総合的な経済・エネルギー・環境分析に資する技術情報の整備のための研究

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1 SNAIO SNAIO Let SNAIO87 /= Let SNAIO86 =GroupCol(SNAIO87,SNAIO87ToSNA86Col) SNAIO87ToSNA86Col Basic If Then Loop End Loop For Next SaveData LoadData 1 B=(I-(I-M)**A)'' Induce=B**(I-M)**Y 4 vehome@163.comm

2 5 Visual Economist

3 4

4 IEEJEBFix.xls Get SNAIO87.rtf Set SNAIO86.rtf Get VP86 95.rtf Get VP rtf Get MJika.rtf Get VP86 Jika.rtf Get V86X17 Jika.rtf Get V86X20 Jika rtf Calc IO Basic.rtf Set SNAIO to 24 Sectors.rtf Set SNAIO Induce to 24 Sectors.rtf Set EIO86 to 24 Sectors.rtf Common ItemName.rtf Common Group.rtf SNAIO.vep 1 14

5 !!!! SNAIO87 //Data source: //Real and Nominal have different sectors in value-added sectors. //Nominal has more sectors. For y=1995 To 2002 If y==1995 Or y==2000 Or y==2001 Or y==2002 Then!! 2 // FileName=Str(y)+"naisei87r-n-modified.xls"; // TableInfo="Table#SNAIO87.Y" + Str(y)+"#Year.Row.Column#R3C2-R97C100;";!! 2 FileName=Str(y)+"naisei87-n.xls"; TableInfo="Table#SNAIO87.Y" + Str(y)+"#Year.Row.Column#R3C2-R97C100;"; // LoadData FileName,1,5/1,TableInfo; // /* 1995 LoadData */ Next y; "1995naisei87-n.xls", 1, 1 5/1, 51 "Table#SNAIO87.Y1995#Year.Row.Column#R3C2-R97C100"; SNAIO SNAIO87.Y1995 VE Year.Row.Column R3C2-R97C100 VE

6 !! 87 SNAIO 86 SNAIO86"SNAIO xls" LoadModel "Common Group.rtf"; LoadModel "Get SNAIO87.rtf"; Table3D SNAIO87; // // //SNAIO87 Table3D TempSNAIO, SNAIO86; // Let TempSNAIO =GroupRow(SNAIO87,SNAIO87ToSNA86Row); Let SNAIO86 =GroupCol(TempSNAIO,SNAIO87ToSNA86Col); SNAIO8686 // // Let SNAIO86 GroupRow 88 = 0; Let SNAIO86 GroupCol 88 = 0; Let SNAIO86 GroupCol 97 -= GroupCol 98; Let SNAIO86 /=1000; //( //( // =413 - // 1000 LoadModel "Common ItemName.rtf";// Let ItemName[1] Of SNAIO86 = RowItemName86; Let ItemName[0] Of SNAIO86 = ColItemName86; //RowItemName86ColItemName86 // // Let AxisName Of SNAIO86 = {" "," ","","10 "}; //3!!SaveData SNAIO86, "SNAIO xls";!!SaveData SNAIO86, "SNAIOReal xls"; // //

7 !! VP LoadModel "Common Group.rtf"; FileName=" 95.xls"; // // TableInfo="Table#V #Row.Column#R2C2-R419C19;";// V LoadData FileName,1,4/1,TableInfo; Table2D VP861995,V ,V Tmp; Let V Tmp=GroupRow(V ,V417ToVP86Row); Let VP861995=GroupCol(V Tmp,V417ToVP86Col); LoadModel "Common ItemName.rtf"; Let ItemName[1] Of VP861995= ColItemNamePlus5Row; Let ItemName[0] Of VP861995= VColItemName; Let VP GroupRow 87 = 0; Let VP GroupRow 89 = 0; Let VP GroupRow 91 = 0; Let VP GroupRow 92 = 0; Let VP GroupRow 94 = 0; Let VP GroupRow 95 = 0; Let VP GroupRow 97 = 0; Let VP GroupRow 99 = 0; Let VP GroupRow 100 = 0; Let VP GroupCol 17 = 0; // For r=1 To 86 Next r; Let VP GroupRow 87 += GroupRow r ; For r= 88 To 96 Next r; // Let VP GroupRow 97 += GroupRow r ; // // // // // // // // Let VP GroupRow 99 += GroupRow 97; // Let VP GroupRow 99 += GroupRow 98 ; Let VP GroupRow 100 += GroupRow 87; // Let VP GroupRow 100 += GroupRow 99 ;

