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  • Engineering (General); Lunar and Planetary Science and Exploration  (1)
  • α-Globin domain  (1)
  • 1
    Electronic Resource
    Electronic Resource
    Springer
    Molecular genetics and genomics 242 (1994), S. 649-652 
    ISSN: 1617-4623
    Keywords: α-Globin domain ; Hypersensitive sites ; Locus control region ; Chromatin structure
    Source: Springer Online Journal Archives 1860-2000
    Topics: Biology
    Notes: Abstract The distribution of DNase I hypersensitive sites upstream of the chicken α-globin gene cluster was studied. A group of hypersensitive sites with a complex pattern of tissue specificity, including erythroid-specific elements, was found at a distance of 11.5–14.5 kb upstream of the π gene, the first gene in the cluster. The observations indicate that this area, located upstream of the block of AT-rich sequences and MAR sites (at −8 kb) and upstream of the site of permanent DNA attachment to the nuclear matrix (−3 kb), still belongs to the domain of the α-globin genes.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2019-07-13
    Description: A semi-intelligent excavation mechanism was developed for use with the NASA-built Centaur 2 rover prototype. The excavator features a continuously rotatable large bucket supported between two parallel arms, both of which share a single pivot axis near the excavator base attached to the rover. The excavator is designed to simulate the collection of regolith, such as on the Moon, and to dump the collected soil into a hopper up to one meter tall for processing to extract oxygen. Because the vehicle can be autonomous and the terrain is generally unknown, there is risk of damaging equipment or using excessive power when attempting to extract soil from dense or rocky terrain. To minimize these risks, it is critical for the rover to sense the digging forces and adjust accordingly. It is also important to understand the digging capabilities and limitations of the excavator. This paper discusses the implementation of multiple strain gages as an embedded force measurement system in the excavator's arms. These strain gages can accurately measure and resolve multi-axial forces on the excavator. In order to validate these sensors and characterize the load capabilities, a series of controlled excavation tests were performed at Glenn Research Center with the excavator at various depths and cut angles while supported by a six axis load cell. The results of these tests are both compared to a force estimation model and used for calibration of the embedded strain gages. In addition, excavation forces generated using two different types of bucket edge (straight vs. with teeth) were compared.
    Keywords: Engineering (General); Lunar and Planetary Science and Exploration
    Type: GRC-E-DAA-TN14394 , Earth and Space 2012 Conference; Apr 15, 2012 - Apr 18, 2012; Pasadena, CA; United States
    Format: application/pdf
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