Problems 1 - 6
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7
0001.py
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7
0001.py
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result = 0
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for num in range(1000):
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if (num % 5 == 0 or num % 3 == 0):
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result = result + num
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print(result)
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14
0002.py
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14
0002.py
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previous = 1
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current = 1
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result = 0
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while (current <= 4000000):
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if (current % 2 == 0):
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result = result + current
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next = current + previous
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previous = current
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current = next
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print(result)
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57
0003.py
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57
0003.py
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from functools import reduce
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target = 600851475143
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# list = []
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# for num in range(1, int(target / 2)):
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# print(num)
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# if (target % num == 0):
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# list.append(num)
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# 2^x - 1 6k - 1
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# print(list)
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factors = []
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def findLargestPrimeFactor(n):
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primeFactor = 1
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factors.append(primeFactor)
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print('appended')
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i = 2
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while i <= n / i:
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if n % i == 0:
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factors.append(i)
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primeFactor = i
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n = int(n / i)
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else:
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i += 1
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if primeFactor < n:
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primeFactor = n
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return primeFactor
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def findPrimeFactors(n):
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factors = []
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i = 2
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while i <= n / i:
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if n % i == 0:
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factors.append(i)
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n = int(n / i)
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else:
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i += 1
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factors.append(n)
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return factors
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target = 600851475143
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# print(findLargestPrimeFactor(target))
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factors = findPrimeFactors(target)
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print(factors)
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result = reduce((lambda x, y: x * y), factors)
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print(result)
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print(findPrimeFactors(48))
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31
0004.py
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31
0004.py
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def is_palindrome(n):
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st = str(n)
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for i in range(0, int(len(st) / 2)):
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if (st[i] != st[len(st) - 1 - i]):
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return False
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return True
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def palindrome():
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largest = 0
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i = 999
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while(i > 0):
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j = 999
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while(j > 0):
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result = i * j
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if (largest >= result):
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break;
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elif (is_palindrome(result)):
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largest = result
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j -= 1
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i -= 1
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return largest
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# print(is_palindrome(9119))
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print(palindrome())
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49
0005.py
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49
0005.py
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from collections import Counter
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from functools import reduce
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def findPrimeFactors(n):
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factors = []
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i = 2
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while i <= n / i:
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if n % i == 0:
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factors.append(i)
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n = int(n / i)
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else:
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i += 1
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factors.append(n)
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return factors
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def divisible(rng):
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factors = None
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for num in rng:
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nums = findPrimeFactors(num)
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count = Counter(nums)
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if (factors == None):
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factors = count
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else:
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for key, value in count.items():
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if (not factors[key] or value > factors[key]):
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factors[key] = value
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return factors
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# max_num = max(rng)
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factors = divisible(range(1, 21))
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# print(factors)
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# reduce(def fnc(value, key): print(value), factors.items())
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result = 1
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for key, value in factors.items():
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result *= key ** value
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print(result)
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19
0006.py
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19
0006.py
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from functools import reduce
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def square_sum(rng):
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sum = reduce(lambda x, y: x + y, rng)
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return sum ** 2
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def sum_squares(rng):
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squares = list(map(lambda x: x**2, rng))
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return reduce(lambda x, y: x + y, squares)
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lst = list(range(1, 101))
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result1 = sum_squares(lst)
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result2 = square_sum(lst)
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print(result2 - result1)
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# print(result)
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