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References

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  1. P. Fellgett, in seminar at The Johns Hopkins University (1954); J. phys. radium 19, 187 (1958).
  2. Mme. J. Connes, Rev. opt. 40, 45, 101, 157, 213 (1961).
  3. J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 49, 845 (1959).
    [Crossref]
  4. J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 50, 113 (1960).
    [Crossref]
  5. H. S. Carslaw, Fourier’s Series and Integrals (Dover Publications, Inc., New York, 1930), p. 289.
  6. E. A. Guillemin, The Mathematics of Circuit Analysis (John Wiley & Sons, Inc., New York, 1958), p. 500.

1961 (1)

Mme. J. Connes, Rev. opt. 40, 45, 101, 157, 213 (1961).

1960 (1)

1959 (1)

J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 49, 845 (1959).
[Crossref]

Carslaw, H. S.

H. S. Carslaw, Fourier’s Series and Integrals (Dover Publications, Inc., New York, 1930), p. 289.

Connes, Mme. J.

Mme. J. Connes, Rev. opt. 40, 45, 101, 157, 213 (1961).

Fellgett, P.

P. Fellgett, in seminar at The Johns Hopkins University (1954); J. phys. radium 19, 187 (1958).

Guillemin, E. A.

E. A. Guillemin, The Mathematics of Circuit Analysis (John Wiley & Sons, Inc., New York, 1958), p. 500.

Strong, J. D.

J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 50, 113 (1960).
[Crossref]

J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 49, 845 (1959).
[Crossref]

Vanasse, G. A.

J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 50, 113 (1960).
[Crossref]

J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 49, 845 (1959).
[Crossref]

J. Opt. Soc. Am. (2)

J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 49, 845 (1959).
[Crossref]

J. D. Strong and G. A. Vanasse, J. Opt. Soc. Am. 50, 113 (1960).
[Crossref]

Rev. opt. (1)

Mme. J. Connes, Rev. opt. 40, 45, 101, 157, 213 (1961).

Other (3)

P. Fellgett, in seminar at The Johns Hopkins University (1954); J. phys. radium 19, 187 (1958).

H. S. Carslaw, Fourier’s Series and Integrals (Dover Publications, Inc., New York, 1930), p. 289.

E. A. Guillemin, The Mathematics of Circuit Analysis (John Wiley & Sons, Inc., New York, 1958), p. 500.

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Equations (4)

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Ɛ N ( ν ) = F ( 0 ) / 2 + F ( 1 4 ν c ) cos π ν / ν c + F ( 2 / 4 ν c ) cos 2 π ν / ν c + + F ( N / 4 ν c ) cos N π ν / ν c .
Ɛ ¯ N ( ν ) = F ( 0 ) / 2 + ( N - 1 / N ) F ( 1 4 ν c ) × cos π ν / ν c + ( N - 2 ) / N F ( 2 / 4 ν c ) cos 2 π ν / ν c + + 1 / N F [ ( N - 1 ) / 4 ν c ] cos [ ( N - 1 ) π ν / ν c ] + 0 , = F ( 0 ) / 2 + ( 1 - 1 / N ) F ( 1 4 ν c ) cos π ν / ν c + ( 1 - 2 / N ) F ( 2 / 4 ν c ) × cos 2 π ν / ν c + + [ 1 - ( N - ν ) / N ] F [ ( N - 1 ) / 4 ν c ] × cos [ ( N - 1 ) π ν / ν c ] + 0.
Ɛ N ( ν ) F ( 0 ) 2 + n = 1 N F ( n 4 ν c ) cos n π ν ν c ,
Ɛ ¯ N ( ν ) F ( 0 ) 2 + n = 1 N ( 1 - n N ) F ( n 4 ν c ) cos n π ν ν c .