APPENDIX - media.unpad.ac.idmedia.unpad.ac.id/thesis/120310/2014/120310140028_l_7180.pdf · 89...
Transcript of APPENDIX - media.unpad.ac.idmedia.unpad.ac.id/thesis/120310/2014/120310140028_l_7180.pdf · 89...
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APPENDIX
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Kuesioner Responden
Perkenalkan nama saya Julia Jasmine Nilsen, mahasiswa S1 jurusan
Manajemen Fakultas Ekonomi dan Bisnis Universitas Padjadjaran yang sedang
melakukan penelitian mengenai minat beli konsumen.
Sehubungan dengan hal tersebut, saya meminta kesediaan Saudara/i, untuk
mengisi kuesioner ini untuk kepentingan penelitian yang saya lakukan. Saudara/I
dimohon untuk membaca petunjuk dan keterangan pengisian dengan saksama
sebelum mengisi kuesioner.
Informasi yang saudara/I berikan bersifat rahasia dan hanya akan kami
pergunakan semata-mata hanya untuk penelitian ini. Jika anda memiliki
pertanyaan, kritik ataupun saran terkait penelitian ini, Anda dapat menanyakan
kepada saya melalui kontak berikut:
Nomor HP: 081288119665
E-Mail: [email protected]
ID Line: julianilsen
Atas kesediaan dan bantuan Bapak/Ibu/Saudara/i, saya mengucapkan terima
kasih.
Hormat Saya,
Julia Jasmine Nilsen
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Kuesioner Analisis Faktor-Faktor yang Mempengaruhi Minat Beli pada Toko
Tradisional di Bandung
Mohon kesediaan Bapak/Ibu/Saudara untuk mengisi angket ini.
Berilah tanda (X) pad anomer yang mengurutkan tingkat kesetujuan dimana:
1 = Tidak Setuju
2 = Kurang Setuju
3 = Netral/Biasa Saja
4 = Setuju
5 = Sangat Setuju
Jenis Kelamin:
• Perempuan
• Laki-Laki
Umur:
• <17 tahun
• 17-22 tahun
• 23-27 tahun
• 28-32 tahun
• 33-37 tahun
• 38-42 tahun
• >42 tahun
Pekerjaan:
• Pelajar/Mahasiswa
• PNS/BUMN/TNI/Polri
• Wiraswasta
• Ibu Rumah Tangga
• Tidak Bekerja
• Lainnya
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Kota tempat tinggal anda selama tiga tahun terakhir?
• Bandung
• Luar Bandung
No Pernyataan Tidak Setuju
Sangat Setuju
1 Kebersihan toko tradisional, memengaruhi minat saya dalam melakukan pembelian
1 2 3 4 5
2 Suhu toko tradisional, memengaruhi minat saya dalam melakukan pembelian
1 2 3 4 5
3 Tampilan dan tata letak ritel tradisional membuat saya tertarik untuk membeli suatu produk
1 2 3 4 5
4 Saya berbelanja di ritel tradisional ketika kondisi ekonomi saya dikategorikan rendah
1 2 3 4 5
5 Pekerjaan saya saat ini mendorong saya untuk berbelanja di ritel tradisional
1 2 3 4 5
6 Penampilan fisik karyawan toko memengaruhi keputusan pembelian saya
1 2 3 4 5
7 Saya berbelanja di toko-toko tradisional karena stafnya ramah 1 2 3 4 5
8 Toko-toko tradisional memiliki berbagai tipe produk 1 2 3 4 5
9 Toko-toko tradisional memiliki berbagai jenis produk 1 2 3 4 5
10 Jarak toko ke tempat saya tinggal memengaruhi keputusan pembelian saya
1 2 3 4 5
11 Ukuran toko memengaruhi keputusan pembelian saya 1 2 3 4 5
12 Belanja di ritel tradisional adalah bagian dari budaya Indonesia 1 2 3 4 5
13 Kelompok sebaya saya mempengaruhi saya untuk berbelanja di ritel tradisional
1 2 3 4 5
14 Teman-teman dan keluarga saya mempengaruhi saya untuk berbelanja di ritel tradisional
1 2 3 4 5
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15 Teman-teman saya di media sosial mempengaruhi saya untuk berbelanja di ritel tradisional
1 2 3 4 5
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Karena norma-norma saat ini di masyarakat, saya merasa berbelanja di ritel tradisional sangat didukung
1 2 3 4 5
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Produk yang saya beli dari ritel tradisional menunjukkan keunggulan kualitas secara keseluruhan sesuai dengan uang yang saya keluarkan
1 2 3 4 5
18 Saya merasa puas dengan produk yang saya beli dari ritel tradisional 1 2 3 4 5
19 Produk yang saya beli dari ritel tradisional melayani tujuan fungsional mereka
1 2 3 4 5
20 Produk yang saya beli dari ritel tradisional sepadan dengan jumlah uang yang saya keluarkan
1 2 3 4 5
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Questionnaire
My name is Julia Jasmine Nilsen, I am presently undergoing my
undergraduate bachelor study majoring in management in the Faculty of Economics
and Business within Universitas Padjadjaran. Currently, I am conducting a study in
regards to purchase intention of consumers.
