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Essentially these are smaller static solution versions of the Poiseuille shear neutron reflection cells which have been described in detail previously (S.M. Baker, G.S. Smith, P.D. Butler, J.B. Hayter, W.A. Hamilton, R. Pynn, L.J. Magid, Rev. Sci. Instrum. 65 (1994) 412), with the modification that the integrated Teflon trough has been replaced by a Teflon o-ring sealed trough in a stainless steel base
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McGraw-Hill, chap. 11.
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The reflectivity calculation and fitting program used in these measurements is the eponymous integral data collection and analysis package of the MIRROR neutron reflection instrument. The reflectivity calculation averages reflectivity for Q z over the instruments of known wavelength and angular resolution. The statistical and error estimation concepts used to compare calculated and measured reflectivities are described in: P.R. Bevington, Data Reduction and Error Analysis for the Physical Sciences, McGraw-Hill, 1969, chap. 11. The χ 2 fitting minimization routine employed by the MIRROR program is the downhill simplex method of J.A. Nelder and R. Mead, Comput. J. 7 (1965) 308-313, in an implementation described in: W.H. Press, S.A. Teukolsky, W.T. Vetterling and B.P. Flannery, Numerical Recipes in Pascal, 1989, chap. 10.4
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0000238336
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The reflectivity calculation and fitting program used in these measurements is the eponymous integral data collection and analysis package of the MIRROR neutron reflection instrument. The reflectivity calculation averages reflectivity for Q z over the instruments of known wavelength and angular resolution. The statistical and error estimation concepts used to compare calculated and measured reflectivities are described in: P.R. Bevington, Data Reduction and Error Analysis for the Physical Sciences, McGraw-Hill, 1969, chap. 11. The χ 2 fitting minimization routine employed by the MIRROR program is the downhill simplex method of J.A. Nelder and R. Mead, Comput. J. 7 (1965) 308-313, in an implementation described in: W.H. Press, S.A. Teukolsky, W.T. Vetterling and B.P. Flannery, Numerical Recipes in Pascal, 1989, chap. 10.4
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34250653849
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chap. 10.4
-
The reflectivity calculation and fitting program used in these measurements is the eponymous integral data collection and analysis package of the MIRROR neutron reflection instrument. The reflectivity calculation averages reflectivity for Q z over the instruments of known wavelength and angular resolution. The statistical and error estimation concepts used to compare calculated and measured reflectivities are described in: P.R. Bevington, Data Reduction and Error Analysis for the Physical Sciences, McGraw-Hill, 1969, chap. 11. The χ 2 fitting minimization routine employed by the MIRROR program is the downhill simplex method of J.A. Nelder and R. Mead, Comput. J. 7 (1965) 308-313, in an implementation described in: W.H. Press, S.A. Teukolsky, W.T. Vetterling and B.P. Flannery, Numerical Recipes in Pascal, 1989, chap. 10.4
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0004238622
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