Mplus VERSION 8.8
MUTHEN & MUTHEN
11/27/2022 10:51 AM
OUTPUT SECTIONS
INPUT INSTRUCTIONS TITLE: Multilevel DSEM model 5 with TINTERVAL and with all residual covariances estimated Within level: - no parameters at this level Between level: - two random means, four random slopes, and two random (log) variances - all random effects are regressed on an observed predictor (which is grand mean ce - all residuals are allowed to covary DATA: file = MLdata.dat; ! data file VARIABLE: NAMES ARE CL TE N RS time person; ! variables names (in the order they appear in the USEVARIABLES = CL TE N; ! which variables to include in the analysis BETWEEN = N; ! which variable only has between-person variance CLUSTER = person; ! which variable indicates the clustering of the d LAGGED = CL(1) TE(1); ! create lagged versions of CL and TE (lag 1) TINTERVAL = time(1); ! which variable indicates the timing of observati DEFINE: CENTER N (GRANDMEAN); ! use grand mean centering for the between level v ANALYSIS: TYPE = TWOLEVEL RANDOM; ! two-level data and allow for random slopes and/o ESTIMATOR = BAYES; ! use Bayesian estimation PROC = 2; ! use 2 processors BITER = (5000); ! run at least 5000 iterations (more if needed acc MODEL: %WITHIN% phiCL | CL ON CL&1; ! random autoregression for CL betaCL | CL ON TE; ! random cross-regression from TE_t -> CL_t phiTE | TE ON TE&1; ! random autoregression for TE betaTE | TE ON CL&1; ! random cross-lagged regression from CL_t-1 -> TE logVCL | CL; ! random residual variance for CL logVTE | TE; ! random residual variance for TE %BETWEEN% CL TE phiCL-logVTE ON N; ! regress all 8 random effects (2 means, 4 slopes, CL TE phiCL-logVTE WITH TE phiCL-logVTE; ! allow all residuals to covary OUTPUT: TECH1 TECH8 STDYX; ! obtain additional output PLOT: TYPE = PLOT3; ! enable plot options FACTOR = ALL(100); ! sample factor scores (for the random effects) pe *** WARNING Input line exceeded 90 characters. Some input may be truncated. - all random effects are regressed on an observed predictor (which is grand mean cen *** WARNING Input line exceeded 90 characters. Some input may be truncated. BETWEEN = N; ! which variable only has between-person variance ( *** WARNING Input line exceeded 90 characters. Some input may be truncated. CLUSTER = person; ! which variable indicates the clustering of the da *** WARNING Input line exceeded 90 characters. Some input may be truncated. TINTERVAL = time(1); ! which variable indicates the timing of observatio *** WARNING Input line exceeded 90 characters. Some input may be truncated. CENTER N (GRANDMEAN); ! use grand mean centering for the between level va *** WARNING Input line exceeded 90 characters. Some input may be truncated. TYPE = TWOLEVEL RANDOM; ! two-level data and allow for random slopes and/or *** WARNING Input line exceeded 90 characters. Some input may be truncated. BITER = (5000); ! run at least 5000 iterations (more if needed acco *** WARNING Input line exceeded 90 characters. Some