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I'm new to programming and ruby. I'm working on code that deals with a specific Diophantine equation (from an MIT opencourseware problem), and just kind of seeing what I can do with it.

The code produces three arrays and a hash of two of them for a particular linear equation with three variables.

Here's the code:

def diophantine_solutions(x)
  #For all x > 1, finds values for a, b, c such that 6a + 9b + 20c = x,
  #Creates array of solvable x, unsolvable x, 
  #Creates hash of solvable x with possible values of a, b, c

  nopes=(1..x).to_a #will contain sums with no solutions at the end
  yups=[] #has solvalbes
  yups_values=[] #solutions for a, b, c
  yups_hash={} #sums with the solutions

  while x>0
    for a in (0..x/6):
      for b in (0..x/9):
        for c in (0..x/20):
          total=6*a + 9*b + 20*c
          if total==x
            yups<< x
            yups_values<< [a, b, c]

  puts yups_hash[20]


What I'm trying to do now is access the individual hash pairings to make sure they are lining up right, but

puts yups_hash[] 

returns nil for any number. Any help? Also, being new as I am, if there are better ways to do anything I've done, I'd appreciate it if you let me know.

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1 Answer

It should probably be:

yups_hash = Hash[yups.zip(yups_values)]

With the caveat that I don't know what's supposed be happening, but the yups_hash name implies it should be a hash, not an array with a bunch of arrays in it.

Once there's an actual hash the output for 20 is:

0 0 1

This matches the definition, at least.

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This returns the error: `[]': odd number of arguments for Hash (ArgumentError). I'm trying to make a hash out of it, pairing a value of x with [a,b,c] for each value of x that has a solution, and for each set of [a,b,c] such that they together satisfy the equation for x. I want to collect that information and call which variations of [a,b,c] solve the equation for the same value of x. –  kyle william shike Mar 7 '13 at 21:38
@quiet_engine What version of Ruby? Works fine for me. –  Dave Newton Mar 7 '13 at 21:54
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