# Comparison of published versus recalibrated age models for Lake Elingamite, Victoria #----------------------------------------------------------------------- # World Data Service for Paleoclimatology, Boulder # and # NOAA Paleoclimatology Program #----------------------------------------------------------------------- # NOTE: Please cite original publication, online resource and date accessed when using this data. # If there is no publication information, please cite Investigator, title, online resource and date accessed. # # Description/Documentation lines begin with # # Data lines have no # # # Online_Resource: https://www.ncdc.noaa.gov/paleo/study/21731 # Description: NOAA Landing Page # Online_Resource: http://www1.ncdc.noaa.gov/pub/data/paleo/pages2k/dixon2017australasia/dixon2017lakeelingamite.txt # Description: NOAA location of the template # # # Archive: Diatom modern-analougue technique salinity reconstruction # # Parameter_Keywords: #--------------------------------------- # Contribution_Date # Date: 2017-12-11 #--------------------------------------- # File_Last_Modified_Date # Date: 2017-12-11 #--------------------------------------- # Title # Study_Name: Comparison of published versus recalibrated age models forLlake Elingamite, Victoria #--------------------------------------- # Investigators # Investigators: Dixon, Bronwyn C.; Tyler, Jonathan J.; Lorrey, Andrew M; Goodwin, Ian D; Gergis, Joelle; Drysdale, Russell N #--------------------------------------- # Description_Notes_and_Keywords # Description: # Provided Keywords: age modelling, Bayesian #--------------------------------------- # Publication # Authors: Dixon, Bronwyn C.; Tyler, Jonathan J.; Lorrey, Andrew M; Goodwin, Ian D; Gergis, Joelle; Drysdale, Russell N # Published_Date_or_Year: 2017 # Published_Title: Low-resolution Australasian palaeoclimate records of the last 2000 years # Journal_Name: Climate of the Past # Volume: # Edition: # Issue: # Pages: # Report Number: # DOI: # Online_Resource: # Full_Citation: # Abstract: Non-annually resolved palaeoclimate records in the Australasian region were compiled to facilitate investigations of decadal to centennial climate variability over the past 2000 years. A total of 661 lake/wetland, geomorphic, marine, and speleothem records were identified and then assessed against a set of a priori criteria based on temporal resolution, record length, dating methods, and confidence of the proxy-climate relationship over the Common Era. A high quality subset of 22 records across Australasia met the criteria and they are endorsed for subsequent analyses. New chronologies based on progressive Bayesian techniques were constructed for the high quality records to ensure a consistent approach to age modelling and quantification of age uncertainties. Chronological uncertainty was the primary reason why records did not meet the selection criteria. Despite present limitations, existing proxies and reconstruction techniques that successfully