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Ceramics analysis

Carbon, analysis, 217, 318, 319 Carbon brushes, examination by x-ray absorptiometry, 97 Cathode follower, 60 Cauchois arrangement, 119, 120, 123 Caustic circle, 119, 120 Cells for liquids, 191, 194 Cements, analysis in Applied Research Laboratories PXQ, 260, 261 Ceramics, analysis by x-ray emission spectrography, 222-224 Cerenkov radiation, 43 Cesium, determination by x-ray emission spectrography, 328 Characteristic-line generator of Eng-strom, 144... [Pg.342]

A Xany insights into early civilizations have been provided by the study of ceramics. Various physical and chemical methods are considered standard techniques for modem archaeology (I, 2). The macroanalysis, microanalysis, and trace chemical analysis of artifacts have added greatly to the understanding of prehistoric civilizations (3-6). The chemical techniques used for ceramic analysis have included spark source mass spectrometry (7) ... [Pg.129]

Ceramics-Analysis. 2. Ceramic materials. I. Lee, Burtrand Insung. II. Komarneni, Sridhar. III. Title. IV. Series Materials engineering (Marcel Dekker, Inc.) 28. [Pg.725]

There are many kinds of archaeology, including archaeological science. Archaeological Science is a general term for laboratory methods in archaeology that includes both instrumental and noninstrumental areas such as faunal analysis, archaeobotany, human osteology, and even some aspects of stone and ceramic analysis. In some cases, these methods can also be applied in the field (Fig. 1.1). [Pg.2]

In addition to diagenetic alteration, treatments after excavation such as acidwashing or impregnation with stabilizers can also affect composition. Thus one should keep in mind that a ceramic analysis reflects the composition today, which might not be the same as when it was manufactured. [Pg.49]

Orna, M.V. 1996a. Recent ceramic analysis 2. composition, production, and theory. Journal of Archaeological Research 4(3) 165-202. [Pg.291]

Obtaining a representative sample, which is not significantly contaminated with any of the elements to be determined, is an essential and vital part of ceramic analysis. However sophisticated the analytical procedures used, their results are worthless if sampling is not carried out properly. Many samples submitted for ceramic analysis are relatively small quantities of powder or small pieces that require... [Pg.505]

In many ways, modern ceramic analysis is synonymous with XRF, usually combined with the fused. [Pg.506]

CARES. Ceramic Analysis and Reliability Evaluation of Structures. (Formerly known as scare - Structural Ceramic Analysis and Reliability Examination). A Fortran 77 computer program using Weibull and Batdorf fracture statistics to predict the fast-fracture reliability of isotropic ceramics. Carlton Shape. A tea-cup the top half of which is cylindrical, the bottom half being approximately hemispherical but terminating in a broad, shallow foot. For specification see B.S. 3542. [Pg.51]

Ceramics Analysis and Reliability Evaluation of Structures cyclic frequency Finite Element Analysis... [Pg.445]

Nemeth, N. N., Powers, L. M., Janosik, L. A., and Gyekenyesi, J. P., Ceramics Analysis and Reliability Evaluation of Structures Life Prediction Program Users and Programmers Manual. ... [Pg.467]

CARES (Ceramics Analysis and Reliability Evaluation of Structures) is a public-domain program from the National Aeronautic and Space Agency (NASA) that incorporates Weibull statistics. The program was formally known by the less friendly acronym SCARE (Structural Ceramics Analysis and Reliability Evaluation). [Pg.304]

N. Nemeth, J. Manderscheid, J. Gyekenyesi, Ceramics Analysis and Reliability Evaluation of Structures (CARES). Users and programmers manual (1990)... [Pg.160]


See other pages where Ceramics analysis is mentioned: [Pg.54]    [Pg.156]    [Pg.156]    [Pg.57]    [Pg.382]    [Pg.131]    [Pg.78]    [Pg.445]    [Pg.507]    [Pg.507]    [Pg.508]    [Pg.156]    [Pg.444]   


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