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654 lines
17 KiB
ObjectPascal
654 lines
17 KiB
ObjectPascal
// File for testing: "kwanova.laz"
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unit KWANOVAUnit;
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{$mode objfpc}{$H+}
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interface
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uses
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Classes, SysUtils, FileUtil, Forms, Controls, Graphics, Dialogs,
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StdCtrls, Buttons, ExtCtrls, ComCtrls,
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MainUnit, FunctionsLib, Globals, ReportFrameUnit, BasicStatsReportFormUnit;
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type
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{ TKWAnovaForm }
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TKWAnovaForm = class(TBasicStatsReportForm)
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AlphaEdit: TEdit;
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OptionsGroup: TGroupBox;
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Label5: TLabel;
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MWUChk: TCheckBox;
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GrpEdit: TEdit;
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DepEdit: TEdit;
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GrpIn: TBitBtn;
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GrpOut: TBitBtn;
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DepIn: TBitBtn;
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DepOut: TBitBtn;
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Label1: TLabel;
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Label2: TLabel;
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Label3: TLabel;
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PageControl: TPageControl;
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KWAnovaPage: TTabSheet;
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MWUPage: TTabSheet;
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VarList: TListBox;
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procedure DepInClick(Sender: TObject);
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procedure DepOutClick(Sender: TObject);
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procedure GrpInClick(Sender: TObject);
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procedure GrpOutClick(Sender: TObject);
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procedure VarListDblClick(Sender: TObject);
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procedure VarListSelectionChange(Sender: TObject; {%H-}User: boolean);
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private
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MWUReportFrame: TReportFrame;
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function Process_KruskalWallis(const ColNoSelected: IntDyneVec;
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ANumGroups, AMinGroup: Integer): Boolean;
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procedure Process_MannWhitney(const ColNoSelected: IntDyneVec;
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ANumGroups: Integer);
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protected
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procedure AdjustConstraints; override;
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procedure Compute; override;
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procedure UpdateBtnStates; override;
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function Validate(out AMsg: String; out AControl: TWinControl): Boolean; override;
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public
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constructor Create(AOwner: TComponent); override;
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procedure Reset; override;
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end;
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var
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KWAnovaForm: TKWAnovaForm;
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implementation
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{$R *.lfm}
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uses
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Math,
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Utils, GridProcs, MatrixUnit;
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{ TKWAnovaForm }
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constructor TKWAnovaForm.Create(AOwner: TComponent);
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begin
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inherited;
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FReportFrame.Parent := KWAnovaPage;
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FReportFrame.BorderSpacing.Left := 0;
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FReportFrame.BorderSpacing.Top := 0;
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FReportFrame.BorderSpacing.Bottom := 0;
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FReportFrame.BorderSpacing.Right := 0;
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MWUReportFrame := TReportFrame.Create(self);
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MWUReportFrame.Name := '';
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MWUReportFrame.Parent := MWUPage;
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MWUReportFrame.Align := alClient;
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MWUReportFrame.BorderSpacing.Left := 0;
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MWUReportFrame.BorderSpacing.Top := 0;
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MWUReportFrame.BorderSpacing.Bottom := 0;
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MWUReportFrame.BorderSpacing.Right := 0;
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InitToolbar(MWUReportFrame.ReportToolbar, tpRight);
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PageControl.ActivePageIndex := 0;
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end;
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procedure TKWAnovaForm.AdjustConstraints;
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begin
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inherited;
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ParamsPanel.Constraints.MinWidth := Max(
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4*CloseBtn.Width + 3*CloseBtn.BorderSpacing.Left,
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2*OptionsGroup.Width);
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ParamsPanel.Constraints.MinHeight := DepOut.Top + DepOut.Height +
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VarList.BorderSpacing.Bottom + OptionsGroup.Height +
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ButtonBevel.Height + CloseBtn.BorderSpacing.Top + CloseBtn.Height;
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end;
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procedure TKWAnovaForm.Compute;
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var
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i, ind_var, dep_var, min_grp, max_grp, group, total_n : integer;
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nogroups: integer;
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ColNoSelected : IntdyneVec = nil;
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begin
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// Get column numbers of the independent and dependent variables
