superpolarization effect
超极化效应
experiencing superpolarization
经历超极化
superpolarization risk
超极化风险
avoid superpolarization
避免超极化
superpolarization state
超极化状态
caused by superpolarization
因超极化导致
superpolarization analysis
超极化分析
detecting superpolarization
检测超极化
superpolarization levels
超极化水平
superpolarization process
超极化过程
the plasma exhibited extreme superpolarization during the experiment.
等离子体在实验期间表现出极端的超极化现象。
achieving stable superpolarization is a significant challenge in fusion research.
在核聚变研究中,实现稳定的超极化是一个重要的挑战。
we observed a rapid increase in superpolarization levels with increased power.
我们观察到随着功率的增加,超极化水平迅速提高。
superpolarization can significantly enhance plasma confinement properties.
超极化可以显著增强等离子体的约束特性。
the researchers investigated the mechanisms driving superpolarization onset.
研究人员调查了驱动超极化发生的机制。
superpolarization states are often transient and difficult to sustain.
超极化状态通常是短暂的,难以维持。
controlling superpolarization is crucial for optimizing fusion reactor performance.
控制超极化对于优化核聚变反应堆的性能至关重要。
the diagnostic tools were used to measure superpolarization profiles.
诊断工具被用来测量超极化剖面。
superpolarization effects were more pronounced at higher magnetic field strengths.
在更高的磁场强度下,超极化效应更为明显。
numerical simulations predicted the onset of superpolarization in the plasma.
数值模拟预测了等离子体中超极化的发生。
the goal is to induce and maintain superpolarization for longer durations.
目标是诱导并维持更长时间的超极化。
superpolarization effect
超极化效应
experiencing superpolarization
经历超极化
superpolarization risk
超极化风险
avoid superpolarization
避免超极化
superpolarization state
超极化状态
caused by superpolarization
因超极化导致
superpolarization analysis
超极化分析
detecting superpolarization
检测超极化
superpolarization levels
超极化水平
superpolarization process
超极化过程
the plasma exhibited extreme superpolarization during the experiment.
等离子体在实验期间表现出极端的超极化现象。
achieving stable superpolarization is a significant challenge in fusion research.
在核聚变研究中,实现稳定的超极化是一个重要的挑战。
we observed a rapid increase in superpolarization levels with increased power.
我们观察到随着功率的增加,超极化水平迅速提高。
superpolarization can significantly enhance plasma confinement properties.
超极化可以显著增强等离子体的约束特性。
the researchers investigated the mechanisms driving superpolarization onset.
研究人员调查了驱动超极化发生的机制。
superpolarization states are often transient and difficult to sustain.
超极化状态通常是短暂的,难以维持。
controlling superpolarization is crucial for optimizing fusion reactor performance.
控制超极化对于优化核聚变反应堆的性能至关重要。
the diagnostic tools were used to measure superpolarization profiles.
诊断工具被用来测量超极化剖面。
superpolarization effects were more pronounced at higher magnetic field strengths.
在更高的磁场强度下,超极化效应更为明显。
numerical simulations predicted the onset of superpolarization in the plasma.
数值模拟预测了等离子体中超极化的发生。
the goal is to induce and maintain superpolarization for longer durations.
目标是诱导并维持更长时间的超极化。
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