A forum for topics that don't fit elsewhere. Introduce yourselves to other members of the forums, discuss how your name evolves when written out in the Game of Life, or just tell us how you found it. Forum rules still apply.
Gen 0: pip
Gen 1: Isn't that a thing.
Gen 2: What do you think?
Gen 3: What's up?
Gen 4: Click my chat room
Gen 5: .சநசசசசசச
Gen 6: We are not happy
Gen 7: :::
Gen 8: :::
Final translation is period 1.
Gen 0: ¤
Gen 1: There you are
Gen 2: You must log in
Gen 3: Thank you
Gen 4: Stop it
Gen 5: King of Kings
Gen 6: US
Gen 7: found:
Gen 8: In your hand
Gen 9: They gave me a crown scanner.
Gen 10: take a shower
Gen 11: ukukhetha
Gen 12: :
Gen 13: ; ;
Gen 14: ; ;
Final translation is period 1.
Gen 0: ɡallery!!!
Gen 1: Viruses!
Gen 2: It is enough
Gen 3: And seconds
Gen 4: Lalelani.
Gen 5: I was clean
Gen 6: * *
Gen 7: *
Gen 8: *
Final translation is period 1.
Gen 0: to learn
Gen 1: Line up
Gen 2: is this
Gen 3: The Medicine Tree
Gen 4: ,
Gen 5: We recommend ...
Gen 6: ......... .. .. .. .. .. .. .. .. ...
Gen 7: …………………………….
Gen 8: Because that ...
Gen 9: It's raining ...
Gen 10: The egg
Gen 11: .
Gen 12: Impossible ...
Gen 13: It's raining ...
Final translation is period 4.
Last edited by PkmnQ on June 17th, 2020, 11:42 am, edited 1 time in total.
The North Wind and the Sun were debating which was the tougher when a traveler appeared draped in a cozy coat. They agreed that the one who first achieved making the traveler take his coat off should be deemed tougher than the other. Then the North Wind blew as hard as he could, but the more he blew the more closely did the traveler fold his coat around him; and at last, the North Wind gave up the try. Then the Sun shined out warmly, and instantly the traveler took off his coat. And so the North Wind was urged to admit that the Sun was the tougher of the two.
A slightly modified version of The North Wind and the Sun.
BitBitJump is one of the simplest OISC languages. It allows calculations by only bit copying process without using conventional logic operations like AND, OR, XOR, NAND, or NOT. Its instruction is to copy one bit from one address to another and jump. The instruction has three operands A, B, and C, similar to Subleq but with a different meaning. A is the address of the bit to copy from. B is the address of the bit to copy into. C is the address to pass the execution after copying of the bit is done.
BitBitJump is the easiest language in OISC. You are allowed to make calculations only in a small copy process, without using traditional logical operations (AT, O, XOR, NAND, NO, etc.). The instruction is to copy the fragments from one address to another and jump. This instruction has three operators, A, B, and C, similar to Subleq, but with different meanings. A slightly copied address. B is a small copied address. C is the address to be executed after the small copy is completed.
BitBitJump is the simplest language in OISC. You are allowed to perform calculations only on a small copying process that does not use traditional logical operations (AT, O, XOR, NAND, NO, etc.). The instruction is to copy the fragment from one address to another and jump. This instruction has three operators, A, B, and C. It is similar to Subleq, but has different meanings. The address is partially copied. B is a small copy address. C is the address to be executed after the small copy is completed.
BitBitJump is the simplest language in OISC. You can perform calculations in a small copy process without using traditional logical operations (AT, O, XOR, NAND, NO, etc.). The instruction is to copy the fragment from one address to another and jump. This instruction has three operators, A, B, and C. Similar to Subleq, but with different meanings. The address is partially copied. B is the small copy address. C is the address to be executed after the small copy is completed.
English -> Cebuano -> Japanese -> Filipino -> Chinese (Traditional) -> English
BitBitJump is the simplest language in OISC. You can perform calculations in a small copy process without using traditional logical operations (AT, O, XOR, NAND, NO, etc.). The instruction is to copy the fragment from one address to another and jump. This instruction has three operators A, B and C. Same as Subleq, but with different meaning. The address is partially copied. B is the small copy address. C is the address to be executed after completing the small copy.
