Remove duplicit function declaration.
qpms_scatsysw_scattered_field_basis()
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@ -820,26 +820,6 @@ qpms_errno_t qpms_scatsysw_scattered_field_basis_pi(
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cart3_t evalpoint ///< A point \f$ \vect r \f$, at which the field is evaluated.
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cart3_t evalpoint ///< A point \f$ \vect r \f$, at which the field is evaluated.
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/// Evaluates a "basis" for electric field at a given point.
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/**
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* This function evaluates all the included VSWFs from the particles in the system, evaluated
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* at a given point. Taking a linear combination of these with the coefficients \a scattcoeff_full[]
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* would be equivalent to the result of qpms_scatsysw_scattered_E().
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*
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* \see qpms_scatsysw_scattered_field_basis_pi()
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*
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* \see qpms_scatsys_scattered_field_basis()
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*
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* \see qpms_scatsyswk_scattered_field_basis() for periodic systems.
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*
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*/
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qpms_errno_t qpms_scatsysw_scattered_field_basis(
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ccart3_t *target, ///< Target array of length \a ss->fecv_size
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const qpms_scatsys_at_omega_t *ssw,
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qpms_bessel_t typ, ///< Bessel function kind to use (for scattered fields, use QPMS_HANKEL_PLUS).
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cart3_t evalpoint ///< A point \f$ \vect r \f$, at which the field is evaluated.
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);
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/// Evaluates scattered electric field at a point, given a full vector of scattered field coefficients.
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/// Evaluates scattered electric field at a point, given a full vector of scattered field coefficients.
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/**
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/**
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* This is an alternative implementation of qpms_scatsys_scattered_E(), and should give the same results
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* This is an alternative implementation of qpms_scatsys_scattered_E(), and should give the same results
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