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Second leg

I come now to the second leg of our notional tripod - phase equilibria. [Pg.72]

Each leg of the titration curve is calculated separately. The first leg, from pH 1 to 6, corresponds to the dissociation of protonated alanine, H2A+. The second leg, from pH 6 to 11, corresponds to the dissociation of zwitterionic alanine, HA. It s as if we started with H2A+ at low pH and then titrated with NaOH. When 0.5 equivalent of NaOH is added, the deprotonation of H2A+ is 50% done when 1.0 equivalent of NaOH is added, the deprotonation of H2A+ is complete and HA predominates when 1.5 equivalent of NaOH is added, the deprotonation of H A is 50% done and when 2.0 equivalents of NaOH is added, the deprotonation of HA is complete. [Pg.1023]

Transfer the full heat load from stream 2 to second leg of stream 3 this satisfies both streams. [Pg.127]

We will look into the second leg of the water issue, namely the problems, sources, and pollutants associated with the pollution and contamination of the aquatic environment. Before moving on, it would be useful to examine the current situation in various regions of the world as concerns fresh water pollution (Kraemer el al., 2001). [Pg.19]

Li.2 — A > Li.2 — G means the model predicts transdetermination from the first or second leg to antenna is greater than to genital. Abbreviations are explained in the legend of Fig. 9. [Pg.235]

The point of inflection, , occurs when the amino acid is entirely in the zwitterion form (II). At the midpoint of the second leg, , half of the amino acid is in the zwitterion form and half is in the basic form (III). [Pg.448]

At a selected alloy temperature the vapor pressure of cadmium is determined as a function of alloy composition the cerium solvent has a negligible vapor pressure. The alloy, located in one leg of a sealed inverted U-tube, is subjected to various specific pressures of cadmium from a supply of pure cadmium at selected temperatures in the second leg of the tube. The U-tube is freely suspended at its midpoint and connected to a balance, so that the transfer of cadmium from one leg of the tube to the other can be measured. This gives information as to the change in alloy composition and phase equilibrium. [Pg.157]

For monofunctlonal surfaces with weak surface groups the first leg of a conductometric titration plot Is also ascending, though less so than the second leg. Hence the number of groups can still be determined. Different types of groups on one surface can be conductometrically distinguished by titration at different pH s If the various proton affinities are sufficiently apart. [Pg.332]

The second leg of the strategy Reforming the funding of social protection/labour law and fostering employment creation... [Pg.111]

Measurement of vapor pressure of low-boiling substances has already been treated in the discussion of Stock s apparatus. With substances boiling above room temperature, a heated manometer must be used. For instance, molten tin can be used as the manometer liquid and the flask containing the substance together with the short manometer lowered into the heated bath, while the second leg of the manometer is connected to a manometer and a surge vessel. The pressure is then compensated for imtil the tin in both legs is at the same level, and the pressure is read off on the manometer. [Pg.101]

Under most conditions when measuring the pressure drop of a gas, its density may be ignored, as pm > /on- When the second leg is open to atmosphere, the manometer reading represents the gauge pressure—the absolute pressure will equal the pressure differential plus the barometric pressure. [Pg.126]

Common fluids used in the manometer are mercury, water, and oil. Maximum pressure differentials achievable are higher with mercury but the precision is much less than one-tenth compared to water. Certain types of oils have a density of around 800 kg m and thus the measured A P has a 25% higher sensitivity versus water. In order to increase the sensitivity, the second leg may be inclined, as shown in Figure 4.10. [Pg.127]

Fig. 3.14. Heat treating furnace with radiant U-tubes on the roof and back wall. The return legs (2nd and 4th from the hearth) are less radiant than the burner legs (1 st and 3rd from the hearth). Tumbling around the bends completes gas-air mixing so the renewed delayed-mixing flame (type F, fig. 6.2) causes a glow in the second leg. Courtesy of Rolled Alloys, Temperance, Ml. Fig. 3.14. Heat treating furnace with radiant U-tubes on the roof and back wall. The return legs (2nd and 4th from the hearth) are less radiant than the burner legs (1 st and 3rd from the hearth). Tumbling around the bends completes gas-air mixing so the renewed delayed-mixing flame (type F, fig. 6.2) causes a glow in the second leg. Courtesy of Rolled Alloys, Temperance, Ml.
A (a) It takes longer in the first situation, (b) The rower requires less time rowing with the current. A good way to visualize this situation is to analyze an extreme case, such that the current is very strong. It The first leg will take a short time, but the second leg will take a very long time. [Pg.93]

Consistent with this three-part definition, I see quality as a sturdy stool standing on three legs as shown in Figure 7.1. The first leg is client, owner, or customer wants and/ or needs. However, in my view, meeting each and every client, owner, or customer want or need does not constitute a quality project. More is needed. Governing criteria form the second leg. This leg includes local, state, federal, and other requirements as well as design criteria prescribed by others. [Pg.234]


See other pages where Second leg is mentioned: [Pg.749]    [Pg.560]    [Pg.171]    [Pg.223]    [Pg.822]    [Pg.114]    [Pg.19]    [Pg.448]    [Pg.199]    [Pg.199]    [Pg.312]    [Pg.1572]    [Pg.318]    [Pg.56]    [Pg.279]    [Pg.586]    [Pg.22]    [Pg.348]    [Pg.20]    [Pg.314]    [Pg.60]    [Pg.366]    [Pg.1567]    [Pg.438]    [Pg.401]    [Pg.182]   
See also in sourсe #XX -- [ Pg.314 ]




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Leg 104

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