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41.
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We compute the temperature dependent magnetic susceptibility of the single-impurity, two-channel Anderson model with an alternative multi-step numerical renormalization-group transformation, previously applied only to the two-impurity single-channel Kondo model. Compared with the traditional transformation, the new procedure requires substantially less memory and computational time, and opens therefore perspectives for the application of the numerical renormalization-group procedure to more complex Hamiltonians.  相似文献   
43.
Weldable primers are thin zinc-rich organic coatings that are weldable due to the electrical conductivity provided by the zinc dust. They are used in the automotive industry to provide corrosion protection in regions of difficult access. The zinc particles are highly susceptible to corrosion attack and, due to the small thickness, the protection conferred by these systems is limited.  相似文献   
44.
In order to reduce the cost, size, and weight of power electronic systems, it has become necessary to integrate electromagnetic structures, which until now have been constructed with discrete components. This approach not only reduces the component count, but also gives much greater control over parasitic elements. In this article, the authors describe an electromagnetically integrated resistor-capacitor-diode (RCD) snubber/voltage clamp that uses a planar construction technique. The design and construction are described and the performance is verified experimentally. Some advantages of the integrated component over its discrete counterpart are also given  相似文献   
45.
Quasistatic error sources, which include thermal, mechanical loading and geometric error sources, are responsible for a very large proportion (typically, 70%) of the volumetric errors of a numerically controlled machine-tool. This paper, the first in a set of three, discusses the development of a very general model for the effects of geometric errors of the components of the kinematic chain (structural members and axes) of a machine on the volumetric errors in the work space. The effects of the other two sources are modeled as changes in the geometric error. The generality of the model arises from the fact that the errors along an axis of the machine can be characterized by any polynomial functions and the model is recursive in the order of these polynomials. This model can be used as the basis of a compensation scheme as well as in budgeting of errors on a machine-tool.  相似文献   
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Given that normal individuals maintain significant levels of serum autoantibodies that share many characteristics with those found in association with autoimmune diseases (AID), it has been proposed that disease could result from defects in supraclonal regulation, namely deviations of normal patterns of immunoglobulin (Ig) connectivity. Using conventional methods, together with a recently developed technique to quantitatively score a variety of V-region-dependent serum IgG interactions, the authors have now compared serum Ig connectivity in a group of patients with systemic lupus erythematosus (SLE) to healthy controls. The results demonstrate the existence of V-region interactions of serum IgG and IgM in SLE patients and healthy donors, with comparable connectivity titres, diversity and average affinities (microM range), but a wider individual variation and a tendency for higher F(ab')2 directed reactivities in the group of SLE patients. Multivariate statistics analysis of the data derived from reactivity patterns on F(ab')2 subsets, however, distinguished the two groups of donors, and demonstrated a larger dispersion and wider time-dependent variations in the patient population, as compared to healthy controls. The authors conclude that SLE is associated with circulating antibody repertoires that deviate from the patterns and levels of V-region connectivity characteristic of healthy individuals. These findings may shed light on the mechanisms of disease maintenance, and on the basis for the therapeutic effects of normal polyclonal Igs at high doses.  相似文献   
48.
The ability of fermentative CO2 to blow off the volatile compounds that are synthesized during fermentation has been studied. Model solutions simulating a fermenting must were purged at different CO2 flow rates and temperatures, and the amount of volatile compounds blown off by the stream of CO2 was recorded by high-resolution gas chromatography. Data showed that under normal fermenting conditions, fatty acid ethyl esters and some fusel alcohol acetates are blown off the solution at a high rate. The maximum loss rate was observed for ethyl decanoate. The purging speed is doubled when temperature increases from 17 °C to 27 °C. Losses can be interpreted by a linear model and are a function of the compound and the flow rate of CO2. These models allow us to reconstruct the volatile synthesis vs time functions through graphic calculus and to estimate the proportion of volatile material retained, hydrolysed and purged. Synthesis takes place during the tumultuous period of fermentation together with CO2 production that blows off the volatile material. Hydrolysis takes place in the last stages of fermentation. In a 10-1 open fermenter, up to 80% of volatile material can be blown off while an average of 10% is retained. Residual esterase activity accounts for about 20% of the total amount of ester synthesized.  相似文献   
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Nutrient Cycling in Agroecosystems - In grass-legume pastures, grazing management strategies are an essential factor affecting nitrogen (N) cycling. This study assessed the impact of grazing...  相似文献   
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