Difference between revisions of "Very long integral"
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|bx = 7 | |bx = 7 | ||
|by = 3 | |by = 3 | ||
|fc = 25.3 | |||
|rulemin = B/S23 | |rulemin = B/S23 | ||
|rulemax = B3678/S012345678 | |rulemax = B3678/S012345678 | ||
|rulespecial = [[Conway's Game of Life|Conway Life]] | |rulespecial = [[Conway's Game of Life|Conway Life]], [[HighLife]] | ||
|synthesis = | |isorulemin = B/S2-ci3n | ||
|isorulemax = B1e2cin34-k5-q678/S012345678 | |||
|synthesis = 5 | |||
|plaintext = true | |||
|rle = true | |rle = true | ||
|apgcode = | |apgcode = xs11_3542156 | ||
|niemiecid = 11.20 | |niemiecid = 11.20 | ||
|pentadecathlonid = 11.8 | |pentadecathlonid = 11.8 | ||
}} | }}{{stub}} | ||
'''Very long integral''' is a small [[still life]], the [[very long]] version of the integral. | '''Very long integral''' is a small [[still life]], the [[very long]] version of the integral. | ||
Line 21: | Line 25: | ||
==External links== | ==External links== | ||
{{LinkCatagolue| | {{LinkCatagolue|xs11_3542156}} | ||
{{LinkNiemiec|p1.htm#p1-11|patternname=The 46 eleven-bit still-lifes}} | {{LinkNiemiec|p1.htm#p1-11|patternname=The 46 eleven-bit still-lifes}} | ||
{{Symmetry|180degree}} | {{Symmetry|180degree}} | ||
[[Category:Diagonal line stabilisations]] |
Revision as of 22:36, 28 December 2019
Very long integral | |||||||||
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Pattern type | Strict still life | ||||||||
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Number of cells | 11 | ||||||||
Bounding box | 7 × 3 | ||||||||
Frequency class | 25.3 | ||||||||
Discovered by | Unknown | ||||||||
Year of discovery | Unknown | ||||||||
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This article is a stub. You can help LifeWiki by expanding it. |
Very long integral is a small still life, the very long version of the integral.
Also see
External links
- The 46 eleven-bit still-lifes at Mark D. Niemiec's Life Page
Categories:
- Patterns
- Patterns with Catagolue frequency class 25
- Natural periodic objects
- Periodic objects with minimum population 11
- Patterns with 11 cells
- Patterns that can be constructed with 5 gliders
- Still lifes
- Strict still lifes
- Strict still lifes with 11 cells
- Patterns with 180-degree rotation symmetry
- Diagonal line stabilisations