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Source interpretation

Table 2.1 Sources of sulfur and SO2 for producing sulfuric acid. Virtually, aU the sulfur and SO2 production is involuntary, i.e., it is the by-product of other processes. Source Interpreted from Gustin (2011) and Apodaca (2012). ... Table 2.1 Sources of sulfur and SO2 for producing sulfuric acid. Virtually, aU the sulfur and SO2 production is involuntary, i.e., it is the by-product of other processes. Source Interpreted from Gustin (2011) and Apodaca (2012). ...
In contrast to IR and NMR spectroscopy, the principle of mass spectrometry (MS) is based on decomposition and reactions of organic molecules on theii way from the ion source to the detector. Consequently, structure-MS correlation is basically a matter of relating reactions to the signals in a mass spectrum. The chemical structure information contained in mass spectra is difficult to extract because of the complicated relationships between MS data and chemical structures. The aim of spectra evaluation can be either the identification of a compound or the interpretation of spectral data in order to elucidate the chemical structure [78-80],... [Pg.534]

Procedure. Run one or more simultaneous equation programs to determine the C—C and C—H bond energies and interpret the results. The error veetor is the veetor of ealeulated values minus the veetor of bond enthalpies taken as tme from an aeeepted source. Caleulate the enor veetor using a standard souree of bond enthalpies (e.g., Laidler and Meiser, 1999 or Atkins, 1994). Expand the method for 2-butene (2-butene) = —11 kJ mol ] and so obtain the C—H, C—C,... [Pg.56]

The interpretation of the change in the absorption profile caused by the bright light source proceeds as follows ... [Pg.439]

Urodilantin, a 32-amino acid natriuretic peptide synthesized by the kidney and found in urine but not in plasma, is beheved to compHcate the interpretation of the natriuretic effects of ANP (58). There have been reports of natriuretic peptides related to ANP that have been isolated from several sources, including the brain, eg, brain natriuretic peptide (BNP) [114471-18-0] (59—61). [Pg.208]

A new interpretation for the shift of absorbance maximum as the initial mass of Ag increases is proposed. The most probable mechanism of the shift is more rapid increase of atomic absorption signal from the source, which describes the formation and outflow of atoms from graphite compar ed with the signal from the source, which describes the atomization from the furnace surface. [Pg.105]

The present statistical study has been motivated by a desire to better understand and interpret dynamic fragmentation in mechanical systems. Applications include the blasting of rock with explosives or the fragmentation caused by the impact of a high-velocity projectile. For the reasons noted earlier it is difficult to verify the present statistical theory with experiments. Recently, however, support for the theories have emerged from rather diverse sources. [Pg.304]

Let s interpret the physical evidence that you might see at these close tolerances and their source. To begin ... [Pg.137]

Elastic recoil spectrometry (ERS) is used for the specific detection of hydrogen ( H, H) in surface layers of thickness up to approximately 1 pm, and the determination of the concentration profile for each species as a function of depth below the sample s surfece. When carefully used, the technique is nondestructive, absolute, fast, and independent of the host matrix and its chemical bonding structure. Although it requires an accelerator source of MeV helium ions, the instrumentation is simple and the data interpretation is straightforward. [Pg.488]

Qualitatively, the spark source mass spectrum is relatively simple and easy to interpret. Most instrumentation has been designed to operate with a mass resolution Al/dM of about 1500. For example, at mass M= 60 a difference of 0.04 amu can be resolved. This is sufficient for the separation of most hydrocarbons from metals of the same nominal mass and for precise mass determinations to identify most species. Each exposure, as described earlier and shown in Figure 2, covers the mass range from Be to U, with the elemental isotopic patterns clearly resolved for positive identification. [Pg.604]

Though a powerfiil technique, Neutron Reflectivity has a number of drawbacks. Two are experimental the necessity to go to a neutron source and, because of the extreme grazing angles, a requirement that the sample be optically flat over at least a 5-cm diameter. Two drawbacks are concerned with data interpretation the reflec-tivity-versus-angle data does not directly give a a depth profile this must be obtained by calculation for an assumed model where layer thickness and interface width are parameters (cf., XRF and VASE determination of film thicknesses. Chapters 6 and 7). The second problem is that roughness at an interface produces the same effect on specular reflection as true interdiffiision. [Pg.646]

As a complication some sources define a flow index as the reciprocal of that defined above so that some care has to be taken in interpretation. In such cases the values are greater than unity for polymer melts and the greater the value the greater the divergence from Newtonian behaviour.)... [Pg.166]

Early transport measurements on individual multi-wall nanotubes [187] were carried out on nanotubes with too large an outer diameter to be sensitive to ID quantum effects. Furthermore, contributions from the inner constituent shells which may not make electrical contact with the current source complicate the interpretation of the transport results, and in some cases the measurements were not made at low enough temperatures to be sensitive to 1D effects. Early transport measurements on multiple ropes (arrays) of single-wall armchair carbon nanotubes [188], addressed general issues such as the temperature dependence of the resistivity of nanotube bundles, each containing many single-wall nanotubes with a distribution of diameters d/ and chiral angles 6. Their results confirmed the theoretical prediction that many of the individual nanotubes are metallic. [Pg.75]


See other pages where Source interpretation is mentioned: [Pg.128]    [Pg.43]    [Pg.385]    [Pg.137]    [Pg.128]    [Pg.43]    [Pg.385]    [Pg.137]    [Pg.97]    [Pg.446]    [Pg.489]    [Pg.638]    [Pg.1233]    [Pg.160]    [Pg.627]    [Pg.225]    [Pg.676]    [Pg.64]    [Pg.19]    [Pg.131]    [Pg.517]    [Pg.517]    [Pg.129]    [Pg.102]    [Pg.202]    [Pg.371]    [Pg.240]    [Pg.406]    [Pg.217]    [Pg.2573]    [Pg.294]    [Pg.477]    [Pg.338]    [Pg.384]    [Pg.604]    [Pg.178]    [Pg.247]    [Pg.217]    [Pg.224]    [Pg.226]    [Pg.321]    [Pg.539]   
See also in sourсe #XX -- [ Pg.41 , Pg.42 , Pg.43 , Pg.44 ]




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