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Small Structures

In the low-energy region (< 250 keV) the unsharpness of the system IP/Scanner (here up to 70 pm for the best systems used) leads to a contrast reduction of small structures, e g., such as fissures/cracks. But, the available resolution is comparable or better than this one of the best... [Pg.473]

Early diffraction photographs of such DNA fibers taken by Rosalind Franklin and Maurice Wilkins in London and interpreted by James Watson and Francis Crick in Cambridge revealed two types of DNA structures A-DNA and B-DNA. The B-DNA form is obtained when DNA is fully hydrated as it is in vivo. A-DNA is obtained under dehydrated nonphysiological conditions. Improvements in the methods for the chemical synthesis of DNA have recently made it possible to study crystals of short DNA molecules of any selected sequence. These studies have essentially confirmed the refined fiber diffraction models for A- and B-DNA and in addition have given details of small structural variations for different DNA sequences. Furthermore, a new structural form of DNA, called Z-DNA, has been discovered. [Pg.121]

The followmg types of studies will not be presented individually but may have contnbuted supportmg data to coverage by compound type conformational analyses [23 24, 25, 26 27], fluoropolymers [28, 29, 30 31, 32], solid-state NMR [ii], and solvent effects [34 35, 36, 37] Many excellent articles with m-depth NMR interpretation of one specific compound or of a small, structurally related group of compounds can be found in the chemical hterature A few of these, not incorporated elsewhere in this secUon are referenced here carbonyl fluondes [JS 39 40], fluoropropanes [41 42, 43], fluorocyclopropanes [44, 45 46], fluorobutanes [47], perfluorocyclobutanone [48], fluorohexanes [49], and vinyl fluondes [50, 51 52, 53, 54]... [Pg.1039]

Removal of the the related ethoxymethyl group from an imidazole with 6 N HCl at reflux is slow and low yielding. Small structural effects at a site seemingly remote from the MOM group can have a significant influence on the deprotection process. The MOM group in compound a is easily removed with acid, but the cleavage with HCl in compound b proved quite difficult. ... [Pg.624]

The outstanding virtue of zinc-rich paints is simplicity in application. No special equipment is required and the operation can, of course, be carried out on site, large or small structures being equally suitable for treatment. While there is some evidence that the zinc-rich paints will reduce iron oxides remaining on the steel surface, proper surface preparation is as important here as with traditional paints if the best results are to be achieved. The main use of zinc-rich paints is to protect structural steel-work, ships hulls, and vulnerable parts of car bodies, and to repair damage to other zinc coatings. [Pg.491]

The isomerization of an allylic amine to an enamine by means of a formal 1,3-hydrogen shift constitutes a relatively small structural change. However, this transformation could be extremely valuable if it could be rendered stereoselective. In important early studies, Otsuka and Tani showed that a chiral cobalt catalyst, prepared in situ from a Co(ii) salt, a chiral phosphine, and diisobutylaluminum hydride (Dibal-H), can bring about the conversion of certain pro-chiral olefins to chiral, isomeric olefins by double bond migra-... [Pg.348]

To conclude this section, we can state that all of the theories presented hitherto, even when starting from general principles, inevitably embody several assumptions, which in fact represent the heart of the analysis. However, the physical meaning of these assumptions usually is not known, so that no theory is able to predict in which reaction series isokinetic behavior appears and in which it does not. Neither is the structural theory of organic chemistry able to make such a prediction and to define the terms reaction series or similar reactions or small structure changes it can only afford many examples. [Pg.463]

Mikroreaktorenfur die chemische Synthese, Nachrichten aus der Chemie, May 2000 Chip technology initiates quest for small structures better temperature control on the small scale fast mixing by diffusion several kg productivity per day no novel, but better chemistry perfect control over process parameters corresponding increase in selectivity basic micro-reactor functions selected examples of use micro reactors as routine tools in the laboratory first start-up companies [113],... [Pg.87]

This Topics volume also shows that in the development of dendrimer chemistry there is still a need for efficient synthetic methods ensuring multiple high-yield conversion and leading to more or less pure (monodisperse, structurally perfect) dendritic molecules. Large libraries of imperfect substances are often formed at higher generations, only differing in small structural details. [Pg.7]

The prediction of stable structures that can be formed by groups of a few dozen atoms is computationally expensive because of the time required to determine the energy of each structure quantum mechanically, but such studies are increasingly valuable because of the need in nanochemistry to understand the properties of these small structures. The genetic algorithm is now widely used to help predict the stability of small atomic clusters.2... [Pg.5]

Zard and coworkers [32] reported a simple approach to create another group of natural products, namely the lycopodium alkaloids [15]. These authors first investigated the reaction of O-benzoyl-N-allylhydroxylamide 3-60 with tributyltin hydride and ACCN in refluxing toluene, which led (after formation of the N-radical 3-61 in a 5-exo-trig/5-exo-trig cyclization) to the undesired pyrrolidine 3-62 in 48% yield. Nevertheless, a small structural modification, namely the placement of a chlorine atom at the allyl moiety as in 3-63, induced a 5-exo-/G-endo- instead of the 5-exo-/5-... [Pg.230]

Again, we are reminded that Nature provides the ultimate model for emulation in the use of cooperative interactions of an enormous number of small structural components through many weak, reversible attractions and repulsions to produce such complex microstructures as proteins, enzymes, viruses, and cells with virtually perfect fidelity (Whitesides, 1991). One important strategy for producing ultra-thin films of promise for microelectronics... [Pg.46]

A quasi-racemate is a molecular compound that is related to a true racemic compound by a small structural change in one of the enantiomers (Fredga, 1944). [Pg.103]


See other pages where Small Structures is mentioned: [Pg.97]    [Pg.263]    [Pg.175]    [Pg.145]    [Pg.65]    [Pg.262]    [Pg.317]    [Pg.271]    [Pg.167]    [Pg.715]    [Pg.1325]    [Pg.839]    [Pg.474]    [Pg.279]    [Pg.320]    [Pg.2]    [Pg.31]    [Pg.32]    [Pg.71]    [Pg.420]    [Pg.210]    [Pg.152]    [Pg.277]    [Pg.349]    [Pg.71]    [Pg.4]    [Pg.82]    [Pg.31]    [Pg.43]    [Pg.229]    [Pg.169]    [Pg.97]    [Pg.82]    [Pg.17]    [Pg.174]    [Pg.128]    [Pg.493]    [Pg.103]   
See also in sourсe #XX -- [ Pg.293 , Pg.294 , Pg.295 ]




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