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Cell representation

Step 7. In order to modify and improve the postulated grid cell representation of the reservoir, analyze any zones with values close to these constraints. [Pg.385]

Figure 22. Packing arrangement of 7-methoxycoumarin in the crystals—a unit cell representation. Note the two reaction centers (darkened circles) are twisted with respect to each other. Figure 22. Packing arrangement of 7-methoxycoumarin in the crystals—a unit cell representation. Note the two reaction centers (darkened circles) are twisted with respect to each other.
Figure 2.16. Unit cell representation for the fluorite structure of Cap2. Figure 2.16. Unit cell representation for the fluorite structure of Cap2.
Figure 3.22. Unit cell representations of two varieties of AuCu superlattices. For the AuCu II superlattice, M refers to the length of repeat unit, and APB indicates the antiphase boundaries between adjacent periodic arrays. Republished with the permission of the International and American Associations for Dental Research, from Determination of the AuCu Superlattice Formation Region in Gold-Copper-Silver Ternary System , Uzuka, T. Kanzawa, Y. Yasuda, K. J. Dent. Res. 1981, 60, 883 permission conveyed through Copyright Clearance Center, Inc. Figure 3.22. Unit cell representations of two varieties of AuCu superlattices. For the AuCu II superlattice, M refers to the length of repeat unit, and APB indicates the antiphase boundaries between adjacent periodic arrays. Republished with the permission of the International and American Associations for Dental Research, from Determination of the AuCu Superlattice Formation Region in Gold-Copper-Silver Ternary System , Uzuka, T. Kanzawa, Y. Yasuda, K. J. Dent. Res. 1981, 60, 883 permission conveyed through Copyright Clearance Center, Inc.
Figure 3.26. Unit cell representations of (a) the CsCl structure of austenitic TiNi and (b) the monoclinic structure of martensitic TiNi. Figure 3.26. Unit cell representations of (a) the CsCl structure of austenitic TiNi and (b) the monoclinic structure of martensitic TiNi.
Figure 4.24. Unit cell representations of silicon showing the (100), (110), and (111) planes, respectively. Figure 4.24. Unit cell representations of silicon showing the (100), (110), and (111) planes, respectively.
Figure 13 Minimum imaging under cell representations where cases A and B are equivalent. The box in B is skewed owing to the planar Couette hear field, and resetting it to representation A is consistent with the dynamics, h is the matrix representing the box size and shape, y is the shear rate, and t denotes time. Figure 13 Minimum imaging under cell representations where cases A and B are equivalent. The box in B is skewed owing to the planar Couette hear field, and resetting it to representation A is consistent with the dynamics, h is the matrix representing the box size and shape, y is the shear rate, and t denotes time.
Fig. 2.3 Abbreviated cell representation showing absolute potentials... Fig. 2.3 Abbreviated cell representation showing absolute potentials...
The abbreviated cell representation for the generalized reaction is shown in Fig. 2.4. The reduced species on the left side of the overall reaction (M) and its associated ion (Mm+) are identified as the left-hand... [Pg.37]

Fig. 2.4 Abbreviated cell representation showing Ece and half-cell reactions... Fig. 2.4 Abbreviated cell representation showing Ece and half-cell reactions...
Fig. 2.5 Abbreviated cell representation showing current flow when the half-cell reactions are coupled... Fig. 2.5 Abbreviated cell representation showing current flow when the half-cell reactions are coupled...
It is useful to include as much information as reasonable with the cell representation. In particular, it is important to specify all variables, including the nature of the phase or phases associated with each side of the electrode across which electron transport occurs. Using the LHE to illustrate ... [Pg.41]

From the convention relating the cell reaction to the cell representation (Table 2.2), the cell potentials are written as ... [Pg.43]

FIGURE 21.2 Three-cell representation of global circulation of the atmosphere. [Pg.982]

