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Авторизация |
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Поиск по указателям |
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Braams C.M., Stott P.E. — Nuclear Fusion: Half a Century of Magnetic Confinement Fusion Research |
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Предметный указатель |
Thermal, Field reversal 108
Thermal, Proton spectra from d-d 81
Thermal, Theta pinch 40—43 80—83
Thompson W B 24
Thomson G P 16 230
Thomson J J’s velocity selector 10
Thomson scattering 135—139
Thomson scattering, Collective 138
Thonemann PC 17—19 54 188
TIBER 248
Tokamak 52 92 129—134 152—229 261
Tokamak, Big 202—221
Tokamak, Built after 1980 180 181
Tokamak, Configuration 131
Tokamak, Copper shell 165
Tokamak, Early machines at the Kurchatov 132
Tokamak, Equilibrium 129
Tokamak, Flux-conserving 104
Tokamak, High magnetic field 158 227—229 266
Tokamak, In decade after Novosibirsk 154—155
Tokamak, Ohmic heating 158
Tokamak, Origin of name 129
Tokamak, Performance 156
Tokamak, Position control 131 165
Tokamak, Schematic 132
Toki, National Institute for Fusion, Studies 147—149 151
Tokyo, ETL 95 99 102 105 111 112 145 155 156
Tokyo, Screw pinch 104
Tokyo, Tomography 143 162 164
Tokyo, University 21 99
Tonks L 9
Tore Supra 182 189 225
toroidal 91
Torsatron 127 146 147
Transformer-driven toroidal discharge 18
Transition 195 196
TRANSP code 201
Transport, codes 200—201
Transport, coefficients 200
Transport, Matrix 197
Trapped reverse field in theta pinch 80
TRIAM 183 189
Triangularity 191
Tritium, breeding 6 236 269
Tritium, Handling 220
Tritium, Operation 156 217—221
Troitsk, TRINITY Laboratory 79 180 183 229
Troyon F 192
| Troyon F, Beta limit and factor 105 114 192 223—225 249
Trubnikov B A 53
TSP 183 229
Tsukuba University 69 71 75 89 99 102 105
TTF 153
Tuck J 18 42
Tuman experiments 184
Turbulent, fluctuations 198
Turbulent, Heating 104
Two-component plasma 88 207 208
UKAEA 25
Uo K 127
Uppsala 50
Uragan experiments 147—151
UWMAK 238 240 241
Vacuum systems 166
Van der Laan P C T 103
Vedenov A A 19
Velikhov E 229 247 249
Vendryes G 21
Vertical magnetic field 165
Vint stellarator 147
Virial theorem 106
Vlasov A A 11
Von Weizsacker C F 3
Wagner F 195
Wall conditioning 214
Ware A A 17 19 118 175
Wendelstein stellarators 126 147
Wesson J A 160 163 173
Willson D 206
Wisconsin University of, Madison 71 72 75 99 101 102 115—117 119 145 148 187 238 239
Wl — A, Wl — B, W 2 126 127
Wobig H 147
Wobig H, Coils 147
Woltjer L 95
Wort D J H 188
Wtister H — O 206
X-point configuration 215
X-ray tomography 162
Yavlinski N A 19 20 129
Yield-to-loss ratio 26
Yin-yang coils 64 74
York H 18
Yoshikawa M 118 188
Yvon P 21
Zephyr 228
ZETA 18 25 26 49 51 93—103 123 130 142 261
ZTH 101 2
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