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Diagram, Venn

Thus in this chapter on ACF we are dealing with the overlap or intersection of two classes of carbon materials carbon fibers and active carbons. This is illustrated in the Venn diagram. Fig. 1, which is based on a classification of carbon materials recommended by lUPAC [11]. [Pg.97]

Fig. 1. Venn diagram illustrating where active carbon fibers lie in the classification of carbon materials. Fig. 1. Venn diagram illustrating where active carbon fibers lie in the classification of carbon materials.
A Venn Diagram is a graphical depiction of logic. It relates... [Pg.37]

This means that Boolean equation 2.2-5 is the same as 2.2-7 and the third term in equation 2.2-5 is superfluous, Figure 2.2-2 interprets these equations as Venn diagrams. [Pg.38]

P(A)J P(B) which when substituted into equation 2.4-6 and rearranged gives equation 2.4-7. This result may be generalized Venn Diagram oj Sets A end... [Pg.41]

The physical reason for the third term on the right of equation 2.4-7 is to correct t or a mating the overlap twice as seen in Figure 2.2-1. The technique of Venn diagrams is used in some PRAs to calculate mutually exclusive power states from non-mutually exclusive states... [Pg.42]

The gedanken" experiment in Section 3 4.4.2 results in equation 3.4.4-2 suggesting the operations of summation and multiplication in the algebraic sense - not as probabilities. Since this is a simulation why are not the results correct until given the probability interpretation Hint refer to the Venn Diagram discussion (Section 2.2)... [Pg.148]

FIGURE 9.17 Venn diagram consisting of the various possible activities (agonism and antagonism) on two receptor subtypes (a- and P-adrenoceptors). Letters label the areas of intersection denoting joint activity. The table shows possible therapeutic application of such joint activity. [Pg.192]

Variance ratio, 239 Venn diagram, 177, 192f Viral coat protein, 44, 53 Volume of distribution, 165, 168... [Pg.299]

Pharmacogenetics. Figure 1 Relationship between Pharmacogenetics and other disciplines illustrated using a Venn diagram. [Pg.947]

FIGURE 10.2 Venn diagram showing relationship between smart and intelligent structure. [Pg.279]

The various acid-base definitions are summarized in the Venn diagram (Fig. 2.1). From this it can be seen that the Usanovich definition subsumes the Lewis definition, which in turn subsumes all other definitions (i.e. Arrhenius, Bronsted-Lowry, Germann-Cady-Elsey, Lux-Flood). [Pg.19]

Figure 2.1 Venn diagram showing the relationship between the various definitions of acids and bases. Figure 2.1 Venn diagram showing the relationship between the various definitions of acids and bases.
Figure 1 Subdivisions of phototherapy, illustrated by a Venn diagram. Figure 1 Subdivisions of phototherapy, illustrated by a Venn diagram.
Figure 20.1 Venn diagram of proteins identified from microdissected tissue (left) versus non-microdissected tissue (right). Figure 20.1 Venn diagram of proteins identified from microdissected tissue (left) versus non-microdissected tissue (right).
Figure 20.4 Venn diagram of proteins identified in soluble and insoluble extractions from fresh-frozen tissue and from antigen retrieval from FFPE tissue. Reproduced with permission from Reference 14. Figure 20.4 Venn diagram of proteins identified in soluble and insoluble extractions from fresh-frozen tissue and from antigen retrieval from FFPE tissue. Reproduced with permission from Reference 14.
The gas phase limitation imposed by the very nature of the GC-MS experiment limits its applicability to chemical space. The Venn diagram in Fig. 19.4 illustrates an approximate mapping of applicability of the combined chromatography-mass spectrometry techniques discussed here. Using only relative molecular mass and polarity as two dimensions that can map chemical space, the figure indicates that the applicability of GC-MS is limited to those relatively small, thermally stable, nonpolar compounds that can be readily volatized (or made to volatilize by derivatization [26]) to pass through a gas chromatographic column. [Pg.706]

Fig. 5. Distribution of the predicted folds in the three main divisions of life. The number of recognized folds is indicated for each part of the Venn diagram. Fig. 5. Distribution of the predicted folds in the three main divisions of life. The number of recognized folds is indicated for each part of the Venn diagram.
Use a graphic organizer such as a Venn diagram to compare ionic bonding with metallic bonding. [Pg.217]

FIGURE 5.2 Venn diagram illustrating the development of conditional probability. [Pg.75]

A procedure for determining which factors are important is to use Sandel s Venn diagram approach. An adapted form is shown in Figure 10. Werni-mont has developed this idea for intra-laboratory studies. Note, however, that each of the three factors may be affected by external events. [Pg.27]

Figure 10 Sandel s Venn diagram for method development... Figure 10 Sandel s Venn diagram for method development...
Since the enrichment factor discriminates only between active and inactive compounds, we further investigated which active compounds were retrieved by the two descriptors among the top-ranking ones. Figure 3.3 depicts this for the first five percentiles of three dataset by means of Euler-Venn diagrams. It is no-... [Pg.59]

Fig. 3.3 Elements of the Euler-Venn diagrams represent compounds that were found among the first 5% of the similarity-ranked list that results from retrospective screening with the (a) COX2, (b) HIV protease and (c) MMP datasets of the COBRA dataset. The Manhattan distance... Fig. 3.3 Elements of the Euler-Venn diagrams represent compounds that were found among the first 5% of the similarity-ranked list that results from retrospective screening with the (a) COX2, (b) HIV protease and (c) MMP datasets of the COBRA dataset. The Manhattan distance...

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Euler-Venn diagrams

FIGURE 5.2 Venn diagram illustrating the development of conditional probability

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