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  • 机器学习课程 matlab 练习

    
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      Columns 9905 through 9908
    
       -4.9465   -3.8037   -6.8552    0.2933
    
      Columns 9909 through 9912
    
       -9.2141  -10.2395   -0.8304   -8.9328
    
      Columns 9913 through 9916
    
       -6.5980   -9.1353   -9.7108   -8.4459
    
      Columns 9917 through 9920
    
       -6.5151   -7.4159   -3.2576   -7.3234
    
      Columns 9921 through 9924
    
       -1.9867   -8.6006  -10.9317   -5.0675
    
      Columns 9925 through 9928
    
       -1.8249   -6.7361   -2.0934   -6.7699
    
      Columns 9929 through 9932
    
       -8.0008   -9.9162   -2.6141  -10.0977
    
      Columns 9933 through 9936
    
       -7.0316   -8.4644   -8.4451   -6.8971
    
      Columns 9937 through 9940
    
       -5.5468   -5.2536   -8.6704   -4.9223
    
      Columns 9941 through 9944
    
       -4.3715   -6.4435   -6.7186   -9.8239
    
      Columns 9945 through 9948
    
       -5.0186   -0.7944   -3.6310   -6.3637
    
      Columns 9949 through 9952
    
       -4.1770   -5.4147   -4.1884   -5.6102
    
      Columns 9953 through 9956
    
       -5.9698   -0.9725   -5.6105   -3.9811
    
      Columns 9957 through 9960
    
       -3.5397   -1.8038   -6.4922   -4.0126
    
      Columns 9961 through 9964
    
       -5.7926   -7.5272   -6.3233   -4.0889
    
      Columns 9965 through 9968
    
       -8.3627   -0.9932   -0.0429   -8.3054
    
      Columns 9969 through 9972
    
       -7.0970   -4.5402   -4.7260   -1.6203
    
      Columns 9973 through 9976
    
       -6.2258   -0.9586   -8.6405   -5.7459
    
      Columns 9977 through 9980
    
       -4.9770   -9.0576   -5.8128   -6.8386
    
      Columns 9981 through 9984
    
       -3.2877   -4.2744   -0.1379   -2.8501
    
      Columns 9985 through 9988
    
       -5.6746  -12.0665   -6.4145   -8.4306
    
      Columns 9989 through 9992
    
        1.5577   -5.7557   -4.8122   -4.7491
    
      Columns 9993 through 9996
    
       -6.3558  -11.7839    0.6138   -4.8644
    
      Columns 9997 through 10000
    
       -8.5119   -6.7188   -0.9599   -5.5092
    
    >> hist(w)
    >> I = eye(3)
    
    I =
    
         1     0     0
         0     1     0
         0     0     1
    
    >> I
    
    I =
    
         1     0     0
         0     1     0
         0     0     1
    
    >> help help
       help Display help text in Command Window.
          help, by itself, lists all primary help topics. Each primary topic
          corresponds to a folder name on the MATLAB search path.
     
          help NAME displays the help for the functionality specified by NAME,
          such as a function, operator symbol, method, class, or toolbox.
          NAME can include a partial path.
     
          Some classes require that you specify the package name. Events,
          properties, and some methods require that you specify the class
          name. Separate the components of the name with periods, using one
          of the following forms:
     
              help CLASSNAME.NAME
              help PACKAGENAME.CLASSNAME
              help PACKAGENAME.CLASSNAME.NAME
     
          If NAME is the name of both a folder and a function, help displays
          help for both the folder and the function. The help for a folder
          is usually a list of the program files in that folder.
     
          If NAME appears in multiple folders on the MATLAB path, help displays
          information about the first instance of NAME found on the path.
     
          NOTE:
     
          In the help, some function names are capitalized to make them 
          stand out. In practice, type function names in lowercase. For
          functions that are shown with mixed case (such as javaObject),
          type the mixed case as shown.
     
          EXAMPLES:
     
          help close           % help for the CLOSE function
          help database/close  % help for CLOSE in the Database Toolbox
          help database        % list of functions in the Database Toolbox 
                               % and help for the DATABASE function
          help containers.Map.isKey   % help for isKey method
     
          See also doc, docsearch, lookfor, matlabpath, which.
    
