5,5
A single number, such as 11111, cannot define an arithmetic sequence. On the other hand, it can be the first element of any kind of sequence. On the other hand, if the question was about ``1, 1, 1, 1, 1'' then that is an arithmetic sequence as there is a common difference of 0 between each term.
Not in normal arithmetic.
Neither.
Binary arithmetic.Binary arithmetic.Binary arithmetic.Binary arithmetic.
5,5
A single number, such as 11111, cannot define an arithmetic sequence. On the other hand, it can be the first element of any kind of sequence. On the other hand, if the question was about ``1, 1, 1, 1, 1'' then that is an arithmetic sequence as there is a common difference of 0 between each term.
0.25..? arithmetic mean...?
Not in normal arithmetic.
Neither.
In ordinary arithmetic, the resulting value will be from an infinite set of values but in case modular arithmetic, resulting value will be from a finite set of values.Open in Google Docs ViewerOpen link in new tabOpen link in new windowOpen link in new incognito windowDownload fileCopy link addressEdit PDF File on PDFescape.come.g. in ordinary arithmetic, the sum of two integers, the result will be an integer in the range {..., -3, -2, -1, 0, 1, 2, 3, ...}for modular arithmetic, the sum of two integerslike (a+b)mod n will be in the range {0, 1, 2, ... n-1}
It is an arithmetic sequence. To differentiate arithmetic from geometric sequences, take any three numbers within the sequence. If the middle number is the average of the two on either side then it is an arithmetic sequence. If the middle number squared is the product of the two on either side then it is a geometric sequence. The sequence 0, 1, 1, 2, 3, 5, 8 and so on is the Fibonacci series, which is an arithmetic sequence, where the next number in the series is the sum of the previous two numbers. Thus F(n) = F(n-1) + F(n-2). Note that the Fibonacci sequence always begins with the two numbers 0 and 1, never 1 and 1.
It is called binary arithmetic.
Binary arithmetic.Binary arithmetic.Binary arithmetic.Binary arithmetic.
(0 + 1 + 3 + 2) / 4 = 1.5 To find the average: add the four numbers in the question together, then divide the answer by 4. The zero can be ignored, but not the fact that there is a position occupied by a zero in the equation. For instance, (1 + 3 + 2) / 3 = 2 So you can see there is a difference to the result.
The mean is the arithmetic average. The average of 4 9 7 4 & 1 is 5
The arithmetic mean is 2.