The Theory of
Line Patterns
No figure out of the possible 30^49 (2E72)
is the square root or greater as improbable by design
using prime digits 2 and 5
as all of the 2^23 * 29! / 18! (1E22) figures shown
using prime digits 3 and 7 by the noted sub-pattern.
math on 37 patterns
scholastically
verified


To disprove this theory, you have to use prime digits other than these digits of 3 and 7 which leaves 2 and 5 to recreate these patterns with your own sentence.

1. The numeric value of the sentence equals the product of the two most significant digits, 37 * 73. This product plus 37 equals the exact weight of the amino acids which make up our twenty three chromosomes. The probability that the amino acids weights of DNA would be this exact to five significant digits is one in a hundred thousand, just this fact alone, and we are totally ignoring this in our calcuations of the probability that the author was extremely lucky or used some alternate method. The first twenty three, the number of chromosomes in the human body, digits of 'PI', ignoring the decimal point and as a complete number, is evenly divisible by 73, the two most significant digits. One in three numbers will do this kind of thing but it is still interesting to see where it happens. 'e' to the 'PI', rounded, is equal to twenty three, the number of chromosomes in human DNA. 'PI' to the 'e' rounded up is also 23. The number created by the first 23023 digits of 'PI' is evenly divisible by twenty three, the number of chromosomes in the human body. The number created by the first 73073 digits of 'PI' are evenly divisible by 73. The number created by the first 7300 digits of 'PI' is evenly divisible by 73, and the digits added together are evenly divisibly by twenty three, the number of chromosomes in the human body. The digits of 'PI' between the first and 37 * 7 are evenly divisible by 73. The value as a complete number between the first and the 73rd digits of 'PI' are evenly divisible by twenty three, the number of chromosomes in the human body. The first 2701 ( 37 * 73 ) digits of pi added together are evenly divisible by 37. The first 7! (5040) digits of pi added together are evenly divisible by 37. The digits between the first and 3^7 digits of 'PI' added together are evenly divisible by 73 and 137. Just for fun, the number created by the digits between the first and 7825 digits of pi is evenly divisible by 37. It works for all of the addition of the brown numbers, 5 + 4 = 9, 11 + 5 = 16, and 71 + 7 = 78. The digits between the first and 32993 of 'PI', another number important to mathematicians, is evenly divisible by twenty three, the number of chromosomes in the human body. The first 383, a very important number to mathematicians, digits of 'PI' added together are evenly divisible by both 73 and twenty three, the number of chromosomes in the human body, and in fact is the multiple of twenty three times 73. Another very special number to mathematicians, the cannonball number 4900 (0:19), digits added together digits of 'PI' is divisible by both 37 and 888 and, as a number, is evenly divisible by 73. Of at least the first four first n perfect numbers, they all meet one of these conditions, n = 1 (6) 23, n = 2 (6) 23, n = 3 (120) 37, n = 4 (30240) 23. The digits of 'PI' between the place and value of Genesis 1:1 when added together are evenly divisible by 37. The digits between the first and 2701th digit of PI, as a complete number, has a remainder of twenty three, the number of chromosomes in human DNA, when divided by 37, the two most significant digits. The author only knew 'PI' to two digits. The digits of 'e' from 37 to 73 are evenly divivible by 37, the two most significant digits, when treated as a complete number. The author had no clue what 'e' was. The exact speed of light , 'c', in kilometers per second is evenly divisible by 73, the two most sinigicant digits. The author thought that the speed of light was infinite. Yes, 'PI' and 'e', and even the speed of light, 'c', have patterns directly related to Genesis 1:1. 'PI' is the most important constant in the universe. 'e' is the second most important. The speed of light, 'c', is the third most important. The verse position times the value times the place for each letter added together is evenly divisible by 73, the two most significant digits, even though there isn't a single 73 in any of the individual factors before adding together. The numeric value of the pseudo sentence, 37 * 73 = 2701 is the 73rd triangle. The last two words of the pseudo sentence has a numeric value of 703, the circle in the center being for the round object in the pseudo sentence. Probability: 1 in 1E4. (ignoring 'PI', 'e', 'c', and 'DNA').

2. The numeric value of the nouns, words 3 and 7 and the word in between, add up to the two most significant digits, 37 * 7 * 3 = the most lucky number, 777. 777 is 3 7s or 7 3 times. The sum of the digits between the 1st and 777th digits of 'PI' is evenly divisible by twenty three, the number of chromosomes in the human body, and ends in 73. The author only knew 'PI' to two digits. The number using digits between 1 and 777 of 'e' are evenly divisible by 37, the two most significant digits. The digits of 'PI' between one and the addition of the digits in the speed of light, is evenly divisible by 37, the two most significant digits. Probability: 1 in 1E3 (ignoring 'PI', 'e', 'c', and 'DNA').

3. Exactly twenty three, the number of chromosomes in the human body, subsets of words are evenly divisible by the two most significant digits, 37. There should be only four, not twenty three. Six are adjacent, there should be only one. Eleven subsets of the place values are evenly divisible by twenty three, the number of chromosomes in the human body. Only five subsets should be. This alone is a one in forty probability and is ignored in the calculation for the one in a googol probability of the 37 patterns. The sum of the first twenty three, the number of chromosomes in the human body, digits of 'PI' are evenly divisible by 37, the two most significant digits, 3 * 37. The digits of 'e' from twenty three, the number of chromosomes in the human body, to 37 are evenly divisible by 73, the two most significant digits. The remainder of the first twenty three, the number of chromosomes in the human body, digits of PI divided by the speed of light is (27163154) which is evenly divisible by 73, the two most significant digits. Probability: 1 in 2E4 (ignoring 'PI', 'e', 'c', and 'DNA').

4. The number of the letters times the product of the letters divided by the number of words times the product of the words, ignoring exponent, equals 'PI' to five digits, the most important constant in the universe. The second most important constant in the universe, 'e', is defined by the exact same equation in the other first sentence describing the same event in the same book. The sum of the first twenty three, the number of chromosomes in the human body, digits of 'PI' add up to 777 divided by 7, the most lucky number divided by the most lucky digit. The digits of 'e' from 37 to 73 are evenly divisible by twenty three, the number of chromosomes in the human body, when treated as individual numbers. These five digits of 'PI', ignoring decimal point, plus the speed of light ends in 73, the two most significant digits. The remainder of these five digits of 'e' divided into the first twenty three, the number of chromosomes in the human body, digits of 'PI', has 777 (3 7s or 7 3 times) right in the middle. Probability: 1 1E5 (ignoring 'e', 'c', and 'DNA').


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NM322024-04-25 15:10:31
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