BitBitJump is the simplest language in OISC. You can perform calculations in a small copy process without using traditional logical operations (AT, O, XOR, NAND, NO, etc.). The instruction is to copy the fragment from one address to another and jump. This instruction has three operators A, B and C. Same as Subleq, but with different meaning. The address is partially copied. B is the small copy address. C is the address executed when the small copy is completed.
BitBitJump is the simplest language in OISC. You can perform calculations in a small copy process without using traditional logical operations (AT, O, XOR, NAND, NO, etc.). The instruction is to copy the fragment from one address to another and jump. This instruction has three operators A, B and C. Same as Subleq, but with different meaning. The address is partially copied. B is the small copy address. When the small copy is complete, C is the address of the application.
BitBitJump is the simplest language in OISC. You can perform calculations in a small copy process without using traditional logical operations (AT, O, XOR, NAND, NO, etc.). The instruction is to copy the fragment from one address to another and jump. This instruction has three operators A, B and C. Same as Subleq, but with different meaning. The address is partially copied. B is the small copy address. After the small copy is complete, C will become the address of your application.
English -> Somali -> Esperanto -> Filipino -> English
BitBitJump is OISC's simplest language. You can do the small copy calculation without using any logical functions (AT, O, XOR, NAND, NO, etc.). Instructions should be copied and copied to a different address. This guide has three operators A, B, and C. similar to Subleq, but with different meanings. The address is partially copied. B is the title of the small copy. After completing a small copy, C will be the address of your application.
BitBitJump is the simplest language in OISC. You can make small computational calculations without using any logic functions (AT, O, XOR, NAND, NO, etc.). Instructions should be copied and copied to a different address. This guide has three operators A, B, and C. similar to Subleq, but with different meanings. The address is partially copied. B is the title of the small copy. After you complete a small copy, C will be the address of your application.
BitBitJump is OISC's simplest language. You can calculate a little without using any logic (AT, O, XOR, NAND, NO, etc.). Instructions should be copied and copied to a different address. This guide has three operators A, B, and C. similar to Subleq, but with different meanings. The address is partially copied. B is the title of the small copy. After completing a small copy, C will be the address of your application.
BitBitJump is the simplest language in OISC. You can calculate a little without using any logic (AT, O, XOR, NAND, NO, etc.). Instructions should be copied and copied to a different address. This guide has three operators A, B, and C. similar to Subleq, but with different meanings. The address is partially copied. B is the title of the small copy. After you complete a small copy, C will be the address of your application.
BitBitJump is OISC's simplest language. You can calculate a little without using any logic (AT, O, XOR, NAND, NO, etc.). Instructions should be copied and copied to a different address. This guide has three operators A, B, and C. similar to Subleq, but with different meanings. The address is partially copied. B is the title of the small copy. After completing a small copy, C will be the address of your application.
Start: Unfortunately, Google Translate has shut down in the mainland region of China. Are there any mirror sites?
English -> Spanish -> Latvian -> Japanese -> Russian -> Ukranian -> Latin -> English
Cycle 1: Unfortunately, Google Translate is blocked in mainland China. Do you have a place for a mirror?
Cycle 2: Unfortunately, Google Translate is blocked in mainland China. Do you have room for a mirror?
I need more cycles
135 days until New York's age verification law goes into effect.
hotcrystal0 wrote: October 12th, 2022, 5:58 pm
Start: Unfortunately, Google Translate has shut down in the mainland region of China. Are there any mirror sites?
English -> Spanish -> Latvian -> Japanese -> Russian -> Ukranian -> Latin -> English
Cycle 1: Unfortunately, Google Translate is blocked in mainland China. Do you have a place for a mirror?
Cycle 2: Unfortunately, Google Translate is blocked in mainland China. Do you have room for a mirror?
I need more cycles
Even Google Translate knows that shut down in mainland China = blocked in mainland China...
\sum_{n=1}^\infty H_n/n^2 = \zeta(3)
How much of current CA technology can I redevelop "on a desert island"?
