1,971 research outputs found

    Liquid Oxygen/Liquid Methane Propulsion and Cryogenic Advanced Development

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    Exploration Systems Architecture Study conducted by NASA in 2005 identified the liquid oxygen (LOx)/liquid methane (LCH4) propellant combination as a prime candidate for the Crew Exploration Vehicle Service Module propulsion and for later use for ascent stage propulsion of the lunar lander. Both the Crew Exploration Vehicle and Lunar Lander were part the Constellation architecture, which had the objective to provide global sustained lunar human exploration capability. From late 2005 through the end of 2010, NASA and industry matured advanced development designs for many components that could be employed in relatively high thrust, high delta velocity, pressure fed propulsion systems for these two applications. The major investments were in main engines, reaction control engines, and the devices needed for cryogenic fluid management such as screens, propellant management devices, thermodynamic vents, and mass gauges. Engine and thruster developments also included advanced high reliability low mass igniters. Extensive tests were successfully conducted for all of these elements. For the thrusters and engines, testing included sea level and altitude conditions. This advanced development provides a mature technology base for future liquid oxygen/liquid methane pressure fed space propulsion systems. This paper documents the design and test efforts along with resulting hardware and test results

    NASA Light Emitting Diode Medical Applications from Deep Space to Deep Sea

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    This work is supported and managed through the NASA Marshall Space Flight Center-SBIR Program. LED-technology developed for NASA plant growth experiments in space shows promise for delivering light deep into tissues of the body to promote wound healing and human tissue growth. We present the results of LED-treatment of cells grown in culture and the effects of LEDs on patients’ chronic and acute wounds. LED-technology is also biologically optimal for photodynamic therapy of cancer and we discuss our successes using LEDs in conjunction with light-activated chemotherapeutic drugs

    Recent Decisions

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    IMPLIED WARRANTY OF WORKMANLIKE PERFORMANCE--ONE WHO CONTRACTS TO PROVIDE MARITIME SERVICES IMPLIEDLY AGREES TO PERFORM IN A DILIGENT AND WORKMANLIKE MANNE

    Prospectus, April 12, 1989

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    https://spark.parkland.edu/prospectus_1989/1007/thumbnail.jp

    Constant intraperitoneal 5‐fluorouracil infusion through a totally implanted system

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    Peer Reviewedhttp://deepblue.lib.umich.edu/bitstream/2027.42/109794/1/cptclpt198412.pd

    Prospectus, April 27, 1989

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    https://spark.parkland.edu/prospectus_1989/1009/thumbnail.jp

    Alexa?: Possibilities of Voice Assistant Technology and Artificial Intelligence in the Classroom

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    The following paper represents the combined effort of 10 educators exploring the experience and use of voice assistant technology in classrooms. This reflection and study of our classrooms looks to better understand both our use of technology and students’ use of technology in very specific ways. Is there a place for voice assistant technology in our classrooms? What benefits are there? What obstacles exist? We tell our stories and experiences here with the intent to provide context and continue the discussion among more of our colleagues
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