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ind_var := GetVariableIndex(OS3MainFrm.DataGrid, GrpEdit.Text);
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dep_var := GetVariableIndex(OS3MainFrm.DataGrid, DepEdit.Text);
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SetLength(ColNoSelected, 2);
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ColNoSelected[0] := ind_var;
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ColNoSelected[1] := dep_var;
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// Get minimum and maximum group codes
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total_n := 0;
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min_grp := MaxInt;
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max_grp := -MaxInt;
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for i := 1 to NoCases do
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begin
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if (not GoodRecord(OS3MainFrm.DataGrid, i, ColNoSelected)) then continue;
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group := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[ind_var,i])));
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if (group < min_grp) then min_grp := group;
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if (group > max_grp) then max_grp := group;
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total_n := total_n + 1;
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end;
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nogroups := max_grp - min_grp + 1;
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// Execute Kruskal-Wallis ANOVA
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if not Process_KruskalWallis(ColNoSelected, noGroups, min_grp) then
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exit;
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// Excute Mann-Whitney U Tests
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if MWUChk.Checked then
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begin
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MWUPage.TabVisible := true;
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Process_MannWhitney(ColNoSelected, NoGroups);
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end else
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MWUPage.TabVisible := false;
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end;
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procedure TKWAnovaForm.DepInClick(Sender: TObject);
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var
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index: integer;
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begin
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index := VarList.ItemIndex;
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if (index > -1) and (DepEdit.Text = '') then
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begin
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DepEdit.Text := VarList.Items[index];
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VarList.Items.Delete(index);
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end;
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UpdateBtnStates;
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end;
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procedure TKWAnovaForm.DepOutClick(Sender: TObject);
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begin
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if DepEdit.Text <> '' then
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begin
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VarList.Items.Add(DepEdit.Text);
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DepEdit.Text := '';
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end;
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UpdateBtnStates;
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end;
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procedure TKWAnovaForm.GrpInClick(Sender: TObject);
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var
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index: integer;
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begin
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index := VarList.ItemIndex;
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if (index > -1) and (GrpEdit.Text = '') then
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begin
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GrpEdit.Text := VarList.Items[index];
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VarList.Items.Delete(index);
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end;
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UpdateBtnStates;
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end;
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procedure TKWAnovaForm.GrpOutClick(Sender: TObject);
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begin
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if GrpEdit.Text <> '' then
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begin
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VarList.Items.Add(GrpEdit.Text);
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GrpEdit.Text := '';
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end;
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UpdateBtnStates;
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end;
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// Do Kruskal-Wallis One-Way ANOVA
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function TKWAnovaForm.Process_KruskalWallis(const ColNoSelected: IntDyneVec;
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ANumGroups, AMinGroup: Integer): Boolean;
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var
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i, j: Integer;
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group, totalN, numTieGroups, numTies, depVar, indVar: Integer;
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score, T, sumT, tieSum, avg, H, correction, correctedH, probChi: Double;
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rankSums: DblDyneVec = nil;
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groupCount: IntDyneVec = nil;
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X: DblDyneMat = nil;
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Ranks: DblDyneMat = nil;
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lReport: TStrings;
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begin
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Result := false;
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// Initialize arrays
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SetLength(Ranks, NoCases, 2);
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SetLength(X, NoCases, 2);
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SetLength(RankSums, ANumGroups);
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SetLength(groupCount, ANumGroups);
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for i := 0 to ANumGroups-1 do
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begin
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groupCount[i] := 0;
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rankSums[i] := 0.0;
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end;
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depVar := ColNoSelected[1];
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indVar := ColNoSelected[0];
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// Get data
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totalN := 0;
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for i := 1 to NoCases do
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begin