capture climate variability in the region show potential to address spatial gaps and expand the range of climate variables covering the last 2000 years from the Australasian region. #--------------------------------------- # Publication # Authors: Barr, Cameron; Tibby, John; Gell, Peter; Tyler, Jonathan; Zawadzki, Atun; Jacobson, Geraldine # Published_Date_or_Year: 2014 # Published_Title: Climate variability in south-eastern Australia over the past 1500 years inferred from the high-resolution diatom records of two crater lakes # Journal_Name: Quaternary Science Reviews # Volume: 95 # Edition: # Issue: # Pages: 115-131 # Report Number: # DOI: http://dx.doi.org/10.1016/j.quascirev.2014.05.001 # Online_Resource: # Full_Citation: Barr, C., Tibby, J., Gell, P., Tyler, J., Zawadzki, A. & Jacobsen, G. E. 2014. Climate variability in south-eastern Australia over the last 1500 years inferred from the high-resolution diatom records of two crater lakes. Quaternary Science Reviews, 95, 115-131. # Abstract: Climates of the last two millennia have been the focus of numerous studies due to the availability of high-resolution palaeoclimate records and the occurrence of divergent periods of climate, commonly referred to as the ‘Medieval Climatic Anomaly’ and ‘The Little Ice Age’. The majority of these studies are centred in the Northern Hemisphere and, in comparison, the Southern Hemisphere is relatively under-studied. In Australia, there are few high-resolution, palaeoclimate studies spanning a millennium or more and, consequently, knowledge of long-term natural climate variability is limited for much of the continent. South-eastern Australia, which recently experienced a severe, decade-long drought, is one such region. Results are presented of investigations from two crater lakes in the south-east of mainland Australia. Fluctuations in lake-water conductivity, a proxy for effective moisture, are reconstructed at sub-decadal resolution over the past 1500 years using a statistically robust, diatom-conductivity transfer function. These data are interpreted in conjunction with diatom autecology. The records display coherent patterns of change at centennial scale, signifying that both lakes responded to regional-scale climate forcing, though the nature of that response varied between sites due to differing lake morphometry. Both sites provide evidence for a multi-decadal drought, commencing ca 650 AD, and a period of variable climate between ca 850 and 1400 AD. From ca 1400–1880 AD, coincident with the timing of the ‘Little Ice Age’, climates of the region are characterised by high effective moisture and a marked reduction in inter-decadal variability. The records provide context for climates of the historical period and reveal the potential for more extreme droughts and more variable climate than that experienced since European settlement of the region ca 170 years ago. #--------------------------------------- # Funding_Agency # Funding_Agency_Name: # Grant: #--------------------------------------- # Site Information # Site_Name: Lake Elingamite # Location: # Country: # Northernmost_Latitude: -38.35 # Southernmost_Latitude: -38.35 # Easternmost_Longitude: 143 # Westernmost_Longitude: 143 # Elevation: 121 #--------------------------------------- # Data_Collection # Collection_Name: LE1 # First_Year: 1472 # Last_Year: -51 # Time_Unit: cal yr BP # Core_Length: 178 # Notes: #--------------------------------------- # Chronology_Information # Chronology: #--------------------------------------- # Variables # Data variables follow that are preceded by "##" in columns one and two. # Variables list, one per line, shortname-tab-longname components (9 components: what, material, error, units, seasonality, archive, detail, method, C or N for Character or Numeric data) ## Depth_cm ,Depth in the core,NA,,cm,NA,NA,,NA,N ## PublishedAge_YBP ,Ages from original record publication,NA,,CE,NA,NA,,NA,N ## BACON0.05CI ,5% confidence interval age as calculated in BACON age modelling software,NA,,,,,,, ## BACON0.95CI ,95% confidence interval age as calculated in BACON age modelling software,NA,,,,,,, ## BACONmedian ,median sample age as calculated in BACON age modelling software,NA,,,,,,, ## BACONwmean ,weighted mean age as calculated in BACON age modelling software,NA,,,,,,, ## Conductivity ,weighted mean age as calculated in BACON age modelling software,Diatom,,uS/cm,NA,Diatom,,Modern Analogue Technique,N ## MAT MinDC ,Reconstructed conductivity,Diatom,,NA,NA,Diatom,Samples with minimum dissimilarity coefficient greater/equal to highest 10th percentile (131.493) are considered to have good modern analogues,Modern Analogue Technique,N #------------------------ # Data # Data lines follow (have no #) # Data line format - tab-delimited text, variable short name as header # Missing Value: NA Depth_cm PublishedAge_YBP BACON0.05CI BACON0.95CI BACONmedian BACONwmean Conductivity (uS/cm) MAT MinDC (minimum dissimilarity) Percentiles of MinDC values 1 -52 -55.3 -47.9 -51.7 -51.6 5060.8096 87.1705 1 percentile 2 -50 -53.3 -44.9 -49.4 -49.3 4553.444 100.041 2 percentile 3 -48 -51.6 -42.2 -47.1 -47 4135.5188 87.5747 5 percentile 4 -45.5 -49.6 -40 -44.8 -44.7 3914.7136 87.3444 10 percentile 5 -43 -47.2 -38 -42.5 -42.5 4384.0954 95.7294 20 percentile 6 -41 -44.2 -36.3 -40.2 -40.2 4359.2322 97.9171 7 -39 -42.3 -33.2 -38 -37.9 4814.4868 96.5976 8 -36.5 -40.4 -30.6 -35.7 -35.6 4967.2955 86.6109 9 -34 -38.2 -28.5 -33.3 -33.3 4926.744 90.0118 10 -32 -35.5 -26.6 -31 -31 5335.5599 85.11 11 -30 -33.1 -24.2 -28.7 -28.6 4604.4737 94.4584 12 -27.5 -31.4 -21.3 -26.5 -26.4 4716.176 94.655 13 -25 -29.5 -18.8 -24.3 -24.2 5145.7656 87.6026 14 -23 -27.3 -16.5 -22 -21.9 5486.5583 84.2351 15 -21 -24.8 -14.6 -19.8 -19.7 5420.5081 89.9212 16 -18.5 -22.5 -12.2 -17.5 -17.4 5242.2774 90.7496 17 -16 -20.7 -9.3 -15.3 -15.2 4998.1582 86.675 18 -14 -18.7 -6.8 -13 -12.9 4881.9126 94.714 19 -12 -16.4 -4.6 -10.7 -10.6 5679.6294 87.8092 20 -10 -14.1 -2.4 -8.4 -8.3 5446.6567 