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Titlebook: Advances in Nuclear Science and Technology; Volume 14 Sensitivit Jeffery Lewins,Martin Becker Book 1982 Plenum Press, New York 1982 Cross s

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期刊全稱Advances in Nuclear Science and Technology
期刊簡稱Volume 14 Sensitivit
影響因子2023Jeffery Lewins,Martin Becker
視頻videohttp://file.papertrans.cn/150/149270/149270.mp4
圖書封面Titlebook: Advances in Nuclear Science and Technology; Volume 14 Sensitivit Jeffery Lewins,Martin Becker Book 1982 Plenum Press, New York 1982 Cross s
影響因子We have pleasure in presenting Volume Fourteen to our readers. Volume Fourteen signifies a new dimension for our series, a volume devoted to the development of a single timely topic, that of sensitivity to uncertainty. This is still a broad topic and has been treated as such by the se- veral distinguished authors contributing to the volume from their extensive experience both in theory and practice. While the theme running through the volume emphasizes uncertainties in areas related to reactor physics, it is true to say that this field of application has much to offer other disciplines as well. Some of the authors are engaged in ex- tensions to other areas. The volume may therefore appeal to a much wider audience who will appreciate a single and compre- hensive overview of a methodology that is applicable to other fields. Notable developments in the field of nuclear engineering have included the formatting in recent versions of Evaluated Nuclear Data Files (e.g., ENDF/B and its variants) of cross- section uncertainty, the general acceptance of good practice in the representation of error correlation matrices, and more recent developments in the application of Monte Carlo tech- niqu
Pindex Book 1982
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https://doi.org/10.1007/978-981-10-6974-1he calculation. The effects of these uncertainties cannot be fully circumvented by comparing computed results against those from integral experiments. This chapter summarizes the techniques developed to estimate and codify nuclear data uncertainty. A chief point of reference will be the fifth versio
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Why Equity in Compensation Matters, the level of a single fuel pin to that of the entire reactor. The behavior of the neutrons is formally governed by the Boltzmann equation (.). This equation is so complicated that there is no possibility of obtaining exact solutions, but for the most highly idealized situations. As a result, much e
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https://doi.org/10.1007/978-1-4614-1912-9ear transformation functions expressing the relative change in reactor performance parameters due to a relative change in nuclear data or design parameters. In this chapter we present the mathematical basis for sensitivity functions, discuss their physical meaning and information they contain, and c
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Motion Compensation in Robotic Radiosurgery,alculation of performance parameters of a reactor design model. These types of data include benchmark integral experiment values and covariances as discussed in Chapter 4, differential nuclear data and covariances as discussed in Chapter 2, a calculation of biases and covariances as presented in Cha
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Hideki Ishibashi,Chihara Watanabee preceding chapters, we are very near the stage wherein certain static reactor problems could be analyzed systematically, taking into account uncertainties in the data base, in the methods used, and results from integral experiments. This stage, however, is not the ultimate goal; additional develop
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https://doi.org/10.1007/978-1-4613-3461-3Cross section; development; experiment; fields; information; nuclear engineering; physics; spectra; structur
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