input may be truncated. betaTE | TE ON CL&1; ! random cross-lagged regression from CL_t-1 -> TE_ *** WARNING Input line exceeded 90 characters. Some input may be truncated. FACTOR = ALL(100); ! sample factor scores (for the random effects) per 9 WARNING(S) FOUND IN THE INPUT INSTRUCTIONS Multilevel DSEM model 5 with TINTERVAL and with all residual covariances estimated Within level: - no parameters at this level Between level: - two random means, four random slopes, and two random (log) variances - all random effects are regressed on an observed predictor (which is grand mean ce - all residuals are allowed to covary SUMMARY OF ANALYSIS Number of groups 1 Number of observations 19563 Number of dependent variables 2 Number of independent variables 3 Number of continuous latent variables 6 Observed dependent variables Continuous CL TE Observed independent variables N CL&1 TE&1 Continuous latent variables PHICL BETACL PHITE BETATE LOGVCL LOGVTE Variables with special functions Cluster variable PERSON Within variables CL&1 TE&1 Between variables N Centering (GRANDMEAN) N Estimator BAYES Specifications for Bayesian Estimation Point estimate MEDIAN Number of Markov chain Monte Carlo (MCMC) chains 2 Random seed for the first chain 0 Starting value information UNPERTURBED Algorithm used for Markov chain Monte Carlo GIBBS(PX1) Convergence criterion 0.500D-01 Maximum number of iterations 50000 K-th iteration used for thinning 1 Specifications for Bayes Factor Score Estimation Number of imputed data sets 100 Iteration intervals for thinning 1 Input data file(s) MLdata.dat Input data format FREE SUMMARY OF DATA Number of clusters 200 Size (s) Cluster ID with Size s 89 186 90 92 92 79 90 147 93 183 23 172 94 15 33 21 28 114 121 163 78 63 24 95 37 200 165 53 124 179 100 162 118 48 75 111 30 96 69 112 81 131 43 175 88 17 192 4 184 38 105 136 135 97 2 182 93 160 139 129 144 67 177 13 45 127 153 133 54 56 98 87 32 159 189 96 91 142 151 193 35 137 180 138 47 72 143 101 22 140 174 31 195 145 122 123 110 104 64 55 198 199 191 42 74 161 5 65 99 152 157 197 20 52 7 80 99 14 36 95 1 11 141 26 83 134 58 49 178 9 130 40 25 171 155 149 84 85 62 181 146 71 39 106 170 125 150 196 176 3 44 98 128 115 50 77 164 168 46 12 57 97 107 120 187 100 173 156 70 10 29 109 113 126 59 132 34 116 169 108 68 41 103 51 18 60 27 185 16 167 73 61 94 8 76 66 86 158 117 82 102 154 19 119 194 148 166 188 190 89 6 SUMMARY OF MISSING DATA PATTERNS Number of missing data patterns 4 MISSING DATA PATTERNS (x = not missing) 1 2 3 4 CL x x TE x x CL&1 x x TE&1 x x N x x x x MISSING DATA PATTERN FREQUENCIES Pattern Frequency Pattern Frequency Pattern Frequency 1 4993 3 4794 2 4994 4 4782 COVARIANCE COVERAGE OF DATA Minimum covariance coverage value 0.100 PROPORTION OF DATA PRESENT Covariance Coverage CL TE N ________ ________ ________ CL 0.511 TE 0.511 0.511 N 0.511 0.511 1.000 UNIVARIATE SAMPLE STATISTICS UNIVARIATE HIGHER-ORDER MOMENT DESCRIPTIVE STATISTICS Variable/ Mean/ Skewness/ Minimum/ % with Percentiles Sample Size Variance Kurtosis Maximum Min/Max 20%/60% 40%/80% Median CL 4.997 -0.530 -5.930 0.01% 3.620 4.680 5.090 9987.000 3.082 1.444 10.480 0.01% 5.490 6.430 TE 14.942 0.046 9.400 0.01% 13.700 14.600 14.900 9987.000 2.323 -0.049 19.900 0.04% 15.300 16.200 N 0.000 -0.381 -30.516 0.50% -5.716 -1.316 -0.516 200.000 51.518 1.229 18.284 0.50% 1.484 6.284 WARNING: PROBLEMS OCCURRED IN SEVERAL ITERATIONS IN THE COMPUTATION OF THE STANDARDIZED ESTIMATES FOR SEVERAL CLUSTERS. THIS IS MOST LIKELY DUE TO AR COEFFICIENTS GREATER THAN 1 OR PARAMETERS GIVING NON-STATIONARY MODELS. SUCH POSTERIOR DRAWS ARE REMOVED. THE FOLLOWING CLUSTERS HAD SUCH PROBLEMS: 70 THE MODEL ESTIMATION TERMINATED NORMALLY USE THE FBITERATIONS OPTION TO INCREASE THE NUMBER OF ITERATIONS BY A FACTOR OF AT LEAST TWO TO CHECK CONVERGENCE AND THAT THE PSR VALUE DOES NOT INCREASE. MODEL FIT INFORMATION Number of Free Parameters 52 Information Criteria Deviance (DIC) 129731.525 Estimated Number of Parameters (pD) 19181.035 MODEL RESULTS Posterior One-Tailed 95% C.I. Estimate S.D. P-Value Lower 2.5% Upper 2.5% Significance Within Level Between Level PHICL ON N 0.013 0.002 0.000 0.009 0.016 * BETACL ON N -0.020 0.002 0.000 -0.024 -0.017 * PHITE ON N 0.011 0.002 0.000 0.006 0.015 * BETATE ON N -0.004 0.002 0.040 -0.008 0.000 LOGVCL ON N 0.007 0.004 0.047 -0.001 0.015 LOGVTE ON N -0.002 0.003 0.176 -0.007 0.003 CL ON N -0.086 0.012 0.000 -0.110 -0.063 * TE ON N 0.060 0.011 0.000 0.038 0.081 * CL WITH PHICL -0.005 0.018 0.366 -0.041 0.030 BETACL -0.012 0.017 0.234 -0.045 0.021 PHITE 0.008 0.022 0.346 -0.035 0.051 BETATE 0.011 0.019 0.276 -0.027 0.049 LOGVCL 0.003 0.037 0.463 -0.067 0.079 LOGVTE -0.047 0.023 0.028 -0.094 0.001 TE WITH PHICL -0.027 0.016 0.048 -0.060 0.005 BETACL 0.037 0.016 0.007 0.006 0.070 * PHITE -0.002 0.020 0.451 -0.042 0.039 BETATE 0.008 0.018 0.329 -0.027 0.044 LOGVCL 0.043 0.034 0.098 -0.023 0.110 LOGVTE -0.004 0.021 0.417 -0.044 0.037 PHICL WITH BETACL -0.002 0.003 0.194 -0.007 0.003 PHITE 0.002 0.004 0.238 -0.004 0.010 BETATE 0.002 0.003 0.170 -0.002 0.008 LOGVCL 0.005 0.006 0.189 -0.007 0.017 LOGVTE 0.003 0.003 0.223 -0.004 0.009 BETACL WITH PHITE 0.000 0.004 0.459 -0.007 0.007 BETATE -0.002 0.003 0.293 -0.008 0.005 LOGVCL -0.008 0.006 0.104 -0.019 0.004 LOGVTE -0.005 0.004 0.060 -0.013 0.001 PHITE WITH BETATE -0.002 0.004 0.295 -0.009 0.006 LOGVCL 0.004 0.007 0.274 -0.011 0.018 LOGVTE -0.004 0.005 0.213 -0.014 0.007 BETATE WITH LOGVCL 0.003 0.007 0.309 -0.010 0.017 LOGVTE 0.006 0.005 0.084 -0.002 0.016 LOGVCL WITH LOGVTE 0.005 0.008 0.288 -0.011 0.020 CL WITH TE -0.438 0.106 0.000 -0.669 -0.253 * Intercepts CL 5.013 0.083 0.000 4.846 5.171 * TE 14.934 0.078 0.000 14.779 15.089 * PHICL 0.236 0.015 0.000 0.205 0.262 * BETACL -0.205 0.014 0.000 -0.233 -0.177 * PHITE 0.095 0.018 0.000 0.058 0.130 * BETATE -0.104 0.017 0.000 -0.136 -0.071 * LOGVCL 0.017 0.028 0.269 -0.039 0.072 LOGVTE -0.042 0.018 0.007 -0.077 -0.007 * Residual Variances CL 1.347 0.159 0.000 1.092 1.703 * TE 1.149 0.125 0.000 0.940 1.435 * PHICL 0.009 0.003 0.000 0.004 0.016 * BETACL 0.016 0.004 0.000 0.009 0.025 * PHITE 0.020 0.006 0.000 0.011 0.034 * BETATE 0.015 0.004 0.000 0.008 0.024 * LOGVCL 0.121 0.018 0.000 0.090 0.160 * LOGVTE 0.024 0.007 0.000 0.013 0.042 * STANDARDIZED MODEL RESULTS STDYX Standardization Posterior One-Tailed 95% C.I. Estimate S.D. P-Value Lower 2.5% Upper 2.5% Significance Within-Level Standardized Estimates Averaged Over Clusters PHICL | CL ON CL&1 0.239 0.012 0.000 0.213 0.260 * BETACL | CL ON TE -0.178 0.010 0.000 -0.198 -0.156 * PHITE | TE ON TE&1 0.093 0.014 0.000 0.065 0.121 * BETATE | TE ON CL&1 -0.116 0.014 0.000 -0.146 -0.088 * LOGVCL | CL 0.846 0.007 0.000 0.833 0.859 * LOGVTE | TE 0.922 0.007 0.000 0.907 0.933 * Between Level PHICL ON N 0.566 0.093 0.000 0.378 0.736 * BETACL ON N -0.635 0.058 0.000 -0.745 -0.517 * PHITE ON N 0.364 0.085 0.000 0.191 0.526 * BETATE ON N -0.151 0.085 0.040 -0.318 0.016 LOGVCL ON N 0.097 0.057 0.047 -0.013 0.209 LOGVTE ON N -0.079 0.087 0.176 -0.256 0.086 CL ON N -0.352 0.045 0.000 -0.435 -0.260 * TE ON N 0.272 0.047 0.000 0.172 0.359 * CL WITH PHICL -0.050 0.160 0.366 -0.361 0.274 BETACL -0.082 0.112 0.234 -0.302 0.138 PHITE 0.050 0.130 0.346 -0.204 0.301 BETATE 0.082 0.136 0.276 -0.189 0.337 LOGVCL 0.008 0.090 0.463 -0.164 0.186 LOGVTE -0.260 0.124 0.028 -0.484 0.007 TE WITH PHICL -0.268 0.155 0.048 -0.561 0.048 BETACL 0.277 0.113 0.007 0.050 0.490 * PHITE -0.015 0.133 0.451 -0.261 0.255 BETATE 0.064 0.138 0.329 -0.205 0.329 LOGVCL 0.115 0.087 0.098 -0.061 0.280 LOGVTE -0.026 0.122 0.417 -0.251 0.222 PHICL WITH BETACL -0.200 0.221 0.194 -0.595 0.248 PHITE 0.181 0.266 0.238 -0.325 0.723 BETATE 0.220 0.213 0.170 -0.192 0.606 LOGVCL 0.164 0.185 0.189 -0.205 0.527 LOGVTE 0.207 0.231 0.223 -0.268 0.593 BETACL WITH PHITE -0.019 0.196 0.459 -0.389 0.369 BETATE -0.113 0.203 0.293 -0.493 0.307 LOGVCL -0.176 0.130 0.104 -0.418 0.091 LOGVTE -0.286 0.169 0.060 -0.573 0.076 PHITE WITH BETATE -0.121 0.217 0.295 -0.530 0.302 LOGVCL 0.086 0.142 0.274 -0.224 0.348 LOGVTE -0.184 0.223 0.213 -0.563 0.291 BETATE WITH LOGVCL 0.079 0.158 0.309 -0.222 0.392 LOGVTE 0.315 0.235 0.084 -0.118 0.780 LOGVCL WITH LOGVTE 0.087 0.151 0.288 -0.208 0.382 CL WITH TE -0.353 0.068 0.000 -0.479 -0.215 * Intercepts CL 4.036 0.234 0.000 3.578 4.489 * TE 13.394 0.681 0.000 12.053 14.729 * PHICL 2.036 0.303 0.000 1.554 2.727 * BETACL -1.250 0.142 0.000 -1.552 -1.001 * PHITE 0.622 0.147 0.000 0.359 0.947 * BETATE -0.845 0.181 0.000 -1.246 -0.542 * LOGVCL 0.048 0.081 0.269 -0.110 0.210 LOGVTE -0.274 0.118 0.007 -0.502 -0.042 * Residual Variances CL 0.876 0.031 0.000 0.810 0.932 * TE 0.926 0.025 0.000 0.871 0.970 * PHICL 0.679 0.104 0.000 0.459 0.857 * BETACL 0.597 0.074 0.000 0.446 0.732 * PHITE 0.868 0.062 0.000 0.723 0.963 * BETATE 0.977 0.027 0.000 0.899 1.000 * LOGVCL 0.991 0.012 0.000 0.956 1.000 * LOGVTE 0.993 0.019 0.000 0.934 