        Reference page for help
        Other functions named help
    
    >> help docsearch
     docsearch Help browser search.
     
        docsearch opens the Help browser and displays the documentation home
        page. If the Help browser is already open, but not visible, then
        docsearch brings it to the foreground.
     
        docsearch TEXT searches the documentation for pages with words that match 
        the specified expression. To search third-party or custom documentation, 
        you must first run the BUILDDOCSEARCHDB command to build a search database  
        for the additional help files.
     
        Examples:
           docsearch plot
           docsearch plot tools
           docsearch('plot tools')
     
        See also doc.
    
        Reference page for docsearch
    
    >> A
    
    A =
    
         1     2
         3     4
         5     6
    
    >> size(A)
    
    ans =
    
         3     2
    
    >> sz = size(A)
    
    sz =
    
         3     2
    
    >> size(sz)
    
    ans =
    
         1     2
    
    >> size(A, 1)
    
    ans =
    
         3
    
    >> v = [1 2 3 4]
    
    v =
    
         1     2     3     4
    
    >> length(v)
    
    ans =
    
         4
    
    >> length(v)
    
    ans =
    
         4
    
    >> pwd
    
    ans =
    
    D:SoftwareMatlabin
    
    >> cd
    
    D:SoftwareMatlabin
    
    >> cd C:User
    Error using cd
    Cannot CD to C:User (Name is nonexistent or
    not a directory).
     
    >> load
    Error using load
    Unable to read file 'matlab.mat'. No such file
    or directory.
     
    >> who
    
    Your variables are:
    
    A    I    ans  sz   w    
    C    a    c    v    
    
    >> cd C:UsersBruceDuDesktop
    >> load("test.dat")
     load("test.dat")
          ↑
    Error: The input character is not valid in
    MATLAB statements or expressions.
     
    >> load('test.dat')
    >> who
    
    Your variables are:
    
    A     I     ans   sz    v     
    C     a     c     test  w     
    
    >> test
    
    test =
    
       134    33
        32    44
        43     5
        22     6
        67     8
    
    >> size(test)
    
    ans =
    
         5     2
    
    >> who
    
    Your variables are:
    
    A     I     ans   sz    v     
    C     a     c     test  w     
    
    >> whos
      Name      Size               Bytes  Class      Attributes
    
      A         3x2                   48  double               
      C         2x3                   48  double               
      I         3x3                   72  double               
      a         1x1                    8  double               
      ans       1x2                   16  double               
      c         1x1                    1  logical              
      sz        1x2                   16  double               
      test      5x2                   80  double               
      v         1x4                   32  double               
      w         1x10000            80000  double               
    
    >> clear test
    >> whos
      Name      Size               Bytes  Class      Attributes
    
      A         3x2                   48  double               
      C         2x3                   48  double               
      I         3x3                   72  double               
      a         1x1                    8  double               
      ans       1x2                   16  double               
      c         1x1                    1  logical              
      sz        1x2                   16  double               
      v         1x4                   32  double               
      w         1x10000            80000  double               
    
    >> load('test.dat')
    >> whos
      Name      Size               Bytes  Class      Attributes
    
      A         3x2                   48  double               
      C         2x3                   48  double               
      I         3x3                   72  double               
      a         1x1                    8  double               
      ans       1x2                   16  double               
      c         1x1                    1  logical              
      sz        1x2                   16  double               
      test      5x2                   80  double               
      v         1x4                   32  double               
      w         1x10000            80000  double               
    
    >> top_test = test(1:2)
    
    top_test =
    
       134    32
    
    >> test
    
    test =
    
       134    33
        32    44
        43     5
        22     6
        67     8
    
    >> save hello.mat top_test
    >> save hello.txt top_test
    >> A(3,2)
    
    ans =
    
         6
    
    >> A
    
    A =
    
         1     2
         3     4
         5     6
    
    >> A(2,:)
    
    ans =
    
         3     4
    
    >> A(:, 2)
    
    ans =
    
         2
         4
         6
    
    >> A([1,3], :)
    
    ans =
    
         1     2
         5     6
    
    >> A(:, 2) = [10; 12, 14]
    Dimensions of matrices being concatenated are
    not consistent.
     
