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Incompatability

One outstanding feature of enzymes is that many of them are highly specific. Those that act on carbohydrates are particularly so, the slightest change in the stereochemical configuration of the molecule being sufficient to make a particular enzyme incompatible and unable to elTect hydrolysis. [Pg.159]

With respect to fuels utilized as heating fuels for industrial furnaces, or as motor fuels for large diesel engines such as those in ships or power generation sets, the characteristics of primary importance are viscosity, sulfur content and the content of extremely heavy materials (asphaltenes) whose combustion can cause high emissions of particulates which are incompatible with antipollution legislation. [Pg.178]

These compounds have been incorporated in the gasolines of the entire world since 1922. Their use will disappear with the general acceptance of catalytic converters with which they are totally incompatible. [Pg.206]

In order to satisfy equation (A 1.1.5 6), the two fiinctions must have identical signs at some points in space and different signs elsewhere. It follows that at least one of them must have at least one node. However, this is incompatible with the nodeless property of ground-state eigenfiinctions. [Pg.20]

It is difficult to observe tliese surface processes directly in CVD and MOCVD apparatus because tliey operate at pressures incompatible witli most teclmiques for surface analysis. Consequently, most fundamental studies have selected one or more of tliese steps for examination by molecular beam scattering, or in simplified model reactors from which samples can be transferred into UHV surface spectrometers witliout air exposure. Reference [4] describes many such studies. Additional tliemes and examples, illustrating botli progress achieved and remaining questions, are presented in section C2.18.4. [Pg.2929]

Besides the MDL Molfile formal, other file formats are often used in chemistry SMILES has already been mentioned in Section 2.3.3. Another one, the PDB file format, is primarily used for storing 3D structure information on biological macromolecules such as proteins and polynucleotides (Tutorial, Section 2.9.7) [52, 53). GIF (Crystallographic Information File) [54, 55] is also a 3D structure information file format with more than three incompatible file versions and is used in crystallography. GIF should not be confused with the Chiron Interchange Formal, which is also extended with. cif. In spectroscopy, JCAMP is apphed as a spectroscopic exchange file format [56]. Here, two modifications can be... [Pg.45]

Oui recommendation is that one should use n-leave-out cross-validation, rather than one-leave-out. Nevertheless, there is a possibility that test sets derived thus would be incompatible with the training sets with respect to information content, i.e., the test sets could well be outside the modeling space [8]. [Pg.223]

Hence, the main danger in the process of compiling test sets remains. Fortunately, there are some other approaches which, although they may look more sophisticated, do diminish the possibiHty of such incompatibilities. [Pg.223]

It should be emphasized at this point that the basic requirements of compatibility and consistency of finite elements used in the discretization of the domain in a field problem cannot be arbitrarily violated. Therefore, application of the previously described classes of computational grids requires systematic data transfomiation procedures across interfaces involving discontinuity or overlapping. For example, by the use of specially designed mortar elements necessary communication between incompatible sections of a finite element grid can be established (Maday et ah, 1989). [Pg.195]

Protect functional groups which may be incompatible with a set of reaction conditions... [Pg.57]

In an organic synthesis it sometimes happens that one of the reactants contains a func tional group that is incompatible with the reaction conditions Consider for example the conversion... [Pg.723]

The major limitation to this procedure is that the alkyl or aryl halide must not bear substituents that are incompatible with Grignard reagents such as OH NH SH or... [Pg.808]

Heterogeneous alloys can be formed when graft or block copolymers are combined with a compatible polymer. Alloys of incompatible polymers can be formed if an interfacial agent can be found. [Pg.1014]

TABLE 11.50 Some Common Reactive and Incompatible Chemicals... [Pg.1207]

Suppose we have a sample containing an analyte in a matrix that is incompatible with our analytical method. To determine the analyte s concentration we first separate it from the matrix using, for example, a liquid-liquid extraction. If there are additional analytes, we may need to use additional extractions to isolate them from the analyte s matrix. For a complex mixture of analytes this quickly becomes a tedious process. [Pg.544]

Clinical Analysis Clinical, pharmaceutical, and forensic labs make frequent use of gas chromatography for the analysis of drugs. Because the sample s matrix is often incompatible with the GC column, analytes generally must be isolated by extraction. Figure 12.25b shows how gas chromatography can be used in monitoring blood alcohol levels. [Pg.572]

Compatibihty of acetone with other materials should be carefliUy considered, especially in disposal of wastes. It reacts with chlorinating substances to form toxic chloroketones, and potentially explosively with some peroxy compounds and a number of oxidizing mixtures. Mixed with chloroform, acetone will react violently in the presence of bases. Other incompatibilities ate Hsted in the Sax handbook (53). [Pg.98]

