22 + 7 = 29
29 + 8 = 37
the next three terms are unknown
They are ....16 4 1
12, 14, 16
They are: 16/4 = 4, 4/4 = 1 and 1/4 = 0.25
This sequence is an arithmetic series that makes use of another series. This sequence advances by adding the series 4, 11, 21, 34, and 50 to the initial terms. This secondary series has a difference of 7, 10, 13 and 16 which advance by terms of 3. So the next three numbers in the primary sequence are 190, 281 and 397.
The numbers 2, 4, 7, 11 are neither strictly arithmetic nor geometric. In an arithmetic sequence, the difference between consecutive terms is constant, while in a geometric sequence, the ratio between consecutive terms is constant. Here, the differences between terms are 2, 3, and 4, suggesting a pattern of increasing increments. Following this pattern, the next two terms would be 16 (11 + 5) and 22 (16 + 6).
Since there is 16 between the first and second terms and 2 x 16 (32) between the second and third terms, then the forth term should be 3 x 16 (48) higher. The series is 11 27 59 107 171 251...
the next three terms are unknown
Difference between the terms: 1st & 2nd = 4 2nd & 3rd = 8 3rd & 4th = 16 4th & 5th = ?? The pattern of the differences can be seen as to be multiplying by two as the series progresses. It can be predicted that the next difference will be 16*2 = 32. Therefore, the next number will be 35 + 32 = 67.
16/11 or 15/11
The sequence is a geometric progression where each term is multiplied by -2 to get the next term. Starting with -4, the next terms can be calculated as follows: -4 × -2 = 8, -8 × -2 = 16, and -16 × -2 = 32. Therefore, the next three terms are 64, 128, and 256.
It is 16/11
16/11
4/11
2.75
The information given in those 3 terms isn't enough to uniquely determine the rule.I've just found three different rules that all generate 11 .. 12 .. 16 .. , and each oneproduces a different 4th term.
55 over 80 at its lowest terms is 11/16