Back MatterSource: Proceedings: Mathematical, Physical and Engineering Sciences, Vol. 455, No. 1984 (Apr.8, 1999)Published by: The Royal SocietyStable URL: http://www.jstor.org/stable/53384 .
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Philosophical Transactions: Mathematical, Physical and Engineering Sciences
Series A Volume 357 Number 1752 15 March 1999
The approach to ignited plasma A Discussion organized and edited by C. Windsor, M. Keilhacker,
J. D. Lawson, G. J. Pert & D. C. Robinson
D. C. Robinson Introduction
J. Sheffield World population and energy demand growth: the potential role of fusion energy in an efficient world
R. J. Bickerton History of the approach to ignition
M. Keilhacker JET deuterium-tritium results and their implications
R. J. Hawryluk Results from D-T experiments on TFTR and implications for achieving an ignited plasma
R. Aymar ITER: an integrated approach to ignited plasmas
S. Putvinski, W. Heidbrink, G. Martin, F. Porcelli, F. Romanelli, G. Sadler, K. Tobita, J. W. Van Dam & S. Zweben
Alpha-particle physics in tokamaks
D. C. Robinson Alternative approaches: concept improvements in magnetic fusion research
J. D. Kilkenny, E. M. Campbell, J. D. Lindl, G. B. Logan, W. R. Meier, L. J. Perkins, J. A. Paisner, M. H. Key, H. T. Powell, R. L. McCrory & W. Seka
The role of the National Ignition Facility in energy production from inertial fusion
0. Willi Inertial-confinement fusion with fast ignition
R. 0. Bangerter Ion beam fusion
K. Ehrlich The development of structural materials for fusion reactors
F. Najmabadi Prospects for attractive fusion power systems
General discussion
The front cover illustration shows a machine for growing semiconductor devices by molecular beam epitaxy (MBE). Picture courtesy of the Interdisciplinary Research Centre in Semiconductor Growth, Imperial College, London.
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