    >> A(:, 2) = [10, 12, 14]
    
    A =
    
         1    10
         3    12
         5    14
    
    >> A = [A, [100, 120, 140]]
    Error using horzcat
    Dimensions of matrices being concatenated are
    not consistent.
     
    >> A = [A, [100; 120; 140]]
    
    A =
    
         1    10   100
         3    12   120
         5    14   140
    
    >> A(:)
    
    ans =
    
         1
         3
         5
        10
        12
        14
       100
       120
       140
    
    >> A = [1 2; 3 4; 5 6]
    
    A =
    
         1     2
         3     4
         5     6
    
    >> B = [11 12; 13 14; 15 16]
    
    B =
    
        11    12
        13    14
        15    16
    
    >> C = [A B]
    
    C =
    
         1     2    11    12
         3     4    13    14
         5     6    15    16
    
    >> C = [A; B]
    
    C =
    
         1     2
         3     4
         5     6
        11    12
        13    14
        15    16
    
    >> size(C)
    
    ans =
    
         6     2
    
    >> C = [A, B]
    
    C =
    
         1     2    11    12
         3     4    13    14
         5     6    15    16
    
    >> A
    
    A =
    
         1     2
         3     4
         5     6
    
    >> B = [11 12; 13 14; 15 16]
    
    B =
    
        11    12
        13    14
        15    16
    
    >> C = [ 1 1; 2 2]
    
    C =
    
         1     1
         2     2
    
    >> A .* B
    
    ans =
    
        11    24
        39    56
        75    96
    
    >> A .^ 2
    
    ans =
    
         1     4
         9    16
        25    36
    
    >> v = [1; 2; 3]
    
    v =
    
         1
         2
         3
    
    >> 1 ./ v
    
    ans =
    
        1.0000
        0.5000
        0.3333
    
    >> log(v)
    
    ans =
    
             0
        0.6931
        1.0986
    
    >> exp(v)
    
    ans =
    
        2.7183
        7.3891
       20.0855
    
    >> abs(v)
    
    ans =
    
         1
         2
         3
    
    >> abs([-1; 2; -3])
    
    ans =
    
         1
         2
         3
    
    >> v + ones(length(v), 1)
    
    ans =
    
         2
         3
         4
    
    >> A'
    
    ans =
    
         1     3     5
         2     4     6
    
    >> A
    
    A =
    
         1     2
         3     4
         5     6
    
    >> (A')'
    
    ans =
    
         1     2
         3     4
         5     6
    
    >> val = max(a)
    
    val =
    
        3.1416
    
    >> a
    
    a =
    
        3.1416
    
    >> a < 3
    
    ans =
    
         0
    
    >> A < 2
    
    ans =
    
         1     0
         0     0
         0     0
    
    >> find(A < 2)
    
    ans =
    
         1
    
    >> A = magic(3)
    
    A =
    
         8     1     6
         3     5     7
         4     9     2
    
    >> help magic
     magic  Magic square.
        magic(N) is an N-by-N matrix constructed from the integers
        1 through N^2 with equal row, column, and diagonal sums.
        Produces valid magic squares for all N > 0 except N = 2.
    
        Reference page for magic
    
    >> help find
     find   Find indices of nonzero elements.
        I = find(X) returns the linear indices corresponding to 
        the nonzero entries of the array X.  X may be a logical expression. 
        Use IND2SUB(SIZE(X),I) to calculate multiple subscripts from 
        the linear indices I.
      
        I = find(X,K) returns at most the first K indices corresponding to 
        the nonzero entries of the array X.  K must be a positive integer, 
        but can be of any numeric type.
     
        I = find(X,K,'first') is the same as I = find(X,K).
     
        I = find(X,K,'last') returns at most the last K indices corresponding 
        to the nonzero entries of the array X.
     
        [I,J] = find(X,...) returns the row and column indices instead of
        linear indices into X. This syntax is especially useful when working
        with sparse matrices.  If X is an N-dimensional array where N > 2, then
        J is a linear index over the N-1 trailing dimensions of X.
     