1.000 * R-SQUARE Within-Level R-Square Averaged Across Clusters Posterior One-Tailed 95% C.I. Variable Estimate S.D. P-Value Lower 2.5% Upper 2.5% CL 0.154 0.007 0.000 0.141 0.167 TE 0.078 0.007 0.000 0.067 0.093 Between Level Posterior One-Tailed 95% C.I. Variable Estimate S.D. P-Value Lower 2.5% Upper 2.5% CL 0.124 0.031 0.000 0.068 0.190 TE 0.074 0.025 0.000 0.030 0.129 Posterior One-Tailed 95% C.I. Variable Estimate S.D. P-Value Lower 2.5% Upper 2.5% PHICL 0.321 0.104 0.000 0.143 0.541 BETACL 0.403 0.074 0.000 0.268 0.554 PHITE 0.132 0.062 0.000 0.036 0.277 BETATE 0.023 0.027 0.000 0.000 0.101 LOGVCL 0.009 0.012 0.000 0.000 0.044 LOGVTE 0.007 0.019 0.000 0.000 0.065 TECHNICAL 1 OUTPUT PARAMETER SPECIFICATION FOR WITHIN NU CL TE CL&1 TE&1 ________ ________ ________ ________ 0 0 0 0 LAMBDA CL TE CL&1 TE&1 ________ ________ ________ ________ CL 0 0 0 0 TE 0 0 0 0 CL&1 0 0 0 0 TE&1 0 0 0 0 THETA CL TE CL&1 TE&1 ________ ________ ________ ________ CL 0 TE 0 0 CL&1 0 0 0 TE&1 0 0 0 0 ALPHA CL TE CL&1 TE&1 ________ ________ ________ ________ 0 0 0 0 BETA CL TE CL&1 TE&1 ________ ________ ________ ________ CL 0 0 0 0 TE 0 0 0 0 CL&1 0 0 0 0 TE&1 0 0 0 0 PSI CL TE CL&1 TE&1 ________ ________ ________ ________ CL 0 TE 0 0 CL&1 0 0 0 TE&1 0 0 0 0 PARAMETER SPECIFICATION FOR BETWEEN NU CL TE N ________ ________ ________ 0 0 0 LAMBDA PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ CL 0 0 0 0 0 TE 0 0 0 0 0 N 0 0 0 0 0 LAMBDA LOGVTE CL TE N ________ ________ ________ ________ CL 0 0 0 0 TE 0 0 0 0 N 0 0 0 0 THETA CL TE N ________ ________ ________ CL 0 TE 0 0 N 0 0 0 ALPHA PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ 1 2 3 4 5 ALPHA LOGVTE CL TE N ________ ________ ________ ________ 6 7 8 0 BETA PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ PHICL 0 0 0 0 0 BETACL 0 0 0 0 0 PHITE 0 0 0 0 0 BETATE 0 0 0 0 0 LOGVCL 0 0 0 0 0 LOGVTE 0 0 0 0 0 CL 0 0 0 0 0 TE 0 0 0 0 0 N 0 0 0 0 0 BETA LOGVTE CL TE N ________ ________ ________ ________ PHICL 0 0 0 9 BETACL 0 0 0 10 PHITE 0 0 0 11 BETATE 0 0 0 12 LOGVCL 0 0 0 13 LOGVTE 0 0 0 14 CL 0 0 0 15 TE 0 0 0 16 N 0 0 0 0 PSI PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ PHICL 17 BETACL 18 19 PHITE 20 21 22 BETATE 23 24 25 26 LOGVCL 27 28 29 30 31 LOGVTE 32 33 34 35 36 CL 38 39 40 41 42 TE 45 46 47 48 49 N 0 0 0 0 0 PSI LOGVTE CL TE N ________ ________ ________ ________ LOGVTE 37 CL 43 44 TE 50 51 52 N 0 0 0 0 STARTING VALUES FOR WITHIN NU CL TE CL&1 TE&1 ________ ________ ________ ________ 0.000 0.000 0.000 0.000 LAMBDA CL TE CL&1 TE&1 ________ ________ ________ ________ CL 1.000 0.000 0.000 0.000 TE 0.000 1.000 0.000 0.000 CL&1 0.000 0.000 1.000 0.000 TE&1 0.000 0.000 0.000 1.000 THETA CL TE CL&1 TE&1 ________ ________ ________ ________ CL 0.000 TE 0.000 0.000 CL&1 0.000 0.000 0.000 TE&1 0.000 0.000 0.000 0.000 ALPHA CL TE CL&1 TE&1 ________ ________ ________ ________ 0.000 0.000 0.000 0.000 BETA CL TE CL&1 TE&1 ________ ________ ________ ________ CL 0.000 0.000 