8 !! VP861995!! 1995"Get VP86 95.rtf" LoadModel "Common Group.rtf"; FileName=" 2000.xls"; TableInfo="Table#V #Row.Column#R2C2-R426C18;"; LoadData FileName,1,4/1,TableInfo; Table2D VP862000,V ; Let VP862000=GroupRow(V ,V419ToVP86Row); LoadModel "Common ItemName.rtf"; Let ItemName[1] Of VP862000= ColItemNamePlus5Row; Let ItemName[0] Of VP862000= VColItemName; Let VP GroupRow 87 = 0; Let VP GroupRow 89 = 0; Let VP GroupRow 91 = 0; Let VP GroupRow 92 = 0; Let VP GroupRow 94 = 0; Let VP GroupRow 95 = 0; Let VP GroupRow 97 = 0; Let VP GroupRow 99 = 0; Let VP GroupRow 100 = 0; Let VP GroupCol 17 = 0; //energy total For r=1 To 86 Next r; // Let VP GroupRow 87 += GroupRow r ; For r= 88 To 96 Next r; // Let VP GroupRow 97 += GroupRow r ; // Let VP GroupRow 99 += GroupRow 97; // Let VP GroupRow 99 += GroupRow 98 ; Let VP GroupRow 100 += GroupRow 87; // Let VP GroupRow 100 += GroupRow 99 ;

9 !! SNAIO MJika86 LoadModel "Common Group.rtf"; // Table2D MJika1995,MJika2000; Table3D MJika86; // FileName=".xls";!! TableInfo="Table#MJika1995#. #R2C2-R403C3;"; LoadData FileName,1,4/1,TableInfo; // 95 TableInfo="Table#MJika2000#. #R2C2-R405C3;"; LoadData FileName,2,4/1,TableInfo; //2 95 Table2D MJika861995,MJika862000; Let MJika861995=GroupRow(MJika1995,MJika398To86Row_Y1995); Let MJika862000=GroupRow(MJika2000,MJika382To86Row_Y2000); Make MJika86=<MJika861995>(ItemName="Y1995") And <MJika862000>(ItemName="Y2000"); LoadModel "Common ItemName.rtf"; Let ItemName[1] Of MJika86= InterItemName87; Let AxisName Of MJika86= {" "," ",""};!!SaveData MJika86,"MJika86.xls";!!SaveData MJika862000,"MJika xls";

10 !!!! SNAIO!! Table2D VP861995; LoadModel "Get VP86 95.rtf"; MVP1995=<VP861995>; //1995 Matrix Table2D VP862000; LoadModel "Get VP rtf"; MVP2000=<VP862000>; //2000 Matrix Table3D MJika86; Table2D MJika861995,MJika862000; LoadModel "Get MJika.rtf"; MJika861995Matrix=<MJika861995>; MJika862000Matrix=<MJika862000>; //1995 Matrix //2000 Matrix!!1995 For i=1 To 2// =2 Next i; TotalJikaEnergy=MJika861995Matrix[87,i]; RoadJikaEnergy=MVP1995[105,4+(i-1)*3]; For j=1 To 86 Next j;!!2000 JikaEnergy=MJika861995Matrix[j,i]; Let VP861995[j,4+(i-1)*3] +=JikaEnergy/TotalJikaEnergy*RoadJikaEnergy; // Let VP861995[62,4+(i-1)*3] -=RoadJikaEnergy; For i=1 To 2// =2 Next i; TotalJikaEnergy=MJika862000Matrix[87,i]; RoadJikaEnergy=MVP2000[105,4+(i-1)*3]; For j=1 To 86 Next j; JikaEnergy=MJika862000Matrix[j,i]; Let VP862000[j,4+(i-1)*3] +=JikaEnergy/TotalJikaEnergy*RoadJikaEnergy; // Let VP862000[62,4+(i-1)*3] -=RoadJikaEnergy;

