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176 lines (146 loc) · 3.93 KB
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from math import pi, sqrt
# Contains Volume Calculating Functions
def vol_cube(a: int) -> 'volume':
"""
Takes 'a' As The Side Of The Cube.
Returns The Volume
:param a: int
:return: volume
"""
volume = pow(a, 3)
return volume
def vol_cuboid(l: int, b: int, h: int) -> 'volume':
"""
Takes 'l','b','h' As Length,Breadth,Height Respectively.
Returns The Volume.
:param l: int
:param b: int
:param h: int
:return: volume
"""
volume = l * b * h
return volume
def vol_cylinder(r: int, h: int) -> 'volume':
"""
Takes 'r'&'h' As Radius And Height Respectively.
Returns The Volume.
:param r: int
:param h: int
:return: volume
"""
volume = pi * pow(r, 2) * h
return volume
def vol_hollow_cylinder(ro: int, rs: int, h: int) -> 'volume':
"""
Takes 'ro','rs','h' As Radius Of Hollow Space,Radius Of The Cylinder,
Height Of The Cylinder Respectively.
Returns The Volume.
:param ro: int
:param rs: int
:param h: int
:return: volume
"""
volume = 2 * pi * (ro + rs) * h
return volume
def vol_cone(r: int, h: int) -> 'volume':
"""
Takes 'r','h' As The Radius & Height Of The Cone Respectively.
Returns The Volume.
:param r: int
:param h: int
:return: volume
"""
volume = 1 / 3 * pi / pow(r, 2) * h
return volume
def vol_sphere(r: int) -> 'volume':
"""
Takes 'r' As The Radius Of The Sphere.
Returns The Volume.
:param r: int
:return: volume
"""
volume = 4 / 3 * pi * pow(r, 3)
return volume
def vol_hollow_sphere(ro: int, rs: int) -> 'volume':
"""
Takes 'ro' & 'rs' As The Full Radius Of The Sphere,
& Radius Of Hollow Space Of The Sphere Respectively.
Returns The Volume.
:param ro: int
:param rs: int
:return: volume
"""
volume = 4 / 3 * pi * (pow(ro, 3) - pow(rs, 3))
return volume
def vol_tri_prism(a: int, h: int) -> 'volume':
"""
Takes 'a'&'h' As The Length Of A Side Of The Base Triangle,
& Height Of The Prism Respectively.
Returns The Volume.
:param a: int
:param h: int
:return: volume
"""
volume = (sqrt(3) / 4 * pow(a, 2)) * h
return volume
def vol_penta_prism(a: int, h: int) -> 'volume':
"""
Takes 'a'&'h' As The Length Of The Side Of The Base Pentagon,
& Height Of The Prism Respectively.
Returns The Volume.
:param a: int
:param h: int
:return: volume
"""
volume = (sqrt(3) * pow(a, 2)) * h
return volume
def vol_hexa_prism(a: int, h: int) -> 'volume':
"""
Takes 'a'&'h' As The Length Of The Side Of The Base Hexagon,
& Height Of The Prism Respectively.
:param a: int
:param h: int
:return: volume
"""
volume = (2.5981 * pow(a, 2)) * h
return volume
def vol_sqr_pyramid(a: int, h: int) -> 'volume':
"""
Takes 'a'&'h' As The Length Of The Side Of The Base Square,
& Height Of The Pyramid Respectively.
:param a: int
:param h: int
:return: volume
"""
volume = (1 / 3 * h) * pow(a, 2)
return volume
def vol_tri_pyramid(a: int, h: int) -> 'volume':
"""
Takes 'a'&'h' As The Length Of The Side Of The Base Triangle,
& Height Of The Pyramid Respectively.
:param a: int
:param h: int
:return: volume
"""
volume = 1 / 3 * h * (sqrt(3) / 4 * pow(a, 2))
return volume
def vol_penta_pyramid(a: int, h: int) -> 'volume':
"""
Takes 'a'&'h' As The Length Of The Side Of The Base Pentagon,
& Height Of The Pyramid Respectively.
:param a: int
:param h: int
:return: volume
"""
volume = 1 / 3 * h * (sqrt(3) * pow(a, 2))
return volume
def vol_hexa_pyramid(a: int, h: int) -> 'volume':
"""
Takes 'a'&'h' As The Length Of The Side Of The Base Hexagon,
& Height Of The Pyramid Respectively.
:param a: int
:param h: int
:return: volume
"""
volume = (1 / 3 * h) * (2.5981 * pow(a, 2))
return volume