0.000 0.000 TE 0.000 0.000 0.000 0.000 CL&1 0.000 0.000 0.000 0.000 TE&1 0.000 0.000 0.000 0.000 PSI CL TE CL&1 TE&1 ________ ________ ________ ________ CL 0.000 TE 0.000 0.000 CL&1 0.000 0.000 1.541 TE&1 0.000 0.000 0.000 1.162 STARTING VALUES FOR BETWEEN NU CL TE N ________ ________ ________ 0.000 0.000 0.000 LAMBDA PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ CL 0.000 0.000 0.000 0.000 0.000 TE 0.000 0.000 0.000 0.000 0.000 N 0.000 0.000 0.000 0.000 0.000 LAMBDA LOGVTE CL TE N ________ ________ ________ ________ CL 0.000 1.000 0.000 0.000 TE 0.000 0.000 1.000 0.000 N 0.000 0.000 0.000 1.000 THETA CL TE N ________ ________ ________ CL 0.000 TE 0.000 0.000 N 0.000 0.000 0.000 ALPHA PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ 0.000 0.000 0.000 0.000 0.000 ALPHA LOGVTE CL TE N ________ ________ ________ ________ 0.000 4.997 14.942 0.000 BETA PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ PHICL 0.000 0.000 0.000 0.000 0.000 BETACL 0.000 0.000 0.000 0.000 0.000 PHITE 0.000 0.000 0.000 0.000 0.000 BETATE 0.000 0.000 0.000 0.000 0.000 LOGVCL 0.000 0.000 0.000 0.000 0.000 LOGVTE 0.000 0.000 0.000 0.000 0.000 CL 0.000 0.000 0.000 0.000 0.000 TE 0.000 0.000 0.000 0.000 0.000 N 0.000 0.000 0.000 0.000 0.000 BETA LOGVTE CL TE N ________ ________ ________ ________ PHICL 0.000 0.000 0.000 0.000 BETACL 0.000 0.000 0.000 0.000 PHITE 0.000 0.000 0.000 0.000 BETATE 0.000 0.000 0.000 0.000 LOGVCL 0.000 0.000 0.000 0.000 LOGVTE 0.000 0.000 0.000 0.000 CL 0.000 0.000 0.000 0.000 TE 0.000 0.000 0.000 0.000 N 0.000 0.000 0.000 0.000 PSI PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ PHICL 1.000 BETACL 0.000 1.000 PHITE 0.000 0.000 1.000 BETATE 0.000 0.000 0.000 1.000 LOGVCL 0.000 0.000 0.000 0.000 1.000 LOGVTE 0.000 0.000 0.000 0.000 0.000 CL 0.000 0.000 0.000 0.000 0.000 TE 0.000 0.000 0.000 0.000 0.000 N 0.000 0.000 0.000 0.000 0.000 PSI LOGVTE CL TE N ________ ________ ________ ________ LOGVTE 1.000 CL 0.000 1.541 TE 0.000 0.000 1.162 N 0.000 0.000 0.000 25.846 PRIORS FOR ALL PARAMETERS PRIOR MEAN PRIOR VARIANCE PRIOR STD. DEV. Parameter 1~N(0.000,infinity) 0.0000 infinity infinity Parameter 2~N(0.000,infinity) 0.0000 infinity infinity Parameter 3~N(0.000,infinity) 0.0000 infinity infinity Parameter 4~N(0.000,infinity) 0.0000 infinity infinity Parameter 5~N(0.000,infinity) 0.0000 infinity infinity Parameter 6~N(0.000,infinity) 0.0000 infinity infinity Parameter 7~N(0.000,infinity) 0.0000 infinity infinity Parameter 8~N(0.000,infinity) 0.0000 infinity infinity Parameter 9~N(0.000,infinity) 0.0000 infinity infinity Parameter 10~N(0.000,infinity) 0.0000 infinity infinity Parameter 11~N(0.000,infinity) 0.0000 infinity infinity Parameter 12~N(0.000,infinity) 0.0000 infinity infinity Parameter 13~N(0.000,infinity) 0.0000 infinity infinity Parameter 14~N(0.000,infinity) 0.0000 infinity infinity Parameter 15~N(0.000,infinity) 0.0000 infinity infinity Parameter 16~N(0.000,infinity) 0.0000 infinity infinity