In connection to this, I would like to ask for your willingness to fill out this
questionnaire for the sake of this research that is being conducted. However, before
filling out this questionnaire, please pay attention to the instructions and
information carefully.
The information provided is confidential and will be used solely for this
research. If you have any questions, criticisms, or suggestions in regards to this
research, you may contact me through the following:
Handphone Number: 081288119665
E-Mail: [email protected]
Line ID: julianilsen
Atas kesediaan dan bantuan Bapak/Ibu/Saudara/i, saya mengucapkan terima
kasih.
Regards,
Julia Jasmine Nilsen
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Questionnaire concerning the analysis of factors that affect purchase intentions of
traditional retails in Bandung.
Your willingness to fill this questionnaire is much appreciated.
Give and (X) on the number that represents your level of agreement:
1 = Highly Disagree
2 = Disagree
3 = Neutral
4 = Agree
5 = Highly Agree
Gender:
• Female
• Male
Age:
• <17 years
• 17-22 years
• 23-27 years
• 28-32 years
• 33-37 years
• 38-42 years
• >42 years
Occupation:
• Student
• PNS/BUMN/TNI/Polri
• Entrepreneur
• Housewife
• Unemployed
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• Others
City in which you have been living in for the past 3 years?
• Bandung
• Outside Bandung
No Statement Highly Disagree
Highly Agree
1 The cleanliness of a traditional store, affects my interest in making a purchasing
1 2 3 4 5
2 The temperature of a traditional store, affects my interest in making a purchase
1 2 3 4 5
3 Displays and layouts of traditional retails interest me in buying a product
1 2 3 4 5
4 I shop at traditional retails when my economic condition is categorized as low
1 2 3 4 5
5 My current occupation urges me to shop at traditional retails 1 2 3 4 5
6 The physical appearance of store clerks affects my purchasing decision
1 2 3 4 5
7 I shop at traditional stores because the staff is friendly 1 2 3 4 5
8 Traditional stores have a wide range of products 1 2 3 4 5
9 Traditional stores have a wide variety of products 1 2 3 4 5
10 The distance of a store to where I live affects my purchase decision
1 2 3 4 5
11 The size of a store affects my purchasing decisions 1 2 3 4 5
12 Shopping at traditional retails is part of the Indonesian culture 1 2 3 4 5
13 My peer groups influence me to shop at traditional retails 1 2 3 4 5
14 My friends and family influence me to shop at traditional retails 1 2 3 4 5
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15 My friends on social media influences me to shop at traditional retails
1 2 3 4 5
16
Due to the current norms in society, I feel that shopping at traditional retails is very supported
1 2 3 4 5
17
Products I purchase from traditional retails show overall excellence of quality according to the money I spend
1 2 3 4 5
18 I feel satisfied with the products I purchase from traditional retails
1 2 3 4 5
19 Products I purchase from traditional retails serve their functional purpose
1 2 3 4 5
20 Products I purchase from traditional retails are worth the amount of money I spend
1 2 3 4 5
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CFA
NORMALITY
One-Sample Kolmogorov-Smirnov Test
Unstandardized
Residual
N 211
Normal Parametersa,b Mean ,0000000
Std. Deviation ,00078291
Most Extreme Differences Absolute ,049
Positive ,033
Negative -,049
Test Statistic ,049
Asymp. Sig. (2-tailed) ,200c,d
a. Test distribution is Normal.
b. Calculated from data.
c. Lilliefors Significance Correction.
d. This is a lower bound of the true significance.