96.8655 21 -7.5 -11.8 -0.1 -6.1 -6 5020.0726 99.6709 22 -5 -9.8 2.7 -3.9 -3.7 5489.2119 87.0836 23 -3 -7.8 5.3 -1.6 -1.4 4770.567 95.9638 24 -1 -5.5 7.7 0.8 0.9 5174.4 90.9794 25 1 -3.2 9.9 3.1 3.2 5228.294 86.693 26 3 -0.9 12.5 5.5 5.6 4654.4675 97.0578 27 5 1.2 15.3 7.9 8.1 4925.8366 87.2733 28 7 3.4 18.1 10.3 10.5 5147.4247 84.0357 29 9 5.6 20.6 12.7 12.9 4949.143 87.1415 30 11 8 23.1 15.1 15.3 5060.8096 98.6133 31 13 10.4 25.8 17.7 17.9 6203.8316 83.7487 32 15 12.5 29.1 20.3 20.5 5545.6186 93.9186 33 17 14.9 32.3 22.9 23.2 5369.6997 86.4767 34 19 17.4 35.2 25.6 25.9 5994.183 86.1019 35 21 20 38.2 28.2 28.6 5128.0234 88.6973 36 23 22.6 41.5 31 31.4 5428.127 89.3999 37 25 25 45.9 34 34.5 5214.8281 95.0593 38 27 27.6 49.9 37.1 37.7 4322.6493 93.9498 39 29 30.2 54.1 40.3 40.9 5143.0412 82.8528 40 31 33 58.1 43.3 44 5668.5241 83.0501 41 33 35.9 62.2 46.5 47.4 5125.3084 88.1404 42 35.5 38.6 68.7 50.5 51.5 5355.4997 79.4132 43 38 41.6 75.1 54.6 55.7 3935.7726 97.0212 44 40.5 44.9 81.2 58.8 60.1 3224.9278 104.207 45 43.5 48.1 87.8 63 64.5 2304.4113 99.7688 46 46.5 51.8 95.2 67.7 69.4 2521.3318 95.005 47 50 55.9 106.8 74.6 76.6 3450.7222 85.9424 48 54 60.4 118.7 81.7 84 2669.439 100.226 49 58 64.9 130.6 88.7 91.3 2545.599 99.8187 50 62.5 69.7 141.5 95.8 98.8 1196.4375 61.9414 51 67.5 74.4 151.9 102.9 106.2 895.07618 50.4307 52 73 79.4 163.1 109.9 113.6 822.86767 47.7818 53 79 84.4 174 117 121 837.10512 54.6058 54 85.5 89.1 184.8 124 128.3 924.97501 60.9228 55 92.5 94.3 195.8 130.8 135.7 797.92119 46.7283 56 100 99.5 207.5 137.6 143.1 776.92662 41.2692 57 108 107 221.3 146.5 153.2 704.22267 40.2603 58 117 116.6 235.2 159.7 165.7 721.97141 38.9248 59 126.5 126.6 248 174.1 178.6 744.18344 41.2994 60 136.5 136.5 261.3 187.8 191.5 712.88586 41.4553 60.5 144.75 142.8 267.1 194.3 197.9 719.20053 39.5859 61 150.25 147.1 274.6 200.9 204.3 746.36283 36.5479 61.5 155.75 153 280.3 207.6 210.8 774.21218 37.7717 62 161.25 157.6 287.4 214.3 217.3 746.03637 30.6255 62.5 167 163.8 293.3 220.9 223.7 763.73026 33.6369 63 173 168.6 301 227.6 230.1 803.76668 33.297 63.5 179 175 306.6 233.9 236.6 770.67274 34.2085 64 185 179.8 314.1 240.4 243.1 731.94762 37.7261 64.5 191.25 186.5 319.7 247.2 249.6 836.16118 38.1691 65 197.75 191.8 326.9 253.9 256.1 826.26622 37.5708 65.5 204.25 198.3 332.7 260.6 262.6 712.31157 39.9015 66 210.75 203.1 339.9 267.3 269 715.23704 43.6639 66.5 217.5 209.9 345.3 273.7 275.5 768.86484 42.2332 67 224.5 214.8 352.5 280.1 281.9 798.54611 50.5247 67.5 231.5 221.6 358.5 286.8 288.5 886.31888 56.2153 68 238.5 226.7 365.8 293.6 295.1 888.73033 68.7378 68.5 245.5 234.2 371.5 300.1 301.6 753.59846 60.819 69 252.5 239.8 378.2 306.7 308.1 834.10361 59.1552 69.5 259.5 246.3 383.6 313 314.3 898.52466 70.6005 70 266.5 251.1 390.6 319.7 320.7 852.41287 59.6386 70.5 273.75 258.1 396.2 326.3 327.2 909.59905 59.8955 71 281.25 263.7 403.3 333 333.7 1029.6983 65.4797 71.5 288.75 270.8 408.9 339.6 340.3 823.77764 58.83 72 296.25 276 415.4 346.1 346.8 819.97385 58.4157 