University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions...

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Transcript of University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions...

Page 1: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 2: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 3: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 4: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 5: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 6: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 7: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 8: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 9: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 10: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 11: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 12: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 13: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 14: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 15: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied
Page 16: University of Minnesota...The plasma bulk is the light gray region, and the dark gray regions represent the plasma sheaths. The reactor is driven by the radio-frequency voltage applied