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Properties listed

Properties listed in this table can be supplemented by the comprehensive collections in References 10 and 11. [Pg.206]

Extra duties are imposed on the producers of Special Waste , i.e. a waste that is on the European Hazardous Waste list reproduced in Table 17.6 and if it has one or more of the hazardous properties listed in Table 17.7 (reproduced from Part 2 of Schedule 2 of the Special Waste Regulations, 1996). Also Special Waste is any Controlled Waste which has one of the listed properties. Extra requirements are detailed for the safe transfer and management of such waste. [Pg.517]

Example 3.7 A thin unidirectional Kevlar fibre/epoxy composite has the properties listed below. If the fibres are aligned at 6 to the x-axis, show how... [Pg.190]

Example 3.11 A series of individual plies with the properties listed below are laid in the following sequence to make a laminate... [Pg.206]

A carbon/epoxy composite with the stacking arrangement [0/ - 30/30]j has the properties listed below. Determine the value of in-plane stress which would cause failure according to the (a) Maximum Strain (b) Maximum Stress and (c) Tsai-Hill criteria. [Pg.243]

Unless mentioned otherwise, the properties listed are for the polymer isolated from the growth medium. [Pg.96]

Well-measuring strands shall conform to the properties listed in Table 4-29. To test finished strands to their breaking strength, suitable sockets or other acceptable means of holding small cords shall be used. [Pg.580]

Definition 1. An acid is a substance that has the properties listed below when dissolved in water ... [Pg.195]

N-Methyl-N-f2-Nitroxy propyl) Nitramine. (Me2NENA N-(2-NitroxypropyI) methyl nitramine. (02N)N(CH3).(CH2CH(0N02).CH3, mw 179.16, N 23.46%, OB to C02 -66.80%, pale yellow oil, mp 22—23°, d 1.320g/cc at 25/4°, RI 1.478 at 25°. Prepn from 2-hydroxy-propylamine after nitration with 98% nitric acid at 10° by reaction of the amine-nitric acid mixt with acetic anhydride acetyl chloride at 35°. Reaction mixt poured on ice. Yield is 74%. No expl properties listed Reft 1) Beil - not found 2) Blomquist, OSRD 4134, 45 119 (1944)... [Pg.132]

The requirements of the US Armed Forces are detailed in Mil Spec MIL-S-12210A, Strontium Oxalate , (11 Sept 1952) Strontium oxalate shall be of the following grades as specified Grade A — anhydrous strontium oxalate Grade B — hydrated strontium oxalate, and shall conform to the physical and chemical properties listed in Table 1... [Pg.435]

In principle, the equilibrium approach can be used to measure any of the thermochemical properties listed above. However, in practice, it is most commonly used for the determination of gas-phase acidities, proton affinities, and electron affinities. In addition, equilibrium measurements are used for measuring ion affinities, including halide (F, Cl ) and metal ion (alkali and transition metal) affinities. [Pg.212]

An important issue in 2D liquid separations is finding a first dimension, which can provide information on the p7 of the protein. This is important as p7 information has biological significance in proteomics where it is a physical property listed in the databases and can aid in protein identification. The use of p7... [Pg.223]

From these experimental data and the physical properties listed below ... [Pg.23]

Symmetric polysiloxanes having m — 2—9 have also been investigated, with some properties listed in several articles in a handbook [158], and elsewhere [20]. The isotropization temperatures reported in these studies show a very interesting increase with increase in the number m of methylene groups in the side chains... [Pg.367]

The properties listed are for recombinant DszB enzyme expressed in E. coli. The original enzyme from R. erythropolis could not be isolated due to its low yield from the native host. [Pg.98]

The two properties listed in Table 27-1 that suggest that Group 1A metals are unlikely to exist as free metals are (1) the low ionization energies, which show how easily the outermost electron can be removed and (2) very negative standard reduction potentials, which indicate that the aqueous ions are not easily reduced to metals and that the free metals are easily oxidized to 1+ cations. [Pg.437]

All chemicals, chemical trade names, and other substances with known biological properties listed in the Handbook of Chemical Risk Assessment series — a total of about 1600 — are presented in Table 33.1. [Pg.1758]

When q "c = q"g cri(, then Ts = Tig, and hence the material properties can be determined. We see these fitted effective properties listed in Table 7.5 for a variety of materials. Table 7.6 gives generic data for materials at normal room conditions. It can be seen that for generic plywood at normal room temperature kpc = 0.16(kW/m2 K)2s while under ignition conditions it is higher 0.5 (kW/m2 K)2 s. Increases in k and c with temperature can partly explain this difference. The data and property results were taken from Quintiere and Harkleroad [18]. [Pg.185]

Draw on the 143Nd/144Nd vs 87Sr/86Sr diagram the curve representing the hybrids (hyb) of a basalt (a = bas) and a gneiss (/ =gn) with the properties listed in Table 1.8a. [Pg.22]

