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Record 1441 to 1480
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Cunningham, J. G. (1974). Friedel Crafts polymers, by John G. Cunningham.

Curley John, F. (1997). The synthesis and characterisation of novel semiconducting ladder polymers and their use as conductive fillers in composite materials, Kingston University.

Curran John, P. J. (1986). A robotic cell for handling aerospace composite materials, Queen's University of Belfast.

Curtis, J. W., L. R. G. Treloar, et al. (1969). The effect of pre-orientation on the fracture properties of glassy polymers. Manchester, UMIST.

Curtis, P. E. (2002). Signalling in macrophages following exposure to retrieved wear particles: 348 leaves.

Curtis, P. T. (1986). An investigation of the mechanical properties of improved carbon fibre composite materials. Farnborough, Royal Aircraft Establishment.

Curtis, P. T. and M. Royal Aircraft Establishment Department of (1986). An investigation of the mechanical properties of improved carbon fibre composite materials. Farnborough, Royal Aircraft Establishment Department of Materials.

Cutler, D. J. (1978). The molecular structure and morphology of some melt crystallized polymers, Original typescript.

Czechoslovak Academy of Sciences Institute of Macromolecular, C. (1990). Atmospheric aging and stabilization of polymers: 19th Colloquium: Selected papers. Basel, Switzerland, Huthig and Wepf Verlag.

Czechoslovak Academy of, S. and F. National Science (1991). Novel polymers and properties for biotechnology and bioengineering: USA-Czechoslovakia workshop: Selected papers, Technomic Publishing Company.

Czoboly, E., F. European Conference on, et al. (1988). Failure analysis theory and practice: proceedings of the 7th European Conference on Fracture, Budapest, Hungary, 1988. Warley, Engineering Materials Advisory Services.

Czyzak Stanley, J. (1948). The contribution of polar groups to the adhesion of polymers to conducting surfaces. [S.l.], [s.n.].

D*oyama, M., S. S*omiya, et al. (1989). Proceedings of the MRS International Meeting on Advanced Materials: May 31-June 3, 1988, Sunshine City, Ikebukuro, Tokyo, Japan. Pittsburgh, Pa., Materials Research Society.

Dabbagh Mohammad, A. (1995). Performance and characteristics of controlled release matrices composed of hydroxpropylmethylcellulose and other polymers, Liverpool John Moores University.

Dabestani, M. (1989). Elastic and anelastic deformation of human compact bone.

Dafermos, C. M., J. L. Ericksen, et al. (1987). Amorphous polymers and non-Newtonian fluids: Workshop: Papers. New York, Spring-Verlag.

Dafermos, C. M., J. L. Ericksen, et al. (1987). Amorphous polymers and non-Newtonian fluids. New York, Spring-Verlag.

D'Agostino, R. (1990). Plasma deposition, treatment, and etching of polymers. Boston, Academic Press.

D'Agostino, R. and C. International Symposium on Plasma (2005). Plasma processes and polymers. Weinheim, Wiley-VCH.

D'Agostino, R., P. Favia, et al. (1997). Plasma processing of polymers: proceedings of the NATO Advanced Study Institute on Plasma Treatments and Deposition of Polymers, Acquafredda di Maratea, Italy, May 19-June 2, 1996. Boston, Kluwer Academic Publishers.

D'Agostino, R., P. Favia, et al. (1997). Plasma processing of polymers. Dordrecht; Boston, Kluwer Academic Publishers.

D'Agostino, R., P. Favia, et al. (1997). Plasma processing of polymers. Dordrecht; London, Kluwer Academic Publishers.

D'Agostino, R., P. Favia, et al. (1997). Plasma processing of polymers. Dordrecht; London, Kluwer Academic.

D'Agostino, R., P. Favia, et al. (1998). Plasma processing of polymers: proceedings of the NATO Advanced Study Institute on Plasma Treatments and Deposition of Polymers, Acquafredda di Maratea, Italy, May 19-June 2, 1996. Dordrecht; London, Kluwer Academic.

Dahotre, N. B. and T. S. Sudarshan (1999). Intermetallic and ceramic coatings. New York, Marcel Dekker.

Dailey, S. (1998). A study of conjugated polymers and their applications in light-emitting diodes, [Durham].

Dailey, S. (1998). A study of conjugated polymers and their applications to light-emitting diodes, University of Durham.

Dalby, M. J. (2001). Hydroxyapatite/Polyethylene composite: an in vitro study of osteoblast response to composition and topography.

Dally, J. W. and W. F. Riley (1978). Experimental stress analysis. New York; London [etc.], McGraw-Hill.

Dam, J. E. G. v. and R. a. D. Commission of the European Communities Directorate-General for Science (1994). Increased application of domestically produced plant fibres in textiles, pulp and paper production, and composite materials, European Commission.

Daniel Leonard, F. (2000). Factors affecting energy absorption capability of polymer composite materials, University of London.

Daniel, I. M. and O. Ishai (1994). Engineering mechanics of composite materials. New York, Oxford University Press.

Daniel, I. M. and O. Ishai (2005). Engineering mechanics of composite materials. New York, Oxford University Press.

Daniel, I. M., D. Conference on Composite Materials: Testing and, et al. (1982). Composite materials: testing and design (sixth conference).Phoenix, Ariz., 12-13 May 1981. Philadelphia, ASTM.

Daniel, I. M., D. Conference on Composite Materials: Testing and, et al. (1982). Composite materials: testing and design (sixth conference): a conference. Philadelphia, Pa. (1916 Race St., Philadelphia 19103), ASTM.

Daniel, I. M., Ed. (1982). Composite materials: testing and design. Philadelphia, American Society for Testing and Materials.

Daniel, L. F. (2000). Factors affecting energy absorption capability of composite materials.

Daniels, C. A. (1989). Polymers: structure and properties. Lancaster, Pa, Technomic.

Daniels, C. A. (1989). Polymers--structure and properties. Lancaster, Pa., U.S.A., Technomic Pub. Co.

Danielsen, P. L. and C. University of (1986). The photogeneration of defects in conducting polymers, University of Cambridge.


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