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DATE: 8/ 3/2018 TIME: 20:52 L I S R E L 8.80 BY Karl G. Jöreskog & Dag Sörbom This program is published exclusively by Scientific Software International, Inc. 7383 N. Lincoln Avenue, Suite 100 Lincolnwood, IL 60712, U.S.A. Phone: (800)247-6113, (847)675-0720, Fax: (847)675-2140 Copyright by Scientific Software International, Inc., 1981-2006 Use of this program is subject to the terms specified in the Universal Copyright Convention. Website: www.ssicentral.com The following lines were read from file E:\JULIA\CFA.spj: Factor Analysis Raw Data from file 'E:\JULIA\SEM.psf' Sample Size = 211 Latent Variables INT Relationships A= INT B= INT C= INT D= INT E= INT F= INT G= INT H= INT Path Diagram End of Problem Sample Size = 211 Factor Analysis Covariance Matrix A B C D E F -------- -------- -------- -------- -------- -------- A 0.87
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B 0.33 0.40 C 0.21 0.16 0.66 D 0.00 0.05 0.30 0.44 E 0.07 0.10 0.22 0.23 0.52 F 0.08 0.15 0.29 0.27 0.37 0.65 G 0.56 0.24 0.21 0.05 0.15 0.23 H 0.17 0.27 0.17 0.14 0.22 0.37 Covariance Matrix G H -------- -------- G 0.55 H 0.19 0.46 Factor Analysis Number of Iterations = 22 LISREL Estimates (Maximum Likelihood) Measurement Equations A = 0.35*INT, Errorvar.= 0.76 , R² = 0.14 (0.067) (0.076) 5.14 9.98 B = 0.36*INT, Errorvar.= 0.27 , R² = 0.32 (0.043) (0.029) 8.28 9.45 C = 0.46*INT, Errorvar.= 0.46 , R² = 0.31 (0.055) (0.048) 8.22 9.47 D = 0.34*INT, Errorvar.= 0.32 , R² = 0.27 (0.046) (0.033) 7.53 9.62 E = 0.48*INT, Errorvar.= 0.29 , R² = 0.44 (0.047) (0.033) 10.17 8.88 F = 0.65*INT, Errorvar.= 0.22 , R² = 0.66 (0.049) (0.032) 13.33 6.88 G = 0.41*INT, Errorvar.= 0.39 , R² = 0.30 (0.051) (0.041)
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8.05 9.51 H = 0.52*INT, Errorvar.= 0.19 , R² = 0.59 (0.042) (0.024) 12.41 7.67 Correlation Matrix of Independent Variables INT -------- 1.00 Goodness of Fit Statistics Degrees of Freedom = 186 Minimum Fit Function Chi-Square = 476.09 (P = 0.0) Normal Theory Weighted Least Squares Chi-Square = 481.67 (P = 0.0) Estimated Non-centrality Parameter (NCP) = 295.67 90 Percent Confidence Interval for NCP = (234.61 ; 364.40) Minimum Fit Function Value = 2.94 Population Discrepancy Function Value (F0) = 1.83 90 Percent Confidence Interval for F0 = (1.45 ; 2.25) Root Mean Square Error of Approximation (RMSEA) = 0.099 90 Percent Confidence Interval for RMSEA = (0.088 ; 0.11) P-Value for Test of Close Fit (RMSEA < 0.05) = 