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Properties description

Particulate matter is a complex emission that is classified as either suspended particulate matter, total suspended particulate matter, or simply, particulate matter. For human health purposes, the fraction of particulate matter that has been shown to contribute to respiratory diseases is termed PMio (i.e., particulate matter with sizes less than 10 tim). From a control standpoint, particulate matter can be characterized as follows (1) particle size distribution and (2) particulate matter concentration in the emission (mg/m ). On occasion, physical property descriptions may also be employed when there are specific control applications. [Pg.244]

C. Fenech, and J. P. Vigier, Thermodynamical properties/description of the de Broglie-Bohm... [Pg.181]

I devoted a significant effort in the next chapter to nanomaterials, due to their increasing popularity and relevance for current/future applications. In addition to structure/property descriptions and applications, essential topics such as nomenclature, synthetic techniques, and mechanistic theories are described in detail. The last chapter is also of paramount importance for the materials community -characterization. From electron microscopy to surface analysis techniques, and everything in between, this chapter provides a thorough description of modern techniques used to characterize materials. A flowchart is provided at the end of the chapter that will assist the materials scientist in choosing the most suitable technique(s) to characterize a particular material. [Pg.493]

Step 1 Protein work-up Protein identification Protein isolation Biological property description Protein structure work-up - amino acid sequencing and mapping, glycosylation, disulfide bridging, peptide domains... [Pg.260]

PENETRABILITY A grout property descriptive of its ability to fill a porous mass. Primarily a function of viscosity. [Pg.492]

Typical examples of materials now being used are given in Table I followed by a brief properties description. [Pg.452]

Property Description Dimension Range(+) Range (—) Maximum value... [Pg.282]

The model of freely connected chain, introduced by Kuhn and Mark, has a great significance for polymers conformational properties description [1], In this model a polymer chain is replaced by an equivalent one, consisting of rod-like segments, spatial orientation of which is mutually independent. The freely connected chain statistics application possibility to real macromolecules is based on the fact, that any real chain at sufficient length acquires freely connected chain properties. [Pg.74]

The fact, that macromolecular coil in diluted solution is a fractal object, allows to use the mathematical calculus of fractional differentiation and integration for its parameters description [72-74]. Within the framework of this formalism there is the possibility for exact accounting of such nonlinear phenomena as, for example, spatial correlations [74]. In the last years the methods of ftactional differentiation and integration are applied successfully for pol5mier properties description as well [75-77]. The authors [78-81] used this approach for average distance between polymer chain ends calculation of polycarbonate (PC) in two different solvents. [Pg.89]

The considered circumstances served as a cause for the development of the fractal analysis, particularly practical applications for polymer solutions (melts) properties description, which will be considered in the present monograph. [Pg.328]

The TTL language is based on the assumption that dynamics can be described as an evolution of states over time. The notion of state as used here is characterised on the basis of an ontology defining a set of physical and/or mental (state) properties that do or do not hold at a certain point in lime, i hese properties are often called state properties to distinguish them from dynamic properties that relate different states over time. A specific state is characterised by dividing the set of state properties into those that hold, and those that do not hold in the state. Examples of state properties are aircraft A moves with speed S , or Air Traffic Controller C provides runway clearance to aircraft A . Real value assignments to variables are also considered as possible state property descriptions. [Pg.69]

Plastic compositions including vitamin E for medical containers and methods for providing such compositions and containers, intellectual property description (WO/1999/003921). World Intellectual Property Organization 1999. [Pg.246]

Some typical features of the above-mentioned families of adhesives are listed in Tables 5.17 and 5.18 taken from reference 5.20. Because each family includes several different adhesives it is not possible to give exact property descriptions. The descriptions... [Pg.464]

To suitably compare measurement values obtained at different times or locations, there must be assurance that the tests were performed under identical conditions. To accomplish this, a committee of experts in each particular subject area develops standardized test methods. The methods establish the exact conditions for all test parameters by all parties conducting tests to measure the property of interest. A major publisher of test methods covering polymer resins and plastic films is the American Society for Testing and Materials (ASTM), West Conshohocken, PA, USA. In this chapter, ASTM method reference numbers are included in parentheses at the beginning of each property description section. [Pg.103]

Mullen, C.K., Roy, P.J., 1972. Fabrication and properties description of Avco 3D carbon-carbon cylindrical composites. In USA National SAMPE S5nnposium, Los Angeles, CA, 11-13 April, pp. ni-A-Two-1-8. [Pg.77]

TaMe 10.24. Critical properties for proppants Critical properties Description... [Pg.680]

Table 14.22. Description of soils for engineering purposes according to ASTM D2488 Properties Description... Table 14.22. Description of soils for engineering purposes according to ASTM D2488 Properties Description...
Every attempt has been made to ensure as comprehensive an index as possible, without an inordinant number of main or sub-classifications. It has therefore been necessary on occasion - and applying particularly to unsaturated polyesters - to be selective, choosing only those descriptions - typically the two which appear the most important - as sub-classification. However at the same time, much depends on the resin property, application or other description initially provided by the manufacturer or supplier, and here some assumptions have proved necessary. Further, such understood property descriptions such as for example corrosion-resistant for isophthalic-NPG resins, have not been included. [Pg.43]

The assumption [that an explanatory asymmetry is sufficient to exclude identity] is false. Explanation is an epistemological endeavor. Identity is a metaphysical fact. It is entirely possible for two property descriptions cp and lt to refer to the same property in all possible worlds, and yet, since we may know that an object answers the description

object answers the first description, or it may succeed in deepening our understanding of the fact that the object answers the first description. (En 1976,290)... [Pg.116]


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See also in sourсe #XX -- [ Pg.367 ]




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Description affecting mechanical properties

Description and General Properties

Description of Absorption and Scattering Properties

Description of Properties Tabulated

Electronic properties, layer description

Extensive property, description

Intensive property, description

Phase Description and Properties

Physical properties description

Polymer property description, distributions

Solutions and solution properties description

Surface properties techniques description

System, description properties

Thermal properties description

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