11 !! V86X17 V86X17Jika.xls!! LoadModel "Get VP86 Jika.rtf"; // Table4D V86X17; // Table3D VP86, VT86; Table2D VP861995,VP862000; Make VP86= <VP861995>(ItemName="y1995") And <VP862000>(ItemName="y2000"); //2 2 3 Let VP86 /=1000; Let VT86=VP86; // 1000 // //MCal Let VT86 GroupCol 1 *= ( )/2; Let VT86 GroupCol 2 *= 9126; Let VT86 GroupCol 3 *= 9800; Let VT86 GroupCol 4 *= 8266; Let VT86 GroupCol 5 *= 8767; Let VT86 GroupCol 6 *= 8767; // //NGkm3 // // // //

12 Let VT86 GroupCol 7 *= 9126; Let VT86 GroupCol 8 *= 9341; Let VT86 GroupCol 9 *= 9962; Let VT86 GroupCol 10 *= 8146; Let VT86 GroupCol 11 *= 11992; Let VT86 GroupCol 12*= 7191; Let VT86 GroupCol 13 *= 860; Let VT86 GroupCol 14 *= 860; Let VT86 GroupCol 15 *= 9818; Let VT86 GroupCol 16 *= 238.9; Let VT86 GroupCol 17 += GroupCol 13; Let VT86 GroupCol 17 += GroupCol 14; Let VT86 GroupCol 17 *= 0.39/0.4; Let VT86 GroupCol 17 += GroupCol 1; Let VT86 GroupCol 17 += GroupCol 2; Let VT86 GroupCol 17 += GroupCol 3; Let VT86 /=10000; // // //9 // // // // // // // //hydro and nuclear and thermal //hydro and nuclear and thermal //39% the share of hydro and nuclear //coal //oil //ng // to ktoe Make V86X17 =VP86(ItemName="PUnit") And VT86 (ItemName="TUnit") ;// Let V86X17 GroupCol 13 *=1000; Let V86X17 GroupCol 14 *=1000; // to ktoe // to ktoe Let AxisName Of V86X17 = {" "," ",""," "};// VE SaveData V86X17,"V86X17Jika.xls"; //

13 !! V86X20Fix V86X20FixT Table3D IEEJEB20Fixed; Table2D IEEJEB20FIXED.Y1995,IEEJEB20FIXED.Y2000; Table2D IEEJEB20FIXED.Y2001,IEEJEB20FIXED.Y2002; LoadData "IEEJEBFix.xls" ; //IEEJ IEEJEB20Fixed.xls // Table2D V86ToEB7Info; LoadData "EBToSNAIO86.xls" ;!!EBToSNAIO86.xls SNA86 2DTable2V86ToEB7Info //LoadModel "Get VP86 Jika.rtf"; LoadData "V86X17Jika.xls"; // // V86X17 Table4D V86X17; Table3D V86X20QIO; // //Table2D V86X20QIO.Y1995,V86X20QIO.Y2000; //Table2D V86X20QIO.Y1995, Table2D V86X20QIO.Y2000; //Table2D V86X20QIO.Y2001,V86X20QIO.Y2002; Let V86X20QIO=V86X17["PUNIT"]; //Let V86X20QIO=V86X17[1];!!!! // // Index //

