how to sum a result with multiple values

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Opariuc Andrei
Opariuc Andrei 2021 年 4 月 13 日
コメント済み: Opariuc Andrei 2021 年 4 月 13 日
a=[170;115;110;70;80;100;140;65;80;99;48];
b=[40;20;27;20;18;20;30;14;13;22;17];
k=a./(a-b)
k results in 11 values as intended, i'd like to do Kmed=k/11 how can i add the 11 values of k=a./(a-b) into 1 value without having to manually insert all 11 values and then divide by 11 ?

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madhan ravi
madhan ravi 2021 年 4 月 13 日
編集済み: madhan ravi 2021 年 4 月 13 日
You literally answered your own question, just use sum()
help sum
SUM Sum of elements. S = SUM(X) is the sum of the elements of the vector X. If X is a matrix, S is a row vector with the sum over each column. For N-D arrays, SUM(X) operates along the first non-singleton dimension. S = SUM(X,'all') sums all elements of X. S = SUM(X,DIM) sums along the dimension DIM. S = SUM(X,VECDIM) operates on the dimensions specified in the vector VECDIM. For example, SUM(X,[1 2]) operates on the elements contained in the first and second dimensions of X. S = SUM(...,OUTTYPE) specifies the type in which the sum is performed, and the type of S. Available options are: 'double' - S has class double for any input X 'native' - S has the same class as X 'default' - If X is floating point, that is double or single, S has the same class as X. If X is not floating point, S has class double. S = SUM(...,NANFLAG) specifies how NaN (Not-A-Number) values are treated. The default is 'includenan': 'includenan' - the sum of a vector containing NaN values is also NaN. 'omitnan' - the sum of a vector containing NaN values is the sum of all its non-NaN elements. If all elements are NaN, the result is 0. Examples: X = [0 1 2; 3 4 5] sum(X, 1) sum(X, 2) X = int8(1:20) sum(X) % returns double(210), accumulates in double sum(X,'native') % returns int8(127), because it accumulates in % int8 but overflows and saturates. See also PROD, CUMSUM, DIFF, ACCUMARRAY, ISFLOAT. Documentation for sum doc sum Other functions named sum codistributed/sum duration/sum sym/sum timeseries/sum dlarray/sum gpuArray/sum tall/sum
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Opariuc Andrei
Opariuc Andrei 2021 年 4 月 13 日
thx :)

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