[Title Page] [Paper] [Figures and Tables]
Draft 18 December 1998

Figures and Tables

W. Nicholas Beer



Table A4 Growth parameters used in Eqn. (17)


Consumption parameters Activity related parameters
ca .303 act 9.7
cb -0.275 bact 0.0405
cq 5 sda 0.172
cto 15
ctm 18 Excretion/Egestion parameters
ctl 24 fa 0.212
ck1 0.36 fb -0.222
ck4 0.01 fg 0.631
ctm 18 ua 0.0314

ub 0.58
Respiration parameters ug -0.299
ra 0.00264
rb -0.217 Predator energy density parameters
rq 0.06818 alpha1 5764
rto 0.0234 beta1 0.9862
rtm 0 alpha2 7602
rtl 25 beta2 .5266
rk1 27.5
rk4 0.13 Prey energy density parameters


dy 5400 1



1. Small salmonids are assumed to be opportunistic (sources). Prey energy densities were initially assumed to be 3000 calories/gram, but were revised to 5400. From a modeling perspective, this allowed fish to grow at a wider range of rates and still contain their P-values between 0 and 1.

Table A5 Wild sub-yearling chinook tests of influence of release length on recovery. For each hypothesis test, bold indicates a p < .05

Release file ID Number of fish recovered Actual number of release records available Ostensible release size from PTAGIS days between release and recovery: (mean) (std.) p(H1) p(H2) p(H3)
WPC93160.229 27 34 53 11 14 0.8214 0.8388 0.5034
WPC93167.229 22 44 84 14 20 0.4197 0.1616 0.1011
WPC94137.E29 45 33 33 16 18 0.3062 0.5723 0.4503
WPC94144.E50 42 109 110 17 18 0.1025 0.2233 0.1241
WPC94145.E29 25 39 60 13 14 0.627 0.778 0.8144
WPC94146.A51 32 32 40 17 12 0.4337 0.2427 0.2693
WPC94151.W58 35 105 108 17 20 0.007969 0.03343 0.7911
WPC94151.W61 29 94 95 32 28 0.7183 0.5832 0.9531
WPC94152.A51 20 12 27 19 16 0.3738 0.09187 0.2237
WPC94152.E29 23 37 59 15 19 0.4596 0.4357 0.3704
WPC94160.A51 35 51 76 14 15 0.8008 0.6734 0.545
WPC94160.E50 10 119 120 54 21 0.553 0.4473 0.9429
WPC95145.346 24 20 24 22 20 0.7482 0.6501 0.9244
WPC95145.E22 35 23 29 20 19 0.6571 0.9497 0.6901
WPC95145.E24 29 37 37 21 21 0.9657 0.5729 0.7893
WPC95150.229 13 44 48 34 27 0.4807 0.2771 0.09952
WPC95151.W56 39 59 59 25 21 0.8383 0.4272 0.828
WPC95151.W58 12 21 21 36 28 0.9015 0.758 0.01616
WPC95151.W86 13 37 37 57 29 0.05993 0.002702 9.894e-06
WPC95158.E29 23 77 88 33 23 0.3855 0.3276 0.4164
WPC95159.E21 22 22 22 23 20 0.8717 0.2579 0.9864
WPC95166.W58 14 42 42 42 16 0.1217 0.1156 0.008636


Table A6 Hatchery sub-yearling chinook tests of influence of release length on recovery. Bold indicates a p value for the hypothesis test less than .05

