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Lines location

Fig. XVll-19. Adsorption of CH4 on MgO(lOO) at 77.35 K. The vertical line locates each vertical step corresponds to the condensation of a monolayer. There was no hysteresis. Desorption points are shown as . (From Ref. 110.)... Fig. XVll-19. Adsorption of CH4 on MgO(lOO) at 77.35 K. The vertical line locates each vertical step corresponds to the condensation of a monolayer. There was no hysteresis. Desorption points are shown as . (From Ref. 110.)...
Fig. 2. (a) Triangular diagram, where the dashed lines represent tie-lines, and (b) tie-line location curve. Terms are defined in the text. [Pg.61]

Molybdenum hexafluoride [7783-77-9] MoF, is a volatile liquid at room temperature. It is very moisture sensitive, hydrolysing immediately upon contact with water to produce HF and molybdenum oxyfluorides. MoF should therefore be handled in a closed system or in a vacuum line located in a chemical hood. The crystals possess a body-centered cubic stmcture that changes to orthorhombic below —96° C (1,2). The known physical properties are Hsted in Table 1. [Pg.212]

The gravity-displacement-type autoclave rehes on the relative nonmiscibility of steam and air to allow the steam that enters to rise to the top of the chamber and fill it. The air is pushed out through the steam-discharge line located at the bottom of the chamber. Gravity-displacement autoclaves are utilized for the sterilization of Hquids and for unwrapped nonhoUow medical instmments at 134°C. [Pg.408]

Control of ga.s movement by recovery. The movement of gases in landfills can also be controlled by instadhng gas-recovery wells in completed landfills (see Fig. 25-74b). This is considered an active venting system. Clay and other hners are used when landfill gas is to be recovered. In some gas-recovery systems, leachate is collected and recycled to the top of the landfill and reinjected through perforated lines located in drainage trenches. Typically, the rate of gas production is greater in leachate-recirculation systems. [Pg.2256]

Other important parameters that govern the selection and location of the plant are distance from transmission lines, location from fuel port or pipe lines, and type of fuel availability. Site configuration is generally not a constraint. Periodically, sites are encountered where one plant configuration or another is best suited. [Pg.144]

At high excitation fluence (2.4 mJ/cm2) the emission spectrum collapses into a narrow line located at 2.53 eV (see Fig. 8-2 a, dashed line), slightly blue-shifted with respect to the low intensity emission. The process strongly depends on the shape of the excitation area. For a rectangular spot, line narrowing occurs at 55 pj/cm2, i.e. 45 times a lower fluence than for a small circular spot, while the... [Pg.132]

C635C14(0H)2. The spectrum presents a doublet structure. The resonance line located at 36.744 Mc/sec was considered. The forty per cent dose is about 20.8x 108 roentgens.13... [Pg.195]

CH127I3- 3S8. The forty per cent dose is about 1.9 xlO8 roentgens13 (resonance line located at 303.435 Mc/sec). The intensity of the resonance line does not remain unaffected after irradiation, and this post effect is dependent upon dose and temperature. [Pg.196]

Secant modulus The secant modulus is the ratio of stress to the corresponding strain at any specific point on the stress-strain curve. As shown in Fig. 2-2(a), the secant modulus is the slope of the line joining the origin and a selected point C on the stress-strain curve this could represent a vertical line at the usual 1 % strain. The secant modulus line is plotted from the initial tangent modulus and where it intersects the stress-strain curve. The plotted line location is also based on the angle used in relation to the initial tangent line from the ab-... [Pg.50]

A leak of 20 gpm in a pressurized water line located in the area to the east of the old potliner cleaning building was observed in late June 1983 and corrected. The results of the leak are vividly shown by an increased cyanide concentration from March 1983 to mid-October 1983 in well HC-2A (Figure 9). This showed the need to carefully control water usage in the contaminated area. [Pg.23]

It is up to governments (and in a democracy that means the people) to decide how much, if any, pollution should be permitted. They in turn must rely upon scientists and engineers to tell them how various elements and compounds affect man and the environment, so reasonable laws can be enacted. Yet not enough is known about all the substances and their interrelations to anticipate many problems that may arise. Consider the following case, where copper from an overhead power line located in a polluted area was lethal to sheep. [Pg.425]

