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Condensation effect

Plate Towers Plate (tray) towers are countercurrent gas-atomized spray scrubbers using one or more plates for gas-liquid contacting. They are essentially the same as, if not identical to, the devices used for gas absorption and are frequently employed in apphcations in which gases are to be absorbed simultaneously with the removal of dust. Except possibly in cases in which condensation effects are involved, countercurrent operation is not significantly beneficial in dust collection. [Pg.1594]

As with the above pyrrolidine, proline-type chiral auxiliaries also show different behaviors toward zirconium or lithium enolate mediated aldol reactions. Evans found that lithium enolates derived from prolinol amides exhibit excellent diastereofacial selectivities in alkylation reactions (see Section 2.2.32), while the lithium enolates of proline amides are unsuccessful in aldol condensations. Effective chiral reagents were zirconium enolates, which can be obtained from the corresponding lithium enolates via metal exchange with Cp2ZrCl2. For example, excellent levels of asymmetric induction in the aldol process with synj anti selectivity of 96-98% and diastereofacial selectivity of 50-200 116a can be achieved in the Zr-enolate-mediated aldol reaction (see Scheme 3-10). [Pg.144]

DIQUARK CONDENSATION EFFECTS ON HOT QUARK STAR CONFIGURATIONS... [Pg.341]

Diquark condensation effects on hot quark star configurations... [Pg.343]

Farrar, M. W., and R. Levine Condensations Effected by Acidic Catalysts. IV. The Acylation of Substituted and Condensed Thiophene Rings. J. Amer. chem. Soc. 72, 4433 (1950). [Pg.146]

Sneed, J. K., and R. Levine Condensations Effected by the Alkali Amides. [Pg.148]

Natural biological membranes consist of lipid bilayers, which typically comprise a complex mixture of phospholipids and sterol, along with embedded or surface associated proteins. The sterol cholesterol is an important component of animal cell membranes, which may consist of up to 50 mol% cholesterol. As cholesterol can significantly modify the bilayer physical properties, such as acyl-chain orientational order, model membranes containing cholesterol have been studied extensively. Spectroscopic and diffraction experiments reveal that cholesterol in a lipid-crystalline bilayer increases the orientational order of the lipid acyl-chains without substantially restricting the mobility of the lipid molecules. Cholesterol thickens a liquid-crystalline bilayer and increases the packing density of lipid acyl-chains in the plane of the bilayer in a way that has been referred to as a condensing effect. [Pg.186]

With Increased proton character, the H has a tendency to hydrogen bond. Below pH 7.5, the appearance of the cationic form has a marked condensing effect In association with unionized amine oxide and results In the production of elongated structures replacing progressively the small and spherical micelles of LDAO In the nonlonlc form. Below pH 4.5, the elongated structures are progressively converted Into low viscosity, small spherical micelles made of LDAOH. [Pg.138]

The phosphonium salt X derived from 1,2 3,A-di-0-isopropylidene-a-D-galactopyranose was readily prepared ( ), and the ylide derived from it was condensed effectively with both aliphatic and aromatic aldehydes. The products all had the a-D-galacto configuration, and the aliphatic aldehydes afforded only the Z-isomers. The less constrained permethylated phosphonium salt XI was also prepared, and... [Pg.97]

There is a large cholesterol concentration gradient in cells from 0-5 mol% in the ER membrane to 25-40 mol% in the plasma membrane [12], Cholesterol has a condensing effect on liquid-crystalline bilayers, causing increased rigidity and thickness [13]. At high concentrations, cholesterol induces an intermediate liquid-ordered phase between the gel and liquid-disordered phases [13]. A number of... [Pg.5]

MD simulations have provided a unique molecular description of cholesterol-phospholipid interactions [31]. Atomistic simulations have succeeded in reproducing the condensing effect of cholesterol on phospholipid bilayers [32-34], With atomistic detail, many properties can be determined, such as the effect of cholesterol on lipid chain ordering or on hydrogen bond formation. Other simulations have focused on the interaction of cholesterol and SM [35-37], Aittoniemi et al. [38] showed that hydrogen bonding alone cannot explain the preferential interaction between cholesterol and SM compared to cholesterol and POPC. [Pg.8]

