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Ceramics source

Figure 5.6 Example of a ceramic multichip module (MCM-C) and a hybrid microcircuit. Top MCM-C fabricated from high-temperature cofired ceramic. Source Honeywell Sohd State Electronics Center. Bottom Multilayer thick-film hybrid microcircuit. Figure 5.6 Example of a ceramic multichip module (MCM-C) and a hybrid microcircuit. Top MCM-C fabricated from high-temperature cofired ceramic. Source Honeywell Sohd State Electronics Center. Bottom Multilayer thick-film hybrid microcircuit.
Figure 6.14 Anisotropic UF membranes (a) polymeric (thickness of "skin" shown) and (b) ceramic. Source Judd, The MBR Book, Elsevier, 2006. Figure 6.14 Anisotropic UF membranes (a) polymeric (thickness of "skin" shown) and (b) ceramic. Source Judd, The MBR Book, Elsevier, 2006.
Figure 14.23 Oxidation characteristics of high temperature ceramics. Source Reprinted from Strife JR, Sheehan JE, Ceramic Bulletin, 67, 369-374, 1988. Figure 14.23 Oxidation characteristics of high temperature ceramics. Source Reprinted from Strife JR, Sheehan JE, Ceramic Bulletin, 67, 369-374, 1988.
Neff, H., Glowacki, D.M. (2002) Ceramic source determination by instrumental neutron activation analysis in... [Pg.838]

Source Data compiled by J.S. Park from No. 1 Materials Index, Peter T.B. Shaffer, Plenum Press, New York, (1964) Smithells Metals Reference Book, Eric A. Brandes, ed., in association with Fulmer Research Institute Ltd. 6th ed. London, Butterworths, Boston, (1983) and Ceramic Source, American Ceramic Society (1986-1991). ... [Pg.67]

Eric A. Brandes, ed., in association with Fulmer Research Institute Ltd. 6th ed. London, Butterworths, Boston, (1983) and Ceramic Source, American ... [Pg.474]


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See also in sourсe #XX -- [ Pg.121 ]




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