        [I,J,V] = find(X,...) also returns a vector V containing the values
        that correspond to the row and column indices I and J.
     
        Example:
           A = magic(3)
           find(A > 5)
     
        finds the linear indices of the 4 entries of the matrix A that are
        greater than 5.
     
           [rows,cols,vals] = find(speye(5))
     
        finds the row and column indices and nonzero values of the 5-by-5
        sparse identity matrix.
     
        See also sparse, ind2sub, relop, nonzeros.
    
        Reference page for find
        Other functions named find
    
    >> sum(a)
    
    ans =
    
        3.1416
    
    >> prod(a)
    
    ans =
    
        3.1416
    
    >> ceil(0.5)
    
    ans =
    
         1
    
    >> floor(0.5)
    
    ans =
    
         0
    
    >> rand(3)
    
    ans =
    
        0.5437    0.2492    0.5598
        0.4425    0.2851    0.4151
        0.1837    0.5295    0.9057
    
    >> max(rand(3),rand(3))
    
    ans =
    
        0.3051    0.2553    0.8383
        0.6498    0.3582    0.5901
        0.9801    0.8059    0.4685
    
    >> max(A,[], 1)
    
    ans =
    
         8     9     7
    
    >> A = magic(9)
    
    A =
    
      Columns 1 through 8
    
        47    58    69    80     1    12    23    34
        57    68    79     9    11    22    33    44
        67    78     8    10    21    32    43    54
        77     7    18    20    31    42    53    55
         6    17    19    30    41    52    63    65
        16    27    29    40    51    62    64    75
        26    28    39    50    61    72    74     4
        36    38    49    60    71    73     3    14
        37    48    59    70    81     2    13    24
    
      Column 9
    
        45
        46
        56
        66
        76
         5
        15
        25
        35
    
    >> sum(A,1)
    
    ans =
    
      Columns 1 through 8
    
       369   369   369   369   369   369   369   369
    
      Column 9
    
       369
    
    >> A .*eye(9)
    Error: "A" was previously used as a variable,
    conflicting with its use here as the name of a
    function or command.
    See "How MATLAB Recognizes Command Syntax" in
    the MATLAB documentation for details.
     
    >> A .* eye(9)
    
    ans =
    
      Columns 1 through 8
    
        47     0     0     0     0     0     0     0
         0    68     0     0     0     0     0     0
         0     0     8     0     0     0     0     0
         0     0     0    20     0     0     0     0
         0     0     0     0    41     0     0     0
         0     0     0     0     0    62     0     0
         0     0     0     0     0     0    74     0
         0     0     0     0     0     0     0    14
         0     0     0     0     0     0     0     0
    
      Column 9
    
         0
         0
         0
         0
         0
         0
         0
         0
        35
    
    >> sum(A .* eye(9))
    
    ans =
    
      Columns 1 through 8
    
        47    68     8    20    41    62    74    14
    
      Column 9
    
        35
    
    >> sum(sum(A .* eye(9)))
    
    ans =
    
       369
    
    >> pinv(A)
    
    ans =
    
      Columns 1 through 4
    
        0.0005   -0.0012    0.0017    0.0126
        0.0003    0.0003    0.0128   -0.0122
       -0.0011    0.0140   -0.0120    0.0003
        0.0126   -0.0120    0.0003    0.0003
       -0.0108    0.0003    0.0003    0.0003
        0.0003    0.0005    0.0001   -0.0011
        0.0003    0.0003    0.0003    0.0005
        0.0003    0.0003   -0.0011    0.0017
        0.0003    0.0003    0.0003    0.0003
    
      Columns 5 through 8
    
       -0.0121    0.0003    0.0003    0.0003
        0.0003   -0.0011    0.0017    0.0003
        0.0005    0.0001    0.0003    0.0003
       -0.0011    0.0017    0.0005    0.0001
        0.0003    0.0003    0.0003    0.0003
        0.0017    0.0003    0.0003    0.0126
        0.0001    0.0003    0.0126   -0.0134
        0.0003    0.0128   -0.0122    0.0003
        0.0127   -0.0120   -0.0011    0.0018
    