Original: P44 pi-heptomino hassler is a period-44 oscillator discovered by David Buckingham on April 2, 1992. It was improved to another form by Noam Elkies in April 1996 and to the current form by iNoMed based on a reaction by cvojan on May 10, 2022.
Final: P44 pi-heptamine Hassler is a 44 ring oscillator by David Buckingham on April 2, 1992. Noah Elkey was rebranded in April 1996 and changed to its current form by iNoMed on May 10 of the same year with cvojan products.
Original: A 4-engine Cordership is a c/12 diagonal spaceship, specifically a Cordership consisting of four switch engines. Shown in the infobox is the first example that was discovered by David Bell on July 9, 2005; a variety of other designs were found years later by different people.
Final: The C/12 is a multipurpose transport aircraft. This mailbox shows the original received on July 9, 2005 by David Bell. Many have used other methods over the years.
Original: 1×N quadratic growth is a one-cell-thick pattern found by Stephen Silver on April 20, 2011. At N = 1013783, it is the first such pattern to exhibit quadratic growth. It uses the breeder from Nick Gotts' 26-cell quadratic growth, which is incrementally constructed by colliding LWSS streams travelling parallel to the baseline.
Final: I N SECONDARY GROWTH This 1 cell long model was developed by Stephen Argento on April 20, 2011. For N = 1013783 the first model shows secondary growth. This fluorescence was obtained by incorporating a 26-cell nickbok strain, currently cultivated in the same system as the LWSS.
R64 is an elementary conduit, one of the original sixteen Herschel conduits, discovered by Dave Buckingham on September 26, 1995. After 64 ticks, it produces a Herschel rotated 90 degrees clockwise at (11, 9) relative to the input.
R64 is a primary orbit, one of the first 16 Herschel orbits discovered by Dave Buckingham on September 26, 1995. After 64 clockwise rotations, it rotates the Herschel orbit 90 degrees clockwise at position (11, 9 ) with respect to the input data.
R64 is the first track, one of the first 16 Herschel tracks discovered by Dave Buckingham on September 26, 1995. After 64 rotations to the right, rotate the Herschel orbit 90 degrees clockwise to position (11, 9) relative to the input. .
R64 is the first truck, one of the first 16 Herschel trucks discovered by Dave Buckingham on September 26, 1995. After 64 right rotations, rotate the Herschel track 90 degrees clockwise to the point (11, 9) corresponding to the door. .
R64 is one of the first 16 Herschel trucks and the first truck discovered by Dave Buckingham on September 26, 1995. After 64 right turns, turn the Herschel truck 90 degrees clockwise until it reaches the point (11, 9) parallel to the door. .
Edit:
English -> Cebuano -> Filipino -> Latin -> Japanese -> English:
Original:
A Heisenburp device is a pattern which can detect the passage of a spaceship without affecting the spaceship's path or timing. The name is a reference to Werner Heisenberg's Uncertainty Principle, a principle in quantum physics which states that it is physically impossible to detect a particle without affecting it in some way; it was coined by Bill Gosper. The first Heisenburp device was constructed by David Bell in December 1992.
The Heisenbarb device is a model that detects passages through space without affecting their trajectory or timing. This name refers to Werner's Heisenberg Uncertainty Principle. This is a physical principle that states that it is impossible for a particle to occur without affecting it in some way. Created by Bill Gosper. The first Heisenbelp factory was built in December 1992 by David Bell.
Heisenbarb's device is a model that can detect tracks in space without affecting trajectory or timing. This name refers to Werner's Heisenberg Uncertainty Principle. This is a physical principle that states that it is impossible for particles to occur without being influenced in some way. Written by Bill Gosper. The first Heisenbelp workshop was founded by David Bell in December 1992.
Heisenbarb's device is a model that can detect spatial trajectories without affecting trajectory or timing. This name refers to Werner's Heisenberg Uncertainty Principle. This is a physical principle that states that it is impossible for particles to move without being moved in some way. He wrote the Gospel Bible. The first Heisenbelp factory was founded by David Bell in December 1992.