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if (not GoodRecord(OS3MainFrm.DataGrid, i, ColNoSelected)) then continue;
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score := StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[depVar, i]));
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group := round(StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[indVar, i])));
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group := group - AMinGroup + 1;
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if (group > ANumGroups) then
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begin
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ErrorMsg('Group codes must be sequential like 1 and 2!');
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exit;
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end;
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inc(groupCount[group-1]);
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X[i-1, 0] := score;
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X[i-1, 1] := group;
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inc(totalN);
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end;
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//Sort all scores in ascending order
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for i := 1 to totalN - 1 do
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begin
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for j := i + 1 to totalN do
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begin
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if (X[i-1, 0] > X[j-1, 0]) then
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begin
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Exchange(X[i-1, 0], X[j-1, 0]);
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Exchange(X[i-1, 1], X[j-1, 1]);
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end;
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end;
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end;
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// Store ranks
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for i := 0 to totalN - 1 do
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begin
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Ranks[i,0] := i+1;
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Ranks[i,1] := X[i,1];
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end;
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// Check for ties in ranks - replace with average rank and calculate
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// T for each tie and sum of the T's
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sumT := 0.0;
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numTieGroups := 0;
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i := 1;
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while i < totalN do
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begin
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j := i + 1;
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tieSum := 0;
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numTies := 0;
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while (j < totalN) do
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begin
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if (X[j-1, 0] > X[i-1, 0]) then
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break;
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if (X[j-1, 0] = X[i-1, 0]) then // match
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begin
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tieSum := tieSum + round(Ranks[j-1,0]);
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inc(numTies);
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end;
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inc(j);
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end;
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if (numTies > 0) then // At least one tie found
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begin
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tieSum := tieSum + Ranks[i-1,0];
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numTies := numTies + 1;
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avg := tieSum / numTies;
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for j := i to i + numTies - 1 do
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Ranks[j-1,0] := avg;
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t := numTies * numTies * numTies - numTies;
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sumT := sumT + t;
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inc(numTieGroups);
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i := i + (numTies - 1);
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end;
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inc(i);
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end; // next i
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// Calculate sum of ranks in each group
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for i := 0 to totalN - 1 do
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begin
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group := round(Ranks[i, 1]);
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rankSums[group-1] := rankSums[group-1] + Ranks[i, 0];
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end;
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// Calculate statistics
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H := 0.0;
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for j := 0 to ANumGroups-1 do
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H := H + (rankSums[j] * RankSums[j] / (groupCount[j]));
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H := H * (12.0 / ( totalN * (totalN + 1)) );
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H := H - (3.0 * (totalN + 1));
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correction := 1.0 - ( sumT / (totalN * totalN * totalN - totalN) );
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correctedH := H / correction;
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probChi := 1.0 - ChiSquaredProb(H, ANumGroups-1);
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// Report results
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lReport := TStringList.Create;
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try
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lReport.Add('KRUSKAL-WALLIS ONE-WAY ANALYSIS OF VARIANCE');
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lReport.Add('See pages 184-194 in S. Siegel: Nonparametric Statistics for the Behavioral Sciences');
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lReport.Add('');
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lReport.Add(' Score Rank Group');
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lReport.Add('');
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for i := 0 to totalN-1 do
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lReport.Add('%10.2f %10.2f %10.0f', [X[i,0], Ranks[i,0], Ranks[i,1]]);
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lReport.Add('');
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lReport.Add('Sum of Ranks in each Group');
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lReport.Add('Group Sum No. in Group');
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for i := 0 to ANumGroups-1 do
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lReport.Add('%3d %10.2f %5d', [i+AMinGroup, RankSums[i], groupCount[i]]);
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lReport.Add('');
