Algumas simplificações
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@ -1,15 +1,14 @@
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def isPrime(n):
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def isPrime(n):
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div_counter = 0
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for x in range(2, n):
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for x in range(1, n):
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if n % x == 0:
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if n % x == 0:
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div_counter += 1
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return False
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if div_counter > 1 or n == 1:
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return True
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return False
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else:
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return True
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def main():
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def main():
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for x in range(1, 100):
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for x in range(1, 100):
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print('Is {} prime? {}'.format(x, isPrime(x)))
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print('Is {} prime? {}'.format(x, isPrime(x)))
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main()
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if __name__ == "__main__":
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main()
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@ -1,7 +1,7 @@
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# Show a table of the squares of the first four numbers
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# Show a table of the squares of the first four numbers
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print(" {:2s}| {:2s}| {:2s}".format("n", "n²", "2**n"))
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print(" {:1s} | {:>3s} | {:>7s}".format("n", "n²", "2**n"))
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for n in range(1, 21):
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for n in range(1, 21):
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print("{:2d} | {:3d} |{:8d}".format(n, n**2, 2**n))
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print("{:2d} | {:3d} | {:7d}".format(n, n**2, 2**n))
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# Modify the program to show the squares of 1..20. (Use the range function.)
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# Modify the program to show the squares of 1..20. (Use the range function.)
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# Also, add a column to show 2**n. Adjust the formatting.
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# Also, add a column to show 2**n. Adjust the formatting.
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@ -1,15 +1,14 @@
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import re
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def main():
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def main():
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print(countDigits("far4214faewf13")) # Tem de dar 6
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print(countDigits("far4214faewf13")) # Tem de dar 6
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def countDigits(string):
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def countDigits(string):
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nums = r"[0-9]$"
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count = 0
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count = 0
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for char in string:
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for char in string:
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if re.match(nums, char):
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if char.isdigit():
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count += 1
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count += 1
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return count
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return count
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if __name__ == "__main__":
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if __name__ == "__main__":
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main()
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main()
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@ -18,25 +18,23 @@ def evenThenOdd(string):
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def removeAdjacentDuplicates(s):
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def removeAdjacentDuplicates(s):
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s = str(s)
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new = ''
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newS = ''
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for i in range(len(s)):
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lastChar = 'a' if s[0] != 'a' else 'b'
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if i == 0:
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for char in s:
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new += s[i]
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if char != lastChar:
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elif s[i] != s[i-1]:
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newS += char
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new += s[i]
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lastChar = char
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return new
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return newS
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def reapeatNumTimes(n):
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def reapeatNumTimes(n):
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lst = []
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lst = []
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for i in range(1,n+1):
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for i in range(1, n+1):
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for j in range(i):
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for j in range(i):
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lst.append(i)
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lst.append(i)
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return lst
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return lst
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# <!-- -->
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def positionOfFirstLargest(arr):
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def positionOfFirstLargest(arr):
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mx = maxArray(arr)
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mx = maxArray(arr)
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index = 0
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index = 0
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@ -51,7 +49,6 @@ def maxArray(arr):
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if a > mx:
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if a > mx:
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mx = a
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mx = a
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return mx
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return mx
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# <!-- -->
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if __name__ == "__main__":
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if __name__ == "__main__":
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@ -2,12 +2,11 @@ def main():
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s = input('Introduza uma string >> ')
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s = input('Introduza uma string >> ')
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print(ispalindrome(s))
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print(ispalindrome(s))
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def ispalindrome(s):
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def ispalindrome(s):
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pal_s = s[::-1]
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pal_s = s[::-1]
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if pal_s == s:
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return pal_s == s
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return True
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else:
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return False
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if __name__ == "__main__":
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if __name__ == "__main__":
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main()
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main()
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@ -1,15 +1,12 @@
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import re
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def main():
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def main():
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print(shorten("Universidade de Aveiro"))
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print(shorten("Universidade de Aveiro"))
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print(shorten("United Nations Organization"))
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print(shorten("United Nations Organization"))
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def shorten(string):
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def shorten(string):
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abv = ''
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abv = ''
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upper = r"[A-Z]$"
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for char in string:
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for char in string:
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if re.match(upper, char):
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if char.isupper():
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abv += char
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abv += char
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return abv
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return abv
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