Release file ID Number of fish recovered Actual number of release records available Ostensible release size from PTAGIS days (mean) days (std.) p(H1) p(H2) p(H3)
BDA97097.013 59 2514 2514 12 8 0.0004583 3.267e-05 0.001708
BDA97098.012 54 2516 2517 13 7 0.01161 0.002413 0.005292
BDA97099.005 48 2509 2509 12 11 0.01449 0.02779 0.08874
BDA97100.003 66 2512 2512 9 8 0.001771 0.01033 0.888
BDA97155.011 32 2495 2495 25 14 2.049e-06 3.994e-06 0.0008019
BDA97155.012 31 2464 2464 23 9 0.0004407 0.0002472 0.02569
BDA97156.003 38 2484 2484 22 11 0.005481 0.01802 0.463
BDA97156.005 34 2470 2470 24 13 0.0003981 0.0005488 0.09639
RNI95170.AS1 227 2795 2795 72 31 0.005497 0.3818 0.3785
RNI95178.AS2 226 2497 2497 75 45 8.878e-05 0.002277 1.51e-05
RNI95186.AS3 236 3528 3529 68 36 7.97e-06 0.0001407 0.0001458
RNI95215.FB1 55 827 827 2 3 0.1342 0.6888 2.098e-05
RNI96156.CW1 51 1258 1258 67 38 0.3453 0.2098 0.2025
RNI96156.PL1 50 1250 1250 60 41 0.6661 0.3219 0.3649
RNI96163.CW2 44 1253 1253 60 40 0.1041 0.1379 0.302
RNI96163.PL2 54 1249 1250 57 54 0.5556 0.3634 0.01495
RNI96170.CW3 48 1263 1263 73 72 0.02437 0.1323 0.1691
RNI96170.PL3 50 1261 1261 55 70 0.1512 0.3272 0.09726
RNI96177.CW4 36 1250 1250 58 40 0.0001829 0.000674 0.3159
RNI96177.PL4 57 1250 1250 36 42 0.0007728 0.003849 0.004442
RNI97148.PD1 414 6976 6976 30 27 2.919e-07 0.8512 1.957e-07
RNI97150.PD1 525 6978 6980 30 25 2.919e-07 0.4941 0.1074
RNI97154.PL1 81 1266 1266 17 13 0.0244 0.0787 0.052
RNI97161.PL2 54 1250 1250 22 12 0.002441 0.006895 0.02237
RNI97168.PL3 62 1249 1249 18 14 0.00145 0.05381 0.6599
RNI97175.PL4 78 1251 1251 19 19 0.007499 0.05693 0.08481
RNI97182.PL5 54 1263 1263 25 24 0.04359 0.06089 0.6195
WPC95142.BC1 91 1220 1320 57 26 0.002312 0.06234 0.6052
WPC95142.BC2 99 1317 1417 62 28 0.0003695 0.321 0.2401
WPC95142.BC3 95 1124 1219 64 34 0.4943 0.3314 0.03874
WPC95142.PL1 130 1353 1457 57 44 0.2612 0.5522 0.06786
WPC95142.PL2 143 1341 1395 48 41 0.09734 0.7274 0.541
WPC95142.PL3 104 1326 1427 70 56 0.3112 0.3369 0.1454
WPC96093.T13 148 2456 2457 12 5 0.0007363 0.00167 0.2859
WPC96094.T01 199 2497 2497 12 6 0.04726 0.006911 0.004698
WPC96094.T09 166 2490 2491 10 5 0.0004329 0.0001185 0.00172
WPC96095.T07 194 2487 2488 10 6 0.005314 0.07358 0.01484
WPC96096.T03 173 2490 2491 11 6 0.02273 0.1353 0.7294
WPC97097.T16 67 2445 2445 12 7 0.004287 0.04005 0.03505
WPC97098.T13 70 2489 2500 11 7 0.01158 0.07806 0.2787
WPC97099.T07 64 2488 2488 9 7 0.0003876 2.601e-05 7.832e-05
WPC97100.T03 83 2494 2498 10 8 0.008169 0.003609 0.3674
WPC97154.BC1 47 1253 1253 26 10 1.08e-05 0.0003936 0.8421
WPC97161.BC2 45 1256 1256 24 12 0.002184 0.9724 7.906e-25
WPC97162.14B 37 1251 1251 16 10 0.4085 0.5298 0.3887
WPC97163.06B 42 1250 1250 37 48 0.0002083 0.001209 0.7443
WPC97164.14B 32 1250 1250 18 13 0.004394 0.0318 0.5875
WPC97165.06B 53 1262 1262 24 19 0.0003052 0.005022 0.2243
WPC97168.BC3 42 1249 1249 29 12 0.003352 0.001259 0.634
WPC97175.BC4 35 1250 1250 39 7 0.001093 0.002853 0.6074
WPC97182.BC5 28 1251 1251 44 10 0.02037 0.03861 0.626


Table A7 Wild spring chinook tests of influence of release length on recovery. Bold indicates a p value for the hypothesis test less than .05

