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				| @ -182,10 +182,10 @@ def eh_full(omega: complex, | |||||||
|     :param mu: Vectorized magnetic permeability (default 1 everywhere) |     :param mu: Vectorized magnetic permeability (default 1 everywhere) | ||||||
|     :param pec: Vectorized mask specifying PEC cells. Any cells where pec != 0 are interpreted |     :param pec: Vectorized mask specifying PEC cells. Any cells where pec != 0 are interpreted | ||||||
|         as containing a perfect electrical conductor (PEC). |         as containing a perfect electrical conductor (PEC). | ||||||
|         The PEC is applied per-field-component (ie, pec.size == epsilon.size) |         The PEC is applied per-field-component (i.e., pec.size == epsilon.size) | ||||||
|     :param pmc: Vectorized mask specifying PMC cells. Any cells where pmc != 0 are interpreted |     :param pmc: Vectorized mask specifying PMC cells. Any cells where pmc != 0 are interpreted | ||||||
|         as containing a perfect magnetic conductor (PMC). |         as containing a perfect magnetic conductor (PMC). | ||||||
|         The PMC is applied per-field-component (ie, pmc.size == epsilon.size) |         The PMC is applied per-field-component (i.e., pmc.size == epsilon.size) | ||||||
|     :return: Sparse matrix containing the wave operator |     :return: Sparse matrix containing the wave operator | ||||||
|     """ |     """ | ||||||
|     if numpy.any(numpy.equal(pec, None)): |     if numpy.any(numpy.equal(pec, None)): | ||||||
|  | |||||||
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