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Davison

B. Davison, Neutron Transport Theoty, Clarendon Egress, Oxford, UK, 1957, Chap. VI, Section 1. [Pg.176]

P. S. C. Rao andj. M. Davidson, in M. R. Overcash andj. M. Davison, eds.. Environmental Impact of Nonpoint Source Pollution, Ann Arbor Science Pubhsher, Ann Arbor, Mich., 1980, pp. 23—67. [Pg.225]

Davison-Bryant, Trans. Conf. Ind. Wa.stes, 14th Ann. Meet. Ind. Hyg. Found. Am., 39, 1949. [Pg.2183]

Semicarbazide hydrochloride (hydrazine carboxamide hydrochloride) [563-41-7] M 111.5, m 173 (dec), 175 (dec), pK " 3.66. Crystd from aqueous 75% EtOH and dried under vacuum over CaS04. Also crystd from a mixture of 3.6 mole % MeOH and 6.4 mole % of water. [Kovach et al. J Am Chem Soc 107 7360 1985.] IR v 700, 3500 cm" [Org Synth Coll Vol I 485 I94I-, Davison and Christie J Chem Soc 3389 I955 -, Thiele and Stange Chem Ber 27 33 I894 pK Bartlett J Am Chem Soc 54 2853 1923]. The free base crystd as prisms from abs EtOH, m 96° [ Curtius and Heidenreich Chem Ber 21 55 1894]. TOXIC ORALLY, possible CARCINOGEN and TERATOGEN. [Pg.351]

There are numerous other specialized reviews in specific topical areas that are listed in the Davison and Graham review cited in Table 1.2. Beyond these sources of information, the various Proceedings of the Ameriean Physieal Soeiety Topieal Conferenees on Shoek Waves in Condensed Matter should be consulted [6]. The recent book by the present author may also be of interest [16]. [Pg.5]

O.E. Jones, in Behavior and Utilization of Explosives in Engineering Design (edited by L. Davison et al.) New Mexico Section, American Society of Mechanical Engineers, New York, 1972, pp. 125-148. [Pg.6]

L. Davison and R.A. Graham, Shock Compression of Solids, Phys. Rep. 55, 255 (1979). D.G. Doran and R.K. Linde, Shock Effects in Solids, in Solid State Physics, Vol. 19... [Pg.42]

Shock-wave data have seen most applications in the measurement of density at high pressure. Other properties of compressed condensed materials whose measurements are discussed in this chapter include sound speed and temperature. Review articles by Grady (1977), Yakushev (1978), Davison and Graham (1979), Murri et al. (1974), Al tshuler (1965), and Miller and Ahrens (1991) summarize experimental techniques for measuring dynamic yielding. [Pg.75]

As further discussed in several review articles on shock compression (Al tshuler, 1965 Davison and Graham, 1979 McQueen et al., 1970), Hugoniot data for many condensed media may be described over varying ranges of pressure and density in terms of a linear relation of shock and particle velocity. [Pg.79]

G.T. Gray III, Shock Recovery Experiments An Assessment, in Shock Compression of Condensed Matter—1989 (edited by S.C. Schmidt, J.N. Johnson, and L.W. Davison), North-Holland, Amsterdam, 1990, 407 pp. [Pg.213]

More general dynamic loading conditions can lead to more complex domains of tensile stress and spall. For example, in a Taylor impact experiment (Kipp and Davison, 1981), where a short cylinder of material is caused to undergo symmetric normal impact on the flat surface of a large block of material, a roughly spherical region within the cylinder is carried into dynamic tension and can undergo spall. [Pg.267]


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See also in sourсe #XX -- [ Pg.388 ]

See also in sourсe #XX -- [ Pg.281 ]

See also in sourсe #XX -- [ Pg.102 , Pg.114 ]




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