Release file ID Number of fish recovered Actual number of release records available Ostensible release size from PTAGIS days (mean) days (std.) p(H1) p(H2) p(H3)
BCJ93312.GR1 23 210 212 167 34 0.003751 0.0009021 0.9295
BCJ94335.CC1 25 201 201 146 221 0.5909 0.574 0.4265
BDA92307.001 35 98 101 26 64 0.4996 0.6079 0.8566
BDA92314.001 44 117 121 15 49 0.09926 0.6173 0.8821
BDA93244.004 30 141 142 45 71 0.8 0.3088 0.8271
BDA94130.001 27 67 69 2 3 0.1692 0.1496 0.6281
EJL92281.CF2 20 15 32 3 4 0.007002 0.002199 2.574e-06
EJL92294.CFT 13 34 36 2 2 0.9 0.28 0.8795
EJL93232.MCT 28 67 67 13 50 0.8751 0.6659 0.5644
EJL93233.MCT 79 152 155 18 60 0.688 0.9417 0.6242
EJL93234.MCT 37 95 100 1 0 0.1899 0.2918 0.1945
EJL93235.MCT 74 161 163 13 41 0.7878 0.7102 0.616
EJL93237.MC2 56 100 102 16 54 0.8836 0.1668 0.4085
EJL93238.MC2 44 90 96 4 11 0.9501 0.2994 0.07978
EJL93238.MCT 40 99 100 11 42 0.3153 0.365 1.014e-05
EJL93239.MCT 51 150 156 13 48 0.4569 0.7722 0.7571
EJL93241.MCT 55 84 92 4 5 0.6699 0.3092 0.0963
EJL93243.MCT 20 22 31 13 53 0.9458 0.7287 0.4495
EJL93245.MCT 47 51 97 26 73 0.9561 0.8196 0.8003
EJL93246.MCT 31 41 54 9 44 0.7483 0.9891 0.8449
EJL93247.MCT 21 32 35 3 7 0.8277 0.8536 0.9638
EJL93248.MCT 36 42 46 1 0 0.8212 0.7631 0.5652
EJL93249.MCT 40 85 96 8 38 0.954 0.5035 0.8795
EJL93250.MCT 234 486 496 6 30 0.3255 0.4048 0.648
EJL93251.MCT 78 120 120 7 42 0.06636 0.9745 0.6199
EJL93253.MCT 58 114 115 8 28 0.5321 0.8765 0.2921
EJL93255.MCT 61 97 101 9 41 0.5034 0.6683 0.6803
EJL93256.MCT 111 227 233 6 36 0.2909 0.8807 9.49e-11
EJL93257.MCT 29 43 46 0 0 0.6465 0.7063 0.5465
EJL93259.MCT 35 102 108 9 45 0.6971 0.3168 3.442e-09
EJL93260.MCT 44 69 69 1 2 0.4165 0.6104 0.6443
EJL93261.MCT 43 90 131 12 51 0.6677 0.699 0.9377
EJL93263.MCT 48 82 83 2 4 0.2465 0.6065 0.2833
EJL93264.MCT 35 55 59 8 38 0.9825 0.8722 0.6862
EJL93268.MCT 58 99 100 9 40 0.2395 0.2706 3.553e-12
EJL93271.MCT 95 200 201 5 30 0.5307 0.6316 0.001986
EJL93272.MCT 166 333 345 8 39 0.5911 0.4083 0.8705
EJL93273.MCT 207 312 315 5 27 0.222 0.3326 0.3784
