```n=5
s=0
for i in range(1,n+1):
# adding cube sum using pow() function
s=s+pow(i,3)
print(s)   ```
```def prime(x, y):
prime_list = []
for i in range(x, y):
if i == 0 or i == 1:
continue
else:
for j in range(2, int(i/2)+1):
if i % j == 0:
break
else:
prime_list.append(i)
return prime_list
starting_range = 2
ending_range = 7
lst = prime(starting_range, ending_range)
if len(lst) == 0:
print("There are no prime numbers in this range")
else:
print("The prime numbers in this range are: ", lst)```
```def findArea(r):
PI = 3.142
return PI * (r*r);

# Driver method
print("Area is %.6f" % findArea(5));```
```def power(x, y):

if y == 0:
return 1
if y % 2 == 0:
return power(x, y // 2) * power(x, y // 2)

return x * power(x, y // 2) * power(x, y // 2)

def order(x):

# Variable to store of the number
n = 0
while (x != 0):
n = n + 1
x = x // 10

return n

def isArmstrong(x):

n = order(x)
temp = x
sum1 = 0

while (temp != 0):
r = temp % 10
sum1 = sum1 + power(r, n)
temp = temp // 10

# If condition satisfies
return (sum1 == x)

# Driver code
x = 153
print(isArmstrong(x))

x = 1253
print(isArmstrong(x))```
```import math

def isPerfectSquare(x):
s = int(math.sqrt(x))
return s*s == x

def isFibonacci(n):

# n is Fibonacci if one of 5*n*n + 4 or 5*n*n - 4 or both
# is a perfect square
return isPerfectSquare(5*n*n + 4) or isPerfectSquare(5*n*n - 4)

for i in range(1, 11):
if (isFibonacci(i) == True):
print(i, "is a Fibonacci Number")
else:
print(i, "is a not Fibonacci Number ")```
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