8

REFERENCES

Armor, J.N. Global Overview of Catalysis: United States of America. Applied Catalysis A: General 139 (1996) 217-228.

Armor, J. N. New Catalytic Technology Commercialized in the USA during the 1980s. Applied Catalysis, 78 (1991) 141-173.

Chauvel, A., Delmon, B. and Holderich, W. F. New Catalytic Processes Developed in Europe during the 1980s. Applied Catalysis A: General 115 (1994) 173-217.

CMR (Chemical Market Reporter). April 28, 1997, 251(17): SR20-SR21

COSEPUP (Committee on Science, Engineering, and Public Policy). Science, Technology, and the Federal Government: National Goals for a New Era. Washington D.C.: National Academy Press, 1993.

COSEPUP (Committee on Science, Engineering, and Public Policy). International Benchmarking of US Mathematics Research. Washington D.C.: National Academy Press, 1997.

COSEPUP (Committee on Science, Engineering, and Public Policy). An Assessment of the National Science Foundation's Science and Technology Centers Program. Washington D.C.: National Academy Press, 1994.

CORE (Committee on Optical Science and Engineering). Harnessing Light: Optical Science and Engineering for the 21st Century. Washington D.C.: National Academy Press, 1998

DOE (Department of Energy). Neutron Sources for America's Future: Report of the Basic Energy Sciences Advisory Committee Panel on Neutron Sources, DOE/ER-0576P, 1993.

DOE (Department of Energy). Report of the Basic Energy Sciences Advisory Committee Panel on DOE Synchotron Radiation Source and Science, November 1977.

Michael Hart, NSLS Chairman, Synchrotron Radiation News, Vol. 9, No. 5, p. 2

Misono, M. and Nojiri, N. Recent Progress in Catalytic Technology in Japan. Applied Catalysis, 64 (1990) 1-30.



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INTERNATIONAL BENCHMARKING OF US MATERIALS SCIENCE AND ENGINEERING RESEARCH 8 REFERENCES Armor, J.N. Global Overview of Catalysis: United States of America. Applied Catalysis A: General 139 (1996) 217-228. Armor, J. N. New Catalytic Technology Commercialized in the USA during the 1980s. Applied Catalysis, 78 (1991) 141-173. Chauvel, A., Delmon, B. and Holderich, W. F. New Catalytic Processes Developed in Europe during the 1980s. Applied Catalysis A: General 115 (1994) 173-217. CMR (Chemical Market Reporter). April 28, 1997, 251(17): SR20-SR21 COSEPUP (Committee on Science, Engineering, and Public Policy). Science, Technology, and the Federal Government: National Goals for a New Era. Washington D.C.: National Academy Press, 1993. COSEPUP (Committee on Science, Engineering, and Public Policy). International Benchmarking of US Mathematics Research. Washington D.C.: National Academy Press, 1997. COSEPUP (Committee on Science, Engineering, and Public Policy). An Assessment of the National Science Foundation's Science and Technology Centers Program. Washington D.C.: National Academy Press, 1994. CORE (Committee on Optical Science and Engineering). Harnessing Light: Optical Science and Engineering for the 21st Century. Washington D.C.: National Academy Press, 1998 DOE (Department of Energy). Neutron Sources for America's Future: Report of the Basic Energy Sciences Advisory Committee Panel on Neutron Sources, DOE/ER-0576P, 1993. DOE (Department of Energy). Report of the Basic Energy Sciences Advisory Committee Panel on DOE Synchotron Radiation Source and Science, November 1977. Michael Hart, NSLS Chairman, Synchrotron Radiation News, Vol. 9, No. 5, p. 2 Misono, M. and Nojiri, N. Recent Progress in Catalytic Technology in Japan. Applied Catalysis, 64 (1990) 1-30.

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INTERNATIONAL BENCHMARKING OF US MATERIALS SCIENCE AND ENGINEERING RESEARCH NAE (National Academy of Engineering). Assessment of the National Science Foundation's Engineering Research Centers Program . Washington D.C.: National Academy Press, 1989. Nojiri, N. and Iwamoto, M. Global Overview of Catalysis: Japan. Applied Catalysis A: General 139 (1996) 419-428. NRC (National Research Council). Materials Science and Engineering for the 1990's. Washington D.C.: National Academy Press, 1989. NRC (National Research Council). Allocating Federal Funds for Science and Technology. Washington D.C.: National Academy Press, 1995. NRC (National Research Council). Advanced Fibers for High Temperature Ceramic Composites. Washington D.C.: National Academy Press, 1997. NRC (National Research Council). Summary Report 1995: Doctorate Recipients from United States Universities . Washington D.C.: National Academy Press, 1997. NSF (National Science Foundation). Human Resources for Science & Technology: The European Region. NSF 96-316, p. 21-22. Arlington, VA: National Science Foundation, 1996. NSF (National Science Foundation). Science and Engineering Indicators 1996. NSB 96-21 . Washington, DC: US Government Printing Office, 1996. NSF (National Science Foundation). Data Brief, vol. 1997, no. 6. Arlington, VA: National Science Foundation, June 8, 1997. NSTC (National Science and Technology Council). The Federal Research and Development Program in Materials Science and Technology. 1995. OSTP (Office of Science and Technology Policy). Advanced Materials and Processing: Fiscal Year 1993 Program. OSTP (Office of Science and Technology Policy). Advanced Materials and Processing: Fiscal Year 1995 Program. Roth, J. F. Industrial Catalysis: Poised for a New Generation of Major Innovations . Applied Catalysis 64, 1-30 (1990) Rothman, David. Chemical Week. October 15, 1997, p.41. Sandia (Sandia National Laboratory). Catalyst Technology Roadmap Report. SAND97-1424*UC-1404, June 1997.

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INTERNATIONAL BENCHMARKING OF US MATERIALS SCIENCE AND ENGINEERING RESEARCH Sandia (Sandia National Laboratory). Catalyst Technology Roadmap Report. SAND97-1424*UC-1404, June 1997. SIA (Semiconductor Industry Association). The National Technology Roadmap for Semiconductors: Technology Needs , 1997 . UK (United Kingdom Office of Science and Technology). The Quality of the UK Science Base. London, UK: Department of Trade and Industry, March 1997.

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