14 Let V86X20QIO Remove GroupRow 101 Step 5 ; Let V86X20QIO Insert GroupCol 16 Step 2; Let V86X20QIO Move GroupCol 16 Step 3; Let V86X20QIO GroupCol 18 =GroupCol 13; Let V86X20QIO GroupCol 18 +=GroupCol 14; Let V86X20QIO Move GroupCol 15 Step 2; Let V86X20QIO Move GroupCol 11 Step 5 ; Let V86X20QIO Move GroupCol 3 Step 13 ; Let V86X20QIO GroupCol 12 =0; Let V86X20QIO GroupCol 11 =0; Let V86X20QIO Move GroupCol 10 Step -8; Let V86X20QIO Move GroupCol 10 Step -5; Let V86X20QIO.Y2000[54,2]=0; Let V86X20QIO.Y2000[55,2]=0; Let V86X20QIO.Y2000[87,2] +=15.271; Let V86X20QIO.Y2000[90,2]=0; Let V86X20QIO Insert GroupCol 2 Step 1; Let V86X20QIO GroupCol 3 =GroupCol 2; Let V86X20QIO GroupCol 15=GroupCol 2; Let V86X20QIO GroupRow 90 +=GroupRow 88; Let V86X20QIO GroupRow 88 =0;// //5 //2 // // // // //LPG // //other petro // // // // // // // //oil coke //1 // // GDP //Make V86X20QIO =VP86(ItemName="PUnit") And VT86 (ItemName="TUnit") ; // Let V86X20QIO Copy GroupSheet 2 Step 2; Let ItemName[2] Of V86X20QIO={"Y1995","Y2000","Y2001","Y2002"};

15 Energy20ItemName={ ""," "," ",""," "," "," "," "," "," "," "," "," "," "," "," "," ",""}; Let ItemName[0] Of V86X20QIO =Energy20ItemName; // //!! IEEJEB7.xls Energy1995= 89894, 27637,18639, , 42888, 35392, 4241, 26071, 41471, 26187, 41224, 2310, 5889, 9496, 4153, 23996, 58055, 20704,169800, 369 ; Energy2000= 99622, 27781, 20597, , 48345, 39316, 4004, 26396, 38730, 26649, 35919, 2187, 5494, 9795, 4480, 23569, 71874, 25096, , 531 ; Energy2001= , 27269, 18710, , 48560, 37799, 4362, 26291, 37641, 27912, 31466, 2057, 5377, 9428, 4554, 23104, 74228, 25926, , 540 ; Energy2002= , 27940, 18983, , 49267, 37798, 4116, 25843, 36325, 27952, 29529, 2070, 5084, 9311, 4159, 22989, 73574, 27343, , 549 ; Energy12=Energy1995,Energy2000,Energy2001,Energy2002; //4 LoadModel "Common Group.rtf"; //LoadModel "Set SNAIO86.rtf"; Table3D SNAIO86; LoadData "SNAIO xls"; //SNA // Table3D SNA20Tmp,V86X20Fix,EB7Fix; Table2D SNA20Tmp.Y1995,SNA20Tmp.Y2000,SNA20Tmp.Y2001,SNA20Tmp.Y2002; Table2D V86X20Fix.Y1995,V86X20Fix.Y2000,V86X20Fix.Y2001,V86X20Fix.Y2002; Table2D IEEJEB7FIXED.Y1995,IEEJEB7FIXED.Y2000; Table2D IEEJEB7FIXED.Y2001,IEEJEB7FIXED.Y2002;

16 !! Let SNA20Tmp =GroupRow(SNAIO86,SNA86To6Row); // Let SNA20Tmp Remove GroupRow 6 ; Let SNA20Tmp Remove GroupRow 3 ; Let SNA20Tmp Insert GroupRow 2 Step 15; For r=11 To 13 Let SNA20Tmp GroupRow r =GroupRow 18; Next r; Let SNA20Tmp Remove GroupRow 18 ; Let SNA20Tmp Insert GroupRow 18; Let SNA20Tmp GroupRow 14=GroupRow 2; // // // // Let SNA20Tmp Copy GroupRow 2 Step 1; // Let ItemName[1] Of SNA20Tmp =Energy20ItemName; Let V86X20Fix=SNA20Tmp; Let V86X20Fix=0; // MAgg=<V86ToEB7Info>; IOIndex=1;//0, using SNA, 1, using QIO busingvp95=1;!!1= 95 0 Set Y=Y1995,Y2000,Y2001,Y2002; Table2D V86X20QIO.[Y1995]; // Y

