——– ——–
SAT 1. 00

COM 0. 69 1. 00
(0. 05)
13. 11

RKT 0. 82 0. 73 1. 00
(0. 04) (0. 05)
18. 40 15. 35

Goodness of Fit Statistics

Degrees of Freedom = 101
Minimum Fit Function Chi-Square = 310. 19 (P = 0. 0)
Normal Theory Weighted Least Squares Chi-Square = 298. 36 (P = 0. 0)
Estimated Non-centrality Parameter (NCP) = 197. 36
90 Percent Confidence Interval for NCP = (149. 34 ; 253. 02)

Minimum Fit Function Value = 1. 58
Population Discrepancy Function Value (F0) = 1. 01
90 Percent Confidence Interval for F0 = (0. 76 ; 1. 29)
Root Mean Square Error of Approximation (RMSEA) = 0. 058
90 Percent Confidence Interval for RMSEA = (0. 047 ; 0. 081)
P-Value for Test of Close Fit (RMSEA 0. 05) = 0. 00

Expected Cross-Validation Index (ECVI) = 1. 88
90 Percent Confidence Interval for ECVI = (1. 63 ; 2. 16)
ECVI for Saturated Model = 1. 39
ECVI for Independence Model = 16. 55

Chi-Square for Independence Model with 120 Degrees of Freedom = 3211. 93
Independence AIC = 3243. 93
Model AIC = 368. 36
Saturated AIC = 272. 00
Independence CAIC = 3312. 46
Model CAIC = 518. 27
Saturated CAIC = 854. 52

Normed Fit Index (NFI) = 0. 90
Non-Normed Fit Index (NNFI) = 0. 92
Parsimony Normed Fit Index (PNFI) = 0. 76
Comparative Fit Index (CFI) = 0. 93
Incremental Fit Index (IFI) = 0. 93
Relative Fit Index (RFI) = 0. 89

Critical N (CN) = 87. 55

Root Mean Square Residual (RMR) = 0. 074
Standardized RMR = 0. 074
Goodness of Fit Index (GFI) = 0. 92
Adjusted Goodness of Fit Index (AGFI) = 0. 89
Parsimony Goodness of Fit Index (PGFI) = 0. 72

The Modification Indices Suggest to Add the
Path to from Decrease in Chi-Square New Estimate
q13 RKT 11. 9 0. 59
q16 COM 9. 1 -0. 33
q19 SAT 10. 6 0. 31

The Modification Indices Suggest to Add an Error Covariance
Between and Decrease in Chi-Square New Estimate
q16 q13 11. 3 -0. 19
q16 q15 19. 3 0. 25
q18 q17 13. 6 0. 21
q19 q17 12. 0 0. 17
q21 q16 7. 9 -0. 11

Time used: 0. 078 Seconds
خروجی مدل یابی معادلات ساختاری برای فرضیات تحقیق

DATE: 6/16/2014
TIME: 18:16

L I S R E L 8. 54

BY

Karl G. J?reskog & Dag S?rbom

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. , 1981-2002
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 C:UsersuserDesktopMain HAAA. SPJ:

Raw Data from file ‘C:UsersuserDesktopMain HDATA PERFECT. psf’
Sample Size = 197
Latent Variables NOA KZK PSH
Relationships
Q1 = NOA
Q2 = NOA
Q3 = NOA
Q4 = NOA
Q5 = NOA
Q6 = KZK
Q7 = KZK
Q8 = KZK
Q9 = KZK
Q10 = KZK
Q11 = KZK
SAT = PSH
COM = PSH
RKT = PSH
KZK = NOA
PSH = NOA KZK
Path Diagram
End of Problem

