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Engineers Joint Council

Huddle, R. A. U., Nuclear Engineering and Cleveland (Engineers Joint Council) Science Congress Paper 108 (1955). [Pg.397]

Engineers Joint Council, New York, 1970, Engineers for Distinction. [Pg.191]

Engineers Joint Council 191 Englehard, G.A. 8 Engles, C. 95 Epstein 146... [Pg.254]

Engineers Joint Council, A Profile of the Engineering Profession A Report from the 1969 National Engineers Register (New York EJC, 1971), 3. [Pg.205]

Engineers Joint Council, National Engineering Problems Summary Report (New York EJC, 1964b), i-iv. [Pg.206]

Engineers Joint Council, National Engineering Problems, 24-25. [Pg.207]

Dael Wolfle, The Big Story— The Meaning of Science and Technology in Modern Society. Do the Engineering Society Publications Cover It in Engineering Societies and Their Literature Programs, ed. Larry Resen (New York Engineers Joint Council, 1967), 63-66. [Pg.208]

Engineers Joint Council, The Nation s Engineering Research Needs 1965-1985 (New York EJC, 1962). [Pg.233]

It may be considered appropriate to mention the Scottish/Italian collaboration which has resulted in the writing of this book. It started in 1965 when two of us (BS and CAV) were working in the laboratories of H.A. Laitinen at the University of Illinois and expanded to include members of the CNR Centre on Electrode Processes at Milan when a joint research programme was instituted some 10 years ago. We are pleased to acknowledge the financial assistance given by the Science and Engineering Research Council (UK), the Consiglio Nazionale delle Ricerche (Italy), NATO and the British Council to foster this collaborative venture over the years. [Pg.366]

This work was supported by grants from the Science and Engineering Research Council. The structural studies were performed in collaboration with Dr. H. Milburn, Napier College, Edinburgh and his coworkers. The solution studies were carried out under the Joint Optoelectronic Research Scheme with Drs. S. Mann and M.R. Worboys of GEC Research Ltd, Marconi Research Centre, Chelmsford, Essex. [Pg.138]

In 1941 Doland was also the principal engineer for USED, and British colonies in the Caribbean for lend-lease airbases. From 1944 he was a consulting hydraulic engineer for the Union Electric Co., St. Louis MO. He was further member of the Joint Council on National Water Policy. Doland was a member ASCE, and of the American Institute of Consulting Engineers AlCE. [Pg.243]

The American Chemistry Council, formerly the Chemical Manufacturers Association (CMA), and the American Institute of Chemical Engineers Center for Chemical Process Safety (AIChE/CCPS) have jointly published Evaluating Process Safety in the Chemical Industry User s Guide to Quantitative Risk Analysis. This is a revised and updated edition of Evaluating Process Safety in the Chemical Industry A Manager s Guide to Quantitative Risk Analysis, published in 1989 by CMA. [Pg.87]

Research into swimming pool water treatment has been conducted on both the bench and pilot scale at the School of Water Sciences at Cranfield University over the past six years. Much of this has been sponsored jointly by the Engineering and Physical Sciences Research Council (EPSRC) and the Pool Water Treatment Advisory Group (PWTAG). The most recent work has been based on a 2.2m3-capacity pilot plant (Figure 5), a one-seventh linear scale model of an actual operating pool, incorporating all conventional unit... [Pg.141]

Phosphors for CRTs are predominantly based on zinc and cadmium sulfides. Selected CRT phosphors are listed in Table 1 which also includes their precursors, their P-numbers , and their uses. (The system used to classify CRT phosphors came from JEDEC, the former Joint Electronic Device Engineering Council, now JT- Committee on Phosphor and Optical Characteristics within the Electronic Industries Association. JEDEC established the original code for these phosphors in terms of P-numbers .8 Many manufacturers of CRTs use these when specifying phosphor screen characteristics.) Although the precursors are tabulated, the mole ratios used in the syntheses are not. [Pg.692]

David P. Wilkinson received his BASc degree in chemical engineering from the University of British Columbia in 1978 and his PhD degree in chemistry from the University of Ottawa in 1987. In 2004, after 20 years of industrial experience. Dr. Wilkinson was awarded a Tier 1 Canada research chair in clean energy and fuel cells in the Department of Chemical and Biological Engineering at the University of British Columbia. He presently maintains a joint appointment with the university and the Canadian National Research Council Institute for Fuel Cell Innovation. [Pg.461]


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See also in sourсe #XX -- [ Pg.23 , Pg.26 , Pg.33 , Pg.39 , Pg.132 , Pg.152 ]




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