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doc#118 | severe at the anode . In free |
doc#118 | flow leaving the anode . The anode |
doc#118 | medium of the anode . </p><p> The higher |
doc#118 | transpiration through the anode . The third |
doc#118 | impinging on the anode . This energy |
doc#118 | through a porous anode (transpiration cooling |
doc#118 | cathode to the anode ). Hence |
doc#118 | established. The anode ablation could be |
doc#118 | connected to the anode and cathode holders |
doc#118 | a transpiration cooled anode as well as |
doc#118 | transferred to the anode by applying gas |
doc#118 | area at the anode by flow or |
doc#118 | transferred to the anode by the above |
doc#118 | rates at the anode compared with those |
doc#118 | air. The anode consisted of a |
doc#118 | a porous graphite anode cooled by a |
doc#118 | arc to the anode could be reduced |
doc#118 | that by proper anode design the net |
doc#118 | transfer to the anode for a given |
doc#118 | ejected from the anode formed a jet |