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lReport.Add('No. of tied rank groups %8d', [numTieGroups]);
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lReport.Add('Statistic H uncorrected for ties: %8.4f', [H]);
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lReport.Add('Correction for Ties: %8.4f', [Correction]);
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lReport.Add('Statistic H corrected for ties: %8.4f', [CorrectedH]);
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lReport.Add('Corrected H is approx. chi-square with %d degrees of freedom and probability %.4f', [ANumGroups-1, ProbChi]);
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FReportFrame.DisplayReport(lReport);
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finally
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lReport.Free;
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end;
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Result := true;
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end;
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// Do Mann-Whitney U tests on group pairs
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procedure TKWAnovaForm.Process_MannWhitney(const ColNoSelected: IntDyneVec;
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ANumGroups: Integer);
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var
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alpha, score, value, tieSum, avg, T, sumT, U, U2, SD, z, prob: Double;
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nPairs: Integer;
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i, j, k, m: Integer;
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totalN, depVar, IndVar, numTies, numTieGroups, group, n1, n2, largestN: Integer;
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outline: String;
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lReport: TStrings;
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group_count: IntDyneVec = nil;
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RankSums: DblDyneVec = nil;
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X: DblDyneMat = nil;
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Ranks: DblDyneMat = nil;
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begin
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SetLength(X, NoCases, 2);
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SetLength(Ranks, NoCases, 2);
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SetLength(group_count, 2);
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SetLength(RankSums, ANumGroups);
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numTieGroups := 0;
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sumT := 0.0;
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alpha := StrToFloat(AlphaEdit.Text);
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nPairs := ANumGroups * (ANumGroups - 1) div 2;
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alpha := alpha / nPairs;
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indVar := ColNoSelected[0];
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depVar := ColNoSelected[1];
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lReport := TStringList.Create;
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try
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lReport.Add('New alpha for %d paired comparisons: %.3f', [nPairs, alpha]);
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for i := 1 to ANumGroups - 1 do
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begin
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for j := i + 1 to ANumGroups do
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begin
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lReport.Add('');
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lReport.Add('');
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lReport.Add('MANN-WHITNEY U TEST');
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lReport.Add('See pages 116-127 in S. Siegel: Nonparametric Statistics for the Behavioral Sciences');
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lReport.Add('');
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lReport.Add('Comparison of group %d with group %d', [i, j]);
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group_count[0] := 0;
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group_count[1] := 0;
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RankSums[0] := 0;
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RankSums[1] := 0;
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totalN := 0;
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for k := 1 to NoCases do
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begin
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if (not GoodRecord(OS3MainFrm.DataGrid, k, ColNoSelected)) then continue;
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score := StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[depVar, k]));
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value := StrToFloat(Trim(OS3MainFrm.DataGrid.Cells[indVar, k]));
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if round(value) = i then
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begin
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X[totalN, 0] := score;
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X[totalN, 1] := value;
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inc(group_count[0]);
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inc(totalN);
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end;
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if round(value) = j then
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begin
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X[totalN, 0] := score;
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X[totalN, 1] := value;
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inc(group_count[1]);
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inc(totalN);
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end;
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end; // next case k
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// Sort all scores in ascending order
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for k := 1 to totalN - 1 do
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begin
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for m := k + 1 to totalN do
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begin
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if (X[k-1, 0] > X[m-1, 0]) then
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begin
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Exchange(X[k-1, 0], X[m-1, 0]);
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Exchange(X[k-1, 1], X[m-1, 1]);
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end;
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end;
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end;
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// Get ranks for these two groups
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for k := 0 to totalN-1 do
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begin
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Ranks[k, 0] := k + 1;
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Ranks[k, 1] := X[k, 1];
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end;
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// Check for ties in ranks - replace with average rank and calculate
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// T for each tie and sum of the T's
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numTieGroups := 0;