Sample Size = 197

Covariance Matrix

Q6 Q7 Q8 Q9 Q10 Q11
——– ——– ——– ——– ——– ——–
Q6 0. 96
Q7 0. 35 1. 22
Q8 0. 37 0. 47 1. 19
Q9 0. 22 -0. 09 -0. 09 1. 23
Q10 0. 33 0. 31 0. 55 0. 12 1. 18
Q11 0. 23 0. 13 0. 42 0. 10 0. 71 1. 11
SAT 0. 22 0. 08 0. 36 0. 07 0. 47 0. 43
COM 0. 21 0. 11 0. 28 0. 01 0. 38 0. 28
RKT 0. 14 0. 11 0. 30 0. 05 0. 33 0. 34
Q1 0. 04 0. 12 0. 26 0. 12 0. 26 0. 35
Q2 0. 22 0. 24 0. 31 0. 07 0. 21 0. 28
Q3 0. 23 0. 04 0. 24 0. 25 0. 39 0. 30
Q4 0. 23 0. 10 0. 27 -0. 05 0. 29 0. 30
Q5 0. 21 0. 08 0. 16 -0. 02 0. 15 0. 07

این مطلب رو هم توصیه می کنم بخونین:   پایان نامه رایگان با موضوع ابزار پژوهش، جبران خدمات، بازنشستگان

Covariance Matrix

SAT COM RKT Q1 Q2 Q3
——– ——– ——– ——– ——– ——–
SAT 0. 45
COM 0. 30 0. 57
RKT 0. 34 0. 37 0. 59
Q1 0. 21 -0. 01 0. 25 1. 14
Q2 0. 21 0. 24 0. 27 0. 24 1. 03
Q3 0. 26 0. 32 0. 38 0. 34 0. 43 1. 03
Q4 0. 22 0. 15 0. 23 0. 29 0. 37 0. 51
Q5 0. 11 0. 13 0. 08 -0. 04 0. 22 0. 18

Covariance Matrix

Q4 Q5
——– ——–
Q4 0. 89
Q5 0. 12 0. 59

Number of Iterations = 20

LISREL Estimates (Maximum Likelihood)

Measurement Equations
Q6 = 0. 41*KZK, Errorvar. = 0. 79 , R² = 0. 17
(0. 083)
9. 53
Q7 = 0. 33*KZK, Errorvar. = 1. 11 , R² = 0. 088
(0. 099) (0. 11)
3. 30 9. 73

Q8 = 0. 65*KZK, Errorvar. = 0. 76 , R² = 0. 36
(0. 13) (0. 086)
5. 00 8. 90

Q9 = 0. 11*KZK, Errorvar. = 1. 22 , R² = 0. 011
(0. 088) (0. 12)
1. 30 9. 88

Q10 = 0. 89*KZK, Errorvar. = 0. 39 , R² = 0. 67
(0. 16) (0. 064)
5. 53 6. 14

Q11 = 0. 76*KZK, Errorvar. = 0. 53 , R² = 0. 52
(0. 14) (0. 067)
5. 36 7. 89

SAT = 0. 60*PSH, Errorvar. = 0. 091 , R² = 0. 80
(0. 020)
4. 60

COM = 0. 53*PSH, Errorvar. = 0. 30 , R² = 0. 48
(0. 049) (0. 034)
10. 72 8. 62

RKT = 0. 57*PSH, Errorvar. = 0. 26 , R² = 0. 56
(0. 049) (0. 032)
11. 77 8. 13

Q1 = 0. 43*NOA, Errorvar. = 0. 95 , R² = 0. 16
(0. 082) (0. 10)
5. 24 9. 35

Q2 = 0. 58*NOA, Errorvar. = 0. 69 , R² = 0. 33
(0. 075) (0. 081)
7. 71 8. 52

Q3 = 0. 77*NOA, Errorvar. = 0. 43 , R² = 0. 58
(0. 072) (0. 073)
10. 79 5. 91

Q4 = 0. 63*NOA, Errorvar. = 0. 49 , R² = 0. 45
(0. 068) (0. 065)
9. 30 7. 51
Q5 = 0. 23*NOA, Errorvar. = 0. 54 , R² = 0. 093
(0. 061) (0. 056)
3. 88 9. 62

Structural Equations

KZK = 0. 59*NOA, Errorvar. = 0. 66 , R² = 0. 34
(0. 13) (0. 24)
4. 54 2. 73

PSH = 0. 71*KZK + 0. 23*NOA, Errorvar. = 0. 26 , R² = 0. 74
(0. 15) (0. 086) (0. 065)
4. 85 2. 66 3. 95

Reduced Form Equations

KZK = 0. 59*NOA, Errorvar. = 0. 66, R² = 0. 34
(0. 13)
4. 54

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