## Abstract

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### Equations (14)

$Δ i ¯ = [ 2 e B M Δ f ( i p + i t ) ] 1 2 ,$
$Δ i ¯ = ( 2 e B M Δ f i t ) 1 2 .$
$i j = i d ∑ k = 1 j g k - 1 = i d g - 1 ∑ k = 1 j g k = i d g - 1 g j + 1 ∑ k = 1 j g - k = i d g j ∑ k = 1 j g - k ,$
$i d a = i d ∑ j = 1 n g n - j = i d g n ∑ j = 1 n g - i ,$
$Δ i ¯ j = ( 2 e Δ f i j ) 1 / 2 = ( 2 e Δ f i d g i ∑ k = 1 j g - k ) 1 2 .$
$Δ i ¯ j a = Δ i ¯ j g n - j .$
$Δ i ¯ d a 2 = ∑ j = 1 n Δ i ¯ j a 2$
$Δ i ¯ d a 2 = 2 e Δ f i d g 2 n ∑ j = 1 n ( g - j ∑ k = 1 j g - k ) .$
$Δ i ¯ c a = ( 2 e B M 2 Δ f i c ) 1 2 .$
$Δ i ¯ a 2 = 2 e Δ f M 2 [ i c B + i d ∑ j = 1 n ( g - i ∑ k = 1 j g - k ) ] .$
$Δ i ¯ a 2 = 2 e Δ f M 2 ( 1.31 i c + 0.082 i d ) .$
$Δ i ¯ a 2 = 2 e Δ f M 2 i t c ( 1.39 ) ,$
$i t = i t c ∑ j = 0 n g n - i = i t c g n ∑ j = 0 n g - i = i t c M B .$
$Δ i ¯ a = [ 2 e Δ f M i t ( 1.05 ) ] 1 2 .$