72.5 303.75 283.3 420.7 352.6 353.2 790.31459 55.9572 73 311.25 288.7 427.1 359.2 359.7 768.98877 59.1807 73.5 318.75 295.6 432.6 365.8 366.1 805.15594 55.9171 74 326.25 301.2 439.1 372.3 372.4 792.95766 50.9504 74.5 334 308.6 443.8 378.8 378.9 736.32577 49.2288 75 342 314.4 450.6 385.3 385.4 718.22414 52.159 75.5 349.75 322.1 455.7 391.8 391.9 696.09738 51.0323 76 357.25 327.7 462.2 398.5 398.5 762.60562 62.7521 76.5 365 334.9 466.8 404.9 404.8 788.71482 71.9845 77 373 340.6 472.9 411.6 411.2 763.46653 54.3013 77.5 381 348.1 478 418.2 417.8 831.55313 51.6424 78 389 354.4 484.1 424.7 424.2 1007.0708 82.2523 78.5 396.75 362.4 489.6 431.2 430.7 941.69443 68.7299 79 404.25 368.6 496.1 437.7 437.3 964.45063 60.514 79.5 412 376.7 501.1 444.2 443.8 892.93532 63.8596 80 420 382.5 507.5 450.8 450.2 896.25172 64.1548 80.5 428 390.7 512.5 457.2 456.7 1089.0304 75.5009 81 436 396.7 518.8 463.7 463.1 1003.9452 72.9996 81.5 443.75 404.6 523.3 470 469.6 913.73445 59.8305 82 451.25 410.4 529.4 476.7 476 1042.0775 69.7282 82.5 459 418.1 535.1 483 482.4 972.18743 68.4003 83 467 423.9 542.3 489.4 488.7 1069.769 74.2806 83.5 474.75 431.6 548.5 495.5 494.9 807.69985 48.6995 84 482.25 437.2 556 501.7 501.1 815.79305 48.5612 84.5 489.75 444.7 561.6 507.8 507.3 779.66852 53.6717 85 497.25 450.9 569.5 513.8 513.5 805.86074 59.8091 85.5 505 458.8 575.8 520.1 519.9 774.05176 66.3512 86 513 465.1 583.7 526.5 526.4 921.55233 76.2054 86.5 520.5 473.1 590.2 532.7 532.7 968.21097 86.4329 87 527.5 479.1 597.9 538.9 539.1 1089.3313 91.0093 87.5 534.75 487 604.4 545 545.3 934.43694 77.1734 88 542.25 492.9 612.3 550.8 551.3 1085.7254 74.4974 88.5 549.5 500.9 618.7 556.6 557.7 2034.3234 124.765 89 556.5 506.9 626.8 562.9 564 1549.1733 109.507 89.5 563.75 514.5 632.9 568.5 570.2 1588.9126 99.148 90 571.25 520.1 640 574.6 576.4 1247.7857 100.843 90.5 578.25 526 645.9 580.4 582.4 1276.2331 101.76 91 584.75 530.9 652.3 586.2 588.2 1226.1398 108.377 91.5 591.5 536.1 657.3 591.5 593.5 1308.2478 94.8301 92 598.5 540.3 663.2 596.6 598.8 1520.3025 105.495 92.5 605.25 545.7 668.7 602.2 604.3 1735.8013 88.844 93 611.75 550.3 675.3 607.4 609.7 1562.5359 97.5016 93.5 618.25 555.7 680.7 613.1 615.2 1505.9134 93.7112 94 624.75 560.2 686.6 618.5 620.7 1076.7875 75.8103 94.5 631.25 565.3 691.7 624.1 626.1 1135.1154 70.2469 95 637.75 569.5 698.4 629.4 631.5 1018.2162 57.3513 95.5 644.25 574.8 703.7 634.9 636.9 931.53677 56.8433 96 650.75 579 710.1 640.3 642.4 864.43034 48.4776 96.5 657 584.7 715.4 645.8 647.8 921.21288 55.2796 97 663 589 721.9 651.3 653.2 921.46745 55.7113 97.5 669 594 727 657.2 658.8 1009.1135 60.9314 98 675 598.3 732.9 662.7 664.2 1067.7756 69.3305 98.5 681 603.1 738.3 668.2 669.7 1019.2014 54.8311 99 687 607.3 744.8 673.7 675.2 1004.1764 52.5748 99.5 693 612.2 749.9 679.3 680.6 1021.1981 56.7974 100 699 616.7 755.9 684.8 686 1056.4526 57.9356 100.5 705 622.1 761.4 690.3 691.4 1037.7196 55.9478 101 711 626.3 767.6 695.7 696.7 1047.1768 55.8854 101.5 717 631.7 772.8 701.4 702.2 