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<i>In situ</i> analysis of gaseous products from PEO-based polymer electrolyte decomposition. [PDF]
Tian Y +9 more
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A cyanate-functionalized polymer composite electrolyte with a self-healing gradient SEI affords ultra-thermally stable lithium batteries. [PDF]
Wang J +9 more
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Symmetric molecular design: Stable lithium metal batteries. [PDF]
Ding H, Li X.
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Quantum Chemical Insights into the Initial Reaction Pathways Governing the Self-Ignition of Hypergolic Ionic Liquids with H<sub>2</sub>O<sub>2</sub>. [PDF]
Nogamida M, Mori H.
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Runaway electrons in a tokamak: A free-electron maser
Physical Review E, 1997In ohmic divertor plasma discharges of the ASDEX upgrade tokamak containing a small population of runaway electrons, fluctuating emission in the microwave region with a very narrow bandwidth is observed. The radiation can be explained by relativistic runaway electrons, which are captured in a ripple resonance of the tokamak and are thus made ...
Kurzan, B., Steuer, K.
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Physical Review Letters, 1973
r a uniform electric field is calculated by solving the Fokker-Planck equation numerically. Comparison with other theoretical and experimental results is made. (auth)
Russell M. Kulsrud +3 more
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r a uniform electric field is calculated by solving the Fokker-Planck equation numerically. Comparison with other theoretical and experimental results is made. (auth)
Russell M. Kulsrud +3 more
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Simulations of the runaway electron distributions
Horton Wendell, Choi Duk-In, Wiley J C
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Runaway electrons in plasma current sheets
Physical Review Letters, 1994It is shown that a runaway electron population accelerates along the main magnetic field in a Sweet-Parker current sheet. After a characteristic distance the entire current is carried by runaways. The thickness of this runaway sheet is much smaller than the original Ohmic sheet. The influence of microinstabilities is discussed.
, Gurevich, , Sudan
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Fusion Engineering and Design, 1994
Abstract Runaway electrons can cause severe damage to plasma facing components of large tokamaks. The designs proposed for the first wall and divertor of the next large fusion experiment, ITER-CDA (International Thermonuclear Experimental Reactor - Conceptual Design Activities) are investigated.
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Abstract Runaway electrons can cause severe damage to plasma facing components of large tokamaks. The designs proposed for the first wall and divertor of the next large fusion experiment, ITER-CDA (International Thermonuclear Experimental Reactor - Conceptual Design Activities) are investigated.
openaire +3 more sources