0.00 Expected Cross-Validation Index (ECVI) = 3.53 90 Percent Confidence Interval for ECVI = (3.15 ; 3.95) ECVI for Saturated Model = 2.85 ECVI for Independence Model = 30.05 Chi-Square for Independence Model with 210 Degrees of Freedom = 4826.73 Independence AIC = 4868.73 Model AIC = 571.67 Saturated AIC = 462.00 Independence CAIC = 4954.70 Model CAIC = 755.89 Saturated CAIC = 1407.66 Normed Fit Index (NFI) = 0.90 Non-Normed Fit Index (NNFI) = 0.93 Parsimony Normed Fit Index (PNFI) = 0.80 Comparative Fit Index (CFI) = 0.94
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Incremental Fit Index (IFI) = 0.94 Relative Fit Index (RFI) = 0.89 Critical N (CN) = 80.55 Root Mean Square Residual (RMR) = 0.063 Standardized RMR = 0.074 Goodness of Fit Index (GFI) = 0.78 Adjusted Goodness of Fit Index (AGFI) = 0.73 Parsimony Goodness of Fit Index (PGFI) = 0.63 The Modification Indices Suggest to Add an Error Covariance Between and Decrease in Chi-Square New Estimate B A 48.1 0.23 D A 12.9 -0.13 D B 15.1 -0.09 D C 33.4 0.17 E A 10.4 -0.11 E B 15.1 -0.09 E D 11.1 0.08 F A 42.2 -0.23 F B 40.3 -0.15 F D 9.9 0.08 F E 26.0 0.13 G A 138.6 0.46 G B 21.9 0.12 G D 17.1 -0.11 H B 43.7 0.13 H C 16.0 -0.10 H D 10.6 -0.07 H F 11.7 0.09 Time used: 0.016 Seconds
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2nd CFA
DATE: 8/13/2018 TIME: 15:44 L I S R E L 8.80 BY Karl G. Jöreskog & Dag Sörbom This program is published exclusively by Scientific Software International, Inc. 7383 N. Lincoln Avenue, Suite 100 Lincolnwood, IL 60712, U.S.A. Phone: (800)247-6113, (847)675-0720, Fax: (847)675-2140 Copyright by Scientific Software International, Inc., 1981-2006 Use of this program is subject to the terms specified in the Universal Copyright Convention. Website: www.ssicentral.com
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The following lines were read from file E:\JULIA\CFA.spj: SEM Raw Data from file 'E:\JULIA\EDIT.psf' Sample Size = 200 Latent Variables A B C D E F G X Relationships X1.1=A X1.2=A X1.3=A X2.1=B X2.2=B X3.1=C X3.2=C X4.1=D X4.2=D X5.1=E X5.2=E X6.1=F X6.2=F X6.4=F X6.5=F X7.1=G X7.2=G X7.3=G A B C D E F G = X Path Diagram End of Problem Sample Size = 200 SEM Covariance Matrix X1.1 X1.2 X1.3 X2.1 X2.2 X3.1 -------- -------- -------- -------- -------- -------- X1.1 1.06 X1.2 0.66 0.89 X1.3 0.68 0.55 0.99 X2.1 0.59 0.46 0.59 1.12 X2.2 0.30 0.31 0.32 0.63 0.84 X3.1 0.43 0.32 0.46 0.46 0.34 0.85 X3.2 0.39 0.44 0.43 0.47 0.38 0.32 X4.1 0.35 0.43 0.39 0.54 0.47 0.36 X4.2 0.57 0.49 0.53 0.51 0.23 0.46 X5.1 0.46 0.30 0.48 0.39 0.16 0.36
