These are cubic numbers (13, 23, 33 ...). The next values would be 64, 125 and 216.
Starting with 1 cubed, they are 1, 8, and 27.
The sequence represents the cube of integers starting at 1 and increasing by 1 at each step. 13 = 1 : 23 = 8 : 33 = 27 : 43 = 64 : then next two numbers are 53 = 125 : 63 = 216
1 3 8 27 32 1x3 =3 3+5=8 8x3=27 27+5=32
-3 x cube numbers 1, 8, 27, 64, etc.
1, 8, 27, 64, 125, 216
Cubed integers
1 8 27 64 125 ...13 23 33 43 53 63 73 ...1 8 27 64 125 216 343...
64, 125 and 216
The GCF is 1.
Starting with 1 cubed, they are 1, 8, and 27.
The pattern is the result of cubing 1 2 3 4 5 6 1^3 = 1 2^3 = 8 3^3 = 27 4^3 = 64 and so on
The sequence represents the cube of integers starting at 1 and increasing by 1 at each step. 13 = 1 : 23 = 8 : 33 = 27 : 43 = 64 : then next two numbers are 53 = 125 : 63 = 216
The GCF is 1.The greatest common factor of the numbers 8, 27 and 35 is 1.The GCF is 1.
That series is the cubes of the counting numbers.
1 3 8 27 32 1x3 =3 3+5=8 8x3=27 27+5=32
The sequence -1, -8, -27, -64 consists of negative perfect cubes: specifically, -1 is (-1^3), -8 is (-2^3), -27 is (-3^3), and -64 is (-4^3). The conjecture suggests that the next term in the sequence would be (-125), which is (-5^3). Thus, the pattern follows the form of (-n^3) for (n = 1, 2, 3, 4, ...).
cube numbers next is 64 1 = 1 x 1 x 1 = 1³ 8 = 2 x 2 x 2 = 2³ 27 = 3 x 3 x 3 = 3³ then 64 = 4 x 4 x 4 = 4³