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NotesOther ParametersParametersReturns
quad(func, a, b, args=(), full_output=0, epsabs=1.49e-08, epsrel=1.49e-08, limit=50, points=None, weight=None, wvar=None, wopts=None, maxp1=50, limlst=50, complex_func=False)

Notes

Other Parameters

epsabs : float or int, optional
epsrel : float or int, optional
limit : float or int, optional
points : (sequence of floats,ints), optional
weight : float or int, optional
wvar : optional
wopts : optional
maxp1 : float or int, optional
limlst : int, optional

Parameters

func : {function, scipy.LowLevelCallable}
a : float
b : float
args : tuple, optional
full_output : int, optional
complex_func : bool, optional

Returns

y : float
abserr : float
infodict : dict
message
explain

See Also

dblquad

fixed_quad

nquad

:None:None:`quad`

ode

odeint

quadrature

romb

scipy.special

simpson

tplquad

Examples

See :

Local connectivity graph

Hover to see nodes names; edges to Self not shown, Caped at 50 nodes.

Using a canvas is more power efficient and can get hundred of nodes ; but does not allow hyperlinks; , arrows or text (beyond on hover)

SVG is more flexible but power hungry; and does not scale well to 50 + nodes.

All aboves nodes referred to, (or are referred from) current nodes; Edges from Self to other have been omitted (or all nodes would be connected to the central node "self" which is not useful). Nodes are colored by the library they belong to, and scaled with the number of references pointing them


GitHub : /scipy/integrate/_quadpack_py.py#23
type: <class 'function'>
Commit: