E
Size: a a a
E
E
cities={"City":(500,300),"City_2":(300,200)}
print(sum(map(lambda x,y:(x-y)**2,*zip(*cities.values())))**0.5)
E
E
E
print(sum(map(lambda x,y:(x-y)**2,*zip(*{"City":(500,300),"City_2":(300,200)}.values())))**0.5)
ВП
print(sum(map(lambda x,y:(x-y)**2,*zip(*{"City":(500,300),"City_2":(300,200)}.values())))**0.5)
ᅠ
E
E
БГ
from math import sqrt
from operator import sub
distance = sqrt(sum(sub(*pair)**2 for pair in zip(*cities.values())))
БГ
E
from math import sqrt
from operator import sub
distance = sqrt(sum(sub(*pair)**2 for pair in zip(*cities.values())))
ВП
AT
K
БГ
help(...)
тебе в руки и читайAT
from math import sqrt
from operator import sub
distance = sqrt(sum(sub(*pair)**2 for pair in zip(*cities.values())))
ВП
__import__('operator').sub
E
БГ
cities = {"City": (500, 300), "City_2": (300, 200)}
print(sum(map(lambda x, y: (x - y) ** 2, *zip(*cities.values()))) ** 0.5)