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Residual system

Residual SYSTEM PEAKING Normal Max. Load of short duration 1/10 ... [Pg.438]

Main Drain - a flow of the main drain is accomplished which provides an estimate of the residual system water pressure for the system. Condition of the water will also confirm if supplies are clean and dries free. [Pg.258]

According to the vendor, full-scale processes have been employed to remediate depleted uranium and uranium process residues. Systems have also been designed for treatment of natural uranium-contaminated materials. Processes for the treatment of materials contaminated with multiple heavy metals have been designed and demonstrated. RIMS was unable to determine the commercial availability of this technology. [Pg.754]

Flush the system to remove dust and major debris. Recirculate detergent or alkali cleaner at elevated temperatures to remove grease or oil. Flush and recirculate an acid at elevated temperatures to dissolve any ferrous particles in the system. Flush with water of the same quality as will be used in service. The cleaning procedure shall be validated by making chemical analysis of surface residues. System functional checkout... [Pg.211]

Morse, R.D. 1999. No-till vegetable production - its time is now. EbortTechnology 9 373-379. Morse, R.D. 2000. High-residue systems for production of organic broccoli. In Bollich, P.A. [Pg.91]

In very degraded ash the residual system of compound middle lamellae seems to be quite strong. It may be distorted by physical impact on the wood, but mostly there will be fewer ruptures than in comparable oak (Figure 22). [Pg.53]

In this transition zone we find secondary cell walls that take up blue stain, which indicates that they are strongly swollen. But evidently this state does not last very long. Breakdown of carbohydrates seems to set in immediately, with a detached granular lignin skeleton left behind (Figure 27). This thorough degradation starts at the lumen and comprises the whole secondary cell wall (S2 and Sj). The residual system of compound middle lamellae is very frail and brittle and is easily ruptured. [Pg.56]

Determuiing the individual state probabilities results in the calculation of the nominal and residual system... [Pg.1526]

In the maximum-likelihood method used here, the "true" value of each measured variable is also found in the course of parameter estimation. The differences between these "true" values and the corresponding experimentally measured values are the residuals (also called deviations). When there are many data points, the residuals can be analyzed by standard statistical methods (Draper and Smith, 1966). If, however, there are only a few data points, examination of the residuals for trends, when plotted versus other system variables, may provide valuable information. Often these plots can indicate at a glance excessive experimental error, systematic error, or "lack of fit." Data points which are obviously bad can also be readily detected. If the model is suitable and if there are no systematic errors, such a plot shows the residuals randomly distributed with zero means. This behavior is shown in Figure 3 for the ethyl-acetate-n-propanol data of Murti and Van Winkle (1958), fitted with the van Laar equation. [Pg.105]

Figure 6-3. Residuals for the system ethyl acetate(1)-n-propanol(2) at eooc. Data of Murti and van Winkle, 1958. Figure 6-3. Residuals for the system ethyl acetate(1)-n-propanol(2) at eooc. Data of Murti and van Winkle, 1958.
In many process-design calculations it is not necessary to fit the data to within the experimental uncertainty. Here, economics dictates that a minimum number of adjustable parameters be fitted to scarce data with the best accuracy possible. This compromise between "goodness of fit" and number of parameters requires some method of discriminating between models. One way is to compare the uncertainties in the calculated parameters. An alternative method consists of examination of the residuals for trends and excessive errors when plotted versus other system variables (Draper and Smith, 1966). A more useful quantity for comparison is obtained from the sum of the weighted squared residuals given by Equation (1). [Pg.107]

Adsorption. Some organics are not removed in biological systems operating under normal conditions. Removal of residual organics can be achieved by adsorption. Both activated carbon and synthetic resins are used. As described earlier under pretreatment methods, regeneration of the activated carbon in a furnace can cause carbon losses of perhaps 5 to 10 percent. [Pg.319]

