samuel bajracharya
2 pages
samuel bajracharya
2 pages
237
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# comment
# Arithmetic operators
# num1 = 7
# num2 = 2
# print(num1 + num2)
# print(num1 - num2)
# print(num1 * num2)
# print(num1 / num2)
# print(num1 // num2)
# print(num1 % num2)
# print(num1**num2)
# type casting
# km = float(input("Enter kilometers >>> "))
# m = km * 1000
# # print("100 km = ", m, "meters")
# print(f"{km} kilometers = {m} meters")
# Triangle validity and Triangle type
angle_a = int(input("Enter value of angle A >>> "))
angle_b = int(input("Enter value of angle B >>> "))
angle_c = int(input("Enter value of angle C >>> "))
all_angles_sum = angle_a + angle_b + angle_c
# Relational operators / Comparision operators
# valid_triangle = all_angles_sum == 180
# print(valid_triangle)
# conditional statement
# whitespace before print in line 35, is called as indentation
# if valid_triangle:
# if all_angles_sum == 180:
# print("Yes, given angles makes a valid Triangle")
# else:
# print("No, given angles doesn't make a valid Triangle")
# if angle_a == 60 and angle_b == 60 and angle_c == 60:
# print("This is equilateral Triangle")
# elif angle_a==angle_b or angle_b==angle_c or angle_a==angle_c:
# print("This is isoceseles Triangle")
# else:
# print("This is scalene Triangle")
if all_angles_sum == 180:
print("Yes, given angles makes a valid Triangle")
if angle_a == 60 and angle_b == 60 and angle_c == 60:
print("This is equilateral Triangle")
elif angle_a==angle_b or angle_b==angle_c or angle_a==angle_c:
print("This is isoceseles Triangle")
else:
print("This is scalene Triangle")
else:
print("No, given angles doesn't make a valid Triangle")
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