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Module for the pseudo-ellipse frame order model.
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__package__ =
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Imports: cos, pi, sin, sqrt, sinc, quad, tplquad, pec, pcs_pivot_motion_full, pcs_pivot_motion_full_qrint, rotate_daeg
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Generate the 1st degree Frame Order matrix for the pseudo-ellipse.
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Generate the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 1st degree Frame Order matrix element xx for the pseudo-ellipse.
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The theta-sigma partial integral of the 1st degree Frame Order matrix element yy for the pseudo-ellipse.
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The theta-sigma partial integral of the 1st degree Frame Order matrix element zz for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix element 11 for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix element 22 for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix element 33 for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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The theta-sigma partial integral of the 2nd degree Frame Order matrix for the pseudo-ellipse.
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Determine the averaged PCS value via numerical integration.
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The pseudo-ellipse tilt-torsion polar angle.
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Determine the averaged PCS value via numerical integration.
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