Pentaeiythritol Tetranitrate. Specification-grade pentaerythritol tetranitrate (PETN) can be stored up to 18 months at 65°C without significant deterioration. However, many materials have been found to be incompatible with PETN and the presence of as Htfle as 0.01% occluded acid or alkah greatly accelerates decomposition. The decomposition of PETN is autocatalytic with reported kinetic constants oi E = 196.6 kJ/mol (47 kcal/mol) and Z = 6.31 x 10 . The decomposition products of PETN at 210°C in wt % are 47.7 NO, 21.0 CO, 11.8 NO2, 9.5 N2O, 6.3 CO2, 2.0 H2, and 1.6... [Pg.14]


See other pages where Incompatability is mentioned: [Pg.160]    [Pg.61]    [Pg.235]    [Pg.252]    [Pg.21]    [Pg.21]    [Pg.1264]    [Pg.2367]    [Pg.2369]    [Pg.2377]    [Pg.2377]    [Pg.2379]    [Pg.2644]    [Pg.2655]    [Pg.104]    [Pg.352]    [Pg.18]    [Pg.9]    [Pg.11]    [Pg.1288]    [Pg.414]    [Pg.418]    [Pg.586]    [Pg.185]    [Pg.11]   
See also in sourсe #XX -- [ Pg.75 ]




