# Difference between revisions of "69: Pillow Talk"

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− | The joke is pretty self-explanatory, so I'll just fill in the backgrounds of [[Cueball]]'s thoughts: The [http://en.wikipedia.org/wiki/Bellman_Ford Bellman-Ford algorithm] is an algorithm that calculates the shortest path(s) through a weighted digraph or collection of connected nodes or vertices. The “Wexler” in the image text refers to Wexler's algorithm, which is used to deal with the inverse problem of | + | The joke is pretty self-explanatory, so I'll just fill in the backgrounds of [[Cueball]]'s thoughts: The [http://en.wikipedia.org/wiki/Bellman_Ford Bellman-Ford algorithm] is an algorithm that calculates the shortest path(s) through a weighted digraph or collection of connected nodes or vertices. The “Wexler” in the image text refers to Wexler's algorithm, which is used to deal with the inverse problem of [http://en.wikipedia.org/wiki/Electrical_Impedance_Tomography Electrical Impedance Tomography], or simply stated: the electrical conductivity of an (imhomogeneus) object. |

And yes, both make terrible pillow talk, according to my significant other. | And yes, both make terrible pillow talk, according to my significant other. | ||

[[Category:Comics|0069]] | [[Category:Comics|0069]] |

## Revision as of 10:47, 3 August 2012

## Image Text

Maybe I should've tried Wexler?

## Description

The joke is pretty self-explanatory, so I'll just fill in the backgrounds of Cueball's thoughts: The Bellman-Ford algorithm is an algorithm that calculates the shortest path(s) through a weighted digraph or collection of connected nodes or vertices. The “Wexler” in the image text refers to Wexler's algorithm, which is used to deal with the inverse problem of Electrical Impedance Tomography, or simply stated: the electrical conductivity of an (imhomogeneus) object.

And yes, both make terrible pillow talk, according to my significant other.