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Of organic materials

More precisely, the rate of ozone formation depends closely on the chemical nature of the hydrocarbons present in the atmosphere. A reactivity scale has been proposed by Lowi and Carter (1990) and is largely utilized today in ozone prediction models. Thus the values indicated in Table 5.26 express the potential ozone formation as O3 formed per gram of organic material initially present. The most reactive compounds are light olefins, cycloparaffins, substituted aromatic hydrocarbons notably the xylenes, formaldehyde and acetaldehyde. Inversely, normal or substituted paraffins. [Pg.261]

Specimens for (S)TEM have to be transparent to the electron beam. In order to get good contrast and resolution, they have to be thin enough to minimize inelastic scattering. The required thin sections of organic materials can be obtained by ultramicrotomy eitlier after embedding into suitable resms (mostly epoxy- or methacrylate resins [H]) or directly at low temperatures by cryo-ultramicrotomy [12]. [Pg.1633]

Introduction. When only very small quantities of organic materials are available their manipulation must necessarily be carried out on a correspondingly small scale. This occurs frequently in research problems, but small-scale preparative work is often of value to the student because considerable economy of materials and of time can be achieved. It is emphasised, however, that the proper training for the organic chemist must rest upon the correct understanding and thorough practice of the manipulations on the macro-scale already described, and that he should consider small-scale work as a sequel to and not as a replacement of the above standard techniques. [Pg.59]

The procedure for the Clemmensen reduction is somewhat different from that previously described (Sections III,9, and IV,6) the chief modification of moment is the use of toluene. The concentration of organic material in the aqueous layer is considerably reduced this results in less high b.p. products being formed, thus leading to a better yield of a purer product,... [Pg.738]

TABLE 8.8 pK, Values of Organic Materials in Water at 25°C Continued)... [Pg.852]


See other pages where Of organic materials is mentioned: [Pg.314]    [Pg.278]    [Pg.299]    [Pg.1630]    [Pg.1101]    [Pg.828]    [Pg.851]   
See also in sourсe #XX -- [ Pg.8 , Pg.18 , Pg.24 , Pg.73 , Pg.146 ]

See also in sourсe #XX -- [ Pg.8 , Pg.18 , Pg.24 , Pg.73 , Pg.146 ]




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Anodic oxidation of organic materials

Application of Natural Lignocellulosic Materials as Adsorbents for Organic Pollutants

Cathodic reduction of unsaturated organic materials

Dating of organic materials

Decomposition of Organic Materials Adsorbed on Soil

Direct cathodic reductions of unsaturated organic materials

Flotation, bubble and foam separations of organic materials

General Considerations in Organic Synthesis. Preparation of Starting Materials

High-pressure studies of metal organic framework materials

Hybrid Materials Based on Modification of Conducting Organic Polymers

In Nonlinear Optical Properties of Organic and Polymeric Materials Williams

In Nonlinear Optical Properties of Organic and Polymeric Materials Williams ACS Symposium Series American Chemical Society: Washington

Nonlinear optical properties of organic materials

Organic functionalization of mesoporous silica materials

Organization of Material

Organization of the material

Oxidation of organic materials

PKA values of organic materials

Pyrolysis of organic materials

SORPTION PROPERTIES OF SELECTED ORGANIC MATERIALS

Self-Organization of Materials Into Microscale Patterns by Using Dissipative Structures

Suitability of soft (organic) clay or silt as fill material

The Supramolecular Chemistry of Organic—Inorganic Hybrid Materials. Edited by Knut Rurack and

Transfer of organic material

Transformation of Organic and Inorganic Material

Transformation, of organic material

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