The Heisenbarb device is a model that can detect local trajectories without affecting the trajectory or timing. This name refers to Werner's Heisenberg Uncertainty Principle. This is a physical principle that states that it is impossible for particles to move without being moved in some way. he wrote the bible. The first Heisenbelp workshop was founded in December 1992 by David His Bell.
135 days until New York's age verification law goes into effect.
English -> Afrikaans -> Albanian -> Arabic -> Belarusian -> Bosnian -> Bulgarian -> Chinese (Traditional) -> Croatian -> Czech -> Danish -> Dutch -> Esperanto -> Estonian -> Filipino -> Finnish -> French -> German -> Greek -> Hawaiian -> Hebrew -> Hindi -> Hungarian -> Icelandic -> Indonesian -> Irish -> Italian -> Japanese -> Javanese -> Korean -> Latin -> Lithuanian -> Luxembourgish -> Macedonian -> Nepali -> Norwegian -> Persian -> Polish -> Portugese -> Romanian -> Russian -> Sanskrit -> Serbian -> Sinhala -> Spanish -> Swahili -> Swedish -> Telugu -> Turkish -> Ukranian -> Vietnamese -> Welsh -> Yiddish
untranslated: my name is tommyaweosme and i like the color pine green
1. my name is tommyaweosme and i like the color pine green
2. My name is tommyaweosme and I like the color pine green
3. My name is tommyaweosme and I love the color pine green
4. My name is tommyaweosme and I love the color pine
5. My name is tommyaweosme and I love the color of pine
6. My name is tommyaweosme and I love the color pine
7. my name is tommyaweosme i like pine color
8. my name is tommyaweosme i love the color pine
9. my name is tommyaweosme and i love the color pine
10. my name is tommyaweosme and i love the color pine
11. My name is tommyaweosme and I love the color pine
12. My name is tommyaweosme and I love the color pine
13. My name is tommyaweosme and I love the color pine
14. My name is tommyaweosme and I like the color pine
15. My name is tommyaweosme and I like the color pine
16. My name is tommyaweosme and I like the color pine.
17. My name is tommyaweosme and I like the color pine.
18. My name is tommyaweosme and I like the color pine.
19. My name is tommyaweosme and I love the silver pin.
20. My name is tommyaweosme and I love the silver pin.
21. My name is tommyaweosme and I love silver pins.
22. My name is tommyaweosme and I love silver pins.
23. My name is tommyaweosme and I love silver pins.
24. My name is tommyaweosme and I love silver pins.
25. My name is tommyaweosme and I love silver pins.
26. My name is tommyaweosme and I love silver pins.
27. My name is tommyweosme and I love silver pins.
28. My name is tommyweosme and I love silver pins.
29. My name is tommyweosme and I love silver pins.
30. My name is tommyweosme and I love silver buckles.
31. My name is tommyweosme and I love silver buckles.
32. My name is Tommyweosme and I love silver buckles.
33. My name is Tomiveosme and I love silver buckles.
34. My name is Tomiveosme and I love silver buckles.
35. My name is Tomiveosme and I love silver buckles.
36. My name is Tomiveosme and I love silver buckles.
37. My name is Tomiveosme and I love silver buckles.
38. My name is Tomiveosme and I love silver buckles.
39. My name is Tomiveosme and I like silver buckles.
40. My name is Tomiveosme and I like silver buckles.
41. My name is Tomiveosme and I like silver buckles.
42. My name is Tomiveosme and I love silver buckles.
43. My name is Tomiveosme and I love silver buckles.
44. My name is Tomiveosme and I love silver buckles.
45. My name is Tomiveosme and I love silver buckles.
46. My name is Tomiveosme and I love silver buckles.
47. My name is Tomiveosme and I love silver buckles.
48. My name is Tomiveosme and I love silver buckles.
49. My name is Tomiveosme and I love silver buckles.
50. My name is Tomiveosme and I love silver buckles.
Okay, so out of all these languages the troublemakers were:
19. Hawaiian
27. Japanese
30. Latin
33. Macedonian
The rest just added or removed plurals, removed or added unnessecary grammar words, or added/removed "color" to pine, or switching the order of those two words.
