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Commit 484c897f authored by Daniel Moix's avatar Daniel Moix
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Posting Lecture 4

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def poundsToKg(pounds):
return pounds / 2.205
def feetAndInchesToMeters(feet, inches):
totalInches = feet * 12 + inches
return totalInches * 0.0254
# Caution: Weight in kg, height in meters
def calculateBMI(weight, height):
return weight / (height * height)
def getBMICategory(bmi):
if bmi >= 30:
category = "Obese"
elif bmi >= 25:
category = "Overweight"
elif bmi >= 18.5:
category = "Normal Weight"
else:
category = "Underweight"
return category
# TODO: Add try/except and conditions to make sure users
# enter valid values for height and weight
weight = float(input("Enter weight in pounds: "))
print("Next, you will enter you height in feet and inches, separately.")
feet = int(input("Enter feet part of height: "))
inches = int(input("Enter inches part of height: "))
metricHeight = feetAndInchesToMeters(feet, inches)
metricWeight = poundsToKg(weight)
yourBMI = calculateBMI(metricWeight, metricHeight)
category = getBMICategory(yourBMI)
print(f"At {feet} feet and {inches} inches tall at a weight of {weight} pounds, your BMI is {yourBMI:.1f}, which is {category}.")
\ No newline at end of file
# print("Hello, Lecture 4")
#
# print("Goodbye")
#
# print(18 < 9)
# print('C' > 'A')
#
# try:
# age = int(input("What's your age? "))
# except Exception:
# print("That wasn't a valid age. You are now 0.")
# age = 0
#
# if age <= 21:
# print("You are 21 or under.")
#
# cont = input("Do you wish to continue? (y/n)")
#
# print(cont == 'y')
#
#
# if cont[0].lower() == 'y':
# print("Great, please continue")
# else:
# print("Thanks for playing")
#
#
# print( "&" < "(" )
# print(ord("&"))
# print(ord("("))
letter = input("Give me a letter: ").upper()
if letter == 'A' or letter == 'E' or letter == 'I' or letter == 'O' or letter == 'U':
print(f"{letter} is a vowel")
if letter in ('A', 'E', 'I', 'O', 'U'):
print(f"{letter.upper()} is a vowel")
numberGrade = int(input("Enter numeric course grade: "))
#
# if numberGrade >= 97:
# print("Course grade: A+")
# elif ...
#
#
#
#
#
# # Another way
#
# numberGrade = int(input("Enter numeric course grade: "))
#
# if numberGrade >= 97:
# letterGrade = "A+"
# elif ...
if numberGrade >= 97:
letterGrade = "A+"
elif numberGrade >= 93:
letterGrade = "A"
elif numberGrade >= 90:
letterGrade = "A-"
elif numberGrade >= 87:
letterGrade = "B+"
elif numberGrade >= 83:
letterGrade = "B"
elif numberGrade >= 80:
letterGrade = "B-"
elif numberGrade >= 77:
letterGrade = "C+"
elif numberGrade >= 73:
letterGrade = "C"
elif numberGrade >= 70:
letterGrade = "C-"
elif numberGrade >= 65:
letterGrade = "D+"
elif numberGrade >= 60:
letterGrade = "D"
else:
letterGrade = "F"
print(f"Your grade is {letterGrade}")
\ No newline at end of file
import math
from abc import ABC, abstractmethod
class Shape(ABC):
def __init__(self, name, color = "gray"):
self.__name = name
self.__color = color
def getColor(self):
return self.__color
def getName(self):
return self.__name
@abstractmethod
def getArea():
pass
def __str__(self):
return f"A {self.__color} {self.__name}."
class Circle(Shape):
def __init__(self, radius, color = "gray"):
super().__init__("Circle", color)
self.__radius = radius
def getRaidus(self):
return self.__radius
def getPerimeter(self):
return 2 * self.__radius * math.pi
def getArea(self):
return math.pi * (self.__radius ** 2)
class Rectangle(Shape):
def __init__(self, width, height, color = "gray"):
super().__init__("Rectangle", color)
self.__width = width
self.__height = height
def getWidth(self):
return self.__width
def getHeight(self):
return self.__height
def getPerimeter(self):
return (self.__width + self.__height) * 2
def getArea(self):
return self.__width * self.__height
def __str__(self):
return super().__str__()[:-1] + " of area " + str(self.getArea()) + "."
class Square(Shape):
def __init__(self, side, color = "gray"):
super().__init__("Square", color)
self.__side = side
def getArea(self):
pass
myRect = Rectangle(20, 12, "Green")
print(myRect)
myCircle = Circle(1, "Chartreuse")
print(myCircle.getArea())
mySquare = Square(10, "Purple")
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