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  • COMPUTERS  (3)
  • Organic Chemistry  (1)
  • 1970-1974  (4)
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  • 1
    Electronic Resource
    Electronic Resource
    New York, NY : Wiley-Blackwell
    Journal für Praktische Chemie/Chemiker-Zeitung 313 (1971), S. 411-421 
    ISSN: 0021-8383
    Keywords: Chemistry ; Organic Chemistry
    Source: Wiley InterScience Backfile Collection 1832-2000
    Topics: Chemistry and Pharmacology
    Description / Table of Contents: Russian Abstract.
    Abstract: It seems advisable to investigate polycondensation processes extended systematically from low to high conversion by carefully chosen model systems, considering the statistical data available on the processes themselves and the relationship between structure and properties of the resulting polymers. In a previous paper (Rev. Gén. Caoutchouc Plastiques, Éd. Plastiques, 4, (1967) 111) dealing with conventional crosslinking agents, the possibility was suggested to perform polycondensation processes approaching more closely the classical random distribution. This can be achieved with symmetrical monomers having functional groups well spaced out to avoid substitution effects and cyclisation. Cyclisation is also rendered more difficult by greater stiffness of the structure of the monomers. This paper shows by some examples that, in favourable cases, the deviation from the classical random distribution can be reduced to the limits of experimental error, thus enabling the physical properties to be compared with the results of comparatively simple model calculations.
    Notes: Es ist ratsam, Polykondensationsprozesse an äußerst sorgfältig gewählten Modellsystemen zu studieren, und zwar systematisch von niedrigeren nach höheren Umsätzen, und indem man die Kenntnis der Prozesse selbst, der resultierenden Struktur der Produkte, und deren strukturgebundenen physikalischen Eigenschaften gleichzeitig auf statistischer Basis vertieft. In einem früheren Bericht (Rev. Gén. Caoutchouc Plastiques, Éd. Plastiques, 4, 1967, 111) über bekannte organische und anorganische Netzformer wurde auf die Möglichkeit hingewiesen, Polykondensationssysteme zu entwickeln, die den reinen klassischen Zufallsverteilungen in viel besserer Näherung folgen. Hierzu wählt man symmetrische Monomere mit räumlich weit auseinanderliegenden Funktionen, um Substitutionseffekte und Ringschlüsse weitgehend zu vermeiden; weiterhin werden Ringschlüsse auch durch Steifheit der Monomerstruktur sehr erschwert. In diesem Vortrag wird an einigen Beispielen belegt, daß man so tatsächlich die Abweichungen vom klassischen (cyclenfreien) Zufallsmodell in günstigen Fällen erwartungsgemäß bis zur Grenze der Unmeßbarkeit zurückdrängen kann, und daß sich das deshalb lohnt, weil man dann physikalische Eigenschaften der Produkte mit relativ einfachen Modellrechnungen vergleichen kann.
    Additional Material: 7 Ill.
    Type of Medium: Electronic Resource
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  • 2
    Publication Date: 2019-07-13
    Description: The Midas System is a third-generation, fast, multispectral recognition system able to keep pace with the large quantity and high rates of data acquisition from present and projected sensors. A principal objective of the MIDAS Program is to provide a system well interfaced with the human operator and thus to obtain large overall reductions in turn-around time and significant gains in throughput. The hardware and software generated in Phase I of the overall program are described. The system contains a mini-computer to control the various high-speed processing elements in the data path and a classifier which implements an all-digital prototype multivariate-Gaussian maximum likelihood decision algorithm operating at 2 x 100,000 pixels/sec. Sufficient hardware was developed to perform signature extraction from computer-compatible tapes, compute classifier coefficients, control the classifier operation, and diagnose operation. The MIDAS construction and wiring diagrams are given.
    Keywords: COMPUTERS
    Type: NASA-CR-132465 , ERIM-195800-25-F-VOL-3
    Format: application/pdf
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  • 3
    Publication Date: 2019-07-13
    Description: The MIDAS system is a prototype, multiple-pipeline digital processor mechanizing the multivariate-Gaussian, maximum-likelihood decision algorithm operating at 200,000 pixels/second. It incorporates displays and film printer equipment under control of a general purpose midi-computer and possesses sufficient flexibility that operational versions of the equipment may be subsequently specified as subsets of the system.
    Keywords: COMPUTERS
    Type: Conference on Machine processing of remotely sensed data; Oct 16, 1973 - Oct 18, 1973; West Lafayette, IN
    Format: text
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  • 4
    Publication Date: 2019-07-13
    Description: The MIDAS System is a third-generation, fast, multispectral recognition system able to keep pace with the large quantity and high rates of data acquisition from present and projected sensors. A principal objective of the MIDAS Program is to provide a system well interfaced with the human operator and thus to obtain large overall reductions in turn-around time and significant gains in throughout. The hardware and software generated in Phase I of the over-all program are described. The system contains a mini-computer to control the various high-speed processing elements in the data path and a classifier which implements an all-digital prototype multivariate-Gaussian maximum likelihood decision algorithm operating 2 x 105 pixels/sec. Sufficient hardware was developed to perform signature extraction from computer-compatible tapes, compute classifier coefficients, control the classifier operation, and diagnose operation. Diagnostic programs used to test MIDAS' operations are presented.
    Keywords: COMPUTERS
    Type: NASA-CR-132464 , ERIM-195800-25-F-VOL-2
    Format: application/pdf
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