Figure 4.1-7 Polyhedral unit cell representation of SrFe3(P04)3 as viewed down the a axis showing the condensed Fe-O framework. Figure 4.1-7 Polyhedral unit cell representation of SrFe3(P04)3 as viewed down the a axis showing the condensed Fe-O framework.
Figure 4.1-8 Polyhedral unit cell representation of NaBaFe4 (HP04)3(P04)3"H20 showing the stacking of layers which run parallel to the a axis. The sodium (small cross-hatched circles) and barium (large cross-hatched circles) atoms lie between the layers along with the isolated water molecules which are shown as open circles. The FeOe polyhedra are lined and the PO4 tetrahedra are dotted [90]. Figure 4.1-8 Polyhedral unit cell representation of NaBaFe4 (HP04)3(P04)3"H20 showing the stacking of layers which run parallel to the a axis. The sodium (small cross-hatched circles) and barium (large cross-hatched circles) atoms lie between the layers along with the isolated water molecules which are shown as open circles. The FeOe polyhedra are lined and the PO4 tetrahedra are dotted [90].
Fig. 10.1 a Unit-cell representation of the crystal structure of Sr40Cl6 with red, blue, green and orange spheres as Sri, Sr2, Cl and O atoms, respectively, b Two different Strontium sites are depicted with eight- and seven-coordination with chlorine and oxygen atoms. Reprinted with permission from Ref. [11]. Copyright 2014 American Chemical Society... [Pg.287]

The condition of redox potential matching is illustrated in Fig. 1. Considering the concentration ratio of ferri/ferrocyanide indicated in the cell representation and... [Pg.895]

Cell representation In this case the power and ground are represented by cells from the ASIC vendor library. The edifout powcr and ground reprcscntation variable must be set to cell. The edifoutjpower name variable identifies the cell and the edifout power jiin name identifies the pins on the power cell. [Pg.257]

This is also the reason why the reversible potential difference of a cell is mentioned with the system composition. Formerly, the reversible potential difference was named the electromotive force of the cell. (For the meaning of the word reversible, see immediately below). For example, the following galvanic cell (see Chap. 13 for the electrochemical cell representations)... [Pg.31]

The above picture of slowly cooled SCLs allows considering the liquid cell model of Lennard-Jones and Devonshire [34] (Figure 10.1 and its various elaborations [35]. In the figure, we show a cell representation of a dense liquid in (a) and of a crystal in (b). Each cell is occupied by a particle in which the particle vibrates. A defect in the cell representation corresponds to some empty cells. The regular lattice in (b) is in accordance with Einstein s model of a crystal. In the liquid state, this regularity is absent. We consider the conjiguratiorud partition JunctionZ T, V) (Appendix lO.A),... [Pg.438]

Figure 10.1 Cell representation of a small region of disordered (a) and ordered (b) configurations at full occupation each cell contains a particle. Each cell representation uniquely defines a potential well or basin in the potential energy landscape. Observe that while... Figure 10.1 Cell representation of a small region of disordered (a) and ordered (b) configurations at full occupation each cell contains a particle. Each cell representation uniquely defines a potential well or basin in the potential energy landscape. Observe that while...
By a careful analysis, Goldstein [23] has shown that much of the excess entropy arise from nonbasin contributions, such as vibrational differences between glassy and crystalline phases, and is reflected most prominently in boson peaks. Thus, it is obvious that one cannot take the excess entropy as a genuine measure of the basin entropy or the entropy associated with the number of cell representations. [Pg.456]


See other pages where Cell representation is mentioned: [Pg.598]    [Pg.88]    [Pg.821]    [Pg.144]    [Pg.34]    [Pg.40]    [Pg.53]    [Pg.54]    [Pg.55]    [Pg.56]    [Pg.57]    [Pg.58]    [Pg.59]    [Pg.60]    [Pg.840]    [Pg.66]    [Pg.286]    [Pg.347]    [Pg.8]    [Pg.456]    [Pg.456]   
See also in sourсe #XX -- [ Pg.40 ]




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