EJL93274.MCT 176 273 275 7 35 0.459 0.5527 0.8167
EJL93275.MCT 87 110 112 1 3 0.2938 0.3612 0.5265
EJL93276.MCT 36 54 55 2 3 0.5448 0.7144 0.6488
EJL93277.MCT 75 110 113 4 32 0.2133 0.84 0.1948
EJL93278.MCT 62 100 103 1 2 0.3925 0.5413 0.2132
EJL93281.MCT 55 101 110 1 2 0.759 0.3194 5.929e-13
EJL93282.CFT 22 99 106 1 0 0.2335 0.5823 0.7291
EJL93282.MCT 75 100 105 6 33 0.4875 0.8877 0.7857
EJL93283.MCT 27 43 43 1 3 0.784 0.9969 0.6436
EJL93284.MCT 18 23 36 1 1 0.7879 0.8817 0.6719
EJL93286.MCT 27 46 46 8 38 0.944 0.9926 0.9435
EJL93287.MCT 34 54 55 1 0 0.678 0.5232 0.6163
EJL93289.MCT 23 33 39 1 1 0.8557 0.6658 0.8147
EJL93295.MCT 26 36 36 1 0 0.7608 0.8225 0.1692
EJL93296.MCT 23 36 80 1 0 0.1395 0.2842 0.204
EJL93301.MCT 21 27 27 11 49 0.8212 0.7926 0.9324
EJL94242.CFT 22 79 95 2 0 0.4352 0.4375 0.0973
EJL94252.CFT 22 83 85 16 57 0.7054 0.4275 0.116
EJL94253.CFT 20 92 111 1 1 0.3053 0.4284 0.0116
EJL94296.CFT 23 156 160 11 49 0.9973 0.7472 0.9776
JAH94252.001 36 86 86 21 0 0.4586 0.8649 0.9647
JKB94089.RRT 10 44 59 31 49 0.8175 0.5368 0.02869
JKB94253.RRT 38 97 101 3 2 0.3831 0.8872 0.9704
JKB94256.RRT 20 39 47 2 1 0.5387 0.2326 0.4543
JKB94257.RRT 20 49 80 14 54 0.7463 0.6347 0.7351
JKB94258.RRT 21 49 72 11 45 0.2147 0.1125 0.001495
JKB94275.RRT 52 126 139 1 0 0.02206 0.1937 0.648
JKB95277.RRT 35 128 129 1 0 0.5927 0.1985 0.3373
JKB95300.RRT 46 216 224 4 26 0.01254 0.05955 0.7047
KMC94214.MC1 35 480 480 77 73 0.5523 0.31 0.08818
PMS96227.LR1 31 177 179 168 63 0.9835 0.5183 0.5735
PMS96228.LR1 23 107 107 162 69 0.144 0.3695 0.5298
PMS96239.CA1 30 121 121 134 74 0.8555 0.7495 0.6173
PMS96243.CA1 32 239 247 161 76 0.08187 0.2881 0.5201
PMS97251.IM1 30 439 439 89 77 0.03181 0.08543 0.334
PMS97252.IM1 32 463 463 121 76 0.5537 0.5011 0.6999
PTL93270.001 38 299 427 68 52 0.7428 0.3914 0.00287
RBK93236.CR4 34 331 361 275 38 0.04015 0.1083 0.2597
RBK94229.CR1 46 333 333 194 85 0.856 0.5055 0.2063
RBK94230.CR1 22 102 103 280 32 0.6195 0.4201 0.6099
RBK94231.CR2 50 496 535 151 98 0.3574 0.4881 0.5767
