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Elimination interactions during

Figure 1 Orbital interactions during (a) alkyl migration to CO, and (b) alkyl-carbene reductive elimination. Figure 1 Orbital interactions during (a) alkyl migration to CO, and (b) alkyl-carbene reductive elimination.
Figure 13 An overview of how Specinfo/Molgen can be used in practice. It clearly reflects the basic idea of an interaction during the structure elucidation process. The spectroscopist does the re.striction work at the input of Molgen and is responsible for using the information with due care. An inappropriate input may remove the target structure from the solution set. Structure generator strategies with software restriction tools are very careful not to eliminate important information at this point... Figure 13 An overview of how Specinfo/Molgen can be used in practice. It clearly reflects the basic idea of an interaction during the structure elucidation process. The spectroscopist does the re.striction work at the input of Molgen and is responsible for using the information with due care. An inappropriate input may remove the target structure from the solution set. Structure generator strategies with software restriction tools are very careful not to eliminate important information at this point...
The annealing curves for several copper alloys are compared to copper in Figure 4. Solute additions affect the annealing response, as they do for cold working, by interaction with microplastic processes that account for softening as dislocations and subgrains are eliminated during the anneal. [Pg.220]

The time-scale of this haem conversion is related to the antioxidant status of the LDL and that of the erythrocyte lysate. The incorporation of lipid-soluble antioxidants, such as tocopherol and butylated hydroxy-toluene (BHT) at specific time points during the LDL-erythrocyte interaction, prolongs the lag phase to oxidation, eliminates the oxy to ferryl conversion of the haemoglobin and delays the oxidative modification of the LDL. [Pg.47]

During the preparation of this explosive liquid by interaction of sulfuryl chloride fluoride and sodium azide, traces of chlorine must be eliminated from the former to avoid detonation. The product is nearly as shock-sensitive as glyceryl nitrate and may explode on rapid heating. Solutions (25 wt%) in solvents may be handled safely. The corresponding fluoride is believed to behave similarly. [Pg.1386]


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Interaction eliminating

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