linkedin post 2019-03-06 05:13:02

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COUNTERPARTS. "Digital codes in the form of electronic, magnetic or optical strings of 1's and 0's are as omnipresent in information technology as nucleotide codes in the form of DNA strings of A's, C's, G's and T's are in living nature." http://benthamopen.com/contents/pdf/TOEVOLJ/TOEVOLJ-5-1.pdf View in LinkedIn
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linkedin post 2019-03-06 05:16:04

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PROOFREADING. "Although both digital and nucleotide codes can be adapted to changing circumstances by random processes, they are protected against errors or mutations in an operating environment as computers and cells, respectively." http://benthamopen.com/contents/pdf/TOEVOLJ/TOEVOLJ-5-1.pdf View in LinkedIn
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linkedin post 2019-03-06 05:17:00

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DIGITAL CODES. "If one of the seven information bits changes, for instance, by radiation, heat, or mechanical influences, they no longer correspond with the parity bit value; this is detected, an error message is generated, and the program stops, is aborted, or a switch is made towards a back-up." http://benthamopen.com/contents/pdf/TOEVOLJ/TOEVOLJ-5-1.pdf View in LinkedIn
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linkedin post 2019-03-06 05:18:48

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NUCLEOTIDE CODES. "Every human cell loses daily about 5000 adenine or guanine bases by depurination and about 100 cytosine bases by deamination. Fortunately, the nucleotide code is continuously checked for mutations using the redundancy of information present in pairs of nucleotide strings, pairs of chromatides, and pairs of chromosomes, and repaired by a large repertoire of DNA repair enzymes." http://benthamopen.com/contents/pdf/TOEVOLJ/TOEVOLJ-5-1.pdf View in LinkedIn
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