Using the equilibrium equations of the elasticity theory enables one to determine the stress tensor component (Tjj normal to the plane of translumination. The other stress components can be determined using additional measurements or additional information. We assume that there exists a temperature field T, the so-called fictitious temperature, which causes a stress field, equal to the residual stress pattern. In this paper we formulate the boundary-value problem for determining all components of the residual stresses from the results of the translumination of the specimen in a system of parallel planes. Theory of the fictitious temperature has been successfully used in the case of plane strain [2]. The aim of this paper is to show how this method can be applied in the general case. [Pg.132]

Using flaw visuahzation system data the strength and fracture mechanics estimations are carried out in accordance with defect assessment regulatory procedure M-02-91 [5]. Recently, the additions had been included in the procedure, concerning interpretation of expert flaw visualization sysf em data, computer modelling, residual stresses, in-site properties of metal, methods of fracture analysis. [Pg.196]

While with-in the mobile x-ray system, the waste in the sampler, is contained within a replaceable (and disposable) polyvinyl chloride (PVC) sleeve with a wall thickness of approximately 0.2-inches and a sealed bottom. It was anticipated that the PVC tube or sleeve would, with use, become highly contaminated with waste residues which drip of fall-off the sampler. The sleeve is coated with a conductive coating to prevent static electricity buildup . There are no sources of ignition in this sealed spare. The sampler (and waste) is coupling which includes a positive pressure gasket. This barrier is further isolated by a second barrier consisting of an epoxy coated aluminum sleeve also sealed-off from the main x-ray cabinet and PVC sleeve. There are also no potential sources of ignition in this isolated secondary space as well. [Pg.611]

Here a - surface tension pa - atmospheric pressure 9 - contact angle of crack s wall wetting by penetrant n - coefficient, characterizing residual filling of defect s hollow by a penetrant before developer s application IT and h - porosity and thickness of developer s layer respectively W - minimum width of crack s indication, which can be registered visually or with the use of special optical system. The peculiarity of the case Re < H is that the whole penetrant volume is extracted by a developer. As a result the whole penetrant s volume, which was trapped during the stage of penetrant application, imbibes developer s layer and forms an indication of a defect. [Pg.614]

A process involving combined corrosion and straining of the metal due to residual or applied stresses. The occurrence of stress corrosion cracking is highly specific only particular metal/environment systems will crack. [Pg.2733]

However, this procedure depends on the existence of the matrix G(R) (or of any pure gauge) that predicates the expansion in Eq. (90) for a full electronic set. Operationally, this means the preselection of a full electionic set in Eq. (129). When the preselection is only to a partial, truncated electronic set, then the relaxation to the truncated nuclear set in Eq. (128) will not be complete. Instead, the now tmncated set in Eq. (128) will be subject to a YM force F. It is not our concern to fully describe the dynamics of the truncated set under a YM field, except to say (as we have already done above) that it is the expression of the residual interaction of the electronic system on the nuclear motion. [Pg.157]

Prediction of pKaS of Titratable Residues in Proteins Using a Poisson-Boltzmann Model of the Solute-Solvent System... [Pg.176]

The procedure is computationally efficient. For example, for the catalytic subunit of the mammalian cAMP-dependent protein kinase and its inhibitor, with 370 residues and 131 titratable groups, an entire calculation requires 10 hours on an SGI 02 workstation with a 175 MHz MIPS RIOOOO processor. The bulk of the computer time is spent on the FDPB calculations. The speed of the procedure is important, because it makes it possible to collect results on many systems and with many different sets of parameters in a reasonable amount of time. Thus, improvements to the method can be made based on a broad sampling of systems. [Pg.188]


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Diffusion systems residues

Equality linear system, residuals

Failure Prognosis for Hybrid Systems Based on ARR Residuals

Hydrogen Production from Residual Oil Using Steam-Iron System

Nonideal systems residue curve maps

Normal Residual Heat Removal System

Passive residual heat removal system

Passive residual heat removal system PRHRS)

Pressurized water reactors residual heat removal system

Residual heat removal system

Residue Curves for Heterogeneous Systems

Residue Curves for Ternary Systems

Residue Violation Information System

Residue curve maps reactive systems

Residue curve maps ternary systems

Residue number system

Residue separation system

Safety injection/residual heat removal system

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