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Duplicate removing

Reproducing Bioactive Conformations Using Different Duplicate Removal Values... [Pg.194]

Figure 8.5 shows for different values of the duphcate removal parameter - the number of ligands for which the OMEGA conformation reproduces the bioactive conformation. It can be seen that the value of the duplicate removal parameter has a significant effect on the ability to reproduce the experimental bioactive conformation. Low values of the -rms parameter reproduce greater than 65% of the bioactive conformations, whereas for high values the number converges to approximately 30%. [Pg.194]

Fig. 8.5 A graph showing how the number of ligands reproduced varies as a function of the duplicate removal parameter -rms . Fig. 8.5 A graph showing how the number of ligands reproduced varies as a function of the duplicate removal parameter -rms .
All three approaches to isomerism - formal charges, tautomers, and nitrogen configurations - and the duplicate removal are put together in a nested loop as shown in the following piece of pseudocode ... [Pg.276]

The definition of equivalent, while different in a few details, is very similar to the notion of information capacity in Sect. 2.1. One scenario that they tackle is that of view integration. The authors state that their goals are much more pragmatic than some of the existing work as previously discussed [Batini et al. 1986 Biskup and Convent 1986 Casanova and Vidal 1983], take a more theoretical approach. As such, Rosenthal and Reiner concentrate on a usable tool they only detect homonyms and synonyms, and such conflicts are presented to the user for resolution. They then perform a duplicate removing union between the two schemas. No mappings are created between the schemas. [Pg.231]

Cut, add, duplicate, remove, or move part of an image to or from the same image or another image. The image must always be treated as a whole. [Pg.150]

After duplication removal, all the articles found were considered as excluded ones after being screened following these criteria ... [Pg.144]

There are a number of requirements and guidelines in QS-9000 Third Edition that have not been carried over into ISO/TS 16949 in fact 32 notes have been removed. Overall the omissions have no impact as they remove detail without changing the intent of the requirement or remove duplication and explanation. There are some omitted requirements that may have some impact ... [Pg.60]

It is not always practical to duplicate eveiy element of the protection chain. Particularly on lower voltage systems, backup relaying is used. Backup relays are slower than the primary relays and, generally, remove more system elements than may be necessary to clear a fault. They may be installed locally, that is, in the same substation as the primary relays, or remotely. [Pg.417]

The addidon of a second bank of similar coils for additional heat transfer area, either outside or inside the first bank of coils will not provide twice the transfer of heat but the effecdveness is estimated to be 70%-90% of the first bank of duplicate coils (assuming the same heat transfer area per bank) [29]. The additional coils will provide additional baffling therefore, the need for the dimension of the vertical baffles is reduced, or they might be removed entirely. [Pg.330]

As mentioned earlier, flexible hose is available in three pressure ranges low, medium and high. When replacing hoses, it is important to ensure that the replacement hose is a duplicate of the one removed in length, OD, material, type and contour. In selecting hose, several precautions must be observed. The selected hose must ... [Pg.620]

A sufficient number of specimens should be exposed initially to permit their withdrawal from test in appropriate groups, for example 3 to 5 duplicates after at least three time intervals. For long-time tests, a suitable schedule would call for removals after 1, 2, 5, 10 and 20 years. [Pg.1069]

Refinement of a QSPR model requires experimental solubilities to train the model. Several models have used the dataset of Huuskonen [44] who sourced experimental data from the AQUASOL [45] and PHYSPROP [46] databases. The original set had a small number of duplicates, which have been removed in most subsequent studies using this dataset, leaving 1290 compounds. When combined, the log Sw... [Pg.302]

By automation one can remove the variation of the analysis time or shorten the analysis time. Although the variation of the analysis time causes half of the delay, a reduction of the analysis time is more important. This is also true if, by reducing the analysis time, the utilization factor would remain the same (and thus q) because more samples are submitted. Since p = AT / lAT, any measure to shorten the analysis time will have a quadratic effect on the absolute delay (because vv = AT / (LAT - AT)). As a consequence the benefit of duplicate analyses (detection of gross errors) and frequent recalibration should be balanced against the negative effect on the delay. [Pg.618]

Emissions from hazardous waste combustors are regulated under two statutory authorities RCRA and the CAA. The MACT standards set emission limitations for dioxins, furans, metals, particulate matter, total chlorine, hydrocarbons/carbon monoxide, and destruction and removal efficiency (DRE) for organics. Once a facility has demonstrated compliance with the MACT standards by conducting its comprehensive performance test (CPT) and submitting its notification of compliance (NOC), it is no longer subject to the RCRA emission requirements with a few exceptions. RCRA-permitted facilities, however, must continue to comply with their permitted emissions requirements until they obtain modifications to remove any duplicative emissions conditions from their RCRA... [Pg.460]

Abstract. In eukaryotic cells, replicated DNA molecules remain physically connected from their synthesis in S phase until they are separated during anaphase. This phenomenon, called sister chromatid cohesion, is essential for the temporal separation of DNA replication and mitosis and for the equal separation of the duplicated genome. Recent work has identified a number of chromosomal proteins required for cohesion. In this review we discuss how these proteins may connect sister chromatids and how they are removed from chromosomes to allow sister chromatid separation at the onset of anaphase. [Pg.113]


See other pages where Duplicate removing is mentioned: [Pg.193]    [Pg.193]    [Pg.194]    [Pg.276]    [Pg.251]    [Pg.96]    [Pg.39]    [Pg.144]    [Pg.130]    [Pg.193]    [Pg.193]    [Pg.194]    [Pg.276]    [Pg.251]    [Pg.96]    [Pg.39]    [Pg.144]    [Pg.130]    [Pg.53]    [Pg.555]    [Pg.455]    [Pg.793]    [Pg.1687]    [Pg.465]    [Pg.359]    [Pg.144]    [Pg.291]    [Pg.138]    [Pg.660]    [Pg.77]    [Pg.325]    [Pg.176]    [Pg.455]    [Pg.793]    [Pg.418]    [Pg.88]    [Pg.135]    [Pg.199]   
See also in sourсe #XX -- [ Pg.130 ]




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