RBK94234.CR1 22 224 226 267 31 0.06507 0.2169 0.7287
RBK94234.CR3 36 270 273 159 103 0.0808 0.3806 0.4725
RBK94235.CR1 71 546 632 136 84 0.06051 0.2365 0.5996
RBK95075.CRT 22 52 74 1 0 0.8837 0.9922 0.9942
RBK95077.CRT 21 49 73 1 0 0.5987 0.5596 0.5577
RBK95079.CRT 25 49 71 1 0 0.1844 0.9476 0.553
RBK95080.CRT 16 49 90 1 0 0.9243 0.9223 0.9471
RBK95081.CRT 15 33 154 7 18 0.8807 0.9214 0.02286
RBK95082.CRT 13 32 154 90 301 0.8927 0.6845 0.3281
RBK95083.CRT 17 39 161 10 26 0.8986 0.733 0.5536
RBK95087.SWT 21 9 123 1 0 3.327e-05 5.361e-07 0.1199
RBK95089.SWT 14 7 130 1 0 1.72e-05 0.0001799 0.02798
RBK95091.SWT 11 10 135 1 0 5.67e-06 9.574e-09 0.4287
RBK95093.CRT 26 50 68 4 15 0.509 0.907 0.3262
RBK95094.CRT 25 50 78 1 0 0.6372 0.4966 0.7139
RBK95095.CRT 21 49 93 5 22 0.9169 0.8825 0.4545
RBK95096.CRT 25 50 96 8 31 0.966 0.4922 0.7019
RBK95099.CRT 22 44 58 5 15 0.5552 0.4299 0.4396
RBK95105.CRT 20 50 60 6 24 0.869 0.4437 0.562
RBK95106.CRT 22 50 70 5 22 0.4993 0.1244 0.06543
RBK95119.CRT 36 50 67 1 0 0.9147 0.4167 0.395
RBK95121.CRT 21 50 84 1 0 0.5246 0.4578 0.8026
RBK95125.CRT 12 35 72 7 21 0.965 0.6304 0.8602
RNI94105.AR1 14 520 525 12 3 0.8804 0.7024 0.04638
SA93215.MC1 59 378 387 69 62 0.008523 0.6616 0.0005155
SA93215.MC2 64 410 416 59 63 0.03102 0.3718 0.001663
SA94214.MC1 32 383 383 57 46 0.7376 0.7605 0.1651
SA94214.MC3 22 178 180 62 51 0.3549 0.637 0.3534
SA94214.MC4 33 406 419 59 41 0.7305 0.9613 0.3174
TRW93256.GR1 29 144 144 181 77 0.00545 0.01028 0.5034
TRW93257.GR2 23 214 214 211 47 0.012 0.1596 0.5112
TRW93258.GR2 23 197 197 182 80 0.149 0.1307 0.1911
TRW93259.GR1 30 307 307 186 97 0.007387 0.03121 0.9803
TRW94255.CC3 35 130 130 83 67 0.01769 0.4692 0.3786
TRW94256.CC1 56 262 262 86 72 0.1415 0.4741 0.5429
TRW94256.CC2 57 165 165 84 56 0.1186 0.5387 0.4943
TRW94256.CC3 31 228 228 62 51 0.2776 0.3423 0.2124
TRW94257.GR3 24 161 164 92 81 0.04089 0.4656 0.01467
TRW94258.GR1 49 146 146 64 187 0.6009 0.5598 0.562
TRW94258.GR2 28 275 275 82 105 0.7051 0.6243 0.201
TRW94259.GR1 20 165 167 122 131 0.03226 0.1857 0.7514


