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--- | ||
sort: 14 | ||
spin: 1 | ||
span: antiparalel | ||
suit: intro | ||
--- | ||
# [Anti Parallel](https://gist.github.com/eq19/765ddc69e339079a5a64b56c1d46e00f) | ||
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``` | ||
---+-----+----- | ||
1 | 1 | 4 | ||
---+-----+----- | ||
2 |{5} |{8} | ||
---+-----+----- | ||
3 | 9 |{17} | ||
---+-----+----- | ||
4 |{18} |{23} | ||
---+-----+----- | ||
5 | 24 | 27 | ||
---+-----+----- | ||
6 | 28 | 34 | ||
---+-----+----- | ||
7 |{35} |{41} | ||
---+-----+----- | ||
8 |{42} |{52} | ||
---+-----+----- | ||
``` | ||
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 | ||
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 | ||
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 | ||
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 | ||
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 | ||
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## 19 vs 18 Scenario | ||
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Thus in short here below is all the method that we called as the ***[19 vs 18 Scenario](https://gist.github.com/eq19/0ce5848f7ad62dc46dedfaa430069857#the-%CE%B419-vs-18-scenario)*** of mapping [the quantum way](https://gist.github.com/eq19/0ce5848f7ad62dc46dedfaa430069857#file-utilization-md) within a huge of [primes objects](https://github.com/eq19) (5 to 19) by [lexering](https://gist.github.com/eq19/0ce5848f7ad62dc46dedfaa430069857#file-lexer-md) (11) the un[grammar](https://gist.github.com/eq19/0ce5848f7ad62dc46dedfaa430069857#file-grammar-md)ed feed (7) and [parsering](https://gist.github.com/eq19/0ce5848f7ad62dc46dedfaa430069857#file-parser-md) (13) across [syntax](https://gist.github.com/eq19/0ce5848f7ad62dc46dedfaa430069857#file-syntax-md) (17). | ||
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***[(6 + 6) x 6] + [6 + (6 x 6)] = 72 + 42 = 71 + 42 + 1 = 114 objects*** | ||
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``` | ||
The Prime Recycling ζ(s): | ||
(2,3), (29,89), (36,68), (72,42), (100,50), (2,3), (29,89), ...**infinity** | ||
----------------------+-----+-----+-----+ --- | ||
7 --------- 1,2:1| 1 | 30 | 40 | 71 (2,3) ‹-------------@---- | | ||
| +-----+-----+-----+-----+ | | | ||
| 8 ‹------ 3:2| 1 | 30 | 40 | 90 | 161 (7) ‹--- | 5¨ encapsulation | ||
| | +-----+-----+-----+-----+ | | | | ||
| | 6 ‹-- 4,6:3| 1 | 30 | 200 | 231 (10,11,12) ‹--|--- | | | ||
| | | +-----+-----+-----+-----+ | | | --- | ||
--|--|-----» 7:4| 1 | 30 | 40 | 200 | 271 (13) --› | {5®} | | | ||
| | +-----+-----+-----+-----+ | | | | ||
--|---› 8,9:5| 1 | 30 | 200 | 231 (14,15) ---------› | 7¨ abstraction | ||
289 | +-----+-----+-----+ | | | ||
| ----› 10:6| ----------------------------› Φ | {6®} | | ||
--------------------+-----+-----+-----+ | --- | ||
67 --------› 11:7| 5 | 9 | 14 (20) --------› ¤ | | | ||
| +-----+-----+-----+ | | | ||
| 78 ‹----- 12:8| 9 | 60 | 40 | 109 (26) «------------ | 11¨ polymorphism | ||
| | +-----+-----+-----+ | | | | ||
| | 86‹--- 13:9| 9 | 60 | 69 (27) «-- Δ19 (Rep Fork) | {2®} | | | ||
| | | +-----+-----+-----+ | | --- | ||
| | ---› 14:10| 9 | 60 | 40 | 109 (28) ------------- | | | ||
| | +-----+-----+-----+ | | | ||
| ---› 15,18:11| 1 | 30 | 40 | 71 (29,30,31,32) ---------- 13¨ inheritance | ||
329 | +-----+-----+-----+ | | ||
| ‹--------- 19:12| 10 | 60 | {70} (36) ‹------- Φ | | ||
-------------------+-----+-----+ --- | ||
786 ‹------- 20:13| 90 | 90 (38) ‹-------------- ¤ | | ||
| +-----+-----+ | | ||
| 618 ‹- 21,22:14| 8 | 40 | 48 (40,41) ‹---------------------- 17¨ class | ||
| | +-----+-----+-----+-----+-----+ | | | ||
| | 594 ‹- 23:15| 8 | 40 | 70 | 60 | 100 | 278 (42) «-- |{6'®} | | ||
| | | +-----+-----+-----+-----+-----+ | | --- | ||
--|--|-»24,27:16| 8 | 40 | 48 (43,44,45,46) ------------|---- | | ||
| | +-----+-----+ | | | ||
--|---› 28:17| 100 | {100} (50) ------------------------» 19¨ object | ||
168 | +-----+ | | ||
| 102 -› 29:18| 50 | 50(68) ---------> Δ18 | | ||
----------------------+-----+ --- | ||
``` | ||
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 | ||
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 | ||
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 | ||
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 | ||
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 | ||
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## Historical Events | ||
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[William Delbert Gann](https://en.wikipedia.org/wiki/William_Delbert_Gann) is perhaps the most mysterious of all the famous traders in history. Known for using geometry, astrology and ancient mathematics to predict events in the financial markets and historical events, evenso influences on the weather. | ||
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***11 x 30 = 330 = 329 + 1*** | ||
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[](https://gist.github.com/eq19/e9832026b5b78f694e4ad22c3eb6c3ef#rotation-vs-revolution) | ||
