Element multiplication and subtraction
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I'd like to run the following though I keep getting element multiplication/division errors:
Ron = 0.012;
RL = 0.003;
R = 6.667;
D = 0:0.001:.999;
M = (D/(1-D))*(1/( (2*Ron*D/(R*((1-D)^2)))+1+(RL/R)*(1/((1-D)^2)) ))
plot (D,M);
I've several permutations of placing dots in front of multiplication, division and raise to the power signs though I just cannot seem to get this to work.
How should "M" be written so that Matlab will accept it?
Thank you
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その他の回答 (2 件)
James Tursa
2019 年 3 月 26 日
編集済み: James Tursa
2019 年 3 月 26 日
If you are unsure, then just put dots next to every * and / and ^ operation. If a scalar happens to be involved it will still work as expected. E.g.,
M = (D./(1-D)).*(1./( (2.*Ron.*D./(R.*((1-D).^2)))+1+(RL./R).*(1./((1-D).^2)) ))
3 件のコメント
Adam Danz
2019 年 3 月 26 日
The approach of putting dots in every multiplication, division, and exponent just to eliminate the error is a bad approach. Our two solutions are a great example why it's a bad approach. Your solution
M2 = (D./(1-D)).*(1./( (2.*Ron.*D./(R.*((1-D).^2)))+1+(RL./R).*(1./((1-D).^2)) ))
and my solution
M = (D/(1-D))*(1./( (2*Ron*D/(R*((1-D).^2)))+1+(RL/R)*(1./((1-D).^2)) ))
both produce a vector of the same size and shape but the values aren't equal. Both of our solutions "work" in that they avoid error but at least one of them must be incorrect and there's a good chance both are incorrect.
James Tursa
2019 年 3 月 26 日
編集済み: James Tursa
2019 年 3 月 26 日
"... is a bad approach ..."
I will respectfully disagree on this one. Just looking at the variables there was obviously only one vector, namely D. So IMO it was quite likely he was just looking for element-wise operations in calculating M ... he was just unsure where to put the dots. Again, I am talking about this particular post only!
Adam Danz
2019 年 3 月 26 日
You took the time to realize that and it was a good call. My caution is against the preface "If you are unsure...". I don't think it is a good idea to throw a dot in, test it, and if there's no error, accept it without being certain that it's the correct correction. My answer is a good example of that.
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