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Threading probability

Probably the largest compound vessels built were two triple-wall vessels, each having a bore diameter of 782 mm and a length of 3048 mm designed for a pressure of 207 MPa (30,000 psi). These vessels were used by Union Carbide Co. for isostatic compaction unfortunately the first failed at the root of the internal thread of the outer component which was required to withstand the end load (40). A disadvantage of compound shrinkage is that, unless the vessel is sealed under open-end conditions, the end load on the closures has to be resisted by one of the components, which means that the axial stress in that component is high. [Pg.84]

In 1836 Jons Jakob Berzelius considered eight seemingly unrelated experimental results and concluded that there was a common thread among them. The commonality he defined as catalysis. In doing tliis, Berzelius proposed that a catalytic force was responsible for catalytic action. The concept of catalysis is today considered by most researchers to be due to Berzelius, probably because of the popularity of his annual Handbook of Chemistiywhere he published his definition of catalytic action. For the next one hundred years many referred to the phenomenon as contact catalysis or contact action, as proposed by Mitscherlich. [Pg.224]

Corrosion of steel by carbonic acid is probably the most common problem in the post-boiler section, producing pipe grooving and general metal wastage, especially in threaded joints. This form of corrosion is not self-regulating and the reaction products can produce more carbon dioxide, thus perpetuating the corrosion problem. Typically, the condensate pH level is depressed to around 5.0 to 5.5. [Pg.512]

The next three chapters deal with the most widely used classes of methods free energy perturbation (FEP) [3], methods based on probability distributions and histograms, and thermodynamic integration (TI) [1, 2], These chapters represent a mix of traditional material that has already been well covered, as well as the description of new techniques that have been developed only recendy. The common thread followed here is that different methods share the same underlying principles. Chapter 5 is dedicated to a relatively new class of methods, based on calculating free energies from nonequilibrium dynamics. In Chap. 6, we discuss an important topic that has not received, so far, sufficient attention - the analysis of errors in free energy calculations, especially those based on perturbative and nonequilibrium approaches. [Pg.523]

The optimized RPLC UV-Vis ESI MS method for all typical blue colourants (indi-goids, hematein, tannins, anthocyanins and selected flavonoids) was used for the identification of dyes extracted from a thread taken from an Italian tapestry of unknown origin from the collection of the National Museum in Warsaw (Poland). It was found that to obtain the red-blue colour of the fibre a mixture of dyestuffs was probably used. The presence of indigotin, tannic and ellagic acid (at m/z 301, NI), as well as carminic acid, suggested the use of indigo and cochineal. Reseda luteola could also have been used due to the presence of luteolin and apigenin. [Pg.383]

Threading essentially entails comparing the sequence of the polypeptide whose three-dimensional structure you wish to predict with the database sequences known to generate specific fold patterns. Computer programs can then be used to estimate the probability of the target sequence adopting each known folding structure. [Pg.29]

Natural fibers go back to prehistoric days. Probably one of the early applications was the conversion of a fiber (possibly wool or cellulose) into thread or rope strong enough to be used in a snare, net, or cage. Literature as far back as the 17th century notes that people attempted to make fibers out of something other than cotton, wool, or flax. The first man-made fiber, known as artificial silk, was made in the 19 th century, when wood pulp was treated with nitric acid. The result was known chemically as cellulose nitrate and (eventually) commercially as Rayon. The commercial name referred to the sheen that has the brilliance of the sun. ... [Pg.369]

The 3 1 LDAO/SDS mixture becomes viscoelastic and rheo-pectic when a small amount of NaCl Is added. Its viscosity shows a reversible Increase with time of shearing at constant shear rate. The rheopectic behavior Is probably due to long thread-like micelles that are aligned parallel to the flow In weakly bound clusters, as In the case of cetyltrlmethyl ammonium bromide and monosubstituted phenol mixed solutions (21). [Pg.137]

In common with the anthocyanins, the colorless and yellow flavonoids are also inducible by numerous, disparate stressors. The best known of these is probably exposure to UV radiation, although flavonoids also accumulate in response to wounding, pathogen infection, high light, chilling, ozone, or nutrient deficiency. Antioxidant protection provides a possible common thread linking all of these different responses. [Pg.409]

The Hi read obtained from a email piece of window-glass, cut with a diamond, presents a very brilliant lustre seen with the miscroscope, it exhibits a flattened form, with four veiy distinct right angles. It is very probable that it owes to this particular form the superiority of its lustre, for the threads obtained from round pieces of glass had always a dull appearance. [Pg.244]

More recently, Harada et al. applied the complexation process to side-chain systems via Method 6 (Figure 10), in which the guest sites were introduced as pendant groups and thereafter the CD was threaded onto them [104, 105]. Different types of hydrocarbon chain as pendant groups were studied for their compatibility with different CDs. As the cyclic was not blocked, the products can be viewed as side-chain poly(pseudo rotaxane)s of Type 9. Probably because of the rapid exchange process between threaded and unthreaded forms, the isolation of the solid-state polyrotaxane was not reported. [Pg.294]

While there are probably other alternatives, these represent the options considered to date—all with some success and some difficulties. But all of these options and perhaps other available choices share one common thread they result in increasing pressure on the Agency. The effects of that pressure are most likely to be seen in the review of submissions, where rationed resources result in delayed reviews, in rejections for trivial reasons, and for demands for lengthy additional studies and documents of limited value. [Pg.359]


See other pages where Threading probability is mentioned: [Pg.1722]    [Pg.1722]    [Pg.721]    [Pg.336]    [Pg.337]    [Pg.353]    [Pg.354]    [Pg.420]    [Pg.535]    [Pg.1114]    [Pg.371]    [Pg.122]    [Pg.241]    [Pg.378]    [Pg.846]    [Pg.19]    [Pg.138]    [Pg.254]    [Pg.48]    [Pg.353]    [Pg.1230]    [Pg.351]    [Pg.254]    [Pg.620]    [Pg.2]    [Pg.112]    [Pg.196]    [Pg.268]    [Pg.286]    [Pg.607]    [Pg.428]    [Pg.38]    [Pg.188]    [Pg.659]    [Pg.689]    [Pg.18]    [Pg.131]    [Pg.305]    [Pg.31]   
See also in sourсe #XX -- [ Pg.2 ]




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