17 Table2D thevpio; Loop Y YIndex=Val(Y); MEnergyFix.[Y]=<IEEJEB20Fixed.[Y]>; MSNAIO.[Y]=<SNA20Tmp.[Y]>';!! If busingvp95==0 Then // Else Let thevpio=v86x20qio.[y];!! ; // //SNA // Let thevpio=v86x20qio.[y1995]; //1995 MVPIO=<theVPIO>; Print;Print; // MSNAIO_QIO=MSNAIO.[Y],MVPIO;//!! SNAIO QIO For EnergyNo=1 To 20 If EnergyNo==1 Or EnergyNo==12 Or EnergyNo==13 Or EnergyNo==14 Or EnergyNo==19 Then Else IOIndex=0;//SNA IOIndex=1;// EnergyTotal=Energy12[EnergyNo,YIndex]; MoneyTotal=0;

18 For r=87 To 92// Next r; MoneyTotal=MoneyTotal+MSNAIO_QIO[r,EnergyNo+IOIndex*20]; For EBFixRowNo=1 To 42 If MoneyTotal>0 Then //it is possible that MoneyTotal will be used up, so do not give error messages repeatedly //but for // EnergyFix=MEnergyFix.[Y][EBFixRowNo,EnergyNo]; If EnergyFix <0 Then EnergyFix =-EnergyFix ; //not useful now If EnergyFix>0 Or (EnergyFix <0 And EBFixRowNo<=5) Then // For SearchRow=1 To 116 MoneySubTotal=0; AggEBNo=MAgg[SearchRow,1]; If AggEBNo==EBFixRowNo Then i=0; While 1 //MAgg // // SNA AggSNANo=MAgg[SearchRow+i,3]; //3SNA MoneySubTotal=MoneySubTotal+MSNAIO_QIO[AggSNANo,EnergyNo+IOIndex*20]; i++; If MAgg[SearchRow+i,1] <> 0 Then // Loop

19 End While; Exit While; If MoneySubTotal==0 Then If i==1 Then // Else // IO MoneySubTotal AggSNANo=MAgg[SearchRow,3];//3SNA Let V86X20Fix.[Y][EnergyNo,AggSNANo]+=EnergyFix; Let SNA20Tmp.[Y][EnergyNo,AggSNANo]=0;//2 1 Let thevpio[aggsnano,energyno]=0;//21 Print "Warn (direct assigned data in Sub-sectors).";Print;Print "The Year =",YIndex, "; Energy in EB =(",EBFixRowNo,",",EnergyNo,")=",EnergyFix, "; The amount Of its Sub total money is ",MoneySubTotal; Print ; Print "Warn (can not assign data in Sub-sectors).";Print;Print "The Year =",YIndex, "; Energy in EB =(",EBFixRowNo,",",EnergyNo,")=",EnergyFix, "; The amount Of its Sub total money is ",MoneySubTotal; Print ; Let V86X20Fix.[Y][EnergyNo,46]+=EnergyFix;//46 is Let SNA20Tmp.[Y][EnergyNo,46]=0;//2 1 Let thevpio[46,energyno]=0;//2 1 Else i=0;// SNA

20 Next SearchRow; While 1 // AggSNANo=MAgg[SearchRow+i,3];//3SNA money=msnaio_qio[aggsnano,energyno+ioindex*20]; Energy=money/MoneySubTotal*EnergyFix; // Let V86X20Fix.[Y][EnergyNo,AggSNANo]+=Energy; Let SNA20Tmp.[Y][EnergyNo,AggSNANo]=0;//2 1 Let thevpio[aggsnano,energyno]=0;//2 1 i++; If MAgg[SearchRow+i,1] <> 0 Then // Loop End While; Exit While; If EBFixRowNo>=7 Then// MoneyTotal=MoneyTotal-MoneySubTotal; If EBFixRowNo>=7 Then// EnergyTotal=EnergyTotal-EnergyFix; If MoneyTotal<=0 And EnergyTotal>0 Then Print "Warn (money/q used up, left Energy is directly assinged To [non-specific-industry]).";print;print "The Year =",YIndex, ". Fixed-Energy ",EnergyFix," in EB( ",EBFixRowNo,", ",EnergyNo,"), left-energy =",EnergyTotal; Print;

