1 | """ |
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2 | Project Euler Problem 40: Champernowne's Constant |
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3 | ================================================= |
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4 | |||
5 | .. module:: solutions.problem40 |
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6 | :synopsis: My solution to problem #40. |
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7 | |||
8 | The source code for this problem can be |
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9 | `found here <https://bitbucket.org/nekedome/project-euler/src/master/solutions/problem40.py>`_. |
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10 | |||
11 | Problem Statement |
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12 | ################# |
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13 | |||
14 | An irrational decimal fraction is created by concatenating the positive integers: |
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15 | |||
16 | .. math:: |
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17 | |||
18 | 0.12345678910\\color{red}{1}112131415161718192021 \\dots |
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19 | |||
20 | It can be seen that the :math:`12^{th}` digit of the fractional part is :math:`1`. |
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21 | |||
22 | If :math:`d_n` represents the :math:`n^{th}` digit of the fractional part, find the value of the following expression. |
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23 | |||
24 | .. math:: |
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25 | |||
26 | d_1 \\times d_{10} \\times d_{100} \\times d_{1000} \\times d_{10000} \\times d_{100000} \\times d_{1000000} |
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27 | |||
28 | Solution Discussion |
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29 | ################### |
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30 | |||
31 | Explicitly building this decimal representation is not clever but will work, a :math:`1000000` digit number is not large |
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32 | in the scheme of things. |
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33 | |||
34 | Use Python to build the fractional part as a string of decimal digits and then simply index into the relevant points to |
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35 | extract each :math:`d_i` needed. Finally, multiply these values to compute the answer. |
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36 | |||
37 | Solution Implementation |
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38 | ####################### |
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39 | |||
40 | .. literalinclude:: ../../solutions/problem40.py |
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41 | :language: python |
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42 | :lines: 45- |
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43 | """ |
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44 | |||
45 | from functools import reduce |
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46 | from operator import mul |
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47 | |||
48 | |||
49 | def solve(): |
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50 | """ Compute the answer to Project Euler's problem #40 """ |
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51 | |||
52 | upper_limit = 200000 # large enough s.t. the total string length exceeds the highest index |
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53 | |||
54 | fractional_string = "".join(["{}".format(i + 1) for i in range(upper_limit)]) # build the string representation |
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55 | |||
56 | # Extract the relevant d_i values |
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57 | indices = [1, 10, 100, 1000, 10000, 100000, 1000000] |
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58 | digits = [fractional_string[i - 1] for i in indices] # Python using 0-based indices |
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59 | |||
60 | # Multiply each d_i together to get the answer |
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61 | answer = reduce(mul, map(int, digits)) |
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62 | |||
63 | return answer |
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64 | |||
65 | |||
66 | expected_answer = 210 |
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The name
expected_answer does not conform to the constant naming conventions ((([A-Z_][A-Z0-9_]*)|(__.*__))$ ).
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67 |
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