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2 incompatible oils

ABO incompatibility

Acetaldehyde, incompatibilities with

Acetic acid incompatibilities with

Acetic anhydride, incompatibilities with

Acetylene chemical incompatibilities

Acetylene incompatibilities with

Acids chemical incompatibilities

Acids incompatibilities

Acids incompatible

Action incompatability

Aldehydes, incompatibilities with

Alkali metals chemical incompatibilities

Alkali metals, incompatibilities with

Alkaline earth metals chemical incompatibilities

Ammonia anhydrous, incompatibilities with

Ammonia chemical incompatibilities

Ammonium nitrate chemical incompatibilities

Ammonium nitrate incompatibilities with

Anilines, incompatibilities with

Antimony, incompatibilities with

Ascorbic acid incompatibilities

Asphaltene incompatibility

Basalts incompatible elements

Biopolymers incompatibility

Blended polymers impact resistance, incompatibility

Blends, incompatible

Block copolymers chain segment incompatibilities

Block incompatibility

Block polymers, chemically incompatible

Block polymers, chemically incompatible components

Blood Incompatibility, newborn

Bromine acetylene incompatibility

Bromine chemical incompatibilities

Carbide salts, incompatibilities with

Carbon dioxide incompatibilities with

Carbon, incompatibilities with

Carboxylic acids, incompatibilities with

Cascade Reactions with Incompatible Catalysts and Nanoencapsulation

Catalysts incompatible

Chemical incompatibilities

Chemically incompatible components

Chemicals Generally Incompatible

Chemicals incompatible

Chlorates, incompatibilities with

Chlorine acetylene incompatibility

Chlorine chemical incompatibilities

Chromic acid, incompatibilities with

Classes of Incompatible Chemicals

Coal, incompatibilities with

Common reactive and incompatible

Compatibility incompatibility

Compatibility stability incompatibility

Composites incompatibility

Concentrated acids, incompatibilities with

Continental crust incompatible element ratios

Copper incompatibility

Copper, incompatibilities with

Cyanides incompatibilities

Cytoplasmic incompatibility

Databases incompatibilities

Databases incompatibility between

Degree of incompatibility

Diethyl ether incompatibilities with

Drug incompatibilities

Enriched mantle incompatible element ratios

Epoxy elastomer incompatibility

Ether, incompatibilities with

Explosive mixtures, incompatibility

Flammable gases chemical incompatibilities

Flammable liquids chemical incompatibilities

Flammable solids chemical incompatibilities

Fluorine acetylene incompatibility

Fluorine chemical incompatibilities

Fluorine, incompatibilities with

Fractionated crystallization incompatible polymer blends

Fracture fluid additives, incompatible

Functional groups incompatibility

Gelatin capsules incompatibilities

Genomic incompatibility

Geochemistry incompatible elements

Glass, incompatibilities with

Glycerol incompatibilities with

Graft polymers chemically incompatible components

Halogens acetylene incompatibility

Halogens chemical incompatibilities

Halogens, incompatibilities with

Hazards materials incompatibility

Heavy metals, incompatibilities with

High performance liquid chromatography incompatibilities with

Hydrocarbons saturated, incompatibilities with

Hydrofluoric acid, incompatibilities with

Hydrogen peroxide chemical incompatibilities

Hydrogen peroxide, incompatibilities with

Hydrophobic adsorption, incompatibility

Hygromagmatophile and Incompatible Elements

INCOMPATIBLES—A CLASH OF VIOLENT PROPORTIONS

In an incompatible world

Incompatibilities parenteral preparations

Incompatibilities, organic chemicals

Incompatibility

Incompatibility

Incompatibility Incompatible

Incompatibility Incompatible

Incompatibility causes

Incompatibility colourants

Incompatibility forces

Incompatibility gasoline

Incompatibility graph

Incompatibility of Some Equations

Incompatibility of chemicals

Incompatibility of the components

Incompatibility physical effects

Incompatibility problems

Incompatibility strain

Incompatibility with biological control

Incompatibility with polystyrene

Incompatibility, degree

Incompatible

Incompatible

Incompatible Chemicals aqueous solutions

Incompatible Chemicals gases

Incompatible Chemicals glass

Incompatible Chemicals inorganic liquids

Incompatible Chemicals metals

Incompatible Chemicals minerals

Incompatible Chemicals semiconductors

Incompatible Chemicals water

Incompatible and reactive chemicals

Incompatible catalytic systems

Incompatible components

Incompatible element

Incompatible element plots

Incompatible element ratio plots

Incompatible element ratios

Incompatible element: definition

Incompatible functional groups

Incompatible materials

Incompatible materials NOAA Worksheet

Incompatible materials hazards identification

Incompatible materials screening methods

Incompatible mixtures

Incompatible polyblends

Incompatible polyblends properties

Incompatible polymer blends

Incompatible polymers, copolymers

Incompatible polymers, viscosity

Incompatible polyols

Incompatible polyols polyurethanes

Incompatible salts

Incompatible sample solvents

Incompatible solutes

Incompatible storage

Incompatible substances

Incompatible wastes

Incompatibles

Incompatibles

Incompatibles storing

Incompatibles table

Interfaces incompatible

Iodine, incompatibilities with

Lactic acid, incompatibilities with

Lactose incompatibilities

Lubricant incompatible

Macrogol incompatibilities

Magnesium stearate incompatibilities

Mass spectrometry incompatibilities with HPLC

Mass spectrometry incompatibility

Materials Incompatibility

Mercury acetylene incompatibility

Mercury chemical incompatibilities

Mercury incompatibilities with

Metal powders, incompatibilities with

Metals acetylene incompatibility

Metals chemical incompatibilities

Mixing of Incompatible Chemicals

Mobile phase incompatibility

Mobile phase incompatible sample solvents

Mutual incompatability

Nitric acid chemical incompatibilities

Nitric acid incompatibilities with

Nitrites, incompatibilities with

Oral liquids incompatibilities

Organic bases, incompatibilities with

Oxidants, incompatibilities with

Oxidizing agents, incompatibilities with

Oxygen chemical incompatibilities

Parabens incompatibilities

Perchlorates, incompatibilities with

Perchloric acid, incompatibilities with

Permanganates, incompatibilities with

Peroxides, incompatibilities with

Phase separation incompatibility)

Phenol incompatibilities

Phenols, incompatibilities with

Phosphorus chemical incompatibilities

Physicochemical drug interactions and incompatibilities

Plant self-incompatibility

Plasmids incompatibility

Plastic incompatibility

Polymer-aggregate incompatibility

Polymer-surfactant incompatibility

Polymers incompatibility

Polysaccharides incompatibility

Polysorbate 80 incompatibility

Potassium metal, incompatibilities with

Potassium permanganate, incompatibilities with

Potential incompatibility

Principle of incompatibility

Proteins thermodynamic incompatibility

Quaternary ammonium compounds incompatibilities

Reinforcement of incompatible

Rh factor incompatibility

Rh incompatibility

Safety incompatible chemicals

Self-incompatibility

Self-incompatibility reaction

Self-incompatibility systems

Silver salts, organic, incompatibilities with

Sodium, metal, incompatibilities with

Sorbitol incompatibilities

Specific Chemicals with Incompatibles

Steric incompatibility

Styrene incompatible polystyrene

Sugar, incompatibilities with

Sulfides incompatibilities

Sulfur, incompatibilities with

Sulfuric acid, incompatibilities with

Supramolecular polymers incompatibility

Surfactants sodium lauryl sulfate incompatibility

Terminal alkynes, incompatibilities with

The Incompatibility Problem

The good use of compatible and incompatible elements

Thermodynamic incompatibility

Thermodynamically incompatible

Thermodynamically incompatible mixtures

Trace elements incompatible behavior

Unilateral incompatibility

Waste incompatibility, chemical

Wood, incompatibilities with

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