misc updates
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@@ -20,7 +20,7 @@ for i=1:length(x) % For loop over the indices of the vector.
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% is assigned to the variable a.
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% Use the value of the i-th vector element by passing it
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% as an argument to a function:
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do_something( x(i) );
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do_something(x(i));
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end
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\end{lstlisting}
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@@ -34,7 +34,7 @@ y = zeros(length(x),1);
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for i=1:length(x)
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% Write the result of the computation at
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% the i-th position in the y vector:
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y(i) = get_something( x(i) );
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y(i) = get_something(x(i));
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end
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% Now the result vector can be further processed:
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mean(y);
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@@ -52,7 +52,7 @@ y = zeros(length(x), 10);
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for i=1:length(x)
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% Write the return value of the function get_something - now a
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% column vector with 10 elements - into the i-th row of the matrix y:
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y(i, :) = get_something(x(i));
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y(i, :) = get_some_more(x(i));
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end
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% Process the results stored in matrix y:
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mean(y, 1)
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@@ -65,7 +65,7 @@ x = [2:3:20]; % Some vector.
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y = []; % Empty vector for storing the results.
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for i=1:length(x)
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% The function get_something() returns a vector of unspecified size:
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z = get_something(x(i));
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z = get_somehow_more(x(i));
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% The content of z is appended to the result vector y:
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y = [y; z(:)];
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% The z(:) syntax ensures that we append column-vectors.
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@@ -150,7 +150,7 @@ The \mcode{histogram()} function does this automatically with the appropriate ar
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x = randn(100, 1); % Some real-valued data.
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histogram(x, 'Normalization', 'pdf');
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\end{lstlisting}
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\begin{lstlisting}[caption={Probability mit der \varcode{histogram()}-function}]
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\begin{lstlisting}[caption={Probability with the \varcode{histogram()}-function}]
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x = randi(6, 100, 1); % Some integer-valued data.
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histogram(x, 'Normalization', 'probability');
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\end{lstlisting}
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