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The given series consists of numbers that can be expressed as powers of 3: (9 = 3^2), (6561 = 3^8), and (43046721 = 3^{16}). The exponents are increasing in a pattern of doubling: (2, 8, 16). Thus, the next exponent should be (32), which means the missing number is (3^{32} = 1853020188851841).
These are squares. 12 = 1 22 = 4 32 = 9 (it is missing 42 = 16) 52 = 25 62 = 36 The next one in the series is probably 72 = 49.
16*3 = 48
Each number is half the previous number. The series formula is a(n) = 32 *(½)n⁻¹ 32, 16, 8, 4, 2, 1, 0.5 The next three numbers in the sequence are : 0.25, 0.125, 0.0625
7
The given series consists of numbers that can be expressed as powers of 3: (9 = 3^2), (6561 = 3^8), and (43046721 = 3^{16}). The exponents are increasing in a pattern of doubling: (2, 8, 16). Thus, the next exponent should be (32), which means the missing number is (3^{32} = 1853020188851841).
These are squares. 12 = 1 22 = 4 32 = 9 (it is missing 42 = 16) 52 = 25 62 = 36 The next one in the series is probably 72 = 49.
9 (between 8 and 16).
16*3 = 48
Each number is half the previous number. The series formula is a(n) = 32 *(½)n⁻¹ 32, 16, 8, 4, 2, 1, 0.5 The next three numbers in the sequence are : 0.25, 0.125, 0.0625
16+16 = 32
7
16 + 16 = 32 Or draw another way 16 16 + 32 ====
The Answer is thirty two
There is a mathematical symbol missing and I am assuming the question to be -2i(8i + 4) - 8(4 - 4i) which is -16i^2 - 8 - 32 - 32i which is -16(-1) - 8 - 32 - 32i which is +16 - 8 - 32 - 32i which is -24 -32i
Since 16 is a factor of 32, it is automatically the GCF.
The answer to that is simple: 32. 16 +16 _____ 32