intregral field unit, the light passes through an array of microlenses and prisms before landing on the detector. We would call each set of microlenses and prisms a spaxel. The resulting image carries information about every wavelength of light from every region of your target.\u003c/p>\n\u003cp>\u003cspan class=\"right\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/04/sn2204ca_spectrum.jpg\">\u003cem>Spectrum of the first SN observed with SNIFS\u003c/em>\u003c/span>The advantage to an integral field spectrograph like SNIFS is that you gain a lot more information than either an imager or spectrograph alone. With an integral field spectrograph you can basically identify and organize every photon that reaches the telescope.\u003c/p>\n\u003cp>Specifically designed to observe supernovae, SNIFS is being operated at the \u003ca href=\"http://www.ifa.hawaii.edu/88inch/\">88-inch telescope on Mauna Kea\u003c/a>. Spaxels are quite expensive - this particular instrument has only 225. However, this is more than enough to observe the entirety of a galaxy, a supernova, and the background.\u003c/p>\n\u003cp>The members of the SN Factory have now observed over 100 SNe using this new camera. Last Thursday, I saw the data from the first 25 well-calibrated supernovae and was very impressed. The data showed the evolution of each supernova and the properties of the host galaxy in great detail. I'm sure the supernova community will be equally impressed when they first see these new results.\u003c/p>\n\u003cp>\u003cbr clear=\"all' /></p> <p><span class=\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/imp/icon_kdawson.jpg\">\u003cem>\u003cstrong>Kyle S. Dawson\u003c/strong> is engaged in post-doctorate studies of distant supernovae and development of a proposed space-based telescope at \u003ca href=\"http://www.lbl.gov/\" target=\"_blank\">Lawrence Berkeley National Laboratory\u003c/a>\u003c/em>.\u003c/p>\n\u003cp>\u003c/p>\n\u003cp> 37.8768 -122.251\u003c/p>\n\n\u003c/div>\u003c/p>",
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"content": "\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/01/blog_streak1.gif\">\u003cem>Star or Comet?\u003c/em>\u003c/span>Yesterday was a very long day at work. I was stuck in meetings with our collaborators for over 6 hours! To make it worse, we spent the entire time discussing a single topic. I even wrote my last paper on it. What could possibly be so captivating, you ask?\u003c/p>\n\u003cp>Remember the \u003ca href=\"http://solarscience.msfc.nasa.gov/SolarWind.shtml\">solar wind\u003c/a> \u003ca href=\"http://ww2.kqed.org/quest/2007/12/18/winds-of-change-the-climate-of-the-solar-system/\">I wrote about\u003c/a> a few weeks ago? This stream of protons does more than create comet tails and aurora, it also destroys all of those fancy electronics we work so hard to put into orbit.\u003c/p>\n\u003cp>The protons streaming from the sun carry a lot of energy, and they leave a lot of this energy behind as they pass through satellites and astronauts that don’t have the Earth’s atmosphere to protect them. The energy released wrecks havoc on the system, throwing electrons and atoms around like a game of ping-pong. This is one form of radiation damage.\u003c/p>\n\u003cp>\u003cspan class=\"right\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/2008/01/blog_comet21.jpg\">\u003cem>Definitely a comet!\u003c/em>\u003c/span>\u003cbr>\nThis radiation damage is harmless over short periods of time, much like an occasional X-ray at the dentist. However the solar wind becomes a problem for something like the \u003ca href=\"http://hubblesite.org/\">Hubble Space Telescope\u003c/a> or our proposed satellite \u003ca href=\"http://ww2.kqed.org/quest/2007/10/22/beyond-edwins-wildest-dreams/\">SNAP\u003c/a> which are exposed for many years.\u003c/p>\n\u003cp>To understand how a telescope degrades from exposure to radiation, let me give an extremely quick explanation of how we gather astronomical images. A telescope is very similar to a camera you buy in the store. The large mirror is equivalent to the lens on your camera. The part that suffers the most radiation damage is the Charge Coupled Device, also known as a \u003ca href=\"http://wfc3.gsfc.nasa.gov/MARCONI/basic-device.html\">CCD\u003c/a>.\u003c/p>\n\u003cp>[ad fullwidth]\u003c/p>\n\u003cp>The CCD is essentially the same as the 8-megapixel chip in your digital camera. This serves as an electronic version of film, recording the image through the \u003ca href=\"http://www.colorado.edu/physics/2000/quantumzone/photoelectric.html\">photoelectric effect\u003c/a> rather than through a chemical reaction. If you can still remember how photography was in the days of film, I'm sure you can appreciate the relief of going digital. Astronomers realized this early on and were pioneers in the use of CCDs.\u003c/p>\n\u003cp>The photons from the subject of the photograph collide with electrons in the silicon of a CCD, knocking them free from their parent atom. The free electrons are then collected in a well near the site of the collision. Once the exposure is complete, charge is moved one well (or pixel) at a time toward a transistor which then reports the number of electrons found. This process is usually described through the analogy of a bucket brigade passing buckets of water from a reservoir to a fire.