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_<div align="center">In March, Saturn was at 224° and Venus was at 344°. The corn top price was ¢137, which was around 104°, <br />thus the three points loosely formed a Grand Trine (<a href="https://en.wikipedia.org/wiki/William_Delbert_Gann#Practical_examples">Wikipedia</a>).</div>_ | ||
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 | ||
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***1 container + 7 blocks + 29 flats + 77 rooms = f(0719425863) + 7 blocks + 29 flats + 77 rooms = 114 objects*** | ||
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[] | ||
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 | ||
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 | ||
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 | ||
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 | ||
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 | ||
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## Balanced Structural | ||
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For starters, it possesses a perfectly balanced structural and numeric symmetries. So it conforms the intervals between the prime roots of the Prime Spiral Sieve (and every subsequent row or rotation of the sieve) with the period _[eight (8) difference sequence](https://gist.github.com/eq19/e9832026b5b78f694e4ad22c3eb6c3ef#residual-objects)_. | ||
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***Φ(10,2) = 10² + 2x(10th prime) + 10¹ = 100+29 + 29+10 = 129 + 39 = 168 = π(1000)*** | ||
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[](https://gist.github.com/eq19/e9832026b5b78f694e4ad22c3eb6c3ef#bonding-position) | ||
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To represent as a gap then this drive is supposed to not exist phisically by a computer, this could be replaced by | ||
special folders using shared drives such as _[Google Drive](https://workspace.google.com/products/drive/)_ that you can use to store, search, and access files with a team. | ||
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>As of May 2022, [shared drives](https://redirect.viglink.com/?key=e7eab128eb8d1c53e14db14f4c632447&u=https%3A%2F%2Fsupport.google.com%2Fa%2Fanswer%2F7212025%3Fhl%3Den%26amp%3Bref_topic%3D7337266&cuid=xid:fr1677477323aaa) are available to Google Workspace accounts including Education Fundamentals, Teaching & Learning Upgrade, Standard, and Plus, Nonprofits, Business Standard and Plus, Enterprise, and G Suite Business; Essentials. | ||
[](https://www.howtogeek.com/802048/how-to-add-a-shared-google-drive-to-windows-file-explorer/) | ||
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It is also a form of the existence of DNA. The topology of DNA refers to the specific spatial structure formed by further distortion on the basis of the DNA double helix. Superhelical structure is the main form of topology, which can be divided into positive supercoil and negative supercoil, under corresponding conditions, they can transform each other. | ||
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 | ||
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 | ||
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Gann was a very devout man and honestly believed that he had found the key to predictable markets because of his study of the Bible in conjunction with his (supposed) study of many esoteric math theory from Greece and Egypt and his study of astrology. | ||
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 | ||
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It may take many years of serious study to master it. And most of the methods available online doesnt have anything to do with Gann. His books are also just means to put in the right path. | ||
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>Even though Gann was thought to be "religious", a careful analysis of his writings finds that he did not agree with the conventional Christian teachings _([Wikipedia](https://en.wikipedia.org/wiki/William_Delbert_Gann#Personal_view_on_religion))_. | ||
[](https://github.com/MarketLeader/Stocks/files/10128472/WD.Gann.-.A.Trader.Legend.pdf) | ||
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Real mastery and understanding is still programmed in such a way that only the most qualified and determined candidates could learn it and keep it remain as a secret, just as he desired. |
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 | ||
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 | ||
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 | ||
[](https://gist.github.com/eq19/f78d4470250720fb18111165564d555f#file-default-md) | ||
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 |
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```liquid | ||
-----------------------+----+----+----+----+----+----+----+----+----+----- | ||
True Prime Pairs Δ | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 | Sum | ||
=======================+====+====+====+====+====+====+====+====+====+===== | ||
19 → π(10) | 2 | 3 | 5 | 7 | - | - | - | - | - | 4th → base (30) | ||
