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Loading, significance

Cyclic loading significantly reduces the amount of allowable stress a material can withstand. If data are not available on the endurance limit of a material being considered for use, a percentage of its tensile strength can... [Pg.84]

It was also demonstrated that the reduced surface activity of the protein did not affect the protein loading significantly (see Table 3.1 in chapter 3) (Semenova et al., 1999a,b), or at the very least only slightly reduced it (Jourdain et al., 2008, 2009). That is, for sodium caseinate (0.5 wt%) + dextran sulfate (1 wt%), the lower surface activity of the... [Pg.268]

One way to utilize a stabilizer Is illustrated In Figure 5, which is simply the Figure 4 process with the liquids from K and 4 diverted to a stabilizer. The stabilizer could be either refluxed or cold-feed, as a further variation. This process reduces the recycle load significantly in the two lower compression stages, as compared to the previous processes. This process also provides an additional control for the crude oil vapor pressure which can be independently varied, since the fractionator split can be controlled and the fractionator bottom product is blended with the crude stream. It may be desirable to blend this stream into separator 1... [Pg.82]

Although the inclusion of noise was found to be important for the correct normalization of MSI datasets (35,36), the full data load hampers subsequent statistical analyses (38). The removal of noise signals not only reduces the data load significantly but also aids the semantic interpretation of mass... [Pg.170]

At this point in the protocol our example athlete has increased weight-loads significantly and drop the rep count to triples and singles. This means the need for the best connection possible between the brain and muscles should be accentuated by the chemistry employed. [Pg.104]

This property is an important consideration in the design of parts from fluoroplastics because they deform substantially over time when subjected to load. Metals similarly deform at elevated temperatures. Creep (also called cold flow) is defined as the total deformation under stress after a period of time, beyond the instantaneous deformation upon the application of load. Significant variables that affect creep are chemical structure of resin, load, time under load, and temperature. Creep is measured under various conditions tensile, compressive, and torsional. [Pg.69]

In the VARIMAX rotated factor solution, the variables Xg X5 Xio load significantly on Factor 1 (FI) named Asset intensity the variables X4 X3 Xi, Xg load significantly on Factor 2 (F2) named Labor intensity the variables Xn X load significantly on Factor 3 (F3) named De-structuration , and the variables X2, Xg load significantly on Factor 4 (F4) named Flexibility and produetion potential. ... [Pg.37]

Specified Level of Toxicity Dangerous Toxic Load Significant Likelihood of Death Dangerous Toxic Load (SLOT-DTLs, SLOD-DTLs). They describe the conditions of exposition in sence of concentration in the air and exposition time which could create certain level of toxicity in majority of population. Exposition time is not given, but it is expressed by equation, which enables the calculation of concentration. (HSE 1993)... [Pg.884]

When the aggregate layer is subjected to loads, significant local stresses are created in the separator. The separator must therefore be of sufficient strength to withstand these stresses. The bursting strength, localised tensile strength properties, and puncture resistance are of specific importance to the separation function. [Pg.267]

PEG loading significantly enhanced the local dipolarity surrounding the average pyrene molecules. The results show that PEG doping can be used to tune the sol-gel-processed composite dipolarity, alter the mobility of dopants sequestered within the composite, control the analyte accessibility to the sensing chemistry, and modulate the internal dynamics within a biodopant. [Pg.465]

The bonded joints between typical thin structural elements have an extensive capability to tolerate the load redistribution that is caused by local flaws and porosity with no loss whatever in strength or durability. This derives from the same minimum overlaps needed to provide resistance to creep rupture that were discussed earlier. Figs. 26-29, taken from ref. [19], address this issue in the context of the longitudinal skin splices in the PABST forward fuselage, where the thickness was 0.050 inch of 2024-T3 aluminum alloy. Fig. 27 shows the adhesive stress distribution at room temperature for a load of 1000 Ibs./in., which corresponds with a 1.3 x P proof pressure load. Significantly, this load does not even exceed the elastic capability of the adhesive for this environment. [Pg.759]

In a double-blind study, Schaefe et al., using intravenous L-ARG hydrochloride salt, found that the ARG load significantly decreased peak plasma armnonia and... [Pg.292]


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See also in sourсe #XX -- [ Pg.21 , Pg.32 , Pg.58 , Pg.358 , Pg.360 , Pg.384 ]




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