python Cylinder class: Instance variables: Make instance variables appropriately to accomplish the tasks you need. Methods: ? _init_ :: constructor, initializes instance variables o Additional Parameters: diameter and height (in that order) o Assumption: diameter and height will always be numbers which represent measurements in millimeters o Temporary Assumption (we will fix this later): diameter will never be negative and height will always be positive number above 0 ? get_volume : returns the volume of the cylinder based on its height o Additional Parameters: No additional parameters (just self). .o Note: Use pi from the math module ?_str__ :: returns string representation with this format: "Cylinder (radius: 20.25mm, thickness: 6.10mm, volume: 7858.32mm^3)" o Additional Parameters: No additional parameters. o Notes: ? The quotes in the example are just our string boundaries! The first character in the above example is C. ? This method reports the radius (NOT the diameter). ? All numbers are presented with 2 digits after the decimal point. ? _eq__ :: returns true or false depending on whether the current instance (self) is equal to some other instance (other). Two cylinders are equal if they have the same dimensions. o Parameters: _eq__ requires the parameters self and other (in that order) o Assumption: other will always be an instance of a Cylinder

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python
Cylinder class: Instance variables: Make instance
variables appropriately to accomplish the tasks you
need.
Methods:
?_init_ :: constructor, initializes instance
variables
o Additional Parameters: diameter and height (in
that order)
o Assumption: diameter and height will always be
numbers which represent measurements in
millimeters
o Temporary Assumption (we will fix this later):
diameter will never be negative and height wilI
always be positive number above o
? get_volume : returns the volume of the cylinder
based on its height
o Additional Parameters: No additional parameters
(just self).
.0 Note: Use pi from the math module
?_str__ :: returns string representation with this
format: "Cylinder (radius: 20.25mm, thickness:
6.10mm, volume: 7858.32mm^3)"
o Additional Parameters: No additional parameters.
o Notes: ?
The quotes in the example are just our string
boundaries!
The first character in the above example is C. ?
This method reports the radius (NOT the
diameter). ?
All numbers are presented with 2 digits after the
decimal point.
? _eq__ :: returns true or false depending on
whether the current instance (self) is equal to some
other instance (other). Two cylinders are equal if
they have the same dimensions.
o Parameters:_eq_requires the parameters self
and other (in that order)
o Assumption: other will always be an instance of a
Cylinder
Transcribed Image Text:python Cylinder class: Instance variables: Make instance variables appropriately to accomplish the tasks you need. Methods: ?_init_ :: constructor, initializes instance variables o Additional Parameters: diameter and height (in that order) o Assumption: diameter and height will always be numbers which represent measurements in millimeters o Temporary Assumption (we will fix this later): diameter will never be negative and height wilI always be positive number above o ? get_volume : returns the volume of the cylinder based on its height o Additional Parameters: No additional parameters (just self). .0 Note: Use pi from the math module ?_str__ :: returns string representation with this format: "Cylinder (radius: 20.25mm, thickness: 6.10mm, volume: 7858.32mm^3)" o Additional Parameters: No additional parameters. o Notes: ? The quotes in the example are just our string boundaries! The first character in the above example is C. ? This method reports the radius (NOT the diameter). ? All numbers are presented with 2 digits after the decimal point. ? _eq__ :: returns true or false depending on whether the current instance (self) is equal to some other instance (other). Two cylinders are equal if they have the same dimensions. o Parameters:_eq_requires the parameters self and other (in that order) o Assumption: other will always be an instance of a Cylinder
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