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5. References

[1] D. P. Bentz and K. K. Hansen, Preliminary observations of water movement in cement pastes during curing using x-ray absorption, Cem. Concr. Res. 30, 1157-1168 (2000).

[2] D. P. Bentz, K. K. Hansen, H. D. Madsen, F. Vallee, and E. J. Griesel, Drying/hydration in cement pastes during curing, Mater. and Struct. 11 (34), 557-565 (2001).

[3] R. Defay, I. Prigogine, A. Bellemans, and D. H. Everett, Surface Tension and Adsorption, John Wiley and Sons, Inc., New York (1966) 432 pp.

[4] D. P. Bentz, Three-dimensional computer simulation of cement hydration and microstructure development, J. Amer. Ceram. Soc. 80 (1), 3-21 (1997).

[5] D. P. Bentz, CEMHYD3D: A Three-dimensional Cement Hydration and Microstructure Development Modelling Package. Version 2.0, NISTIR 6485, National Institute of Standards and Technology, U.S. Department of Commerce, Gaithersburg, MD, April 2000, 233 pp.

[6] P. L. Meyer, Introductory probability and statistical applications, Addison-Wesley Publishing Company, Reading Massachusetts (1970) 367 pp.

[7] J. R. Taylor, Introduction to Error Analysis, University Science Books, Mill Valley, California (1982) 270 pp.

[8] R. Woldseth, All You Ever Wanted to Know about XES, Kevex Corporation, Burlingame, CA (1973) pp. 1.8-1.17.

[9] J. I. Goldstein, D. E. Newbury, P. E. Echlin, D. C. Joy, A. D. Romig, Jr., C. E. Lyman. C. Fiori, and E. Lifshin, Scanning Electron Microscopy and x-ray Microanalysis: A Text for Biologists, Materials Scientists, and Geologists, Plenum Press, New York (1992) p. 136.

[10] D. P. Bentz, M. R. Geiker, and K. K. Hansen, Shrinkage-reducing admixtures and early age desiccation in cement pastes and mortars, Cem. Concr. Res. 31 (7), 1075-1086 (2001).

[11] D. P. Bentz, Influence of curing conditions on water loss and hydration in cement pastes with and without fly ash substitution, NISTIR 6886, National Institute of Standards and Technology, U.S. Department of Commerce, Gaithersburg, MD, July 2002, 15 pp. (PDF Version)

[12] J. Hu and P. Stroeven, x-ray absorption study of drying cement paste and mortar, Cem. Concr. Res. 33, 397-403 (2003).

[13] P. Lura, D. P. Bentz, D. A. Lange, K. Kovler, A. Bentur, and K. van Breugel, Measurement of water transport from saturated pumice aggregates to hardening cement paste, Advance in Cement and Concrete Copper Mountain, CO August 10-14, 2003, D. A. Lange, K. L. Scrivener, and J. Marchand, eds., University of Illinois at Urbana-Champaign, Urbana (2003) pp. 89-99. (PDF Version)

[14] P. Stroeven, A stereological approach to roughness of fracture surfaces and tortuosity of transport paths in concrete, Cem. Concr. Compos. 22, 331-341 (2000).

[15] G. S. Wojcik and K. L. Feldman, x-ray absorption measurements of water loss from curing mortar and paste samples with and without flyash, GNI Newsletter, August (2003).

[16] K. A. Snyder, C. Ferraris, N. S. Martys, and E. J. Garboczi, Using impedance spectroscopy to assess the viability of the rapid chloride test for determining concrete conductivity, J. Res. Natl. Inst. Stand. Technol. 105, 497-509 (2000).

[17] W. B. Fuller and S. E. Thompson, The laws of proportioning concrete. Trans. ASCE, American Society of Civil Engineers, 59, 67-143 (1907).

[18] W. H. McMaster, N. Kerr Del Grande, J. H. Mallet, and J. H. Hubbell, Compilation of x-ray cross sections, Section IV, UCRL-50174, Lawrence Radiation Laboratory, University of California, Livermore, CA (1969) 39 pp.


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