21 Let V86X20Fix.[Y][EnergyNo,46]+=EnergyTotal;//46 is EnergyTotal=0; Exit Loop; If EnergyTotal <0 Then Next EBFixRowNo; Print "Error, EnergyLeft <0:", EBFixRowNo,EnergyNo,EnergyTotal;Print; If MoneyTotal>1 And EnergyTotal >0 Then!!/1.2. MSNAIONew=<SNA20Tmp.[Y]>'; MQIONew=<theVPIO>; MSNAIO_QIONew=MSNAIONew,MQIONew;// For r=1 To 92 // money=msnaio_qionew[r,energyno+ioindex*20]; If money <>0 Then Let V86X20Fix.[Y][EnergyNo,r]+=money/MoneyTotal*EnergyTotal; Next r; ElseIf EnergyTotal>0 Then // Let V86X20Fix.[Y][EnergyNo,46]+=EnergyTotal; EnergyTotal=0;

22 End Loop; Next EnergyNo; Table3D V86X20FixT; Make V86X20FixT= <V86X20Fix.Y1995>'(ItemName="Y1995") And <V86X20Fix.Y2000>'(ItemName="Y2000") And <V86X20Fix.Y2001>'(ItemName="Y2001") And <V86X20Fix.Y2002>'(ItemName="Y2002"); LoadModel "Common ItemName.rtf"; Let ItemName[0] Of V86X20FixT =Energy20ItemName; Let ItemName[1] Of V86X20FixT =ColItemName86; Let ItemName[1] Of V86X20Fix =Energy20ItemName; Let ItemName[0] Of V86X20Fix =ColItemName86; Let AxisName Of V86X20FixT = {" "," ","","ktoe"}; If busingvp95==0 Then Else SaveData V86X20Fix,"V86X20Jika xls"; SaveData V86X20FixT,"V86X20TJika xls" ; SaveData V86X20Fix,"V86X20Jika UsingVP95.xls" ; SaveData V86X20FixT,"V86X20TJika UsingVP95.xls";

23 LoadModel "Common ItemName.rtf"; //LoadData "V86X20Fix.xls"; //LoadData "SNAIO86.xls"; LoadData "SNAIOReal86.xls" ; Table3D SNAIO86; Let SNAIO86 Insert GroupCol 95;// Let SNAIO86 GroupCol 96=GroupCol 98; Let SNAIO86 GroupCol 96-=GroupCol 97; Set YearSet=Y1995,Y2000,Y2001,Y2002; Table2D SNAIO86.[Y1995]; Matrix Y8.P.INDUCE.[YearSet]; Loop YearSet IO =<SNAIO86.[YearSet]>; //Data // Y N =86; //Number of Intermediate Sector I = Ident[N]; //Unit Matrix Xij = IO[1,1,N,N]; //Intermediate Sector Xi = IO[1,N+1,N,N+1]; //Column of Intermediate Sector y = IO[1,96,N,96]; //Domestic Final Y8 = IO[1,88,N,95]; //Domestic Final, Excluding Sub-Total E = IO[1,97,N,97]; //Export //ERR = IO[1,62,N,62]; //Error, MX = -IO[1,99,N,99]; //Impirt X = IO[1,101,N,101]; //Domestic Production A = (Xij'/X)'; //Input Coeffienct M = (MX/ (Xi+y))~; //Import Coeffienct B =(I-(I-M)**A)''; //Inversed Matrix //Let Y8[42,1]=10;

