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| from typing import Any
|
| from numpy import ndarray, dtype, int_
| from numpy.polynomial._polybase import ABCPolyBase
| from numpy.polynomial.polyutils import trimcoef
|
| __all__: list[str]
|
| chebtrim = trimcoef
|
| def poly2cheb(pol): ...
| def cheb2poly(c): ...
|
| chebdomain: ndarray[Any, dtype[int_]]
| chebzero: ndarray[Any, dtype[int_]]
| chebone: ndarray[Any, dtype[int_]]
| chebx: ndarray[Any, dtype[int_]]
|
| def chebline(off, scl): ...
| def chebfromroots(roots): ...
| def chebadd(c1, c2): ...
| def chebsub(c1, c2): ...
| def chebmulx(c): ...
| def chebmul(c1, c2): ...
| def chebdiv(c1, c2): ...
| def chebpow(c, pow, maxpower=...): ...
| def chebder(c, m=..., scl=..., axis=...): ...
| def chebint(c, m=..., k = ..., lbnd=..., scl=..., axis=...): ...
| def chebval(x, c, tensor=...): ...
| def chebval2d(x, y, c): ...
| def chebgrid2d(x, y, c): ...
| def chebval3d(x, y, z, c): ...
| def chebgrid3d(x, y, z, c): ...
| def chebvander(x, deg): ...
| def chebvander2d(x, y, deg): ...
| def chebvander3d(x, y, z, deg): ...
| def chebfit(x, y, deg, rcond=..., full=..., w=...): ...
| def chebcompanion(c): ...
| def chebroots(c): ...
| def chebinterpolate(func, deg, args = ...): ...
| def chebgauss(deg): ...
| def chebweight(x): ...
| def chebpts1(npts): ...
| def chebpts2(npts): ...
|
| class Chebyshev(ABCPolyBase):
| @classmethod
| def interpolate(cls, func, deg, domain=..., args = ...): ...
| domain: Any
| window: Any
| basis_name: Any
|
|