Statorless p6
Revision as of 23:03, 23 October 2022 by Carson Cheng (talk | contribs) (Catagolue GitLab URL moved)
| Statorless p6 | |||||||||
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| Pattern type | Oscillator | ||||||||
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| Number of cells | 36 | ||||||||
| Bounding box | 21 × 8 | ||||||||
| Period | 6 (mod: 3) | ||||||||
| Heat | 36 | ||||||||
| Volatility | 1.00 | 0.83 | ||||||||
| Kinetic symmetry | Unspecified | ||||||||
| Discovered by | Dean Hickerson | ||||||||
| Year of discovery | 1989 | ||||||||
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The statorless p6 is a period-6 oscillator discovered by Dean Hickerson in August 1989.[1] It is one of the few known period 6 oscillators without a stator, giving it a volatility of exactly 1.
Strictly volatile variant
Additionally, a variant of this oscillator exists which is strictly volatile (i.e. all cells oscillate with period 6 rather than period 2 or 3). A 30-glider synthesis for said variant was found on October 4, 2019 based on a soup submitted to Catagolue,[2] and was reduced to 28 gliders by an anonymous user on February 5, 2022.[3][4]
| Strictly volatile p6 (click above to open LifeViewer) RLE: here Plaintext: here Catagolue: here |
See also
References
- ↑ Dean Hickerson's oscillator stamp collection. Retrieved on October 19, 2019.
- ↑ Ian07 (October 4, 2019). Re: Soup-based syntheses (discussion thread) at the ConwayLife.com forums
- ↑ Adam P. Goucher (February 5, 2022). "shinjuku (#2058198167)". GitLab. Retrieved on February 20, 2022.
- ↑ Ian07 (February 20, 2022). Message in #cgol on the Conwaylife Lounge Discord server
External links
- 36P6.6 at Heinrich Koenig's Game of Life Object Catalogs
Categories:
- Patterns
- Oscillators with 36 cells
- Periodic objects with minimum population 36
- Patterns with 36 cells
- Patterns found by Dean Hickerson
- Patterns found in 1989
- Patterns that can be constructed with 28 gliders
- Oscillators
- Oscillators with period 6
- Oscillators with mod 3
- Oscillators with heat 36
- Oscillators with volatility 1.00
- Oscillators with strict volatility 0.83
- Patterns with 180-degree rotation symmetry
- Flipping oscillators