1. A fusion reactor has Ne 102 m, and KaT = 9 keV. i. Compute Debye length (Ao) and the number of charged particles in Debye length (No) in the fusion reactor. ii. What is the plasma frequency in the fusion reactor?
1. A fusion reactor has Ne 102 m, and KaT = 9 keV. i. Compute Debye length (Ao) and the number of charged particles in Debye length (No) in the fusion reactor. ii. What is the plasma frequency in the fusion reactor?
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![1. A fusion reactor has Ne = 1023 m3, and KsTe = 9 kev.
i. Compute Debye length (Ap) and the number of charged
particles in Debye length (No) in the fusion reactor.
ii, What is the plasma frequency in the fusion reactor?](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F03df5226-8296-4f5f-8585-f6e69350ea18%2Fb92c4c5c-d262-4d76-b66e-2fdbebba738f%2Fazf38bu_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. A fusion reactor has Ne = 1023 m3, and KsTe = 9 kev.
i. Compute Debye length (Ap) and the number of charged
particles in Debye length (No) in the fusion reactor.
ii, What is the plasma frequency in the fusion reactor?
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