      Column 9
    
        0.0003
        0.0003
        0.0003
        0.0003
        0.0114
       -0.0120
        0.0017
        0.0003
        0.0001
    
    >> t = [0: 0.01:0.98];
    >> y1 = sin(2 * pi * 4 * t)
    
    y1 =
    
      Columns 1 through 4
    
             0    0.2487    0.4818    0.6845
    
      Columns 5 through 8
    
        0.8443    0.9511    0.9980    0.9823
    
      Columns 9 through 12
    
        0.9048    0.7705    0.5878    0.3681
    
      Columns 13 through 16
    
        0.1253   -0.1253   -0.3681   -0.5878
    
      Columns 17 through 20
    
       -0.7705   -0.9048   -0.9823   -0.9980
    
      Columns 21 through 24
    
       -0.9511   -0.8443   -0.6845   -0.4818
    
      Columns 25 through 28
    
       -0.2487   -0.0000    0.2487    0.4818
    
      Columns 29 through 32
    
        0.6845    0.8443    0.9511    0.9980
    
      Columns 33 through 36
    
        0.9823    0.9048    0.7705    0.5878
    
      Columns 37 through 40
    
        0.3681    0.1253   -0.1253   -0.3681
    
      Columns 41 through 44
    
       -0.5878   -0.7705   -0.9048   -0.9823
    
      Columns 45 through 48
    
       -0.9980   -0.9511   -0.8443   -0.6845
    
      Columns 49 through 52
    
       -0.4818   -0.2487   -0.0000    0.2487
    
      Columns 53 through 56
    
        0.4818    0.6845    0.8443    0.9511
    
      Columns 57 through 60
    
        0.9980    0.9823    0.9048    0.7705
    
      Columns 61 through 64
    
        0.5878    0.3681    0.1253   -0.1253
    
      Columns 65 through 68
    
       -0.3681   -0.5878   -0.7705   -0.9048
    
      Columns 69 through 72
    
       -0.9823   -0.9980   -0.9511   -0.8443
    
      Columns 73 through 76
    
       -0.6845   -0.4818   -0.2487   -0.0000
    
      Columns 77 through 80
    
        0.2487    0.4818    0.6845    0.8443
    
      Columns 81 through 84
    
        0.9511    0.9980    0.9823    0.9048
    
      Columns 85 through 88
    
        0.7705    0.5878    0.3681    0.1253
    
      Columns 89 through 92
    
       -0.1253   -0.3681   -0.5878   -0.7705
    
      Columns 93 through 96
    
       -0.9048   -0.9823   -0.9980   -0.9511
    
      Columns 97 through 99
    
       -0.8443   -0.6845   -0.4818
    
    >> plot(t,y1)
    >> y2 = cos(2 * pi * 4 * t)
    