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k := 1;
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while k < totalN do
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begin
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m := k + 1;
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tieSum := 0;
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numTies := 0;
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while (m < totalN) do
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begin
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if (X[m-1, 0] > X[k-1, 0]) then
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Break;
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if (X[m-1, 0] = X[k-1, 0]) then // match
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begin
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tieSum := tieSum + round(Ranks[m-1, 0]);
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inc(numTies);
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end;
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inc(m);
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end;
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if (numTies > 0) then //At least one tie found
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begin
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tieSum := tieSum + Ranks[k-1, 0];
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inc(numTies);
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avg := tieSum / numTies;
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for m := k to k + numTies - 1 do
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Ranks[m-1,0] := avg;
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T := numTies * numTies * numTies - numTies;
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sumT := sumT + T;
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inc(numTieGroups);
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k := k + (numTies - 1);
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end;
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inc(k);
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end; // next k
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// Calculate sum of ranks in each group
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for k := 0 to totalN-1 do
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begin
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group := round(Ranks[k, 1]);
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RankSums[group-1] := RankSums[group-1] + Ranks[k, 0];
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end;
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// Calculate U for larger and smaller groups
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n1 := group_count[0];
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n2 := group_count[1];
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if (n1 > n2) then
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begin
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group := i - 1;
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U := (n1 * n2) + ((n1 * (n1 + 1)) / 2.0) - RankSums[group];
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end else
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begin
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group := j - 1;
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U := (n1 * n2) + ((n2 * (n2 + 1)) / 2.0) - RankSums[group];
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end;
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U2 := (n1 * n2) - U;
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SD := (n1 * n2 * (n1 + n2 + 1)) / 12.0;
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SD := sqrt(SD);
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if (U2 > U) then
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z := (U2 - (n1 * n2 / 2)) / SD
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else
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z := (U - (n1 * n2 / 2)) / SD;
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prob := 1.0 - probz(z);
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// Report results
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lReport.Add(' Score Rank Group');
|
|
lReport.Add('');
|
|
for k := 1 to totalN do
|
|
lReport.Add('%10.2f %10.2f %10.0f', [X[k-1,0], Ranks[k-1,0], Ranks[k-1,1]]);
|
|
lReport.Add('');
|
|
lReport.Add('Sum of Ranks in each Group');
|
|
lReport.Add('Group Sum No. in Group');
|
|
group := i - 1;
|
|
lReport.Add('%3d %10.3f %5d', [i, RankSums[group], group_count[0]]);
|
|
group := j - 1;
|
|
lReport.Add('%3d %10.3f %5d', [j, RankSums[group], group_count[1]]);
|
|
lReport.Add('');
|
|
lReport.Add( 'No. of tied rank groups: %8d', [numTieGroups]);
|
|
if (n1 > n2) then
|
|
largestN := n1
|
|
else
|
|
largestN := n2;
|
|
if (largestN < 20) then
|
|
outline := Format( 'Statistic U: %8.4f',[U])
|
|
else
|
|
begin
|
|
if (U > U2) then
|
|
outline := Format('Statistic U: %8.4f',[U])
|
|
else
|
|
outline := Format('Statistic U: %8.4f',[U2]);
|
|
end;
|
|
lReport.Add(outline);
|
|
lReport.Add( 'z Statistic (corrected for ties): %8.4f', [z]);
|
|
lReport.Add( 'Prob. > z: %8.4f', [prob]);
|
|
if (n2 < 20) then
|
|
begin
|
|
lReport.Add('z test is approximate. Use tables of exact probabilities in Siegel.');
|
|
lReport.Add('(Table J or K, pages 271-277)');
|
|
end;
|
|
end; // next group j
|
|
end; // next group i
|
|
|
|
MWUReportFrame.DisplayReport(lReport);
|
|
|
|
finally
|
|
lReport.Free;
|
|
end;
|
|
end;
|
|
|
|
procedure TKWAnovaForm.Reset;
|
|
var
|
|
i: integer;
|
|
begin
|
|
inherited;
|
|
|
|
MWUPage.TabVisible := false;
|
|
|
|
GrpEdit.Clear;
|
|
DepEdit.Clear;
|
|
AlphaEdit.Text := FormatFloat('0.00', DEFAULT_ALPHA_LEVEL);
|
|
MWUChk.Checked := false;
|
|
VarList.Items.Clear;
|
|
for i := 1 to NoVariables do
|
|
VarList.Items.Add(OS3MainFrm.DataGrid.Cells[i, 0]);
|
|
|
|
UpdateBtnStates;
|
|
end;
|
|
|
|
|
|
procedure TKWAnovaForm.UpdateBtnStates;
|
|
begin
|
|
inherited;
|
|
GrpIn.Enabled := (VarList.Items.Count > 0) and (GrpEdit.Text = '');
|
|
DepIn.Enabled := (VarList.Items.Count > 0) and (DepEdit.Text = '');
|
|
GrpOut.Enabled := (GrpEdit.Text <> '');
|
|
DepOut.Enabled := (DepEdit.Text <> '');
|
|
end;
|
|
|
|
|
|
function TKWAnovaForm.Validate(out AMsg: String; out AControl: TWinControl): Boolean;
|
|
var
|
|
x: Double;
|
|
begin
|
|
Result := false;
|
|
|
|
if (NoVariables < 1) then
|
|
begin
|
|
AMsg := 'You must have grid data!';
|
|
AControl := VarList;
|
|
exit;
|
|
end;
|
|
|
|
if GrpEdit.Text = '' then
|
|
begin
|
|
AMsg := 'Group variable not specified.';
|
|
AControl := GrpEdit;
|
|
exit;
|
|
end;
|
|
|
|
if DepEdit.Text = '' then
|
|
begin
|
|
AMsg := 'Dependent variable not selected.';
|
|
AControl := DepEdit;
|
|
exit;
|
|
end;
|
|
|
|
if AlphaEdit.Text = '' then
|
|
begin
|
|
AMsg := 'Alpha level not specified.';
|
|
AControl := AlphaEdit;
|
|
exit;
|
|
end;
|
|
if not TryStrToFloat(AlphaEdit.Text, x) or (x <= 0) or (x >= 1) then
|
|
begin
|
|
AMsg := 'Alpha level must be a valid number between 0 and 1.';
|
|
AControl := AlphaEdit;
|
|
exit;
|
|
end;
|
|
|
|
Result := true;
|
|
end;
|
|
|
|
|
|
procedure TKWAnovaForm.VarListDblClick(Sender: TObject);
|
|
var
|
|
index: Integer;
|
|
s: String;
|
|
begin
|
|
index := VarList.ItemIndex;
|
|
if index > -1 then
|
|
begin
|
|
s := VarList.Items[index];
|
|
if GrpEdit.Text = '' then
|
|
GrpEdit.Text := s
|
|
else if DepEdit.Text = '' then
|
|
DepEdit.Text := s;
|
|
VarList.Items.Delete(index);
|
|
UpdateBtnStates;
|
|
end;
|
|
end;
|
|
|
|
|
|
procedure TKWAnovaForm.VarListSelectionChange(Sender: TObject; User: boolean);
|
|
begin
|
|
UpdateBtnStates;
|
|
end;
|
|
|
|
|
|
end.
|
|
|