Equal-step tuning: Difference between revisions

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Thus they are complementary in the ratio <math>R_n=\dfrac{n+1}{n-1}</math>.
Thus they are complementary in the ratio <math>R_n=\dfrac{n+1}{n-1}</math>.


For each <math>n\ge 2</math> consider the three divisions of <math>R_n</math> where low errors appears for <math>S_n</math> and <math>B_n</math>:
For each <math>n\ge 2</math> consider the three divisions of <math>R_n</math> where low errors appears for <math>S_n</math> and <math>B_n</math> as a converging sequence and pattern:
* '''Alpha:''' <math>k_\alpha=2n-1</math>
* '''Alpha:''' <math>k_\alpha=2n-1</math>
* '''Beta:''' <math>k_\beta=2n+1</math>
* '''Beta:''' <math>k_\beta=2n+1</math>