Figure 8.2 Design of protein-embedding barcode is depicted in (a) five thin layers of matrix (the thicker lines) coated with variable concentration of tested protein (thinner lines located above the matrix), (b) A FFPE tissue section of bladder cancer IHC-stained by monoclonal antibody to E-cadherine showing variable intensity of positive staining results which is compared with a protein-embedding bar code as designed in this chapter. Using computer-assisted image analysis with a special software, an automatic quantitative measurement of protein is performed. See color insert. Figure 8.2 Design of protein-embedding barcode is depicted in (a) five thin layers of matrix (the thicker lines) coated with variable concentration of tested protein (thinner lines located above the matrix), (b) A FFPE tissue section of bladder cancer IHC-stained by monoclonal antibody to E-cadherine showing variable intensity of positive staining results which is compared with a protein-embedding bar code as designed in this chapter. Using computer-assisted image analysis with a special software, an automatic quantitative measurement of protein is performed. See color insert.
Figure 8.2 Design of protein-embedding barcode is depicted in (a) five thin layers of matrix (the thicker lines) coated with variable concentration of tested protein (thinner lines located above the matrix). (See text for full caption). Figure 8.2 Design of protein-embedding barcode is depicted in (a) five thin layers of matrix (the thicker lines) coated with variable concentration of tested protein (thinner lines located above the matrix). (See text for full caption).
We have selected several unblended CH lines located in the near-UV between 3145-3190 A modified their oscillator strengths (gf-values) by fitting the solar high-resolution spectrum and assuming solar abundance of carbon 8.56 from Anders and Grevesse (1989). These lines are measurable in dwarfs down to the metallicities —3. Our results are shown in the Fig. 1. We confirm the metallicity dependence of the C/O ratio (Tomkin et al. 1992, Akerman et al. 2004). On the other hand, our plot for C/O shows a steep rise at [0/H]< —1. It is not clear if this effect is real. The work is in progress to address this issue using other abundance indicators such as CH 4300 A and better quality spectra. [Pg.110]

Figure 3.12 Minimum of the function f(x) submitted to the equality constraint bTx = q, and to the inequality constraints x1 0, x2 0. The feasible set is the segment of the constraint line located in the positive quadrant. The minimum occupies an edge of the feasible set. Figure 3.12 Minimum of the function f(x) submitted to the equality constraint bTx = q, and to the inequality constraints x1 0, x2 0. The feasible set is the segment of the constraint line located in the positive quadrant. The minimum occupies an edge of the feasible set.
If a S> 1, collective effects play an important role and the light scattering is no longer caused by individual electrons but by electron density fluctuations 280), Jn this case the spectrum shows a central line at Xq and two narrow lines located symmetrically about Xq, at a distance governed by the electron plasma frequency. The linewidth is smaller than in the case X < 1 and is determined rather by the thermal motion of the ions, not that of the electrons. The line shape depends on the ratio of electron to ion temperatures. Therefore, a measurement of the shape and width of this central line allows, under certain assumptions, a direct determination of the ion temperature. [Pg.54]

The initial incident involved a pinhole leak on a 6-in. line located 112 feet above grade. The unit might have been shut down at this point, but a decision was made to keep it on line. Efforts to isolate the circuit by closing four block valves failed. The line remained hot and the level in the downstream stripper vessel continued to rise. Several attempts were made to depressure the circuit and free drain all the residual naphtha. At least 15 work orders were issued over a 13-day period and most of these failed to meet the company s own work standards. [Pg.344]

Those initiated in the art of spectroscopy soon realised that to each emission line there corresponds an absorption line located at the exact same wavelength. They noticed that, one way or another, atoms can only absorb or emit a well-defined sequence of wavelengths. The amounts of energy which a... [Pg.27]

These weaker bands can have significant effects on the calculated outgoing infrared radiation. For example, Ho et al. (1998) show that much of the reported discrepancy between modeled outgoing long-wavelength radiation and satellite measurements can be attributed to not including weaker absorption bands due to C02 at 4.3 /xrn and 03 at 14 pm and the weaker O, lines located far from the center of the strong 9.6-pm band. [Pg.773]

Duct center-line locations are shown from column lines. [Pg.244]

Melt front prediction at 4.6 seconds filling time, and weld line location in the final... [Pg.501]

Note that the X line in Figure 2.2b may be located above or below the 50% level of product accumulation from both interfering reactions or actor (inducer) and acceptor consumptions. Line location above the X line means that the greater part of the total, highly active intermediate particles (active sites) is consumed for secondary reaction product formation and, vice versa, when the line is below X level. [Pg.36]

We discuss some of these regions in detail below. In addition, we concern ourselves with the overall flow pattern during filling. Recall that the manner in which a mold is filled— that is, the location of the advancing melt front—affects the weld-line location and the orientation distribution and may be responsible for poor mold filling conditions. [Pg.767]

The most characteristic feature of injection molds is geometrical complexity. In such molds there is a need to predict overall flow pattern, which provides information on the sequence in which different portions of the mold fill, as well as on short shots, weld line location, and orientation distribution. The more complex a mold, the greater this need is. The irregular complexity of the geometry, which forms the boundary conditions of the flow problem, leads naturally to FEMs, which are inherently appropriate for handling complex boundary conditions. [Pg.790]


See other pages where Lines location is mentioned: [Pg.61]    [Pg.478]    [Pg.276]    [Pg.495]    [Pg.971]    [Pg.195]    [Pg.195]    [Pg.195]    [Pg.195]    [Pg.792]    [Pg.266]    [Pg.151]    [Pg.49]    [Pg.78]    [Pg.131]    [Pg.23]    [Pg.210]    [Pg.57]    [Pg.265]    [Pg.583]    [Pg.245]    [Pg.763]    [Pg.791]   


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