-----------------------+----+----+----+----+----+----+----+----+----+----- | ||
17 → π(20) | 11 | 13 | 17 | 19 | - | - | - | - | - | 8th → maps (31) | ||
-----------------------+----+----+----+----+----+----+----+----+----+----- | ||
13 → π(30) → 12 (Δ1) | 23 | 29 | - | - | - | - | - | - | - |10th → feed (32) | ||
=======================+====+====+====+====+====+====+====+====+====+===== | ||
11 → π(42) | 31 | 37 | 41 | - | - | - | - | - | - |13th → lexer (33) | ||
-----------------------+----+----+----+----+----+----+----+----+----+----- | ||
7 → π(60) → 19 (Δ12) | 43 | 47 | 53 | 59 | - | - | - | - | - |17th → parser (34) | ||
-----------------------+----+----+----+----+----+----+----+----+----+----- | ||
5 → π(72) → 18 (Δ13) | 61 | 67 | 71 | - | - | - | - | - | - |20th → syntax (35) | ||
=======================+====+====+====+====+====+====+====+====+====+===== | ||
3,2 → 18+13+12 → 43 | 73 | 79 | 83 | 89 | 97 | 101| 103| 107| 109|29th → grammar (36) | ||
=======================+====+====+====+====+====+====+====+====+====+===== | ||
Δ Δ | ||
12+13+(18+18)+13+12 ← 36th-Δ1=151-1=150=100+2x(13+12) ← 30th = 113 = 114-1 | ||
``` | ||
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 | ||
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```liquid | ||
1st layer: | ||
It has a total of 1000 numbers | ||
Total primes = π(1000) = 168 primes | ||
2nd layer: | ||
It will start by π(168)+1 as the 40th prime | ||
It has 100x100 numbers or π(π(10000)) = 201 primes | ||
Total cum primes = 168 + (201-40) = 168+161 = 329 primes | ||
3rd layer: | ||
Behave the same as 2nd layer which has a total of 329 primes | ||
The primes will start by π(π(π(1000th prime)))+1 as the 40th prime | ||
This 1000 primes will become 1000 numbers by 1st layer of the next level | ||
Total of all primes = 329 + (329-40) = 329+289 = 618 = 619-1 = 619 primes - Δ1 | ||
``` | ||
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The 619 is the **114th prime**. It has the last index of 6 with the prime 19 where as **6x19** is also 114. When we multiply the 114 [minor hexagon](https://www.hexspin.com/minor-hexagons/) again by six (6) minus the duplicaton within those layers we got 684-30-30-5 = 684-65 which is also 619. | ||
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[](https://gist.github.com/eq19/0ce5848f7ad62dc46dedfaa430069857#file-1_prime-md) | ||
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[ | ||
](https://gist.github.com/eq19/80c8098f16f3e6ca06893b17a02d910e#file-mapping-md) | ||
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Despite the correlation between the bilateral 9 sums with the Fibonacci sequence, some people has discovered many things. The sequence of ***(55, 89, 144)*** shows an almost mystical power by its mysterious accuracy in nature and even _[in trading](https://www.tradingsim.com/day-trading/fibonacci-trading)_. | ||
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[](https://www.tradingsim.com/day-trading/fibonacci-trading) | ||
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 | ||
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[](https://gist.github.com/eq19/f78d4470250720fb18111165564d555f#file-default-md) | ||
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 | ||
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 | ||
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 | ||
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[](https://docs.github.com/en/actions/learn-github-actions/usage-limits-billing-and-administration#usage-limits) | ||
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 |
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``` | ||
---+-----+----- | ||
1 | 1 | 4 | ||
---+-----+----- | ||
2 |{5} |{8} | ||
---+-----+----- | ||
3 | 9 |{17} | ||
---+-----+----- | ||
4 |{18} |{23} | ||
---+-----+----- | ||
5 | 24 | 27 | ||
---+-----+----- | ||
6 | 28 | 34 | ||
---+-----+----- | ||
7 |{35} |{41} | ||
---+-----+----- | ||
8 |{42} |{52} | ||
---+-----+----- | ||
``` | ||
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 | ||
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 | ||
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>This is the equation which governs the flow of fluids such as water and air. However, there is no proof for the most basic questions one can ask: do solutions exist, and are they unique? Why ask for a proof? Because a proof gives not only certitude, but also understanding. _([Clay Institute](https://www.claymath.org/millennium-problems))_. | ||
[](https://www.claymath.org/millennium-problems/navier%E2%80%93stokes-equation) | ||
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By _[this paper](https://www.sciencedirect.com/science/article/pii/S0362546X23000111)_ it is derived a sufficient condition keeping energy conservation in terms of the gradient of the velocity for the weak solutions of the compressible Euler equations for both the non-vacuum and the vacuum cases. |
Large diffs are not rendered by default.
Large diffs are not rendered by default.
Large diffs are not rendered by default.