bundles / numpy 2.4.3 / numpy / polynomial / hermite / hermval2d
function
numpy.polynomial.hermite:hermval2d
Signature
def hermval2d ( x , y , c ) Summary
Evaluate a 2-D Hermite series at points (x, y).
Extended Summary
This function returns the values:
The parameters x and y are converted to arrays only if they are tuples or a lists, otherwise they are treated as a scalars and they must have the same shape after conversion. In either case, either x and y or their elements must support multiplication and addition both with themselves and with the elements of c.
If c is a 1-D array a one is implicitly appended to its shape to make it 2-D. The shape of the result will be c.shape[2:] + x.shape.
Parameters
x, y: array_like, compatible objectsThe two dimensional series is evaluated at the points
(x, y), wherexandymust have the same shape. Ifxoryis a list or tuple, it is first converted to an ndarray, otherwise it is left unchanged and if it isn't an ndarray it is treated as a scalar.c: array_likeArray of coefficients ordered so that the coefficient of the term of multi-degree i,j is contained in
c[i,j]. Ifchas dimension greater than two the remaining indices enumerate multiple sets of coefficients.
Returns
values: ndarray, compatible objectThe values of the two dimensional polynomial at points formed with pairs of corresponding values from
xandy.
Examples
from numpy.polynomial.hermite import hermval2d x = [1, 2] y = [4, 5] c = [[1, 2, 3], [4, 5, 6]] hermval2d(x, y, c)✓
See also
Aliases
-
numpy.polynomial.hermite.hermval2d