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Yield, conversion factors

The intersections of the vertical and diagonal lines yield conversion factors for calculating the volumetric ratios (in ppm) of CO and NOx... [Pg.1]

Now multiply by the percent-yield conversion factor that changes theoretical Sodium sulfate is used in dyeing yield to actual yield. textiles and in manufacturing glass... [Pg.281]

DEFINITIONS Per RELATIONSHIPS THAT YIELD CONVERSION FACTORS ... [Pg.762]

The component factor gives the unit yield for each component and includes a volume conversion factor. The factors can be obtained from tables. [Pg.256]

Dimerization is reportedly catalyzed by pyridine [110-86-1] and phosphines. Trialkylphosphines have been shown to catalyze the conversion of dimer iato trimer upon prolonged standing (2,57). Pyridines and other basic catalysts are less selective because the required iacrease ia temperature causes trimerization to compete with dimerization. The gradual conversion of dimer to trimer ia the catalyzed dimerization reaction can be explained by the assumption of equiUbria between dimer and polar catalyst—dimer iatermediates. The polar iatermediates react with excess isocyanate to yield trimer. Factors, such as charge stabilization ia the polar iatermediate and its lifetime or steric requirement, are reported to be important. For these reasons, it is not currently feasible to predict the efficiency of dimer formation given a particular catalyst. [Pg.451]

The relation yields the required conversion factor for (a) and (b). Also from the periodic table, we see that the atomic number for titanium is 22, the number of protons in an atom of titanium. [Pg.54]

To overcome this limitation, a series of images of an entire field of cells can be obtained, then the waves can be visualized when the images are played back in rapid sequence. Specific lines of analysis can then be chosen after the experiment is completed. The line is selected to be perpendicular to the wave front (that is, along the direction of propagation). As before, the lines are stacked on top of one another, yielding a reconstructed line scan that contains all the information of a true line scan. The leading edge of the Ca2+ wave appears on the line scan as a sharp line with a constant slope. Since the slope is distance/time, appropriate conversion factors allow true speeds to be obtained in jUm/s. [Pg.177]

But suppose that the researcher had expressed pressure in Pascals (Pa), not atmospheres as we had assumed. Then ft = 0.0001032%/Pa, and increasing Xj by 1 Pa is predicted to give a 0.0001% increase in yield. This still doesn t seem like a very large change in response for a unit change in pressure. However, recall that there are 100,663.41 Pascals in an atmosphere. A Pascal is a tiny unit of pressure. If we apply the appropriate conversion factor, then... [Pg.328]

Balanced equations, diverse conversion factors, limiting re ents, and percent yield calculations all now tremble before you. Probably. Be sure your powers over them cire as breathtaking as they should be by checking your answers. [Pg.140]

Multiplying the total nitrogen content by the Kjeldahl conversion factor of 6.38 yields the protein content. [Pg.172]

Ethanol Feedstock Costs (Canadian I), for Upper and Lower Values of Jerusalem Artichoke Tuber and Tops Yield Ranges, for Different Land Prices in Western Canada and Quebec, Given a Conversion Factor of Biomass to Ethanol of 100 I t-1... [Pg.411]

Ethanol Feedstock Costs (Canadian I) for Lower, Middle, and Upper Values of Tuber Yield Range, and Increasing Ethanol Conversion Factors (I t-1 tubers), Given a Land Price of 2,500 ha-1 in Quebec... [Pg.411]

In the scale-up of a tubular reactor, the problem is to increase the flowrate q v d2 by a factor n (not to be confused with the scale p ) while retaining the chemical efficiency (yield, conversion, selectivity, etc.) ... [Pg.180]

Quantity Per Units of Measure Conversion Factors Work Centers Conversion Yield Factors Approval... [Pg.784]

This yields a silicon abundance on the astronomical scale of log Aast(Si) = 7.546 and a hydrogen abundance on the meteoritic scale of log A et(H) = 10.45 or 2.84 X 10 ° which is given in Table 3. Anders and Grevesse (1989) calculated a value of 1.554 for the ratio of solar to meteoritic abrmdances, which leads to a hydrogen abundance of 2.97 X 10 ° on the meteoritic scale. Lodders (2003) used a conversion factor of 1.540 based on the ratio of photospheric and meteoritic sihcon. [Pg.55]


See other pages where Yield, conversion factors is mentioned: [Pg.535]    [Pg.99]    [Pg.1097]    [Pg.318]    [Pg.200]    [Pg.222]    [Pg.130]    [Pg.380]    [Pg.64]    [Pg.66]    [Pg.651]    [Pg.189]    [Pg.32]    [Pg.313]    [Pg.408]    [Pg.410]    [Pg.411]    [Pg.811]    [Pg.114]    [Pg.136]    [Pg.168]    [Pg.220]    [Pg.928]    [Pg.311]    [Pg.313]    [Pg.157]    [Pg.367]    [Pg.155]    [Pg.469]    [Pg.470]    [Pg.583]    [Pg.620]   
See also in sourсe #XX -- [ Pg.600 ]




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Conversions conversion factors

Yield factor

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