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Core result

Finite amounts of glycerol (its viscosity is 945 cP at 25°C) can be dispersed in AOT/heptane or in CTAB/heptane + chloroform systems. The resulting solutions consist of thermodynamically stable, spherical droplets of glycerol stabilized by the surfactant [33,235]. The presence of glycerol within the micellar core results in a reduction of the surfactant mobility [137]. [Pg.493]

The high enantioselectivity again can be rationalized by enantioface-selective alkene coordination in 63 (Fig. 35). The olefin moiety is expected to bind trans to the upper imidazoline moiety [70,73] thereby releasing the catalyst strain. Coordination at this position may, in principal, afford four different isomers assuming the stereoelectronically preferred perpendicular orientation of the alkene and the Pt(II) square plane. In the coordination mode shown, steric repulsion between both olefin substituents and the ferrocene moiety is minimized. Outer-sphere attack of the indole core results in the formation of the product s stereocenter. [Pg.162]

Switching from the biphenyl core to a 3-phenylpyridine core resulted in compounds that were similar in potency to the biphenyl compounds, but with increased inhibition of ACC2 versus ACC1, as... [Pg.102]

IHC Profile Score Cellular Morphology Result Core Result... [Pg.117]

The 1-solar-mass star is not capable of producing the heavier nuclei and the majority of the elements in the Periodic Table. With sufficient initial mass of H the He core produces 12C, the point at which the star starts to die. The formation of an almost pure He core results in the end of the star s main-sequence lifetime. The core of the star begins to contract, raising the temperature to 108 K until the nuclear reactions involving He start. [Pg.94]

From a morphological point of view, block copolymer micelles consist of a more or less swollen core resulting from the aggregation of the insoluble blocks surrounded by a corona formed by the soluble blocks, as decribed in Sect. 2.3. Experimental techniques that allow the visualization of the different compartments of block copolymer micelles will be presented in Sect. 2.4. Other techniques allowing micellar MW determination will also be briefly discussed. Micellar dynamics and locking of micellar structures by cross-linking will be commented on in Sects. 2.5 and 2.6, respectively. [Pg.81]

Superdense configurations with a strange quark core. Results and Discussion... [Pg.333]

Changing to a trisubstituted aromatic precursor such as 1,3,5-tribromobenzene (153) yields the trisallene 155 when l-bromo-2-butyne (154) is used as the coupling partner. When leaving groups of different reactivity are present in the aromatic substrate, such as in l-bromo-4-iodobenzene, different propargyl halides can be connected to the aromatic core, resulting in the formation of arylallenes with different allene substituents. [Pg.204]

DBCP has been found In ground water In Hawaii, California, Arizona, South Carolina, and Maryland (5-7,19,77-79). Typical positives are 0.02-20 ppb. Areas with the highest frequency of positives and the highest well concentrations are the San Joaquin Valley In California and the region southwest of Phoenix, Arizona. The Hawaii contamination has occurred despite several hundred feet of overburden between the basal aquifer and the surface. One set of California soil core results show that ppb amounts of DBCP has leached about 15 m through the unsaturated zone ( ), whereas DBCP was not detected In another set of California soil cores sampled as deep as 10 m and five years after the last application (80). The latter results can possibly be explained by rapid movement of DBCP down the soil profile to depths greater than 10 m. [Pg.304]

Attempts to bind potentially five-coordinate ligands such as HNC4H3-2CH=N(CH2)3 2NMe to a [ReO] + core resulted in the formation of the cationic [ReO(OMe)(L)]" (118) where L is the monodeprotonated Schiff base and one terminal pyrrolyl group remains protonated und uncoordinated." ... [Pg.302]

We have to deal with two distinct sets of problems concerning (a) nuclear reaction rates, and (b) the mathematical treatment of convection. However, their effects are combined in the result. As an example, combined nuclear and convective uncertainties affect the size of the carbon - - oxygen core resulting from helium fusion as well as the ratio of carbon to oxygen within it. From there, they influence the ratio of the ashes of these elements and the mass of the iron core, which is a determining factor in the explosion. [Pg.223]

Both synthetic and natural polymers have superstructures that influence or dictate the properties of the material. Many of these primary, secondary, tertiary, and quaternary structures are influenced in a similar manner. Thus, the primary structure is a driving force for the secondary structure. Allowed and preferred primary and secondary bondings influence structure. For most natural and synthetic polymers, hydrophobic and hydrophilic domains tend to cluster. Thus, most helical structures will have either a hydrophobic or hydrophilic inner core with the opposite outer core resulting from a balance between secondary and primary bonding factors and steric and bond angle constraints. Nature has used these differences in domain character to create the world around us. [Pg.314]

Figure 3.67 IsSpice nonlinear core results of output impedance. Figure 3.67 IsSpice nonlinear core results of output impedance.

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See also in sourсe #XX -- [ Pg.146 , Pg.304 ]




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Neutronic Investigation into Core Design Results

Results of test campaigns on core drying, using hot air and microwave furnaces

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