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Effect of High-Molecular Weight Organic Compounds on Improvement of Pore Structure of Cement Materials
Woong-Geol Lee, Se-Hoon Jeon, Myong-Shin Song, Jusung Kim
J. Korean Ceram. Soc.. 2019;56(6):534-540.   Published online 2019 November 27    DOI: https://doi.org/10.4191/kcers.2019.56.6.04

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Effect of High-Molecular Weight Organic Compounds on Improvement of Pore Structure of Cement Materials
Journal of the Korean Ceramic Society. 2019;56(6):534-540   Crossref logo
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Effect of drying on cement-based materials pore structure as identified by mercury intrusion porosimetry
Cement and Concrete Research. 2001;31(10):1467-1477   Crossref logo
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Pore structure and its effect on strength of high-volume fly ash paste
Cement and Concrete Research. 1999;29(4):631-633   Crossref logo
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The effect of variation in pore structure on the frost resistance of porous materials
Cement and Concrete Research. 1981;11(1):115-124   Crossref logo
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Pore size restrictions on polymer load and molecular weight in impregnated cement pastes
Cement and Concrete Research. 1983;13(3):325-334   Crossref logo
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Pore structure and properties of materials
Cement and Concrete Research. 1974;4(6):1007-1008   Crossref logo
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Pore structure of hardened portland cement pastes and its influence on properties
Advanced Cement Based Materials. 1994;1(5):224-236   Crossref logo
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Molecular weight calculator for organic compounds in biotechnology
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Molecular weight calculator for organic compounds in biotechnology
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Mechanical properties and phase diagrams of alloys of high density polyethylene with some low molecular weight organic compounds
Journal of Materials Science. 1985;20(11):3906-3916   Crossref logo
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