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Displays symbolic

Shared display device with software alarms ( is measured variable) Figure 5.6. Distributed control—shared display symbols. [Pg.239]

To design in a 2D space, the factor relationships shown in Table XVI are used to reduce the fundamental properties to the factors F, and Fj. Each physical property constraint, which is a function of F, and F3, is plotted in a 2D Fj-Fj design space shown in Fig. 3. The region in which all constraints are satisfied is shaded. The displayed symbols correspond to the constraints as follows ... [Pg.296]

The corresponding substituted phenols are displayed symbolically in Figure 13 and their characteristic vibrational modes, showing a rather strong dependence on the X substitution,... [Pg.57]

The display symbols all light up ------- failure of the switch or display tune... [Pg.359]

Fig. 4.24. A review of all orbitals with the quantum number n = 1,2, 3. The x-, y-, and z-axes (not shown) are oriented in the same way (as the directions of the 2px, 2py, and 2p orbitals, respectively). The figures 2s and 3s are schematic their cross sections are intended to underline that these orbitals are spherically symmetric, but they possess a certain internal structure." The Is orbital decays monotonically with r (this is shown by a limiting sphere), but 2s and 3s change sign one and two times, respectively. The internal spheres displayed symbolize the corresponding nodal spheres. The orbital ipx (representing also 3py and pz) is shown in a similar convention there is an extra nodal surface inside (besides the plane x = 0), resembling a smaller orbital p. Fig. 4.24. A review of all orbitals with the quantum number n = 1,2, 3. The x-, y-, and z-axes (not shown) are oriented in the same way (as the directions of the 2px, 2py, and 2p orbitals, respectively). The figures 2s and 3s are schematic their cross sections are intended to underline that these orbitals are spherically symmetric, but they possess a certain internal structure." The Is orbital decays monotonically with r (this is shown by a limiting sphere), but 2s and 3s change sign one and two times, respectively. The internal spheres displayed symbolize the corresponding nodal spheres. The orbital ipx (representing also 3py and pz) is shown in a similar convention there is an extra nodal surface inside (besides the plane x = 0), resembling a smaller orbital p.
Often a seven-segment array is sufficient for TN devices where numbers are displayed 11131. The limited number c switched means that each can be addressed directly. However, dot matrix or VGA displays with large numbers of p to create alphabetical characters (not just in the Roman alphabet, but also more complex symbols such as those in C... [Pg.2563]

The foUowiag symbols are used ia fault tree constmction to display the iaterrelationships between equipment failures and a specific accident ... [Pg.83]

An appropriate set of iadependent reference dimensions may be chosen so that the dimensions of each of the variables iavolved ia a physical phenomenon can be expressed ia terms of these reference dimensions. In order to utilize the algebraic approach to dimensional analysis, it is convenient to display the dimensions of the variables by a matrix. The matrix is referred to as the dimensional matrix of the variables and is denoted by the symbol D. Each column of D represents a variable under consideration, and each tow of D represents a reference dimension. The /th tow andyth column element of D denotes the exponent of the reference dimension corresponding to the /th tow of D ia the dimensional formula of the variable corresponding to theyth column. As an iEustration, consider Newton s law of motion, which relates force E, mass Af, and acceleration by (eq. 2) ... [Pg.104]

Provide barriers for identification and display of appropriate warning notices, e.g. Trefoil symbol. [Pg.394]

The bottom space is primarily used to identify unusual reactivity with water. A W with a line through it alerts personnel to the possible hazard in use of water. This space may also be used to identify radiation hazetrd by displaying the propeller symbol or oxidizing material by displaying OXY. [Pg.9]

Figure 3 Layer-resolved band energy contributions to the MAE for Cu/Fee/Cu (001) multilayers interdiffused at one of the Fe/Cu interfaces (shaded area), round symbols 30 %, cross 15 %, diamonds 0 % Only the Fe layers are numbered. For the interface layer of the Fe film (numbered by 1) only the contribution of the Fe component, whereas for the interface layer of the substrate (one layer to the left) only the contribution of the Cu component is displayed. Figure 3 Layer-resolved band energy contributions to the MAE for Cu/Fee/Cu (001) multilayers interdiffused at one of the Fe/Cu interfaces (shaded area), round symbols 30 %, cross 15 %, diamonds 0 % Only the Fe layers are numbered. For the interface layer of the Fe film (numbered by 1) only the contribution of the Fe component, whereas for the interface layer of the substrate (one layer to the left) only the contribution of the Cu component is displayed.
Visual aids are developed from the planning schedule, in that assets and asset numbers are repeated and service visits indicated by a symbol. Hence, the estimated manhours for the specific task per frequency are not displayed for general review. [Pg.788]