Translation iteration: English -> German -> Filipino -> Chinese (Simplified) -> English
Untranslated:
LeapLife is very boring on itself for sure. But after looking for "interesting" rules for several years, I finally got bored.
Orthogonoids are coming out of every rule now, it's no longer even impressive. So here's LeapLife, a rule so extremely stable that it's hard to do anything other than die, but isn't it epic to see a Demonoid or other advanced constructs in such a rule, in the same sense that a Malbolge FizzBuzz program is more interesting than a Python FizzBuzz program. Unlike rules which have an Orthogonoid or Geminoid, it doesn't even have glider of two different speeds on the same direction, or an easy splitter, etc.
1st iteration:
LeapLife itself is certainly boring. But after years of searching for "fun" rules, I finally got bored.
Now, orthogonal curves don't exist in every rule, it's no longer impressive. So this is LeapLife, a rule so solid that there's almost nothing you can do but die. But wouldn't it be epic to see demons or other advanced constructs in such a formula? Like the Malbolge FizzBuzz program is more fun? As a Python FizzBuzz program. Unlike the rules of having quads or twins, there isn't even a glider with two different speeds in the same direction, or a simple splitter, etc.
- "searching for "fun" rules" kinda makes sense
- "orthogonal curves don't exist in every rule" Curves aren't orthogonal! What are we working in, SmoothLeapLife?!
- "Now, orthogonal curves don't exist in every rule, it's no longer impressive" Exactly the opposite meaning to the untranslated sentence.
- "So this is LeapLife, a rule so solid" D&N looks more 'solid' to me.
- "there's almost nothing you can do but die." kinda makes sense
- "But wouldn't it be epic to see demons" Do I summon Satan and his henchmen while doing CA? thought intensifies
- "in such a formula?" Okay, CA are formulae.
- "Like the Malbolge FizzBuzz program is more fun? As a Python FizzBuzz program." I don't know what that means.
- "Unlike the rules of having quads or twins" Geminoids are called 'twins' - makes sense, but why are Orthogonoids called quads? Also, what law is there regarding orthogonoids?
- "a glider with two different speeds in the same direction" Huh? How can a glider have two different speeds at the same time?
- "simple splitter" one of the rare instances of Translate making things clearer
2nd iteration:
LeapLife itself is absolutely boring. But after years of searching for "fun" rules, I finally got bored.
Now each rule no longer has orthogonal curves, which is no longer impressive. This is LeapLife, a rule so powerful that you have little choice but to die. But wouldn't it be epic to see a demon or other advanced construct in a formula like this? Is the Malbolge FizzBuzz program more fun? As a Python FizzBuzz program. Unlike the rules for four or two wheels, there isn't even a glider with two different speeds in the same direction, nor a simple splitter etc.
- "Now each rule no longer has orthogonal curves" No rule has orthogonal curves. What an oxymoron.
- "This is LeapLife, a rule so powerful" [joke] Hats off to you Hunting for making one of the most powerful CA [/joke]
- "But wouldn't it be epic to see a demon" Okay, so you are only summoning Satan rather than him and his henchmen.
- "Is the Malbolge FizzBuzz program more fun?" Yes. Most definitely.
- "As a Python FizzBuzz program." Incomplete sentence.
- "the rules for four or two wheels" [sarcasm] When I have enough money, I won't get a car. I will get an orthogonoid. And if my kids want a bicycle, I'll get them a geminoid instead. [/sarcasm]
3rd iteration:
LeapLife itself is really boring. But after years of searching for "fun" rules, I finally got bored.
Now each rule no longer has orthogonal curves, which is no longer impressive. This is LeapLife, a rule so powerful that you have no choice but to die. But wouldn't it be epic to see a demon or other advanced construct in a formula like this? Is the Malbolge FizzBuzz program more fun? As a Python FizzBuzz program. Unlike the rules for four or two wheels, there isn't even a glider with two different speeds in the same direction, or a simple splitter, etc.
4th iteration:
LeapLife itself is really boring. But after years of searching for "fun" rules, I finally got bored.