Table A8 Hatchery spring chinook tests of influence of release length on recovery. Bold indicates a p value for the hypothesis test less that .05

Release file ID Number of fish recovered Actual number of release records available Ostensible release size from PTAGIS days (mean) days (std.) p(H1) p(H2) p(H3)
CSM94054.A1A 46 1999 2000 11 16 0.02419 0.03118 0.02624
CSM94055.A2A 21 848 850 17 16 0.6969 0.2183 0.0006378
CSM94055.A2B 26 709 713 12 17 0.3352 0.4046 0.3245
CSM94055.A3A 28 999 1000 14 18 0.7558 0.5115 0.281
CSM94055.A3B 28 997 1000 10 13 0.3256 0.9265 0.05356
DAC94263.07B 25 230 230 5 9 0.4266 0.04017 0.11
DAC94263.08B 27 326 327 8 12 0.6251 0.6174 0.2255
DAC94264.AD1 41 499 500 191 20 0.6614 0.2971 0.5668
DAC94264.CWT 36 500 500 199 28 0.7123 0.7291 0.6835
DAC94264.RV1 49 999 1000 193 34 0.005934 0.01182 0.764
DAC96064.C07 29 500 500 3 11 0.6278 0.09318 0.2835
DAC96074.R11 22 1698 1698 40 18 0.8437 0.3058 0.4942
DAC96074.R12 31 1698 1698 39 17 0.6943 0.9423 0.273
DAC96074.R14 32 2222 2223 42 15 0.6517 0.7258 0.4534
DAC96074.R21 30 1696 1698 37 14 0.00859 0.0009018 0.3023
DAC96074.R32 28 2351 2351 38 17 0.9388 0.5916 0.6813
DAC96074.R42 44 2553 2553 35 16 0.7687 0.9688 0.7428
EJL92281.CF2 20 16 32 3 4 0.005371 0.0003921 0.07923
HLB96073.RW6 91 3866 3866 29 12 0.1872 0.7147 0.05174
HLB96074.R10 60 4221 4245 25 8 0.4077 0.3594 0.6375
HLB96075.R10 69 5077 5081 28 12 0.5988 0.4198 0.6257
HLB96078.R10 51 5253 5255 22 12 0.828 0.9229 0.1059
HLB97029.RW9 22 4075 4075 38 9 0.2766 0.3045 0.9872
HLB97036.R10 25 4343 4359 37 10 0.1632 0.2125 0.9939
HLB97037.R10 21 2675 2683 36 6 0.9942 0.974 0.5858
HLB97043.R10 25 4577 4606 36 10 0.5094 0.9533 0.8736
HLB98040.R05 44 3989 3989 20 4 0.6757 0.2717 0.6467
HLB98042.R07 33 4017 4017 23 4 0.017 0.2448 0.4805
HLB98043.R08 59 4023 4023 22 5 0.9427 0.8731 0.08693
HLB98049.R09 54 4009 4009 21 5 0.925 0.6435 0.8749
HLB98050.R10 80 4005 4005 22 4 0.2591 0.4314 0.776
HLB98054.R11 60 4009 4009 23 4 0.9419 0.5405 0.7022
HLB98056.R12 73 4008 4008 22 4 0.4679 0.3987 0.1013
HLB98057.R16 97 4005 4005 20 4 0.3996 0.4086 0.3739
HLB98061.R17 90 3997 3997 20 5 0.1259 0.7289 0.05285
HLB98063.R18 87 3995 3995 20 5 0.08243 0.9815 0.04368
HLB98064.R19 101 3993 3993 20 4 0.0804 0.4733 0.06076
HLB98068.C20 74 2998 2998 19 4 0.1673 0.5488 0.2104
KEP96325.2RD 73 250 250 2 7 0.2673 0.4742 0.6138
KEP96325.RD1 73 250 250 1 0 0.3182 0.8745 0.8109
LRB95046.R3A 20 489 499 94 232 0.4225 0.6206 0.6742
LRB95046.R4A 21 495 500 189 373 0.7019 0.8177 0.08046
PMS96046.003 37 243 243 3 3 0.8299 0.2236 0.1071
PMS96046.004 34 249 249 4 6 0.1348 0.7706 0.0009448
PMS96046.02A 23 286 286 2 0 0.3537 0.8845 0.9763
PMS96046.03A 40 261 261 5 9 0.8999 0.8257 0.7104
PMS96046.04A 37 261 261 9 13 0.438 0.7047 0.4604
PMS96046.OO2 25 228 228 7 8 0.174 0.7665 0.004307
PMS96047.005 25 228 228 6 10 0.1218 0.2596 0.002376
PMS96047.007 29 230 231 4 5 0.2598 0.8179 0.07855
PMS96047.060 23 211 211 5 6 0.9248 0.4619 0.8113
PMS96047.06A 23 223 223 4 8 0.274 0.1501 0.0009559
