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  • 1
    Publication Date: 2019-07-17
    Description: The coherent Doppler lidar, when operated from an airborne platform, offers a unique measurement capability for study of atmospheric and surface processes and feature. This is especially true for scientific objectives requiring measurements in optically-clear air, where other remote sensing technologies such as Doppler radar are at a disadvantage in terms of spatial resolution and coverage. The atmospheric lidar remote sensing groups of several US institutions, led by Marshall Space Flight Center, have developed an airborne coherent Doppler lidar capable of mapping the wind field and aerosol structure in three dimensions. The instrument consists of about a 1 Joule/pulse (eyesafe) lidar transceiver, telescope, scanner, inertial measurement unit, and operations control system to orchestrate all subsystem functions and tasks. The scanner is capable of directing the expanded lidar beam in a variety of ways, in order to extract vertically resolved wind fields. Horizontal resolution is about 1 km; vertical resolution is even finer. Winds are obtained by measuring backscattered, Doppler-shifted laser radiation from naturally-occurring aerosol particles (on an order of 1 micron in diameter). Measurement coverage depends on aerosol spatial distribution and concentration. Velocity accuracy has been verified to be about 1 m/s. A variety of applications has been demonstrated during the three flight campaigns conducted during 1995-1998. Examples will be shown during the presentation. In 1995, boundary layer winds over the ocean were mapped with unprecedented resolution. In 1996, unique measurements were made of flow over the complex terrain of the Aleutian Islands; interaction of the marine boundary layer jet with the California coastal mountain range; a weak dry line in Texas - New Mexico; an upper tropospheric jet stream; the angular dependence of sea surface scattering; and in-flight radiometric calibration using the surface of White Sands National Monument. In 1998, the first measurements of eyewall and boundary layer winds within a hurricane were made with the airborne Doppler lidar. Potential future applications, and plans for improvements, will also be identified.
    Keywords: Instrumentation and Photography
    Type: Multi/Hyperspectral Sensors, Measurements, Modeling and Simulation; Nov 07, 2000 - Nov 09, 2000; Redstone Arsenal, AL; United States
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  • 2
    ISSN: 0021-9541
    Keywords: Life and Medical Sciences ; Cell & Developmental Biology
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Biology , Medicine
    Notes: A Qβ RNA segment was produced in vitro by means of a synchronized minus-strand-directed synthesis using purified Qβ replicase, a reaction known to yield infectious Qβ RNA. Arguments are presented that a 5.5S product obtained by incubation for 30 seconds at 20°C corresponds to the 5′-terminal region of Qβ RNA. After obtaining and sequencing 26 T1 and 21 pancreatic RNase products, we established 3′ nearest neighbors by using products labeled with only one nucleoside [α-32P]triphosphate at a time. The ordering of the oligonucleotides was facilitated by observing the time of their appearance in products from incubations of 5, 10, 15, 20, and 25 seconds. The enzymatic product consists of 160 nucleotides; no known initiation triplet appears before the sixtieth nucleotide. There is no indication that the coat protein cistron starts within the RNA segment analyzed.
    Additional Material: 5 Ill.
    Type of Medium: Electronic Resource
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