    y2 =
    
      Columns 1 through 4
    
        1.0000    0.9686    0.8763    0.7290
    
      Columns 5 through 8
    
        0.5358    0.3090    0.0628   -0.1874
    
      Columns 9 through 12
    
       -0.4258   -0.6374   -0.8090   -0.9298
    
      Columns 13 through 16
    
       -0.9921   -0.9921   -0.9298   -0.8090
    
      Columns 17 through 20
    
       -0.6374   -0.4258   -0.1874    0.0628
    
      Columns 21 through 24
    
        0.3090    0.5358    0.7290    0.8763
    
      Columns 25 through 28
    
        0.9686    1.0000    0.9686    0.8763
    
      Columns 29 through 32
    
        0.7290    0.5358    0.3090    0.0628
    
      Columns 33 through 36
    
       -0.1874   -0.4258   -0.6374   -0.8090
    
      Columns 37 through 40
    
       -0.9298   -0.9921   -0.9921   -0.9298
    
      Columns 41 through 44
    
       -0.8090   -0.6374   -0.4258   -0.1874
    
      Columns 45 through 48
    
        0.0628    0.3090    0.5358    0.7290
    
      Columns 49 through 52
    
        0.8763    0.9686    1.0000    0.9686
    
      Columns 53 through 56
    
        0.8763    0.7290    0.5358    0.3090
    
      Columns 57 through 60
    
        0.0628   -0.1874   -0.4258   -0.6374
    
      Columns 61 through 64
    
       -0.8090   -0.9298   -0.9921   -0.9921
    
      Columns 65 through 68
    
       -0.9298   -0.8090   -0.6374   -0.4258
    
      Columns 69 through 72
    
       -0.1874    0.0628    0.3090    0.5358
    
      Columns 73 through 76
    
        0.7290    0.8763    0.9686    1.0000
    
      Columns 77 through 80
    
        0.9686    0.8763    0.7290    0.5358
    
      Columns 81 through 84
    
        0.3090    0.0628   -0.1874   -0.4258
    
      Columns 85 through 88
    
       -0.6374   -0.8090   -0.9298   -0.9921
    
      Columns 89 through 92
    
       -0.9921   -0.9298   -0.8090   -0.6374
    
      Columns 93 through 96
    
       -0.4258   -0.1874    0.0628    0.3090
    
      Columns 97 through 99
    
        0.5358    0.7290    0.8763
    
    >> plot(t, y2)
    >> plot(t,y1)
    >> hold on;
    >> plot(t, y2)
    >> xlabel('time')
    >> ylabel('value')
    >> legend('sin', 'cos')
    >> title('my plot')
    >> pwd
    
    ans =
    
    C:UsersBruceDuDesktop
    
    >> print -dpng 'myplot.png'
    >> figure(1); plot(t, y1);
    >> close
    >> figure(1); plot(t, y1);
    >> figure(2); plot(t, y2);
    >> subplot(1, 2, 1);
    >> plot(t, y1)
    >> subplot(1,2,2)
    >> plot(t, y2)
    >> axis([0.5, 1 -1, 1])
    >> A = magic(5)
    
    A =
    
        17    24     1     8    15
        23     5     7    14    16
         4     6    13    20    22
        10    12    19    21     3
        11    18    25     2     9
    
    >> imagesc(A)
    >> clf
    >> imagsc(A)
    Undefined function or variable 'imagsc'.
     
    Did you mean:
    >> imagesc(A)
    >> imagesc(A), colorbar, colorbar gray
    Error using colorbar (line 171)
    Unrecognized input or invalid parameter/value
    pair arguments.
     
    >> imagesc(A), colorbar, colormap gray
    >> for i = 1:10,
    
    >> indices = 1:10
    
    indices =
    
      Columns 1 through 8
    
         1     2     3     4     5     6     7     8
    
      Columns 9 through 10
    
         9    10
    
    >> for i = indices,
    disp(i)
    end;
         1
    
         2
    
         3
    
         4
    
         5
    
         6
    
         7
    
         8
    
         9
    
        10
    
    >> i =1;
    >> while i <= 5;
    v(i) = 100;
    i = i + 1;
    end;
    >> v
    
    v =
    
       100
       100
       100
       100
       100
    
    >> while true,
    v(i) = 9999;
    i = i +1
    if i == 100,
    break;
    end;
    end;
    
