'Attempted to access idx(0); index must be a positive integer or logical' error
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Hi,
I have a large vector of size:
size( A )
ans =
612245 1
The elements in the vector has decimal number up to the fourth digits like: -1.9084
I want to find the first zero element and store the index varible idx
I tried to do it as the following but it give me an error:
zero_position= 1;
idx=find(A == 0 ,zero_position);
The following error is show up:
Attempted to access idx(0); index must be a positive integer or logical.
This is also happen when I chose non zero element like:
idx=find(A == -1.9084,1);
How I can solve the problem?
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Réponses (2)
Image Analyst
le 12 Mai 2014
The error did not come from those lines. It came when you tried to use idx.
Also, you can't compare floating point numbers like that. Please see the FAQ for the proper way to do it using a tolerance: http://matlab.wikia.com/wiki/FAQ?title=FAQ&cb=3385#Why_is_0.3_-_0.2_-_0.1_.28or_similar.29_not_equal_to_zero.3F
2 commentaires
Image Analyst
le 12 Mai 2014
Try this:
firstZero = find(A == 0, 1, 'first'); % Index of first place A=0
B = A; % Initialize
B(1:firstZero) = 0 % Zero until A=0, then equals A afterwards.
Star Strider
le 12 Mai 2014
Modifié(e) : Star Strider
le 12 Mai 2014
This works:
A = -10:10;
B = A;
B(B<=0) = 0;
2 commentaires
Star Strider
le 12 Mai 2014
Modifié(e) : Star Strider
le 12 Mai 2014
I got the opposite impression when I read your question. Simply switch the test:
A=[1.9734 1.9577 1.6778 1.1715 0.0000 -0.2257 -0.9281 -1.5052]
B = A;
B(B>=0) = 0;
produces:
B = 0.0000 0.0000 0.0000 0.0000 0.0000 -0.2257000 -0.9281000 -1.5052
Image Analyst
le 12 Mai 2014
Modifié(e) : Image Analyst
le 12 Mai 2014
I think Abdulrahman's "Answer" is directed towards Start Strider so I'm moving it here:
No, it does not work :(
1st, The vector elements are decimal numbers of fourth digits like -0.1957
2nd, Vector B should be zero before the first zero element in A comes. Then, B equal A after first zero element in A.
For example:
A=[1.9734 1.9577 1.6778 1.1715 0.0000 -0.2257 -0.9281 -1.5052]
So,
B= [0.0000 0.0000 0.0000 0.0000 0.0000 -0.2257 -0.9281 -1.5052]
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