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X5.2 0.25 0.27 0.36 0.29 0.25 0.32 X6.1 0.33 0.29 0.33 0.35 0.35 0.34 X6.2 0.30 0.37 0.30 0.43 0.41 0.38 X6.4 0.25 0.38 0.34 0.36 0.31 0.24 X6.5 0.41 0.43 0.47 0.48 0.24 0.39 X7.1 0.75 0.60 0.55 0.61 0.47 0.43 X7.2 0.36 0.46 0.34 0.38 0.31 0.30 X7.3 0.65 0.52 0.79 0.50 0.18 0.32 Covariance Matrix X3.2 X4.1 X4.2 X5.1 X5.2 X6.1 -------- -------- -------- -------- -------- -------- X3.2 1.05 X4.1 0.72 1.19 X4.2 0.35 0.33 0.96 X5.1 0.42 0.27 0.41 1.07 X5.2 0.40 0.38 0.24 0.55 0.75 X6.1 0.30 0.41 0.37 0.48 0.42 0.90 X6.2 0.50 0.62 0.32 0.34 0.41 0.57 X6.4 0.52 0.43 0.33 0.41 0.43 0.48 X6.5 0.46 0.47 0.46 0.59 0.45 0.54 X7.1 0.81 0.77 0.44 0.45 0.36 0.34 X7.2 0.29 0.26 0.29 0.07 0.06 0.04 X7.3 0.35 0.28 0.52 0.58 0.34 0.36 Covariance Matrix X6.2 X6.4 X6.5 X7.1 X7.2 X7.3 -------- -------- -------- -------- -------- -------- X6.2 1.22 X6.4 0.69 1.02 X6.5 0.63 0.67 1.28 X7.1 0.56 0.50 0.55 1.21 X7.2 0.31 0.23 0.22 0.39 1.04 X7.3 0.15 0.27 0.49 0.46 0.22 1.03
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SEM Number of Iterations = 21 LISREL Estimates (Maximum Likelihood) Measurement Equations X1.1 = 0.86*A, Errorvar.= 0.33 , R² = 0.69 (0.045) 7.34 X1.2 = 0.74*A, Errorvar.= 0.35 , R² = 0.61 (0.060) (0.043) 12.35 8.15 X1.3 = 0.79*A, Errorvar.= 0.36 , R² = 0.64 (0.063) (0.046) 12.71 7.91 X2.1 = 0.99*B, Errorvar.= 0.14 , R² = 0.88 (0.081) 1.73 X2.2 = 0.64*B, Errorvar.= 0.43 , R² = 0.49 (0.070) (0.054) 9.20 7.87 X3.1 = 0.50*C, Errorvar.= 0.61 , R² = 0.29 (0.069) 8.83 X3.2 = 0.65*C, Errorvar.= 0.63 , R² = 0.40 (0.086) (0.083) 7.51 7.63 X4.1 = 0.60*D, Errorvar.= 0.83 , R² = 0.30 (0.098) 8.47 X4.2 = 0.55*D, Errorvar.= 0.66 , R² = 0.31 (0.074) (0.079) 7.40 8.32 X5.1 = 0.84*E, Errorvar.= 0.38 , R² = 0.65 (0.079) 4.74 X5.2 = 0.66*E, Errorvar.= 0.32 , R² = 0.57 (0.078) (0.053)
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8.35 5.97 X6.1 = 0.65*F, Errorvar.= 0.47 , R² = 0.47 (0.056) 8.41 X6.2 = 0.83*F, Errorvar.= 0.54 , R² = 0.56 (0.091) (0.069) 9.07 7.72 X6.4 = 0.79*F, Errorvar.= 0.40 , R² = 0.61 (0.084) (0.055) 9.36 7.20 X6.5 = 0.84*F, Errorvar.= 0.58 , R² = 0.55 (0.093) (0.074) 8.98 7.84 X7.1 = 0.79*G, Errorvar.= 0.58 , R² = 0.52 (0.069) 8.37 X7.2 = 0.38*G, Errorvar.= 0.89 , R² = 0.14 (0.066) (0.088) 5.72 10.10 X7.3 = 0.63*G, Errorvar.= 0.64 , R² = 0.38 (0.066) (0.067) 9.44 9.46 Structural Equations A = 0.92*X, Errorvar.= 0.15 , R² = 0.85 (0.073) (0.046) 12.52 3.35 B = 0.74*X, Errorvar.= 0.45 , R² = 0.55 (0.068) (0.095) 10.85 4.79 C = 0.61*X, Errorvar.= -0.22 , R² = 0.42 (0.12) (0.13) 8.96 -1.66 D = 0.77*X, Errorvar.= -0.36 , R² = 0.46 (0.12) (0.15) 9.77 -2.36 E = 0.70*X, Errorvar.= 0.52 , R² = 0.48 (0.083) (0.11) 8.35 4.61
