I think 8
It is7
0 is the missing number.
The missing number is 26. The number after 29 is 58.
There does not appear to be a missing number. The sequence is n2 + 1. 12 + 1 = 2 : 22 + 1 = 5 : 52 + 1 = 26 : 262 + 1 = 677. The next number in the sequence is 6772 + 1 = 458330.
A binary number is a way of representing number such that the place value of each number is 2 times that of the place to its right. A binary number is composed entirely of 0s and 1s. The first ten counting numbers, in binary, are: 1 = 1*1 10 = 1*2 + 0*1 11 = 1*2 + 1 100 = 1*4 + 0*2 + 0*1 101 = 1*4 + 0*2 + 1*1 110 = 1*4 + 1*2 + 0*1 111 = 1*4 + 1*2 + 1*1 1000 = 1*8 + 0*4 + 0*2 + 0*1 1001 = 1*8 + 0*4 + 0*2 + 1*1 1010 = 1*8 + 0*4 + 1*2 + 0*1
The missing number is 1321!!! Simple Fibonacci row! 0+1=1 1+1=2 1+2=3 2+3=5 3+5=8 5+8=13 8+13=21 13+21=34 ......
Looks Fibonacci, but you are missing the first 0... 0, 1, 1, 2, 3, 5, 8, 13, 21, 34, etc. where each number is the sum of the preceeding two.
It is7
0 is the missing number.
0,2,8,14,?,34
The first five prime numbers starting from 1 are 1, 2, 3, 5, 7. So 2 is the missing number.
The missing number is 26. The number after 29 is 58.
The smallest square number qreater than 1 is 2. * * * * * 2 is not a perfect square number.
The missing number is 5. When a number is divided by 3, the remainder is 2. So, the number can be represented as 3n + 2, where n is an integer. If we add 3 to this number, the remainder will be 1. Therefore, the missing number is 3n + 2 + 3 = 3n + 5, where n is an integer.
The missing numbers in the pattern can be found by multiplying the first number by 2, then adding 1 to get the second number, multiplying the second number by 2 and subtracting 1 to get the third number, and so on. Therefore, the missing numbers are 7 and 61.
There does not appear to be a missing number. The sequence is n2 + 1. 12 + 1 = 2 : 22 + 1 = 5 : 52 + 1 = 26 : 262 + 1 = 677. The next number in the sequence is 6772 + 1 = 458330.
A binary number is a way of representing number such that the place value of each number is 2 times that of the place to its right. A binary number is composed entirely of 0s and 1s. The first ten counting numbers, in binary, are: 1 = 1*1 10 = 1*2 + 0*1 11 = 1*2 + 1 100 = 1*4 + 0*2 + 0*1 101 = 1*4 + 0*2 + 1*1 110 = 1*4 + 1*2 + 0*1 111 = 1*4 + 1*2 + 1*1 1000 = 1*8 + 0*4 + 0*2 + 0*1 1001 = 1*8 + 0*4 + 0*2 + 1*1 1010 = 1*8 + 0*4 + 1*2 + 0*1