PMS96047.07A 31 275 275 6 10 0.6402 0.5038 0.004022
PMS96071.007 32 301 303 5 8 0.6411 0.8732 0.1334
PMS96071.06A 21 206 209 7 11 0.4243 0.6897 0.9976
PMS97028.3 256 1209 1209 6 7 0.02483 0.3894 0.0007976
PMS97028.3B 336 1631 1631 4 4 0.003122 0.143 3.117e-07
PMS97029.3 59 305 305 5 6 0.8187 0.7035 0.4081
PMS97029.3B 55 301 301 5 8 0.313 0.7205 0.02921
PMS97029.4 336 1841 1841 6 7 4.197e-05 0.3344 0.0006899
PMS97029.4B 127 782 782 5 6 0.001989 0.2336 4.313e-06
PMS97029.4C 59 331 331 6 8 0.05037 0.2495 0.02825
PMS97029.4D 83 426 426 5 7 0.3153 0.4388 0.9384
PMS97030.4 179 1108 1108 5 6 2.002e-05 0.2081 0.359
PMS97030.4B 168 899 899 6 7 0.001309 0.01382 0.03231
PMS97030.6 332 1497 1497 5 6 0.003133 0.8449 1.286e-05
PMS97030.6B 283 1275 1275 5 7 0.01532 0.6008 0.1411
PMS97031.7 161 744 744 5 7 0.01138 0.9641 0.004975
PMS97031.7B 240 1029 1029 6 8 0.01984 0.7997 0.4273
PMS97034.14 41 2586 2586 17 10 3.306e-07 0.0002571 0.1881
PMS97035.14A 37 1934 1934 10 9 0.008455 0.02957 0.1098
PMS97035.14B 40 2605 2605 13 11 0.007513 0.1125 0.06792
PMS97036.17B 60 3025 3025 12 9 3.059e-07 6.655e-05 0.9908
PMS97037.17 33 2198 2198 13 9 0.1152 0.05767 0.116
PMS97037.17B 42 2208 2208 13 9 7.063e-05 0.01505 0.03796
PMS97041.15 26 1663 1663 13 11 0.0009054 0.09927 0.2018
PMS97041.15B 54 2778 2778 15 12 0.3163 0.554 0.6869
PMS97041.15C 26 955 955 18 11 0.003835 0.02807 0.9259
PMS97042.15 28 1910 1910 15 9 0.08854 0.3127 0.0003323
PMS97043.16C 60 3127 3127 14 12 0.8287 0.9034 0.8141
PMS97044.16 51 2581 2582 13 12 0.1631 0.1192 0.06922
PMS97044.16C 28 1386 1386 8 7 0.00532 0.008674 0.7317
PMS98048.02A 337 1806 1806 4 4 0.03754 0.367 0.03182
PMS98048.02B 202 1206 1206 4 4 0.06284 0.8657 0.448
PMS98049.05A 338 2100 2100 5 4 0.0241 0.8636 0.0003844
PMS98049.05D 343 1873 1873 6 4 0.006247 0.2011 1.634e-12
PMS98050.04A 218 1183 1183 5 4 0.01743 0.9645 9.349e-07
PMS98051.07C 415 2607 2607 6 4 3.109e-07 0.004141 3.457e-09
PMS98051.07D 287 1615 1617 6 3 2.25e-06 0.0856 0.9
PMS98054.03A 322 1826 1826 4 4 0.04869 0.77 0.05442
PMS98056.15A 61 2631 2631 7 5 0.001007 0.01244 0.7013
PMS98056.15B 44 2910 2911 7 5 0.003528 0.001996 0.02198
PMS98057.15A 61 2872 2872 7 6 0.01367 0.01117 0.2769
PMS98057.15B 63 2985 2985 7 5 0.0009517 0.004198 0.02766
PMS98058.15A 46 2642 2642 7 5 0.2683 0.235 0.4197
PMS98058.15D 50 2564 2564 7 5 0.11 0.1092 0.007982
PMS98061.15B 52 3164 3164 6 5 0.06035 0.5947 0.6809
PMS98061.15C 50 3124 3124 8 5 0.002252 0.04944 0.05619
PMS98062.15A 38 2454 2454 5 4 0.03697 0.04796 0.8707
PMS98062.15D 56 2804 2804 8 6 0.0159 0.123 0.1185
PMS98063.15B 50 1785 1785 9 5 0.004228 0.05449 0.8035
PMS98064.16C 56 3806 3806 11 5 0.01042 0.01652 0.001273
RBK95081.CRT 15 100 154 7 18 2.925e-07 1.042e-06 0.04693
RBK95082.CRT 13 100 154 90 301 1.735e-06 7.212e-05 0.001505
RBK95083.CRT 17 100 161 10 26 4.049e-07 1.654e-06 0.006394
RBK95087.SWT 21 105 123 1 0 0.4001 0.04539 0.3869
RBK95089.SWT 14 98 130 1 0 0.1465 0.2593 0.2803
RBK95091.SWT 11 100 135 1 0 0.9889 0.7068 0.738
RNI93104.R1B 94 823 863 13 6 0.08441 0.07831 5.707e-14
