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    "title": "UC Berkeley Assembles Upcoming COSI Mission",
    "description": "Engineers Bradley Pafchek and Matt Rubly examine the COSI (Compton Spectrometer and Imager) detector assembly at Space Sciences Laboratory on July 15, 2026. COSI is an upcoming spacecraft that will measure gamma rays, the highest-energy form of light, to help scientists study energetic phenomena in the Milky Way and beyond.  Credit: UC Berkeley/Alan Toth Alt text: Two people examine the COSI detector assembly.Image description: Two people stand on yellow step ladders and lean over to examine a small gold box. The box is centered inside the top of a hexagonal white frame. A larger hexagonal silver and black box extends from the bottom of the frame. The person on the left wears a blue cleanroom suit, and the one on the left wears a white one. They both wear hairnets, masks, gloves, and shoe covers. A floor-to-ceiling plastic sheet separates the back of the room, which is full of metal shelving and boxes. || COSI_2026July_19_half_print.jpg (1024x682) [223.9 KB] || COSI_2026July_19.jpg (5000x3333) [4.6 MB] || COSI_2026July_19_half.jpg (2500x1667) [576.0 KB] || ",
    "release_date": "2026-08-31T10:00:00-04:00",
    "update_date": "2026-09-07T11:57:06-04:00",
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        "alt_text": "Rubly uses a laser to check the alignment of the COSI detectors on June 15, 2026.  Credit: UC Berkeley/Alan Toth Alt text: A person works on the COSI detector. Image description: A person in a blue cleanroom suit, gloves, mask, and hairnet adjusts a laser pointed at a stack of white and silver squares in a laboratory. The stack sits on a gold base on top of a blue and white frame.",
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            "description": "Engineers Bradley Pafchek and Matt Rubly examine the COSI (Compton Spectrometer and Imager) detector assembly at Space Sciences Laboratory on July 15, 2026. COSI is an upcoming spacecraft that will measure gamma rays, the highest-energy form of light, to help scientists study energetic phenomena in the Milky Way and beyond. <p> <p>Credit: UC Berkeley/Alan Toth<p> <p>Alt text: Two people examine the COSI detector assembly.<p><p>Image description: Two people stand on yellow step ladders and lean over to examine a small gold box. The box is centered inside the top of a hexagonal white frame. A larger hexagonal silver and black box extends from the bottom of the frame. The person on the left wears a blue cleanroom suit, and the one on the left wears a white one. They both wear hairnets, masks, gloves, and shoe covers. A floor-to-ceiling plastic sheet separates the back of the room, which is full of metal shelving and boxes. ",
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            "description": "The upcoming COSI spacecraft is a wide-field gamma-ray telescope that will study energetic phenomena in the Milky Way and beyond, including the creation and destruction of matter and antimatter and the final stages of the lives of stars.<p><p>The images here show engineers at the University of California, Berkeley assembling flight instrumentation at the Space Sciences Laboratory during summer 2026.<p><p>The mission, part of NASA’s Astrophysics Explorers program, is a collaboration between UC Berkeley’s Space Sciences Laboratory; the Naval Research Laboratory; NASA's Goddard Space Flight Center; the University of California, San Diego; Northrop Grumman; the University of Utah’s Space Dynamics Laboratory; the Italian Space Agency; and many other research institutions.",
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            "description": "UC Berkeley engineers Pafchek and Rubly watch as the COSI detector assembly is slowly raised from a table on July 8, 2026, alongside Smith, Hannah Goldberg (payload manager), and John Grinold (mission assurance manager). The four pieces of silver material on the top of the detector box cover the flex circuits, which carry signals from the detectors to the readout electronics. John Tomisck, COSI’s principal investigator, and project systems engineer Ellen Taylor watch from the window. <p> <p>Credit: UC Berkeley/Alan Toth<p> <p>Alt text: A group of people watch the COSI detector. <p> <p>Image description: A group of five people wearing cleanroom suits, hairnets, and masks watch a small gold and silver box suspended by a small crane in a laboratory. In the background, slightly out of focus, two more people watch through a window. Next to the window is a large decal of the COSI mission patch. <p>",
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            "page_type": "Produced Video",
            "title": "NASA Launches Super-Pressure Balloon",
            "description": "NASA successfully launched a super pressure balloon (SPB) from Wanaka Airport, New Zealand, at 11:35 a.m. Tuesday, May 17, (7:35 p.m. EDT Monday, May 16) on a potentially record-breaking, around-the-world test flight.The balloon flies at an altitude of about 110,000 feet, in a layer of Earth's atmosphere known as the stratosphere.The purpose of the flight is to test and validate the SPB technology with the goal of long-duration flight (100+ days) at mid-latitudes. In addition, the gondola is carrying the Compton Spectrometer and Imager (COSI) gamma-ray telescope as a mission of opportunity.Another mission of opportunity is the Carolina Infrasound instrument, a small, 3-kilogram payload with infrasound microphones designed to record acoustic wave field activity in the stratosphere. Developed by the University of North Carolina at Chapel Hill, previous balloon flights of the instrument have recorded low-frequency sounds in the stratosphere, some of which are believed to be new to science.As the balloon travels around the Earth, it may be visible from the ground, particularly at sunrise and sunset, to those who live in the southern hemisphere’s mid-latitudes, such as Argentina and South Africa.NASA’s scientific balloons offer low-cost, near-space access for conducting scientific investigations in fields such as astrophysics, heliophysics and atmospheric research.NASA’s Wallops Flight Facility in Virginia manages the agency’s scientific balloon flight program with 10 to 15 flights each year from launch sites worldwide. Orbital ATK, which operates NASA’s Columbia Scientific Balloon Facility in Palestine, Texas, provides mission planning, engineering services and field operations for NASA’s scientific balloon program. The CSBF team has launched more than 1,700 scientific balloons in the over 35 years of operation.Track the flight's progress in real-time here. || ",
            "release_date": "2016-05-19T19:00:00-04:00",
            "update_date": "2020-01-23T07:20:21-05:00",
            "main_image": {
                "id": 424144,
                "url": "https://svs.gsfc.nasa.gov/vis/a010000/a012200/a012262/YOUTUBE_HQ-12262_Balloons1080_youtube_hq.00001_print.jpg",
                "filename": "YOUTUBE_HQ-12262_Balloons1080_youtube_hq.00001_print.jpg",
                "media_type": "Image",
                "alt_text": "Complete transcript available.Watch this video on the NASA Goddard YouTube channel.Music credits: The Answer by Laurent Levesque in the KillerTracks catalog.",
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                "height": 576,
                "pixels": 589824
            }
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