
30-12-2015, 01:06
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Technical Director
AKA: Gus Michel II
 FRC #3946 (Tiger Robotics)
Team Role: Mentor
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Join Date: Jan 2014
Rookie Year: 2013
Location: Slidell, LA
Posts: 3,655
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Re: pic: Happy Holidays!
I don't see any real Fourier here, just a parametric breakdown of x (first 9 lines) and y (next three lines) as a function of t (usually time). If it were a result of Fourier analysis, each term would have a linear increment of the multiplier for t.
Though I am reminded of the original "Duck Dodgers in the 24-1/2 Century" cartoon [Daffy Duck cast as Duck Dodgers, Porky Pig as Space Cadet].
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Originally Posted by Duck Dodgers
And now then, eager young space cadet, here is the course we shall pursue to find Planet X. Starting from where we are, we go 33,600 turbo miles due up. Then west in an astro-arc deviation to here, then following the great circle seven radiolubes south by downeast. By astro-astroble to here, here, and here, then by space navigo-compass to here, here, and then to here and here. By thirteen point strato-cumulus bearing four million light-years, and thus to our destination. Now do you know how to reach Planet X?
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Originally Posted by Space Cadet
Y-y-ye... Oh sure.
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Originally Posted by Duck Dodgers
[Staring stunned at the cadet, then at the chart's ridiculously complex path] Well, I wish you'd explain it to me some time, buster!
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Originally Posted by Space Cadet
Why, it's very simple, sir.
[Points to progression of lettered planets]
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Originally Posted by Space Cadet
If we follow those planets, we can't very well miss Planet X.
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Originally Posted by Duck Dodgers
(laughing) Oh, that's ridiculous! Of all the stupid suggestions! Ha ha ha! Hey, wait a minute. I think I've got it. I'll just bet that if we follow those planets, we'll find Planet X. Gad! How do I do it?
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Originally Posted by Space Cadet
I d-d-don't know.
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Last edited by GeeTwo : 30-12-2015 at 01:08.
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