Two Mathematicians Just Solved a Decades-Old Math Riddle — and Possibly the
Meaning of Life

By Brandon Specktor - Senior Writer
<https://www.livescience.com/author/brandon-specktor> 8 days ago Strange
News <https://www.livescience.com/strange-news>
The answer is 42... but what was the question??

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<?subject=I%20found%20this%20webpage&body=Hi,%20I%20found%20this%20webpage%20and%20thought%20you%20might%20like%20it%20https://www.livescience.com/diophantine-42-solved-meaning-of-life.html>

[image: 42 is not just a number. It is a way of life.]
(Image: © Shutterstock)

In Douglas Adams' sci-fi series "The Hitchhiker's Guide to the Galaxy," a
pair of programmers task the galaxy's largest supercomputer with answering
the ultimate question of the meaning of life, the universe and everything.
After 7.5 million years of processing, the computer reaches an answer: 42.
Only then do the programmers realize that nobody knew the question the
program was meant to answer.

Now, in this week's most satisfying example of life reflecting art, a pair
of mathematicians have used a global network of 500,000 computers to solve
a centuries-old math puzzle that just happens to involve that most crucial
number: 42.

The question, which goes back to *at least 1955*
<https://londmathsoc.onlinelibrary.wiley.com/doi/abs/10.1112/jlms/s1-30.1.101>
and
may have been pondered by Greek thinkers as early as the third century AD,
asks, "How can you express every number between 1 and 100 as the sum of
three cubes?" Or, put algebraically, how do you solve x^3 + y^3 + z^3 = k,
where k equals any whole number from 1 to 100?

This deceptively simple stumper is known as a *Diophantine equation*
<https://www.livescience.com/23075-mathematician-claims-proof-of-connection-between-prime-numbers.html>,
named for the ancient mathematician Diophantus of Alexandria, who proposed
a similar set of problems about 1,800 years ago. Modern mathematicians who
revisited the puzzle in the 1950s quickly found solutions when k equals
many of the smaller numbers, but a few particularly stubborn integers soon
emerged. The two trickiest numbers, which still had outstanding solutions
by the beginning of 2019, were 33 and — you guessed it — 42.

In April, mathematician Andrew Booker, of the University of Bristol in
England, knocked 33 off the list. Using *a computer algorithm*
<https://people.maths.bris.ac.uk/~maarb/papers/cubesv1.pdf> to look for
solutions to the Diophantine equation with x, y and z values that included
every number between positive and negative 99 quadrillion, Booker found the
solution to 33 after several weeks of computing time. (As *you can see*
<https://cdn.mos.cms.futurecdn.net/d3xTSLDBW95TKhoS3xeiBo-650-80.jpg>, the
answer is super, super long.)

Here's 33 expressed as the sum of three cubes. It only took one of the
world's smartest computers to solve.



[image: BoZbNWXxMUMjZpcVt3JMWm.jpg]


(Image credit: Numberphile/ University of Bristol)

Still, this exhaustive search turned up no solutions for 42, suggesting
that, if there was an answer, some of the integers must be greater than 99
quadrillion. Calculating values that large would take an insane amount of
computing power; so, for his next attempt, Booker enlisted the help of
Massachusetts Institute of Technology mathematician Andrew Sutherland, who
helped Booker book some time with a worldwide computer network called Charity
Engine <https://www.charityengine.com/>.

According to a statement
<https://phys.org/news/2019-09-sum-cubes-solvedusing-real-life.html> from
the University of Bristol, this network is a "worldwide computer" that
borrows idle computing power from more than 500,000 home PCs around the
globe. Using this crowdsourced supercomputer and 1 million hours of
processing time, Booker and Sutherland finally found an answer to the
Diophantine equation where k equals 42.

And so, without further ado, the question AND answer to the meaning of
life, the universe and everything is:

(-80538738812075974)^3 + (80435758145817515)^3 + (12602123297335631)^3 = 42

How does it feel? Glorious? Overwhelming? Like your brain is going to vomit
a little
<https://www.livescience.com/26870-ginormous-numbers-boggle-the-mind.html>?
Just be thankful that, unlike in Adams' search for the truth, the entire
Earth wasn't destroyed in the process.

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