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Definition of symbols

Fig. 2-9 Relation between potential and corrosion rate of a plain carbon steel in slowly circulating water. Definition of symbols ... Fig. 2-9 Relation between potential and corrosion rate of a plain carbon steel in slowly circulating water. Definition of symbols ...
See nomenclature for definition of symbols and units. The units presented are English engineering units, unless a conversion is required. The friction factor is the only experimental variable that must be determined by reference to the above equations and it is represented by Figure 2-3. Note that this may sometimes be referred to as the Fanning formula, and may be modified to )held a fric-... [Pg.53]

Figure 2 Individual organ representations for a three-subcompartment (A), two-subcompartment (B), or typical membrane-linked and blood flow-limited (C) physiologically based pharmacokinetic model. See text for definition of symbols. Figure 2 Individual organ representations for a three-subcompartment (A), two-subcompartment (B), or typical membrane-linked and blood flow-limited (C) physiologically based pharmacokinetic model. See text for definition of symbols.
Figure 3 Possible blood circulation connections in a physiologically based pharmacokinetic model. (A) Venous return incorporated into lung mass balance equation (B) separate venous blood compartment. See text for definition of symbols. Figure 3 Possible blood circulation connections in a physiologically based pharmacokinetic model. (A) Venous return incorporated into lung mass balance equation (B) separate venous blood compartment. See text for definition of symbols.
Fundamental constants (Cx), spatial tensors in the principal axis frame ((fi3 m,)F), and spin tensors (Tjm) for chemical shielding (a), J coupling (J), dipole-dipole (IS), and quadrupolar coupling (Q) nuclear spin interactions (for more detailed definition of symbols refer to [50])... [Pg.5]

Definition of symbols AEp = peak potential difference, Epa = peak potential at cathodic peak current, Epc = peak potential at anodic peak current, tpa = anodic peak current, ipc = cathodic peak current, s = scan rate, t = time after peak (the Cottrell region), n = number of electrons involved in redox reaction. Rate parameters (acn ) and heterogeneous rate constant can be found from irreversible wave. [Pg.681]

Figure 18.5. Schematic representation of metal-ion concentration at the electrode surface. (See text for definition of symbols.) (From F. Lowenheim, ed., Modern Electroplating, 3rd ed., Wiley, New York, 1974, with permission from Wiley.)... Figure 18.5. Schematic representation of metal-ion concentration at the electrode surface. (See text for definition of symbols.) (From F. Lowenheim, ed., Modern Electroplating, 3rd ed., Wiley, New York, 1974, with permission from Wiley.)...
Diagrammatic representation of scattering data on large particles, obtained at different angles but at the same concentration, constructed by plotting sin (.6y2)AR(6) versus sin(0/2), or q AR 9) versus q, and used for the determination of molecular shape. For definitions of symbols, see Definition 3.3.12. [Pg.61]

Figure 1 A computational sequence of the CCSD-R12 geminal amplitude equation. For the definitions of symbols, see ref. 33. Figure 1 A computational sequence of the CCSD-R12 geminal amplitude equation. For the definitions of symbols, see ref. 33.
Figure 13-1. Definitions of symbols used to evaluate inheritance patterns for pedigree analysis and relationships within kindreds. Generations are assigned Roman numerals and individuals within each generation are indicated by Arabic numerals. The arrow points at the proband, the person in whom the genetic disorder was first diagnosed. Figure 13-1. Definitions of symbols used to evaluate inheritance patterns for pedigree analysis and relationships within kindreds. Generations are assigned Roman numerals and individuals within each generation are indicated by Arabic numerals. The arrow points at the proband, the person in whom the genetic disorder was first diagnosed.
R is the range and E the incident ion energy. See Sect. 2.2.2 for definitions of symbols. This curve is calculated assuming a Thomas-Fermi potential and with neglect of electronic stopping... [Pg.102]

The program described in this appendix is an improved version of one contained in a report by Bohren and Timbrell (1979) the underlying theory and definitions of symbols are given in Section 8.4. [Pg.491]

Definition of Symbols and Parameters Used, with Methods of Calculating the Parameters... [Pg.6]

Figure 24.1 Coordinate system and geometric parameters used to characterize mixing processes in a river. See Table 24.1 for definitions of symbols. Figure 24.1 Coordinate system and geometric parameters used to characterize mixing processes in a river. See Table 24.1 for definitions of symbols.
Fig. 2. Glucose production per liter of reactants over time for same experiment as shown in Fig. 1. (definitions of symbols and vertical dashed lines are the same). Error bars represent averages 1 SD for two repeated experiments. Fig. 2. Glucose production per liter of reactants over time for same experiment as shown in Fig. 1. (definitions of symbols and vertical dashed lines are the same). Error bars represent averages 1 SD for two repeated experiments.
Fig. 2.2. Definition of symbols used in eqn. (6) for calculation of van der Waals attraction between two particles [1]. Fig. 2.2. Definition of symbols used in eqn. (6) for calculation of van der Waals attraction between two particles [1].
Fig. 6 PE average values of the length of crystal-packed stems (nstem)> °f 1°°PS (wloop)> and of bridges (ftbridge)> giyen as no- °f - CH2 - units. Also reported is the average number of stems per bundle (p), see Figs. 1 and 3 for definition of symbols. Consistent with Fig. 5, calculations were carried out as for previous Model A [9] after changing E from 1.07 to 1.42 kcal/mol... Fig. 6 PE average values of the length of crystal-packed stems (nstem)> °f 1°°PS (wloop)> and of bridges (ftbridge)> giyen as no- °f - CH2 - units. Also reported is the average number of stems per bundle (p), see Figs. 1 and 3 for definition of symbols. Consistent with Fig. 5, calculations were carried out as for previous Model A [9] after changing E from 1.07 to 1.42 kcal/mol...
Figure 1. Illustration of the local shape description of non-interacting and interacting functional groups. See text for definitions of symbols. Figure 1. Illustration of the local shape description of non-interacting and interacting functional groups. See text for definitions of symbols.
Reproduced with permission from Ref. 46. a For definition of symbols see Figure 5. b Two crystallographically independent molecules. ... [Pg.228]

The definition of symbols is in the Table of Nomenclature. Basically SD is a number proportional to the reactor length, made dimensionless by a proper combination of thermal and reaction kinetic paramters. t is proportional to the temperature rise, made dimensionless by a combination of inlet temperature and activation energy, y and a2 are the mean and variance, respectively, of the residence-time distribution in the reactor. [Pg.330]

Eqs 4 and 5 shown below describe the currents for electrons and ions respectively. The total energy transport Qg is described by Eq. 6. Production of electron-ion pairs is described by Eq. 7. Production of heat within the plasma is described by Eq. 8. Definition of symbols for all of these equations is given in the nomenclature section at the end of the paper. [Pg.430]

Figure 1. A chromatogram. The ordinate shows detector response See text for definition of symbols... Figure 1. A chromatogram. The ordinate shows detector response See text for definition of symbols...
In the following, similarities and differences in the fundamental description of chemical and electrochemical reactions are considered with a definition of symbols and signs [51,52]. [Pg.6]


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See also in sourсe #XX -- [ Pg.3 ]




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