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Hg translation system

Figure 1. (a) Diffusion scrubber used for the ( translation system, (b) Diffusion scrubber used for the Hg-translation system. [Pg.383]

Figure 9. Response of Hg-translation system as a function of the pH of Hg2(N03)2 solution. Figure 9. Response of Hg-translation system as a function of the pH of Hg2(N03)2 solution.
Figure IS. Ambient Air data hourly averages with variations indicated as 1 s.d. Closed circles H2C>2-translation system open circles Hg-translation system. Figure IS. Ambient Air data hourly averages with variations indicated as 1 s.d. Closed circles H2C>2-translation system open circles Hg-translation system.
Figure 16. Correlation plot H202 (system 1) vs Hg (system 2) translation methods. Figure 16. Correlation plot H202 (system 1) vs Hg (system 2) translation methods.
The arrangement 37 is very prevalent in nature, perhaps because the only constraint is that the amide groups be interlinked along the 5 A translation axis without incurring poor intermolecular contacts. There is a natural tendency for the N-H. .. 0=C system to be collinear since the intramolecular N-Hg and 0=C bonds are essentially parallel. Deviations from collinearity can be brought about by steric factors for example, an offset 4l of 1 A between the N-H and 0=C bonds in //-methyl a-chloroacetamide 41 [155] is incurred to relieve excessively short Cl... H contacts. [Pg.468]

At a nonstationary point there exist only three zero-frequency modes corresponding to the total translational motions and the normal coordinates of the infinitesimal rotational motions appear in all the terms including Hg. The canonical perturbation theory can be applied to some non-zero total angular momentum systems by Dragt and Firm s two-step transformation [47]. [Pg.152]

Consider an observation point in the midplane of the substrate. For the conditions adopted, the system is invariant under translation of the observation point in any direction along the midplane so long as edge effects are ignored. It follows immediately that all components of stress are independent of position in the midplane. Furthermore, both the top surface at z = hf + hs/2 and the bottom surface at z = —hg/2 are free of traction, so that all shear components of stress vanish identically, and the normal stress in the z—direction is zero everywhere. Furthermore, the normal components of stress in the lateral direction are identical for isotropic material response, that is,... [Pg.128]


See other pages where Hg translation system is mentioned: [Pg.88]    [Pg.384]    [Pg.395]    [Pg.88]    [Pg.384]    [Pg.395]    [Pg.256]    [Pg.256]    [Pg.190]    [Pg.100]    [Pg.152]    [Pg.118]    [Pg.288]    [Pg.2980]    [Pg.458]    [Pg.1810]    [Pg.120]    [Pg.243]   


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