The CAMPUS Plastics Database, covering some 40 manufacturers grades of materials, provides data to a standard format in accordance with ISO 10350 [11] and ISO 11403 [12]. It is available from participating manufacturers and through www.campusplastics.com. Singlepoint properties listed include creep modulus after 1 h and 1,000 h and thermal expansion. Multi-point data listed include creep modulus at five temperatures. The CAMPUS website provides addresses and telephone numbers from which data to the agreed format may be obtained, and links to some manufacturers websites directly. [Pg.148]

Ides operates the Prospector materials database with a search facility covering 38,000 plastic products from 400 global manufacturers (www.ides.com). Among the durability properties listed are creep and fatigue. [Pg.148]

Different from 2D QSAR, classification models reported in the papers cited above do not always allow the identification of descriptors related to the hERG activity however, in some cases, descriptors or molecular features crucial for the assignment to either of the classes were explicitly indicated. This allowed us to tentatively collect them in Table 5.2, which when compared with Table 5.1 provides (as expected) a very similar picture of the molecular properties involved in the blockade of hERG by drugs. Even though the properties listed in Table 5.2 are not associated with a positive or a negative sign (they can only be indicated as relevant for the classification), they... [Pg.118]

For a hypothetical sorbent with properties listed in Table II, we assume that experiments have shown that sorption of dichlorobenzene (log Kqw = 3.3) is 95% complete within one day. R equals 1000 on the basis of the correlation of Karickhoff et al. (15). If we estimate Rp for other solutes from the same correlation and assume negligible mineral sorption, we may estimate the time required to reach 95% of equilibrium for other compounds. These calculations imply that approximately 0.1 days will be required to reach 95% equilibrium for benzene (log KQw = 2.1), approximately 10 days for 1,2,4,5-tetrachlorobenzene (log Kow = 4.7) and approximately 100 days will be required for hexachlorobenzene (log KQW - 5.5). [Pg.210]

Some of the information pertaining to a group is stored in property lists. Table I exemplifies how this looks for the simple case of the cyclic group of order three. (This would be isomorphic to the rotational subgroup of a molecule such as methyl fluoride. The operators (1 2 3) and (1 3 2) would correspond to the permutations of the three hydrogen nucleii numbered 1, 2 and 3. NIL, the language s symbol for the empty list, serves as the identity.)... [Pg.179]

The three operators are represented by the three Gensyrn symbols in the list (// GRP-1 lhGRP-2 // GRP-3) which is stretched out across the top of the table to make room for the property lists underneath. These symbols by themselves mean nothing. The useful information is contained in the property lists, which are displayed underneath in vertical tabular format for readability. The property list is a list of pairs of symbols. The first symbol of each pair is the property indicator, which allows access to the second symbol, the property value, by execution of an access function. For example, the PERMOP property is the permutation operator for each group element. If we want the permutation operator for a particular group element, we use the access function GET, to get from the appropriate GENSYM symbol the PERMOP property. [Pg.179]

INVERSE are the inverse operator list, and the Gensym symbol for it, respectively. The CLASS property value is another Gensym atom which has as its value a list of all of the operators in that class. (In this simple case, the value of // CLS-1 is the list (// GRP-1), etc.) The remaining pairs in each property list represent the group multiplication table. For any particular group multiplication, an element of the group list at the top of Table I pertains to the right operator, the property indicator pertains to the left operator, and the property value pertains to the product. For example, for the product of the permutation operator (123) with itself,... [Pg.180]

Much of the computational labor expended is used to set up these property lists, but once that is accomplished, other manipulations which need the information stored in them only have to GET the results which are stored in these property lists. [Pg.180]

The left element on each line is a name for the field (or record) which is shown in the right element. The ORDER of this group is 2. The OPERAND list used for this example was the numbers 4 and 5. The Gensym symbols for the two group elements are stored in the GROUP-LIST field. As was explained earlier, property lists were attached to each of these which contained the multiplication table and other information. The elements of the CLASS-LIST and CHARACTER-LIST fields contain the information indicated by their names. In the above examples, we did not work with the subgroup of S2, so NIL is stored there but the direct product name S3-DP-S2 is stored in the field SUPERGROUPS. Attached to this name (not shown) is the association list for the correlation between the representations, which was used for the construction of Table IV. [Pg.185]


See other pages where Properties listed is mentioned: [Pg.448]    [Pg.424]    [Pg.236]    [Pg.92]    [Pg.248]    [Pg.48]    [Pg.435]    [Pg.76]    [Pg.193]    [Pg.3]    [Pg.424]    [Pg.22]    [Pg.569]    [Pg.337]    [Pg.144]    [Pg.277]    [Pg.278]    [Pg.179]   
See also in sourсe #XX -- [ Pg.187 ]




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