\u003c/p>\n\u003cp>When the CCD is brand new, the bucket brigade performs almost perfectly. If I want to observe a star, the image comes out crystal clear. However, after enough time in space and in the solar wind, the CCD begins to show its wear. The bucket brigade gets sloppy at work and has to contend with an increasingly difficult obstacle course, spilling a little bit of water (or electrons) during each transfer. That same star now leaves a trail of charge behind and begins to look more like a comet.\u003c/p>\n\u003cp>Now, if I am observing a star, I want my image to look like a star, not like a comet. Is that really too much to ask? Unfortunately, the CCD will inevitably deteriorate in space and astronomers have to find ways to predict and correct for this deterioration. This is what we spent yesterday discussing. We passed around some pretty good ideas but still have a bit of work to do before we can prove a new method for correcting the images. I just hope we it figured out before our satellite launches in 2015!\u003c/p>\n\u003cp>\u003cspan class=\"left\">\u003cimg src=\"http://ww2.kqed.org/quest/wp-content/uploads/sites/39/imp/icon_kdawson.jpg\">\u003c/span>\u003cem>\u003cstrong>Kyle S. Dawson\u003c/strong> is engaged in post-doctorate studies of distant supernovae and development of a proposed space-based telescope at \u003ca href=\"http://www.lbl.gov/\" target=\"_blank\">Lawrence Berkeley National Laboratory\u003c/a>\u003c/em>.\u003c/p>\n\u003cp>\u003cbr clear=\"all\">\u003c/p>\n\u003cp>\u003c/p>\n\u003cp class=\"geo\"> latitude: 37.8768\u003cspan class=\"latitude\">\u003c/span>, longitude: -122.251\u003cspan class=\"longitude\">\u003c/span>\u003c/p>\n\n",
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"info": "A one-hour radio program to hear celebrated writers, artists and thinkers address contemporary ideas and values, often discussing the creative process. Please note: tapes or transcripts are not available",
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"source": "City Arts & Lectures"
},
"link": "https://www.cityarts.net",
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}
},
"closealltabs": {
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"order": 1
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"title": "Code Switch / Life Kit",
"info": "\u003cem>Code Switch\u003c/em>, which listeners will hear in the first part of the hour, has fearless and much-needed conversations about race. Hosted by journalists of color, the show tackles the subject of race head-on, exploring how it impacts every part of society — from politics and pop culture to history, sports and more.\u003cbr />\u003cbr />\u003cem>Life Kit\u003c/em>, which will be in the second part of the hour, guides you through spaces and feelings no one prepares you for — from finances to mental health, from workplace microaggressions to imposter syndrome, from relationships to parenting. The show features experts with real world experience and shares their knowledge. Because everyone needs a little help being human.\u003cbr />\u003cbr />\u003ca href=\"https://www.npr.org/podcasts/510312/codeswitch\">\u003cem>Code Switch\u003c/em> offical site and podcast\u003c/a>\u003cbr />\u003ca href=\"https://www.npr.org/lifekit\">\u003cem>Life Kit\u003c/em> offical site and podcast\u003c/a>\u003cbr />",
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"id": "commonwealth-club",
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"info": "The Commonwealth Club of California is the nation's oldest and largest public affairs forum. As a non-partisan forum, The Club brings to the public airwaves diverse viewpoints on important topics. The Club's weekly radio broadcast - the oldest in the U.S., dating back to 1924 - is carried across the nation on public radio stations and is now podcasting. Our website archive features audio of our recent programs, as well as selected speeches from our long and distinguished history. This podcast feed is usually updated twice a week and is always un-edited.",
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"google": "https://podcasts.google.com/feed/aHR0cDovL3d3dy5jb21tb253ZWFsdGhjbHViLm9yZy9hdWRpby9wb2RjYXN0L3dlZWtseS54bWw",
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"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Forum-Podcast-Tile-703x703-1.jpg",
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"order": 9
},
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"google": "https://podcasts.google.com/feed/aHR0cHM6Ly9mZWVkcy5tZWdhcGhvbmUuZm0vS1FJTkM5NTU3MzgxNjMz",
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"meta": {
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"apple": "https://itunes.apple.com/us/podcast/freakonomics-radio/id354668519",
"tuneIn": "https://tunein.com/podcasts/WNYC-Podcasts/Freakonomics-Radio-p272293/",
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},
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"id": "fresh-air",
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"apple": "https://itunes.apple.com/WebObjects/MZStore.woa/wa/viewPodcast?s=143441&mt=2&id=214089682&at=11l79Y&ct=nprdirectory",