    i =
    
         7
    
    
    i =
    
         8
    
    
    i =
    
         9
    
    
    i =
    
        10
    
    
    i =
    
        11
    
    
    i =
    
        12
    
    
    i =
    
        13
    
    
    i =
    
        14
    
    
    i =
    
        15
    
    
    i =
    
        16
    
    
    i =
    
        17
    
    
    i =
    
        18
    
    
    i =
    
        19
    
    
    i =
    
        20
    
    
    i =
    
        21
    
    
    i =
    
        22
    
    
    i =
    
        23
    
    
    i =
    
        24
    
    
    i =
    
        25
    
    
    i =
    
        26
    
    
    i =
    
        27
    
    
    i =
    
        28
    
    
    i =
    
        29
    
    
    i =
    
        30
    
    
    i =
    
        31
    
    
    i =
    
        32
    
    
    i =
    
        33
    
    
    i =
    
        34
    
    
    i =
    
        35
    
    
    i =
    
        36
    
    
    i =
    
        37
    
    
    i =
    
        38
    
    
    i =
    
        39
    
    
    i =
    
        40
    
    
    i =
    
        41
    
    
    i =
    
        42
    
    
    i =
    
        43
    
    
    i =
    
        44
    
    
    i =
    
        45
    
    
    i =
    
        46
    
    
    i =
    
        47
    
    
    i =
    
        48
    
    
    i =
    
        49
    
    
    i =
    
        50
    
    
    i =
    
        51
    
    
    i =
    
        52
    
    
    i =
    
        53
    
    
    i =
    
        54
    
    
    i =
    
        55
    
    
    i =
    
        56
    
    
    i =
    
        57
    
    
    i =
    
        58
    
    
    i =
    
        59
    
    
    i =
    
        60
    
    
    i =
    
        61
    
    
    i =
    
        62
    
    
    i =
    
        63
    
    
    i =
    
        64
    
    
    i =
    
        65
    
    
    i =
    
        66
    
    
    i =
    
        67
    
    
    i =
    
        68
    
    
    i =
    
        69
    
    
    i =
    
        70
    
    
    i =
    
        71
    
    
    i =
    
        72
    
    
    i =
    
        73
    
    
    i =
    
        74
    
    
    i =
    
        75
    
    
    i =
    
        76
    
    
    i =
    
        77
    
    
    i =
    
        78
    
    
    i =
    
        79
    
    
    i =
    
        80
    
    
    i =
    
        81
    
    
    i =
    
        82
    
    
    i =
    
        83
    
    
    i =
    
        84
    
    
    i =
    
        85
    
    
    i =
    
        86
    
    
    i =
    
        87
    
    
    i =
    
        88
    
    
    i =
    
        89
    
    
    i =
    
        90
    
    
    i =
    
        91
    
    
    i =
    
        92
    
    
    i =
    
        93
    
    
    i =
    
        94
    
    
    i =
    
        95
    
    
    i =
    
        96
    
    
    i =
    
        97
    
    
    i =
    
        98
    
    
    i =
    
        99
    
    
    i =
    
       100
    
    >> i
    
    i =
    
       100
    
    >> squareThisNumber(3)
    Undefined function or variable
    'squareThisNumber'.
     
    >> squareThisNumber(3)
    Undefined function or variable
    'squareThisNumber'.
     
    Did you mean:
    >> squraThisNumber(3)
    
    y =
    
         9
    
    
    ans =
    
         9
    
    >> [a, b] = squareAndCubeThisNumber(3)
    
    y1 =
    
         9
    
    
    y2 =
    
        27
    
    
    a =
    
         9
    
    
    b =
    
        27
    
    >> X = [1 1; 1 2; 1 3]
    
    X =
    
         1     1
         1     2
         1     3
    
    >> y = [1; 2; 3]
    
    y =
    
         1
         2
         3
    
    >> theta = [0;1];
    >> costFunction(X, y, theta)
    
    sqrErrors =
    
         0
         0
         0
    
    
    ans =
    
         0
    
    >> theta = [0; 0]
    
    theta =
    
         0
         0
    
    >> costFunction(X, y, theta)
    
    sqrErrors =
    
         1
         4
         9
    
    
    ans =
    
        2.3333
    
    >> 
    

    定义的三个函数

    1. squraThisNumber.m
    function [ y ] = squraThisNumber( x )
    %UNTITLED Summary of this function goes here
    %   Detailed explanation goes here
        y = x ^ 2
    
    end
    
    
    
    1. squareAndCubeThisNumber.m
    function [ y1, y2 ] = squareAndCubeThisNumber( x )
    %UNTITLED2 Summary of this function goes here
    %   Detailed explanation goes here
    y1 = x ^ 2
    y2 = x ^ 3
    
    end
    
    
    
    1. costFunction.m
    function [ J ] = costFunction( X, y, theta )
    %UNTITLED3 Summary of this function goes here
    %   Detailed explanation goes here
        m = size(X, 1);
        predictions = X * theta;
        sqrErrors = (predictions - y) .^ 2
        
        J = 1/(2 * m) * sum(sqrErrors);
    end
    
    
    
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  • 原文地址:https://www.cnblogs.com/DataNerd/p/7838498.html
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