Howard, E. E. (1916). Documents Governing the Construction of a Bridge, etc, pp. 113. J. Wiley & Sons: New York.
|
Humber, W. (1861). A complete treatise on cast and wrought iron bridge construction, including iron foundations: in three parts, theoretical, practical and descriptive. [S.l.], Spon.
|
Humber, W. (1870). [A complete treatise on Cast and Wrought Iron Bridge Construction, including iron foundations, etc.], 2 vol. London.
|
Hunter, A. (1920). Bridge and structural engineers' handbook of general specifications, formulae and data for the design of cranes, bridges, foundations, and workshop buildings. [S.l.], Spon.
|
Hutton, W. R. (1994). The Washington Bridge over the Harlem River, at 181st Street, New York City: a description of its construction. Ann Arbor, Michigan, UMI.
|
Ibell, T. J., C. T. Morley, et al. (1996). An experimental investigation into shear in large-scale concrete beam-and-slab structures, University of Cambridge, Department of Engineering.
|
Iles, D. C. (1989). Design guide for continuous composite bridges, Steel Construction Institute.
|
India. Mahanadi Bridge, C. (1953). Report of the Mahanadi Bridge Committee. [New Delhi], Government of India, Ministry of Irrigation and Power.
|
India. Railway, B. (1941). (Pier and abutement code): Indian railway standard code of practice for the design of bridge piers and abutments: adopted 1936: revised 1941. Delhi, Manager of Publications.
|
India. Railway, B. (1941). (Steel bridge code): Indian railway standard code of practice for the design of steel or wrought iron bridges carrying rail, road or pedestrian traffic: adopted 1941. Delhi, Manager of Publications.
|
India. Railway, B. (1941). Arch Bridge code: Indian railway standard code of practice for the design and construction of masonry and plain concrete arch bridges: adopted, 1941. Delhi, Manager of Publications.
|
Ingham, J. M. and M. J. N. Priestley (1996). Seismic performance of a bridge knee joint reinforced with headed reinforcement. Auckland, Department of Civil and Resource Engineering, University of Auckland.
|
International Association for Bridge and Structural Engineering, C. (1933). Congress, International Association for Bridge and Structural Engineering, Zurich.
|
International Association for Bridge and Structural, E. (1933). Bulletin - International Association for Bridge and Structural Engineering. Zu\0308rich, The Association: 30cm.
|
International Correspondence, S. (1902). International Library of Technology. A series of textbooks for persons engaged in the engineering professions and trades, etc, 92 vol. International Textbook Co.: Scranton, Pa.
|
International Correspondence, S. (1909). I.C.S. Reference Library, International Correspondence Schools: London.
|
Jaeger, L. G. and B. Bakht (1989). Bridge analysis by microcomputer, McGraw-Hill.
|
James, J. G. (1986). The cast iron bridge at Sunderland (1796). [Newcastle upon Tyne], Faculty of Humanities, Newcastle upon Tyne Polytechnic.
|
Jamieson, D. G., P. J. Radford, et al. (1974). The hydrological design of water-resource systems. Reading (Reading Bridge House, Reading RG1 8PS), Water Resources Board.
|
Jategaonkar, R., L. G. Jaeger, et al. (1985). Bridge analysis using finite elements, Canadian Society for Civil Engineering.
|
Joyce, H. W. (1915). Economy in Bridge Design and Construction. A series of six lectures delivered to the students of the Sibpur Engineering College during March 1914 by H. W. Joyce, pp. 98. Calcutta.
|
Joyce, H. W. (1915). Economy in Bridge Design and Construction. Calcutta, Bengal Secretariat Book Depot.
|
Kanok-Nukulchai, W. E. (1987). Cable-stayed bridges: experiences & practice: International conference: Papers. Vols 1-2, Asian Institute of Technology.
|
Kappraff, J. (1990). Connections: the geometric bridge between art and science. New York, McGraw-Hill Pub. Co.
|
Kassabian, N. C. (1992). Hydrology and bridge scour. Washington, D.C., National Academy Press.
|
Kennedy Reid, I. L., D. M. Milne, et al. (2001). Steel bridge strengthening: a study of assessment and strengthening experience and identification of solutions. London, Thomas Telford.
|
Kennedy, J. (1882). Report on the St. Lawrence bridge & manufacturing scheme. [Montreal? s.n.
|
Kerensky, O. F. (1988). Tension structures: 1st International Oleg Kerensky memorial conference: Papers, Institution of Structural Engineers.
|
Ketchum, M. S. (1908). The Design of Highway Bridges and the Calculation of Stresses in Bridge Trusses. [With illustrations.], pp. xxi. 544. Engineering News Publishing Co.: New York; Archibald Constable & Co.: London.
|
Khudairi, S. E. (1982). An investigation into the temperature-creep effects on the design of concrete bridge decks, University of Surrey.
|
King, L. and M. Allan (2004). Building the bridge. [Kelty?], Windfall.
|
Kingston, J. and A. Lockwood (1985). Bridges. London, Faber in association with Threshold Books.
|
Kirkup, S. (1998). The boundary element method in acoustics: a development in Fortran. Hebden Bridge, Integrated Sound Software.
|
Knowles, C. E., A. E. Lombardi, et al. (1983). 1983 Ontario highway bridge design code. Ontario, Ministry of Transportation and Communications.
|
Knowles, P. R. (1976). Simply supported composite plate girder highway bridge. Croydon, Constrado.
|
Koglin, T. L. (2003). Movable bridge engineering. Hoboken, N.J., John Wiley & Sons.
|
Komninos, A. (2003). Measuring earth crustal deformations using GPS and geodetic data in relation to the Rion-Antirion bridge construction. Glasgow, Glasgow Caledonian University.
|
Kranakis, E. (1997). Constructing a bridge: an exploration of engineering culture, design, and research in nineteenth-century France and America. Cambridge, Mass.; London, MIT Press.
|
Kumar, A. (1988). Detailed design of composite concrete bridge superstructures, British Cement Association.
|
Lapinski, M. (1978). Road and bridge construction handbook. New York; London, Van Nostrand Reinhold.
|