Solution to problem 29 in Julia
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src/Julia/Problem029.jl
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src/Julia/Problem029.jl
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#=
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Created on 23 Aug 2021
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@author: David Doblas Jiménez
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@email: daviddoji@pm.me
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Solution for Problem 29 of Project Euler
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https://projecteuler.net/problem=29
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=#
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using BenchmarkTools
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function Problem29()
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Consider all integer combinations of ab for 2 ≤ a ≤ 5 and 2 ≤ b ≤ 5:
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2^2=4, 2^3=8, 2^4=16, 2^5=32
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3^2=9, 3^3=27, 3^4=81, 3^5=243
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4^2=16, 4^3=64, 4^4=256, 4^5=1024
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5^2=25, 5^3=125, 5^4=625, 5^5=3125
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If they are then placed in numerical order, with any repeats removed, we
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get the following sequence of 15 distinct terms:
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4, 8, 9, 16, 25, 27, 32, 64, 81, 125, 243, 256, 625, 1024, 3125
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How many distinct terms are in the sequence generated by ab for 2≤a≤100
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and 2≤b≤100?
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=#
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terms = Set(big(a)^b for a in 2:100, b in 2:100)
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return length(terms)
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end
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println("Time to evaluate Problem 29:")
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@btime Problem29()
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println("")
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println("Result for Problem 29: ", Problem29())
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