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Deletion process

Plant raw data PROCESS with raw data Reconciled data without bias deletion Linear reconciliation with bias deletion Nonlinear reconciliation with bias deletion PROCESS with nonlinear reconciliation... [Pg.266]

The algorithm comes to a stop when either (a) a non-Kekulean condition is reached then H is non-Kekulean, or (b) all vertices of H are deleted in this case H is Kekulean. If H is recognized as Kekulean, we recall the deleting process if we delete two end vertices of an edge, then the edge is considered as a double bond, and in this way we can constitute a Kekule structure of H. [Pg.218]

The efficiency of expanded ensemble simulations can be further increased by implementing a configurational-bias scheme for the insertion and deletion processes associated with the segmental coupling-decoupling of the tagged chain [76]. [Pg.355]

The effect of two or more different physical factors is necessary for the realization of the multiple recording and the deletion processes ... [Pg.119]

Fatigue of the material during the multiple recording and deleting processes. [Pg.119]

Wright, J.L.C., Hu, T., McLachlan, J.L., Needham, J., and Walter, J.A. (1996) Biosynthesis of DTX-4 Confirmation of a polyketide pathway, proof of a Baeyer-Villiger oxidation step, and evidence for an unusual carbon deletion process./. Am. Chem. Soc., 118, 8757-8758. [Pg.272]

SCRAM Circiuts Electrical Review (Deleted) Process Water System Simulator Training... [Pg.398]

To allow flexibility, the database manager must also perform point addition or deletion. However, the abihty to create a point type or to add or delete attributes of a point type is not normally required because, unlike other data processing systems, a process control system normally involves a fixed number of point types and related attributes. For example, analog and binary input and output types are required for process I/O points. Related attributes for these point types include tag names, values, and hardware addresses. Different system manufacturers may define different point types using different data structures. We will discuss other commonly used point types and attributes as they appear. [Pg.773]

The historical data is sampled at user-specified intervals. A typical process plant contains a large number of data points, but it is not feasible to store data for all points at all times. The user determines if a data point should be included in the list of archive points. Most systems provide archive-point menu displays. The operators are able to add or delete data points to the archive point hsts. The samphng periods are normally some multiples of their base scan frequencies. However, some systems allow historical data samphng of arbitraiy intei vals. This is necessaiy when intermediate virtual data points that do not have the scan frequency attribute are involved. The archive point lists are continuously scanned bv the historical database software. On-line databases are polled for data. The times of data retrieval are recorded with the data ootained. To consei ve storage space, different data compression techniques are employed by various manufacturers. [Pg.773]

Figure 1-11 suggests an approach to standardization of form for general use. It can be rearranged in several ways to provide a format suitable for any one of several purposes. Of particular importance is the flexibility of adding or deleting data without changing other details. Some companies prefer to place the process data on a separate sheet, although the same basic form for the table can be retained as shown in Figure 1-11. The layout principles of Figure 1-8 are also standardized by some companies. Figure 1-11 suggests an approach to standardization of form for general use. It can be rearranged in several ways to provide a format suitable for any one of several purposes. Of particular importance is the flexibility of adding or deleting data without changing other details. Some companies prefer to place the process data on a separate sheet, although the same basic form for the table can be retained as shown in Figure 1-11. The layout principles of Figure 1-8 are also standardized by some companies.
Mitochondria are unique organelles in that they contain their own DNA (mtDNA), which, in addition to ribosomal RN A (rRNA) and transfer RN A (tRNA)-coding sequences, also encodes 13 polypeptides which are components of complexes I, III, IV, and V (Anderson et al., 1981). This fact has important implications for both the genetics and the etiology of the respiratory chain disorders. Since mtDNA is maternally-inherited, a defect of a respiratory complex due to a mtDNA deletion would be expected to show a pattern of maternal transmission. However the situation is complicated by the fact that the majority of the polypeptide subunits of complexes I, III, IV, and V, and all subunits of complex II, are encoded by nuclear DNA. A defect in a nuclear-coded subunit of one of the respiratory complexes would be expected to show classic Mendelian inheritance. A further complication exists in that it is now established that some respiratory chain disorders result from defects of communication between nuclear and mitochondrial genomes (Zeviani et al., 1989). Since many mitochondrial proteins are synthesized in the cytosol and require a sophisticated system of posttranslational processing for transport and assembly, it is apparent that a diversity of genetic errors is to be expected. [Pg.308]


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