Display 3-2 lists the measurements used in the apotiiecaries system. The abbreviations (or symbols) for die measurements are given in parentiieses. [Pg.36]

Although an exact search can be useful, in most cases it does not give any more information than can be obtained from the printed CA. Substructure searches (SSS) are far more important, because there is no other way to get this information. If we do a substructure search on 4 in Figure A.l, we not only get all the answers we would get in an exact search, but all substances that contain, anywhere within their structure, the arrangement of atoms and bonds shown in 4. For example, 5,6,7, and 8 would all be retrieved in this search, but 9 would not be. The SSS searches typically retrieve from tens to hundreds of times as many answers as exact searches of the same stracture. Furthermore, the scope can be widened by the use of variable nodes. For example, the symbol X means any halogen, the symbol M any metal, and the symbol G allows the user to specify his or her own variable at that point (e.g., G =C1 or NO2 or Ph). As with an exact search, each answer can be displayed as described above. [Pg.1636]

The student conceptions that were displayed could be categorised into three main types, namely (1) confusion between macroscopic and submicroscopic representations, (2) extrapolation of bulk macroscopic properties of matter to the submicroscopic level and (3) corrfusion over the multi-faceted significance of chemical symbols, chemical formulas as well as chemical and ionic equations. Student conceptions held by at least 10% of the students who were involved in the alternative instractional programme were identified. Several examples of student conceptions involving the use of the triplet relationship are discussed in the next section. [Pg.162]

Once plotted, a new menu bar appears with plot options. The plot can be displayed as points, connected, or as a bar chart. The data can be presented on linear or log axes, with or without grid. Text can be placed on the display in a variety of sizes and types. Lines or arrows can be drawn or areas filled. The user can edit all axis labels and titles if desired. Re-scaling is accomplished by means of the shrink and zoom options or by entering exact scale limits. Multiple curves can be annotated with keyed symbols. Plot coordinates are displayed in real time as the operator moves the mouse over the plot. [Pg.16]

This text also displays three geometric symbols circle, triangle, square. [Pg.154]

Fig. 5. Proposed topology of K channel subunits inserted into the membrane. COO carboxy-terminal. The proposed membrane-spanning segments SI-S6 in the core region of channel proteins are displayed linearly. H5 may be part of the K channel pore. The amino-terminal inactivation gate is symbolized by a positively charged ball which could occlude the pore region. The extracellular side is thought to be at top and the intracellular side at bottom. Fig. 5. Proposed topology of K channel subunits inserted into the membrane. COO carboxy-terminal. The proposed membrane-spanning segments SI-S6 in the core region of channel proteins are displayed linearly. H5 may be part of the K channel pore. The amino-terminal inactivation gate is symbolized by a positively charged ball which could occlude the pore region. The extracellular side is thought to be at top and the intracellular side at bottom.
The Chemistry Matter and Change program uses safety symbols to alert you and your students to possible laboratory hazards. These symbols are provided in the student text inside the front cover and are explained below. Be sure your students understand each symbol before they begin an activity that displays a symbol. [Pg.223]

Note that PROC BOXPLOT uses SAS/GRAPH statements such as GOPTIONS and SYMBOL statements. There is a vast array of display options in the PROC BOXPLOT PLOT statement not used here. You may want to investigate those options if you decide to enhance the box plot further. [Pg.228]

Part 4 1984 Specification for basic symbols for process computer, interface and shared display/control functions. [Pg.239]


See other pages where Displays symbolic is mentioned: [Pg.190]    [Pg.239]    [Pg.210]    [Pg.359]    [Pg.1621]    [Pg.190]    [Pg.239]    [Pg.210]    [Pg.359]    [Pg.1621]    [Pg.138]    [Pg.346]    [Pg.396]    [Pg.86]    [Pg.23]    [Pg.107]    [Pg.452]    [Pg.517]    [Pg.563]    [Pg.498]    [Pg.165]    [Pg.257]    [Pg.277]    [Pg.357]    [Pg.231]    [Pg.498]    [Pg.398]    [Pg.245]    [Pg.179]    [Pg.586]    [Pg.587]    [Pg.668]   
See also in sourсe #XX -- [ Pg.453 , Pg.466 ]




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Shared display symbols

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