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Maxcy, R.B.; Tiwari, N.P.; Anagnostis, C.C.
Nebraska Univ., Lincoln (USA). Dept. of Food Science and Technology1971
Nebraska Univ., Lincoln (USA). Dept. of Food Science and Technology1971
AbstractAbstract
No abstract available
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Source
May 1971; 38 p
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Report
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Redman, H.C.; Pratt, O.R. Jr.; Goodrich, R.M.
Lovelace Foundation for Medical Education and Research, Albuquerque, N.Mex. (USA)
Fission product inhalation program1971
Lovelace Foundation for Medical Education and Research, Albuquerque, N.Mex. (USA)
Fission product inhalation program1971
AbstractAbstract
No abstract available
Primary Subject
Source
Lovelace Foundation for Medical Education and Research, Albuquerque, N.Mex. (USA); p. 223-226; Nov 1971
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Report
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AbstractAbstract
No abstract available
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Oct 1971; 28 p; ISBN 8755001068; 

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Report
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Progress Report
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AbstractAbstract
No abstract available
Original Title
Anemija prasadi u svetlosti novijih istrazivanja
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Source
English and Russian abstract.
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Journal Article
Literature Type
Progress Report
Journal
Veterinarski Glasnik; v. 25(1); p. 7-13
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AbstractAbstract
No abstract available
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p. 357-377; Oct 1971
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Report
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Fabrikant, J.I.
Connecticut Univ., Farmington. Dept. of Radiology
Connecticut Univ., Farmington. Dept. of Radiology
AbstractAbstract
No abstract available
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Source
nd; 13 p
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Report
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AbstractAbstract
No abstract available
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Journal Article
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Canadian Journal of Animal Science; v. 51(1); p. 103-110
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AbstractAbstract
No abstract available
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Journal Article
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Progress Report
Journal
Radiological Health Data and Reports; v. 11 p. 527-531
Country of publication
FOOD, ANIMALS, BODY, CESIUM 137, DEER, DIET, FOOD CHAIN, FUNGI, MAN, MEAT, NORTH AMERICA, QUANTITY RATIO, USA, VERTEBRATES
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AbstractAbstract
No abstract available
Original Title
Transfert de la pollution a l'homme
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Journal Article
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Nuisances Environ; (no.6); p. 33-40
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AbstractAbstract
[en] Inspired by sensing strategies observed in birds and bats, a new attitude control concept of directly using real-time pressure and shear stresses has recently been studied. It was shown that with an array of onboard airflow sensors, small unmanned aircraft systems can promptly respond to airflow changes and improve flight performances. In this paper, a mapping function is proposed to compute aerodynamic moments from the real-time pressure and shear data in a practical and computationally tractable formulation. Since many microscale airflow sensors are embedded on the small unmanned aircraft system surface, it is highly possible that certain sensors may fail. Here, an adaptive control system is developed that is robust to sensor failure as well as other numerical mismatches in calculating real-time aerodynamic moments. The advantages of the proposed method are shown in the following simulation cases: (i) feedback pressure and wall shear data from a distributed array of 45 airflow sensors; (ii) 50% failure of the symmetrically distributed airflow sensor array; and (iii) failure of all the airflow sensors on one wing. It is shown that even if 50% of the airflow sensors have failures, the aircraft is still stable and able to track the attitude commands. (paper)
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Source
Available from http://dx.doi.org/10.1088/1748-3182/9/4/046015; Country of input: International Atomic Energy Agency (IAEA)
Record Type
Journal Article
Journal
Bioinspiration and Biomimetics (Online); ISSN 1748-3190;
; v. 9(4); [13 p.]

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