Project Euler Lab - Problem 354

#354 - Distances in a Bee's Honeycomb

● ResearchOfficial difficulty: 83%Naive enumeration is infeasible; requires a mathematical reductionTier C - reduced scale in browser; full scale in notebookNot viewed
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Consider a honey bee's honeycomb where each cell is a perfect regular hexagon with side length \(1\).

0354_bee_honeycomb.png

One particular cell is occupied by the queen bee.
For a positive real number \(L\), let \(\text{B}(L)\) count the cells with distance \(L\) from the queen bee cell (all distances are measured from centre to centre); you may assume that the honeycomb is large enough to accommodate for any distance we wish to consider.
For example, \(\text{B}(\sqrt 3)=6\), \(\text{B}(\sqrt {21}) = 12\) and \(\text{B}(111\,111\,111) = 54\).

Find the number of \(L \le 5 \times 10^{11}\) such that \(\text{B}(L) = 450\).

This problem is taken from Project Euler, Problem 354.
Problem text © Project Euler, licensed under CC BY-NC-SA 4.0. Original: projecteuler.net/problem=354. Published Sunday, 16th October 2011, 07:00 am. Solved by 540 members at time of mirroring.

Why this is useful

Optimization. The transferable skill is replacing infeasible enumeration with a mathematical reduction - the core move in calibration and large-scale computation (Phases 10, 13).

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Lessons that prepare you:
19.14 Computational Complexity, Feasibility Estimation, and Proving Algorithms Correct

Recommended stepping-stone problems: #676 · #442 · #654

Concepts: brute-force-reduction

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