RNI93106.R3B 87 984 1055 12 6 0.4827 0.6584 0.001937
RNI93108.R5B 58 835 902 12 5 0.8242 0.3845 0.3789
RNI93109.R6B 48 617 641 13 3 0.8746 0.3918 0.02158
RNI93110.R7A 44 865 880 12 3 0.8276 0.7694 0.5082
RNI94104.AA1 34 1204 1206 18 4 0.5957 0.3102 1.104e-08
RNI94106.AB1 24 1200 1200 17 6 0.7245 0.6628 0.6327
RNI94107.AC1 22 1200 1201 18 7 0.8334 0.5981 0.1206
RNI94110.AD1 24 1197 1201 17 6 0.413 0.6399 0.02891
RNI94110.DA1 25 742 744 9 4 0.7882 0.3953 0.2661
RNI94110.EA1 22 743 743 9 4 0.8308 0.4284 0.1336
RNI94110.FA1 44 1481 1481 8 5 0.2252 0.9562 0.0008992
RNI94112.CA1 21 732 733 8 3 0.1599 0.3219 0.7322
RNI94112.OA1 22 729 731 10 3 0.9462 0.764 0.1955
RNI94115.FB1 36 1476 1480 11 4 0.07609 0.03735 0.003564
RNI94116.KA1 28 770 774 5 5 0.6982 0.8883 0.4913
RNI94116.MA1 47 1498 1500 4 3 0.7213 0.509 0.01171
RNI94117.CB1 26 743 743 10 3 0.02677 0.02979 0.4778
RNI94118.HA1 31 1438 1442 4 2 0.3656 0.08095 0.008114
RNI94118.JA1 35 1436 1439 5 3 0.2228 0.4045 0.8497
RNI94119.EC1 20 742 742 9 2 0.5077 0.1125 0.004903
RNI94119.FC1 24 1490 1491 10 6 0.2406 0.3475 0.2431
RNI94122.KB1 32 802 803 5 3 0.1294 0.6043 0.003954
RNI94122.LB1 31 792 794 5 2 0.6783 0.2584 0.286
RNI94122.MB1 58 1461 1463 4 3 0.6416 0.9173 0.5668
RNI94124.HB1 64 1341 1346 3 4 0.1553 0.2222 0.02276
RNI94124.JB1 66 1362 1364 3 3 0.4204 0.6969 0.4561
RNI94125.402 41 53 53 0 0 0.7979 0.7763 0.8433
RNI94126.KC1 21 665 667 3 1 0.5174 0.4423 0.9124
RNI94126.LC1 27 707 708 4 3 0.04537 0.2289 0.4067
RNI94126.MC1 44 1393 1397 4 4 0.5298 0.489 0.09426
RNI95098.AA1 38 1250 1250 59 169 0.2267 0.06628 0.002262
RNI95100.AB1 32 781 781 94 256 0.2669 0.2937 0.2084
RNI95104.AC1 37 1183 1183 57 170 0.9396 0.1491 0.003061
RNI95107.AD1 20 568 569 78 232 0.127 0.2956 0.09083
RNI95110.AE1 32 691 691 82 228 0.08252 0.3287 0.4019
RNI95112.AF1 51 1246 1246 19 4 0.9753 0.6433 0.4307
RNI95114.AG1 61 1260 1261 18 4 0.9471 0.3071 0.1974
RNI95116.AH1 44 1223 1225 111 302 0.6732 0.4664 0.6108
RNI95118.AJ1 51 1065 1066 39 145 0.4218 0.3499 0.8588
RNI95120.AK1 38 1210 1213 71 234 0.3163 0.6639 0.882
TRW95031.171 22 249 250 10 12 0.4598 0.2327 0.9775


Figure 1 Length - weight relationship for all chinook, and plot of Eqn. (1).



Figure 2 Weight / length relationship for released fish (left) and recaptured fish (right). The common regression for both the release and the recapture data are shown on both plots. They are significantly different in both slope and intercept (p < .001).



Figure 3 Example of the bi-modal distribution of lengths for recaptured fish weighing more than 40 grams and less than 44 grams.



Figure 4 Weight (Y axis) vs. Length (X axis) plots for juvenile chinook salmon. Title show the runs: yearling (1, 2), subyearling (3), and unknown (5) and the rearing types: wild (W), hatchery (H) and unknown (U). Solid curve is the common regression curve for all releases and recoveries as in Figure 1. The dotted curves are local fits to individual run and rearing type recovery data (plotted points)



Figure