24 Y8.P.INDUCE.[YearSet] = B** (I-M)** Y8; //Induced Production of final demand E.P.INDUCE.[YearSet] = B**E; //Induced Production of Export //ERR.P.INDUCE = B** ERR; //Induced Production of error.= SumCol(Y8.P.INDUCE.[YearSet]) + E.P.INDUCE.[YearSet] /*+ ERR.P.INDUCE*/ -X; //=0?, CHECK IT! // Report. ; Y8.M.INDUCE.[YearSet] Demand =(M**A**B**(I-M)+M)**Y8; //Induced Import of Final E.M.INDUCE.[YearSet] =M**A**B**E; //Induced Import of Export //ERR.M.INDUCE =M**A**B**ERR; //Induced Import of Error.= SumCol(Y8.M.INDUCE.[YearSet]) + E.M.INDUCE.[YearSet] /*+ ERR.M.INDUCE*/ -MX; //=0?, CHECK IT! Let RowItemName Of B =InterItemName; //ItemName info Let ColItemName Of B =InterItemName; End Loop; Table3D SNAIO86ProdInduce; Make SNAIO86ProdInduce=(Y8.P.INDUCE.y1995,E.P.INDUCE.Y1995) (Y8.P.INDUCE.y2000,E.P.INDUCE.Y2000) (Y8.P.INDUCE.y2001,E.P.INDUCE.Y2001) (Y8.P.INDUCE.y2002,E.P.INDUCE.Y2002) (ItemName="Y1995") And (ItemName="Y2000") And (ItemName="Y2001") And (ItemName="Y2002"); Let ItemName [1] Of SNAIO86ProdInduce =InterItemName; Let ItemName [0] Of SNAIO86ProdInduce =FinalItemName; SaveData SNAIO86ProdInduce,"SNAIO86ProdInduce.xls";

25 LoadModel "Common Group.rtf"; LoadModel "Common ItemName.rtf"; LoadData "SNAIOReal86.xls"; Table3D SNAIO24, SNAIO86; Let SNAIO24= GroupRow(SNAIO86,SNAIO86To24); Let ItemName[1] Of SNAIO24=RowItemName24; //Let ItemName[2] Of SNAIO24={"Y1995","Y2000","Y2001","Y2002"}; SaveData SNAIO24, "SNAIO24.xls" ;

26 LoadModel "Common Group.rtf"; LoadModel "Common ItemName.rtf"; LoadData "SNAIO86ProdInduce.xls"; Table3D SNAIO86ProdInduce,SNAIO24ProdInduce; Let SNAIO24ProdInduce= GroupRow(SNAIO86ProdInduce,SNAIO86To24); Let ItemName[1] Of SNAIO24ProdInduce=RowItemName24; SaveData SNAIO24ProdInduce, "SNAIO24ProdInduce.xls";

27 LoadModel "Common Group.rtf"; LoadModel "Common ItemName.rtf"; Table3D EIO24, EIO86; LoadData "EIO xls",1,2/1, "Table#EIO #Book.Sheet.Row.Column#R3C2:R109C26"; LoadData "EIO xls",1,2/1, "Table#EIO #Book.Sheet.Row.Column#R3C2:R109C26"; LoadData "EIO xls",1,2/1, "Table#EIO #Book.Sheet.Row.Column#R3C2:R109C26"; LoadData "EIO xls",1,2/1, "Table#EIO #Book.Sheet.Row.Column#R3C2:R109C26"; Let EIO24= GroupRow(EIO86,SNAIO86To24Plus6); // Let EIO24 GroupCol 25 =GroupCol 23; Let EIO24 GroupCol 25 /=GroupCol 24; Let EIO24 GroupCol 25 *=1000; Let ItemName[1] Of EIO24=RowItemName24Plus6; // let 25 // 24 // 1000 Let ItemName[2] Of EIO24={"Y1995","Y2000","Y2001","Y2002"}; SaveData EIO24, "EIO24T xls" ; Table3D V86X20FixT; LoadData "EIO86T UsingVP95.xls" ; Let EIO24= GroupRow(V86X20FixT,SNAIO86To24Plus6); Let ItemName[1] Of EIO24=RowItemName24Plus6; SaveData EIO24, "EIO24T UsingVP95.xls";

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