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"hidden-brain": {
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"info": "Shankar Vedantam uses science and storytelling to reveal the unconscious patterns that drive human behavior, shape our choices and direct our relationships.",
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"airtime": "SUN 7pm-8pm",
"meta": {
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"source": "NPR"
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"link": "/radio/program/hidden-brain",
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"how-i-built-this": {
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"title": "How I Built This with Guy Raz",
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"airtime": "SUN 7:30pm-8pm",
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"link": "/radio/program/how-i-built-this",
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"apple": "https://itunes.apple.com/us/podcast/how-i-built-this-with-guy-raz/id1150510297?mt=2",
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"hyphenacion": {
"id": "hyphenacion",
"title": "Hyphenación",
"tagline": "Where conversation and cultura meet",
"info": "What kind of no sabo word is Hyphenación? For us, it’s about living within a hyphenation. Like being a third-gen Mexican-American from the Texas border now living that Bay Area Chicano life. Like Xorje! Each week we bring together a couple of hyphenated Latinos to talk all about personal life choices: family, careers, relationships, belonging … everything is on the table. ",
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"order": 15
},
"link": "/podcasts/hyphenacion",
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"spotify": "https://open.spotify.com/show/2p3Fifq96nw9BPcmFdIq0o?si=39209f7b25774f38",
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},
"jerrybrown": {
"id": "jerrybrown",
"title": "The Political Mind of Jerry Brown",
"tagline": "Lessons from a lifetime in politics",
"info": "The Political Mind of Jerry Brown brings listeners the wisdom of the former Governor, Mayor, and presidential candidate. Scott Shafer interviewed Brown for more than 40 hours, covering the former governor's life and half-century in the political game and Brown has some lessons he'd like to share. ",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/The-Political-Mind-of-Jerry-Brown-Podcast-Tile-703x703-1.jpg",
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"officialWebsiteLink": "/podcasts/jerrybrown",
"meta": {
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"order": 18
},
"link": "/podcasts/jerrybrown",
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},
"latino-usa": {
"id": "latino-usa",
"title": "Latino USA",
"airtime": "MON 1am-2am, SUN 6pm-7pm",
"info": "Latino USA, the radio journal of news and culture, is the only national, English-language radio program produced from a Latino perspective.",
"imageSrc": "https://ww2.kqed.org/radio/wp-content/uploads/sites/50/2018/04/latinoUsa.jpg",
"officialWebsiteLink": "http://latinousa.org/",
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"link": "/radio/program/latino-usa",
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"apple": "https://itunes.apple.com/WebObjects/MZStore.woa/wa/viewPodcast?s=143441&mt=2&id=79681317&at=11l79Y&ct=nprdirectory",
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"rss": "https://feeds.npr.org/510016/podcast.xml"
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},
"marketplace": {
"id": "marketplace",
"title": "Marketplace",
"info": "Our flagship program, helmed by Kai Ryssdal, examines what the day in money delivered, through stories, conversations, newsworthy numbers and more. Updated Monday through Friday at about 3:30 p.m. PT.",
"airtime": "MON-FRI 4pm-4:30pm, MON-WED 6:30pm-7pm",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Marketplace-Podcast-Tile-360x360-1.jpg",
"officialWebsiteLink": "https://www.marketplace.org/",
"meta": {
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"source": "American Public Media"
},
"link": "/radio/program/marketplace",
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},
"masters-of-scale": {
"id": "masters-of-scale",
"title": "Masters of Scale",
"info": "Masters of Scale is an original podcast in which LinkedIn co-founder and Greylock Partner Reid Hoffman sets out to describe and prove theories that explain how great entrepreneurs take their companies from zero to a gazillion in ingenious fashion.",
"airtime": "Every other Wednesday June 12 through October 16 at 8pm (repeats Thursdays at 2am)",
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"officialWebsiteLink": "https://mastersofscale.com/",
"meta": {
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"rss": "https://rss.art19.com/masters-of-scale"
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},
"mindshift": {
"id": "mindshift",
"title": "MindShift",
"tagline": "A podcast about the future of learning and how we raise our kids",