Now each rule no longer has orthogonal curves, which is no longer impressive. This is LeapLife, a rule so powerful that you have no choice but to die. But wouldn't it be epic to see a demon or other advanced construct in a formula like this? Is the Malbolge FizzBuzz program more fun? As a Python FizzBuzz program. Unlike the rules for four or two wheels, no glider has two different speeds in the same direction, nor are there simple splitters etc.
- "no glider has two different speeds in the same direction" Finally! Translate knows CA!
5th iteration:
LeapLife itself is really boring. But after years of searching for "fun" rules, I finally got bored.
Now each rule no longer has orthogonal curves, which is no longer impressive. This is LeapLife, a rule so powerful that you have no choice but to die. But wouldn't it be epic to see a demon or other advanced construct in a formula like this? Is the Malbolge FizzBuzz program more fun? As a Python FizzBuzz program. Unlike the rules for four or two wheels, there are no gliders with two different speeds in the same direction, or simple splitters, etc.
hotcrystal0 wrote: ↑27 Sep 2024 23:44
tommyaweosme wrote: ↑27 Sep 2024 20:49
anyway, this was meant to be a two-state RPG with people being objects from conways game of life.
sooner or later, colors came in, and before you know it this is complete multistate undescribed anarchy
The problem is, without color, it might get too hard to keep track of who is who, and what do you mean by “multistate undescribed anarchy”? I see no problem with colors.
The sheer volume of an average post is already a problem by itself. Multistate makes this even worse.
The frequency of posting is another problem.
Lack of meaningful descriptions is another problem.
The entire thread is inherently problematic. It's created to be a place for chatty very-low-effort very-low-contribution activity, and hence goes against the forum rules.
Hot crystal 0 Text: =4️-January 9, 2024-4️-April 27, 23:44
tommyaweosme wrote: "4 months from July 9th to 4th-April 27th, 2024, 20:49
In any case, it should be a role-playing game, and people will object to Jones playing a family.
Sooner or later, the color will appear on the screen, and before you know it, the results of the option research will appear
You are worried that if there is no flower, it may become a track of who is too expensive by who. What do you mean by ""fascism""? I don't see any possibility of color.
The volume of the following situations. I collected business, which made the situation worse.
The second warning of energy policy.
Remove the case of 1‰, and a meaningful name is missing.
The whole issue of special attention. This creates a space for the dynamic characteristics of specific and measurable attributes, and there are no forum rules.
1. "The color will appear on the screen". It already exists.
2. "I don't see any possibility of color". I said, it already exists.
3. "The second warning of energy policy" I mean, on viewtopic.php?t=6516, did my boat get an extra energy, and did I create 3 quad protectors without having a block?
4. "Remove the case of 1‰" 1‰ is 0.1%. This is the maximum allowed lottery win chance. Removing the case of 1‰, assuming the uppercase would turn into lowercase, nothing would happen, however removing 1‰ will remove the lottery.
5. "And a meaningful name is missing" There is a meaningful name of thread 6516, conway's game of life roleplay.
6. "There are no forum rules". If this would have no rules, then the chaos would flood this forum.
More cycles soon!
A spaceship (also referred to as a glider, or less commonly a fish, and commonly shortened to "ship") is a finite pattern that returns to its initial state after a number of generations (known as its period) but in a different location.
A spaceship (also called a glider or less commonly a fish, often shortened to "ship") is a completed model that returns to its original state in another location after a certain number of generations (called time).
A spaceship (also called a glider or less commonly a fish, often shortened to "ship") is a complete model that, after a certain number of generations (called time), returns to its original state in a different location.
Not very interesting.
Attempt 2:
English → Polish → Zulu → Japanese → Cebuano → French → Chinese (Simplified) → English
A spaceship (also referred to as a glider, or less commonly a fish, and commonly shortened to "ship") is a finite pattern that returns to its initial state after a number of generations (known as its period) but in a different location.
A spaceship (sometimes called a glider, or less commonly a fish, or simply a "ship") is a perfect model that, after a certain number of generations (called time), will return to its original state elsewhere.
A spacecraft (sometimes called a glider, or less commonly a fish, or even simply a "ship") is an idealized model that, after a number of generations (called time), returns to its original state at another location.
Now we're getting somewhere.
135 days until New York's age verification law goes into effect.