Condenser - either silica cold finger condensers, effective length 140 mm, or soda glass air condensers, approximately 750 mm. [Pg.58]

Air Condensation Effects At operating temperatures below —191°C (—312°F) in ambient air, condensation and oxygen enrichment occur. These shall be considered in selecting materials, including insulation, and adequate shielding and/or disposal shall be provided. [Pg.108]

Under a variety of conditions, plasmid DNA undergoes a dramatic compaction in the presence of condensing agents such as multivalent cations and cationic polymers. Naked DNA coils, typically with a hydrodynamic size of hundreds of nanometers, after condensation it may become only tens of nanometer in size. Contrary to proteins which show a unique tertiary structure, DNA coils do not condense into unique compact structure. Cationic polymers execute their gene carrier function by their condensation effect on gene materials and, furthermore, their protection effect on DNA from nuclease digestion. Currently, the most widely used cationic polymers in research include linear or branched PEI (poly (ethyleneimine) (161-165), polypeptides such as PLL (poly-L-lysine) (166-169), PLA (poly-L-arginine) (170). [Pg.353]

Significant practical problems, however, remain to carry out the condensation effectively. Conversion was so far achieved only in low yields. Because of the easy cleavage of longer chain alkanes by the same superacids, C -C products predominate. [Pg.19]

Using an automated film balance the behavior of mixed monomolecular films exhibiting deviations from ideality was studied. Particular attention was paid to condensation effects obtained when cholesterol is mixed with a more expanded component. The deviations at various film pressures are discussed in terms of the partial molecular areas of the film components. Slope changes in these plots are caused by phase transitions of the expanded monolayer component and do not indicate the formation of surface complexes. In addition, the excess free energies, entropies, and enthalpies of mixing were evaluated, but these parameters could be interpreted only for systems involving pure expanded components, for which it is clear that the observed condensation effects must involve molecular interactions. [Pg.138]

Since cholesterol is an important component of many biological membranes mixtures of polymerizable lipids with this sterol are of great interest. In mixed monolayers of natural lipids with cholesterol a pronounced condensation effect , i.e. a reduction of the mean area per molecule of phospholipid is observed68. This influence of cholesterol on diacetylenic lecithin (18, n = 12), however, is not very significant (Fig. 32). Photopolymerization indicates phase separation in this system. Apparently due to the large hydrophobic interactions between the long hydrocarbon chains of... [Pg.32]


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See also in sourсe #XX -- [ Pg.200 ]




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Air Condensation Effects

Aldol condensation solvent effects

Benzoin condensation solvent effects

Capillary condensation association effects

Cold condensation effect

Condensate backup effect

Condensation effects mixed monolayers

Condensation inertia, effect

Condensation pressure effect

Condensation reactions, definition electronic effects

Condensation surface effects

Condensation vapor velocity, effect

Condensed phase isotope effects

Condensed phase solvent dynamic effect

Condensed phase, solvent effect

Condensed polyphosphates, effects

Condensed-phase Effects on Structure and Reactivity

Condensed-phase effects

Condensers condensate backup effect

Condensers effect

Convection effect, condensation

Counterion condensation effects

Discovery of a Remarkable Long-Range Effect on the Double Diastereoface Selectivity in an Aldol Condensation

Drying condenser performance, effect

Effect of Curvature on Saturation. Pressure Condensation and Vaporization in Porous Media

Effects of the Condensed-Phase Environment

Evaporation and condensation effects

Film condensation vapor velocity, effect

Knoevenagel condensation solvent effects

Mixed monolayers condensing effects

Non-equilibrium effects due to condensible products

Pressure, effect condensed phase

Superheat effect, condensation

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