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F = 0.71*X, Errorvar.= 0.50 , R² = 0.50 (0.089) (0.11) 7.94 4.67 G = 0.77*X, Errorvar.= -0.28 , R² = 0.53 (0.083) (0.069) 13.61 -4.02 Correlation Matrix of Independent Variables X -------- 1.00 Covariance Matrix of Latent Variables A B C D E F -------- -------- -------- -------- -------- -------- A 1.00 B 0.68 1.00 C 1.02 0.82 1.00 D 1.07 0.86 0.39 1.00 E 0.64 0.51 0.77 0.81 1.00 F 0.65 0.52 0.78 0.83 0.49 1.00 G 0.54 0.84 0.35 0.32 0.79 0.80 X 0.92 0.74 0.10 0.47 0.70 0.71 Covariance Matrix of Latent Variables G X -------- -------- G 0.80 X 0.63 0.70 Goodness of Fit Statistics Degrees of Freedom = 128 Minimum Fit Function Chi-Square = 611.03 (P = 0.0) Normal Theory Weighted Least Squares Chi-Square = 669.00 (P = 0.0) Estimated Non-centrality Parameter (NCP) = 541.00 90 Percent Confidence Interval for NCP = (463.80 ; 625.71) Minimum Fit Function Value = 3.07 Population Discrepancy Function Value (F0) = 2.72
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90 Percent Confidence Interval for F0 = (2.33 ; 3.14) Root Mean Square Error of Approximation (RMSEA) = 0.15 90 Percent Confidence Interval for RMSEA = (0.13 ; 0.16) P-Value for Test of Close Fit (RMSEA < 0.05) = 0.00 Expected Cross-Validation Index (ECVI) = 3.79 90 Percent Confidence Interval for ECVI = (3.41 ; 4.22) ECVI for Saturated Model = 1.72 ECVI for Independence Model = 27.41 Chi-Square for Independence Model with 153 Degrees of Freedom = 5417.93 Independence AIC = 5453.93 Model AIC = 755.00 Saturated AIC = 342.00 Independence CAIC = 5531.30 Model CAIC = 939.83 Saturated CAIC = 1077.01 Normed Fit Index (NFI) = 0.89 Non-Normed Fit Index (NNFI) = 0.89 Parsimony Normed Fit Index (PNFI) = 0.74 Comparative Fit Index (CFI) = 0.91 Incremental Fit Index (IFI) = 0.91 Relative Fit Index (RFI) = 0.87 Critical N (CN) = 55.76 Root Mean Square Residual (RMR) = 0.090 Standardized RMR = 0.088 Goodness of Fit Index (GFI) = 0.73 Adjusted Goodness of Fit Index (AGFI) = 0.64 Parsimony Goodness of Fit Index (PGFI) = 0.54 The Modification Indices Suggest to Add the Path to from Decrease in Chi-Square New Estimate X1.1 F 15.2 -0.31 X1.1 G 39.8 -0.75 X3.1 G 13.2 0.49 X3.2 A 31.3 -1.34 X4.1 A 25.6 -1.35 X4.1 C 21.8 -1.21 X4.2 G 10.5 0.45 X5.2 C 10.3 -0.62 X5.2 F 19.4 0.36 X5.2 G 10.2 0.35 X6.1 E 11.2 0.25 X7.2 A 11.4 0.73 X7.2 E 12.7 -0.42 X7.3 A 55.1 1.77
