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The investigation of essential numerical characteristics of the method is concluded by the simulation of an unstable zonal jet.
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Input data type and statistical prediction method are concluded to remain the two most crucial factors for the quality of remote sensing-assisted biomass models.
Advantages of both methods are concluded and suggestions are given on how to choose control algorithm for different purpose.
The previously reported differences between these two methods are minor, and the methods were concluded to be equivalent for neuro-signals (Quian Quiroga et al. 2002).
The limit of clinical relevance was set to 0.7, and agreement between both methods was concluded when the 95% confidence interval (CI) for the agreement rate was positioned above 0.7.
The isotope method compares well with the dynamic method and, from the comparison with the sulphite method, it is concluded that the sulphite method gives an overestimation of kla which can not be explained solely by reduced coalescence due to the electrolyte.
Following a detailed quantitative comparison with the discrete velocity method, it is concluded that the integro-moment method may be considered as a alternative reliable and efficient computational scheme for solving rarefied (or non-equilibrium) flows in the whole range of the Knudsen number.
At last, effects of feed ratio on flange wrinkling are analyzed by this method, it is concluded that the decrease of the circumferential compressive stresses distributed in the flange caused by low feed ratio reduces the risk of flange wrinkling.
In view of the central importance of the Weibull distribution for wind problems, and the poor performance of the GPD method, it is concluded that it should not be used to derive design loads.
In the corner compensation method, it is concluded that <100> beam is appropriate choice for the formation of sharp convex corner in high concentration TMAH (e.g. 20 25 wt%) and KOH provided space around the convex corner is not a restriction.
Based on the literature data of FTTT (Fracture Toughness Transition Temperature) calibrated by Master Curve method, it is concluded that EUROFER97 at the envisaged maximum dose of 6 dpa will have to be operated above 180 °C taking the embrittlement due to helium production into account.
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