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/ So the 100th term is:
So the 100th term is:
February 22, 2026
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Solution:** The sequence given is an arithmetic sequence where the first term \( a = 5 \) and the common difference \( d = 11 - 5 = 6 \).
The general formula for the \( n \)-th term of an arithmetic sequence is:
a_n = a + (n - 1)d
a_{100} = 5 + (100 - 1) \cdot 6 = 5 + 99 \cdot 6 = 5 + 594 = 599
To find how many terms are in the sequence up to 100, note that we are simply counting the first 100 terms as given in the pattern. Since the sequence is defined step-by-step by the recurrence with fixed difference, the total number of terms in the first 100 positions is exactly 100.
Thus, the number of such genetic markers in the first 100 terms is:
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