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X7.3 C 9.0 0.60 X7.3 F 10.4 -0.31 A C 23.0 0.98 A F 11.7 -0.28 A G 65.9 -1.11 C A 23.0 -1.40 C D 12.2 -0.62 D C 12.2 -1.01 D G 9.0 0.55 E F 26.2 0.59 F A 11.7 -0.90 F E 26.2 0.57 F G 9.3 0.46 G A 65.9 2.01 G D 9.0 0.43 G F 9.3 -0.26 The Modification Indices Suggest to Add an Error Covariance Between and Decrease in Chi-Square New Estimate C A 23.0 -0.22 D C 12.2 0.22 F A 11.7 -0.14 F E 26.2 0.29 G A 65.9 0.31 G D 9.0 -0.15 G F 9.3 -0.13 X3.2 X1.1 20.3 -0.16 X4.1 X1.1 18.5 -0.17 X4.1 X3.2 29.1 0.26 X5.1 X2.2 12.4 -0.13 X5.1 X4.1 13.7 -0.17 X5.2 X1.1 13.4 -0.11 X5.2 X2.2 8.8 0.10 X6.2 X4.1 15.0 0.19 X6.4 X1.1 10.3 -0.11 X6.4 X3.2 11.1 0.13 X6.5 X2.2 12.6 -0.14 X7.1 X1.1 20.9 0.16 X7.1 X1.3 8.8 -0.10 X7.1 X3.2 24.0 0.20 X7.1 X4.2 17.2 -0.17 X7.1 X6.1 11.1 -0.12 X7.2 X1.2 13.9 0.16 X7.2 X6.1 16.1 -0.20 X7.3 X1.1 9.8 0.11 X7.3 X1.3 49.1 0.26 X7.3 X2.2 14.8 -0.14 X7.3 X3.1 10.2 -0.14 X7.3 X3.2 12.4 -0.15 X7.3 X4.1 19.2 -0.21 X7.3 X5.1 17.4 0.18 X7.3 X6.2 28.5 -0.23 Time used: 0.047 Seconds
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1 5 5 5 5 4 4 2 4 5 4 4 4 5 5 5 5 5 5 5 5 2 5 4 4 4 4 4 2 5 2 2 2 2 2 2 1 4 5 5 4 4 3 3 5 5 2 2 2 3 3 3 3 1 3 2 3 3 3 3 3 5 3 4 5 4 5 4 4 2 2 1 1 4 1 2 1 3 2 2 5 5 5 2 5 4 5 5 4 4 2 4 4 2 2 2 2 4 2 4 4 4 4 5 4 6 4 4 5 4 5 3 2 1 2 5 1 2 2 2 1 5 4 4 5 5 7 4 4 5 4 5 4 4 5 3 4 5 4 4 5 5 5 4 4 5 5 8 5 5 5 5 2 2 2 1 1 2 2 2 4 5 2 4 4 5 5 4 9 5 4 5 5 5 3 4 4 2 4 4 2 2 2 2 2 4 5 5 2
10 3 4 5 3 4 3 2 2 3 2 2 2 2 4 4 4 4 3 5 4 11 4 4 5 2 2 3 4 4 4 2 2 4 2 2 3 4 4 4 5 4 12 4 4 4 4 5 4 5 2 2 4 4 2 4 4 4 4 4 4 4 4 13 3 4 2 3 2 2 2 4 3 4 3 2 2 4 2 3 3 3 2 3 14 4 4 4 2 1 2 1 2 2 2 2 2 4 2 2 2 4 4 4 2 15 4 5 5 3 4 3 3 3 3 3 3 4 3 3 4 4 4 4 5 4 16 4 4 5 4 4 4 4 3 4 4 4 4 4 4 4 4 4 4 5 4 17 4 4 5 4 4 3 3 2 2 3 3 4 3 2 2 3 4 4 5 3 18 3 5 5 3 4 2 3 3 3 3 3 3 2 3 2 2 4 3 5 2 19 3 4 2 3 3 2 3 2 2 3 2 2 2 2 3 4 4 3 2 4 20 3 4 5 3 4 2 1 2 3 4 3 3 3 2 2 3 3 3 5 3 21 5 3 3 5 4 3 3 3 3 1 1 5 5 5 3 4 5 5 3 4 22 3 4 5 3 2 4 3 2 2 5 1 3 3 2 3 3 4 3 5 3 23 3 4 3 3 3 2 3 2 3 3 3 3 2 4 3 3 4 3 3 3 24 4 5 5 2 3 2 2 4 2 1 1 2 2 2 3 2 3 4 5 2 25 3 4 3 3 3 3 2 3 2 3 2 2 2 3 2 2 3 3 3 2 26 4 4 4 4 3 2 3 2 2 3 3 4 3 3 2 3 4 4 4 3 27 2 3 2 2 3 1 2 2 2 4 4 4 3 1 3 2 4 2 2 2 28 4 4 5 4 4 2 2 2 1 4 2 4 2 5 5 2 4 4 5 2 29 3 5 5 3 3 2 2 2 5 5 5 5 5 3 2 4 3 3 5 4
106
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