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Table 3 Relative amplitude \(a_{n}^{m}\) for \(r_{1}^{{\prime }} = 0.9\) and \(i = 1\)

From: A generating process of geomagnetic drifting field

  \(a_{m}^{m}\) \(a_{m + 2}^{m}\) \(a_{m + 4}^{m}\) \(a_{m + 6}^{m}\)
\(m = 2\) 1 \(3.3 \times 10^{ - 2}\) \(5.3 \times 10^{ - 3}\) \(1.4 \times 10^{ - 3}\)
\(m = 3\) 1 \(4.3 \times 10^{ - 2}\) \(6.2 \times 10^{ - 3}\) \(1.4 \times 10^{ - 3}\)
\(m = 4\) 1 \(4.3 \times 10^{ - 2}\) \(5.6 \times 10^{ - 3}\) \(1.1 \times 10^{ - 3}\)
\(m = 5\) 1 \(4.0 \times 10^{ - 2}\) \(4.7 \times 10^{ - 3}\) \(8.3 \times 10^{ - 4}\)
\(m = 6\) 1 \(3.7 \times 10^{ - 2}\) \(3.9 \times 10^{ - 3}\) \(6.2 \times 10^{ - 4}\)
  1. Finite conductivity model