MonodispersePSD

class pyarts3.arts.MonodispersePSD(*args, **kwargs)

A monodisperse population scaled by an atmospheric number-density field.

Overview

Method

evaluate()

Evaluate PSD at an atmospheric point.

Method

evaluate_with_derivatives()

Evaluate the PSD and its derivatives at an atmospheric point.

Operator

__eq__()

Return self==value.

Operator

__format__()

Default object formatter.

Operator

__ge__()

Return self>=value.

Operator

__gt__()

Return self>value.

Operator

__hash__()

Return hash(self).

Operator

__init__()

__init__(self, number_density: pyarts3.arts.ScatteringSpeciesProperty, t_min: float = 0.0, t_max: float = 350.0) -> None

Operator

__le__()

Return self<=value.

Operator

__lt__()

Return self<value.

Operator

__ne__()

Return self!=value.

Operator

__repr__()

Return repr(self).

Operator

__str__()

Return str(self).

Constructors

__init__(self, number_density: pyarts3.arts.ScatteringSpeciesProperty, t_min: float = 0.0, t_max: float = 350.0) None

Methods

evaluate(self, arg0: pyarts3.arts.AtmPoint, arg1: pyarts3.arts.Vector, arg2: float, arg3: float, /) pyarts3.arts.Vector

Evaluate PSD at an atmospheric point.

evaluate_with_derivatives(self, arg0: pyarts3.arts.AtmPoint, arg1: pyarts3.arts.Vector, arg2: float, arg3: float, /) pyarts3.arts.PSDData

Evaluate the PSD and its derivatives at an atmospheric point.

Operators

__eq__(value, /)

Return self==value.

__format__(format_spec, /)

Default object formatter.

Return str(self) if format_spec is empty. Raise TypeError otherwise.

__ge__(value, /)

Return self>=value.

__gt__(value, /)

Return self>value.

__hash__()

Return hash(self).

__init__(self, number_density: pyarts3.arts.ScatteringSpeciesProperty, t_min: float = 0.0, t_max: float = 350.0) None
__le__(value, /)

Return self<=value.

__lt__(value, /)

Return self<value.

__ne__(value, /)

Return self!=value.

__repr__()

Return repr(self).

__str__()

Return str(self).