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Optical materials / Fusion power / Astrophysics / Stellarator / Tokamak / Plasma / Beta / Magnetohydrodynamics / Bootstrap current / Physics / Plasma physics / Fusion reactors


PHYSICS DESIGN FOR ARIES-CS L. P. KU, a * P. R. GARABEDIAN,b J. LYON,c A. TURNBULL,d A. GROSSMAN,e T. K. MAU,e M. ZARNSTORFF,a and ARIES TEAM a Princeton Plasma Physics Laboratory, Princeton University, Princeton, New J
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Document Date: 2008-09-23 13:05:12


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City

Greifswald / LYON / San Diego / /

Company

Oak Ridge National Laboratory / QAS / ARIES-CS L. P. / /

Country

Germany / /

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Facility

Princeton University / Institute of Mathematical Sciences / Princeton Plasma Physics Laboratory / University of California / University of Wisconsin / New York University / /

IndustryTerm

energy confinement time ~for example / electricity / energy confinement times / local gradient search algorithm / steady-state devices / stellarator devices / energy loss / differential evolution algorithm / charged fusion products / coil manufacturing / /

Organization

pentagon / Institute of Mathematical Sciences / New York University / New York / Princeton Plasma Physics Laboratory / University of California / San Diego / San Diego / Princeton University / University of Wisconsin / Madison / U.S. Securities and Exchange Commission / /

Position

coil conductor / General / /

ProvinceOrState

Tennessee / New Jersey / Wisconsin / California / New York / Massachusetts / /

Technology

alpha / radiation / 678 FUSION SCIENCE AND TECHNOLOGY / local gradient search algorithm / 680 FUSION SCIENCE AND TECHNOLOGY / FUSION SCIENCE AND TECHNOLOGY / modified Levenberg-Marquadt algorithm / Monte Carlo algorithm / 674 FUSION SCIENCE AND TECHNOLOGY / CORBA / magnetic FUSION SCIENCE AND TECHNOLOGY / differential evolution algorithm / thermal insulation / /

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