"info": "The MindShift podcast explores the innovations in education that are shaping how kids learn. Hosts Ki Sung and Katrina Schwartz introduce listeners to educators, researchers, parents and students who are developing effective ways to improve how kids learn. We cover topics like how fed-up administrators are developing surprising tactics to deal with classroom disruptions; how listening to podcasts are helping kids develop reading skills; the consequences of overparenting; and why interdisciplinary learning can engage students on all ends of the traditional achievement spectrum. This podcast is part of the MindShift education site, a division of KQED News. KQED is an NPR/PBS member station based in San Francisco. You can also visit the MindShift website for episodes and supplemental blog posts or tweet us \u003ca href=\"https://twitter.com/MindShiftKQED\">@MindShiftKQED\u003c/a> or visit us at \u003ca href=\"/mindshift\">MindShift.KQED.org\u003c/a>",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/Mindshift-Podcast-Tile-703x703-1.jpg",
"imageAlt": "KQED MindShift: How We Will Learn",
"officialWebsiteLink": "/mindshift/",
"meta": {
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"source": "kqed",
"order": 12
},
"link": "/podcasts/mindshift",
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"google": "https://podcasts.google.com/feed/aHR0cHM6Ly9mZWVkcy5tZWdhcGhvbmUuZm0vS1FJTkM1NzY0NjAwNDI5",
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},
"morning-edition": {
"id": "morning-edition",
"title": "Morning Edition",
"info": "\u003cem>Morning Edition\u003c/em> takes listeners around the country and the world with multi-faceted stories and commentaries every weekday. Hosts Steve Inskeep, David Greene and Rachel Martin bring you the latest breaking news and features to prepare you for the day.",
"airtime": "MON-FRI 3am-9am",
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"onourwatch": {
"id": "onourwatch",
"title": "On Our Watch",
"tagline": "Deeply-reported investigative journalism",
"info": "For decades, the process for how police police themselves has been inconsistent – if not opaque. In some states, like California, these proceedings were completely hidden. After a new police transparency law unsealed scores of internal affairs files, our reporters set out to examine these cases and the shadow world of police discipline. On Our Watch brings listeners into the rooms where officers are questioned and witnesses are interrogated to find out who this system is really protecting. Is it the officers, or the public they've sworn to serve?",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/On-Our-Watch-Podcast-Tile-703x703-1.jpg",
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"officialWebsiteLink": "/podcasts/onourwatch",
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"source": "kqed",
"order": 11
},
"link": "/podcasts/onourwatch",
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"google": "https://podcasts.google.com/feed/aHR0cHM6Ly9mZWVkcy5ucHIub3JnLzUxMDM2MC9wb2RjYXN0LnhtbD9zYz1nb29nbGVwb2RjYXN0cw",
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},
"on-the-media": {
"id": "on-the-media",
"title": "On The Media",
"info": "Our weekly podcast explores how the media 'sausage' is made, casts an incisive eye on fluctuations in the marketplace of ideas, and examines threats to the freedom of information and expression in America and abroad. For one hour a week, the show tries to lift the veil from the process of \"making media,\" especially news media, because it's through that lens that we see the world and the world sees us",
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"imageSrc": "https://ww2.kqed.org/radio/wp-content/uploads/sites/50/2018/04/onTheMedia.png",
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"meta": {
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"source": "wnyc"
},
"link": "/radio/program/on-the-media",
"subscribe": {
"apple": "https://itunes.apple.com/us/podcast/on-the-media/id73330715?mt=2",
"tuneIn": "https://tunein.com/radio/On-the-Media-p69/",
"rss": "http://feeds.wnyc.org/onthemedia"
}
},
"pbs-newshour": {
"id": "pbs-newshour",
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"info": "Analysis, background reports and updates from the PBS NewsHour putting today's news in context.",
"airtime": "MON-FRI 3pm-4pm",
"imageSrc": "https://cdn.kqed.org/wp-content/uploads/2024/04/PBS-News-Hour-Podcast-Tile-360x360-1.jpg",
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"source": "pbs"
},
"link": "/radio/program/pbs-newshour",
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"apple": "https://itunes.apple.com/us/podcast/pbs-newshour-full-show/id394432287?mt=2",
"tuneIn": "https://tunein.com/radio/PBS-NewsHour---Full-Show-p425698/",
"rss": "https://www.pbs.org/newshour/feeds/rss/podcasts/show"
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},
"perspectives": {
"id": "perspectives",
"title": "Perspectives",
"tagline": "KQED's series of daily listener commentaries since 1991",
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"officialWebsiteLink": "/perspectives/",
"meta": {
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"order": 14
},
"link": "/perspectives",
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