Parameter 17~IW(0.000,-9) infinity infinity infinity Parameter 18~IW(0.000,-9) infinity infinity infinity Parameter 19~IW(0.000,-9) infinity infinity infinity Parameter 20~IW(0.000,-9) infinity infinity infinity Parameter 21~IW(0.000,-9) infinity infinity infinity Parameter 22~IW(0.000,-9) infinity infinity infinity Parameter 23~IW(0.000,-9) infinity infinity infinity Parameter 24~IW(0.000,-9) infinity infinity infinity Parameter 25~IW(0.000,-9) infinity infinity infinity Parameter 26~IW(0.000,-9) infinity infinity infinity Parameter 27~IW(0.000,-9) infinity infinity infinity Parameter 28~IW(0.000,-9) infinity infinity infinity Parameter 29~IW(0.000,-9) infinity infinity infinity Parameter 30~IW(0.000,-9) infinity infinity infinity Parameter 31~IW(0.000,-9) infinity infinity infinity Parameter 32~IW(0.000,-9) infinity infinity infinity Parameter 33~IW(0.000,-9) infinity infinity infinity Parameter 34~IW(0.000,-9) infinity infinity infinity Parameter 35~IW(0.000,-9) infinity infinity infinity Parameter 36~IW(0.000,-9) infinity infinity infinity Parameter 37~IW(0.000,-9) infinity infinity infinity Parameter 38~IW(0.000,-9) infinity infinity infinity Parameter 39~IW(0.000,-9) infinity infinity infinity Parameter 40~IW(0.000,-9) infinity infinity infinity Parameter 41~IW(0.000,-9) infinity infinity infinity Parameter 42~IW(0.000,-9) infinity infinity infinity Parameter 43~IW(0.000,-9) infinity infinity infinity Parameter 44~IW(0.000,-9) infinity infinity infinity Parameter 45~IW(0.000,-9) infinity infinity infinity Parameter 46~IW(0.000,-9) infinity infinity infinity Parameter 47~IW(0.000,-9) infinity infinity infinity Parameter 48~IW(0.000,-9) infinity infinity infinity Parameter 49~IW(0.000,-9) infinity infinity infinity Parameter 50~IW(0.000,-9) infinity infinity infinity Parameter 51~IW(0.000,-9) infinity infinity infinity Parameter 52~IW(0.000,-9) infinity infinity infinity TECHNICAL 8 OUTPUT TECHNICAL 8 OUTPUT FOR BAYES ESTIMATION CHAIN BSEED 1 0 2 285380 POTENTIAL PARAMETER WITH ITERATION SCALE REDUCTION HIGHEST PSR 100 1.924 47 200 1.442 38 300 1.398 38 400 1.248 6 500 1.124 1 600 1.279 1 700 1.079 40 800 1.072 22 900 1.084 43 1000 1.038 43 1100 1.022 42 1200 1.025 42 1300 1.057 45 1400 1.105 45 1500 1.057 45 1600 1.040 6 1700 1.046 34 1800 1.063 34 1900 1.076 34 2000 1.066 34 2100 1.065 34 2200 1.051 34 2300 1.043 34 2400 1.040 34 2500 1.033 34 2600 1.052 38 2700 1.056 38 2800 1.044 38 2900 1.041 38 3000 1.039 38 3100 1.029 3 3200 1.017 38 3300 1.016 43 3400 1.014 38 3500 1.015 2 3600 1.015 38 3700 1.019 38 3800 1.019 38 3900 1.016 35 4000 1.016 35 4100 1.014 35 4200 1.012 48 4300 1.011 4 4400 1.012 4 4500 1.010 4 4600 1.015 1 4700 1.028 1 4800 1.032 1 4900 1.030 1 5000 1.032 1 SUMMARIES OF PLAUSIBLE VALUES (N = NUMBER OF OBSERVATIONS * NUMBER OF IMPUTATIONS) SAMPLE STATISTICS Means PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ 0.236 -0.204 0.101 -0.094 0.018 Means LOGVTE B_CL B_TE ________ ________ ________ -0.042 5.016 14.932 Covariances PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ PHICL 0.019 BETACL -0.016 0.034 PHITE 0.007 -0.016 0.021 BETATE -0.002 0.002 -0.007 0.012 LOGVCL 0.013 -0.013 0.007 0.005 0.111 LOGVTE -0.002 0.001 -0.004 0.006 0.004 B_CL -0.060 0.079 -0.051 0.019 -0.030 B_TE 0.017 -0.028 0.036 0.004 0.065 Covariances LOGVTE B_CL B_TE ________ ________ ________ LOGVTE 0.029 B_CL -0.016 1.617 B_TE -0.015 -0.663 1.225 Correlations PHICL BETACL PHITE BETATE LOGVCL ________ ________ ________ ________ ________ PHICL 1.000 BETACL -0.627 1.000 PHITE 0.368 -0.592 1.000 BETATE -0.161 0.111 -0.437 1.000 LOGVCL 0.297 -0.215 0.137 0.139 1.000 LOGVTE -0.074 0.032 -0.140 0.298 0.076 B_CL -0.347 0.337 -0.274 0.136 -0.072 B_TE 0.111 -0.136 0.222 0.030 0.177 Correlations LOGVTE B_CL B_TE ________ ________ ________ LOGVTE 1.000 B_CL -0.071 1.000 B_TE -0.078 -0.471 1.000 SUMMARY OF PLAUSIBLE STANDARD DEVIATION (N = NUMBER OF OBSERVATIONS) SAMPLE STATISTICS Means PHICL_SD BETACL_S PHITE_SD BETATE_S LOGVCL_S ________ ________ ________ ________ ________ 0.076 0.088 0.096 0.086 0.161 Means LOGVTE_S B_CL_SD B_TE_SD ________ ________ ________ 0.125 0.196 0.159 Covariances PHICL_SD BETACL_S PHITE_SD BETATE_S LOGVCL_S ________ ________ ________ ________ ________ PHICL_SD 0.000 BETACL_S 0.000 0.000 PHITE_SD 0.000 0.000 0.000 BETATE_S 0.000 0.000 0.000 0.000 LOGVCL_S 0.000 0.000 0.000 0.000 0.001 LOGVTE_S 0.000 0.000 0.000 0.000 0.000 B_CL_SD 0.000 0.000 0.000 -0.001 0.000 B_TE_SD 0.000 0.000 0.000 0.000 0.000 Covariances LOGVTE_S B_CL_SD B_TE_SD ________ ________ ________ LOGVTE_S 0.001 B_CL_SD 0.000 0.021 B_TE_SD 0.000 0.010 0.006 Correlations PHICL_SD BETACL_S PHITE_SD BETATE_S LOGVCL_S ________ ________ ________ ________ ________ PHICL_SD 1.000 BETACL_S 0.023 1.000 PHITE_SD 0.275 -0.030 1.000 BETATE_S 0.200 -0.227 0.358 1.000 LOGVCL_S 0.063 0.010 0.034 0.147 1.000 LOGVTE_S 0.120 0.006 0.070 0.251 0.069 B_CL_SD 0.128 0.141 -0.056 -0.388 0.033 B_TE_SD 0.161 0.040 -0.027 -0.268 0.048 Correlations LOGVTE_S B_CL_SD B_TE_SD ________ ________ ________ LOGVTE_S 1.000 B_CL_SD 0.110 1.000 B_TE_SD 0.129 0.952 1.000 PLOT INFORMATION The following plots are available: Histograms (sample values, estimated factor scores) Scatterplots (sample values, estimated factor scores) Between-level histograms (sample values, sample/estimated means/variances, estimated factor scores) Between-level scatterplots (sample values, sample/estimated means/variances, estimated factor scores) Two-level cluster-specific observed and estimated values plots Time series plots (sample values, ACF, PACF, estimated factor scores) Histogram of subjects per time point Time interval plots Bayesian posterior parameter distributions Bayesian posterior parameter trace plots Bayesian autocorrelation plots Latent variable distribution plots DIAGRAM INFORMATION Mplus diagrams are currently not available for multilevel analysis. 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