1026.1716 53.6716 102 723 636.1 779 706.9 707.7 967.38645 45.053 102.5 729 641.6 783.9 712.6 713.2 951.78751 46.0079 103 735 646 790.3 718.1 718.7 982.24539 47.5822 103.5 740.75 651.7 794.9 724 724.2 1135.3768 56.0452 104 746.25 655.6 800.7 729.4 729.7 1016.8104 45.7336 104.5 752 660.4 805.7 735 735.1 1178.9897 54.8261 105 758 664.2 811.9 740.3 740.4 1052.713 47.6337 105.5 764 669.8 816.7 745.9 745.9 1177.6873 62.4108 106 770 674.3 822.8 751.3 751.3 1464.8394 63.7182 106.5 775.75 679 827.8 756.9 756.7 1581.4665 73.1392 107 781.25 683.3 833.5 762.4 762 1167.0783 58.554 107.5 787 688.6 838.7 768 767.5 1052.5918 46.4576 108 793 692.4 844.9 773.6 773 1415.0768 62.7591 108.5 799 697.4 849.7 779.2 778.3 866.34326 39.5566 109 805 701.9 855.6 784.8 783.7 892.64751 43.6847 109.5 811 706.8 860 790.5 789.1 820.21933 44.2822 110 817 711.4 865.9 796.2 794.6 916.41038 56.0925 110.5 823 716.5 870.5 801.8 800 1083.7023 52.7771 111 829 720.8 876.7 807.4 805.5 1100.3732 57.5685 111.5 835 726.1 881.2 813.2 811 1109.7368 61.2871 112 841 730.4 887 818.8 816.4 1153.108 66.4087 112.5 847 736.1 891.8 824.7 821.9 1300.2893 65.5858 113 853 740.7 897.6 830.5 827.3 1301.1579 61.7373 113.5 859 745.9 902.1 836.2 832.7 1344.3427 62.0108 114 865 750.5 907.9 841.9 838.2 1492.2789 65.7255 114.5 871.25 755.8 911.9 847.8 843.6 1228.0329 53.0156 115 877.75 760.5 917.9 853.4 849.1 1283.1281 56.0073 115.5 884 765.6 921.9 859.6 854.5 1398.1379 64.8604 116 890 770.3 927.7 865.4 860 1670.9752 78.8244 116.5 896.25 775.7 932.5 871.3 865.5 1626.2601 70.2193 117 902.75 780.1 939.3 876.8 871.1 1749.5647 73.3858 117.5 909.25 785.6 946.1 882.4 876.9 1927.4805 79.289 118 915.75 790.4 954.7 887.9 882.6 1448.0381 61.2176 118.5 922.5 796.1 961.3 893.3 888.4 1257.1294 50.1165 119 929.5 801 969 898.5 894.1 1320.6569 51.3156 119.5 936.25 806.8 975.3 904.3 900 1472.4481 59.7941 120 942.75 811.8 983.1 909.6 905.7 1146.3573 45.1724 120.5 949.5 817.2 989.3 915.2 911.4 1132.0093 46.9351 121 956.5 821.8 996.9 920.6 917.2 916.72695 38.4979 121.5 963.25 826.9 1003.1 926.2 922.8 962.58702 42.2672 122 969.75 831.2 1010 931.6 928.4 1014.9625 48.4422 122.5 976.5 837.2 1016.4 937.1 934.1 1048.4072 47.0326 123 983.5 841.6 1023.8 942.3 939.8 1120.3662 48.7595 123.5 990.5 846.9 1029.7 947.9 945.4 1436.746 62.8381 124 997.5 851.1 1036.9 953.4 951 1173.7349 52.8726 124.5 1004.5 856.4 1043.1 958.8 956.8 1003.1364 41.0443 125 1011.5 861 1050.7 964.2 962.4 924.88982 39.2255 125.5 1018.5 866.4 1056.2 970 968.1 869.06048 38.1439 126 1025.5 871.4 1062.9 975.6 973.9 982.85624 40.2466 126.5 1032.5 877.5 1069 981 979.7 988.87182 40.0053 127 1039.5 882.2 1076.8 986.5 985.4 995.90979 39.9019 127.5 1046.5 887.9 1082.5 992.3 991.1 1170.5501 45.2114 128 1053.5 893 1089.5 997.9 996.9 1018.2865 43.7779 128.5 1060.25 899 1095.1 1003.6 1002.5 1001.1981 45.42 129 1066.75 903.8 1102.5 1009.2 1008.3 907.73692 43.6909 129.5 1073.5 909.7 1108 1014.7 1014 1096.5792 50.5877 130 1080.5 915 1115.1 1020.1 1019.7 991.9505 44.6009 130.5 1087.5 920.4 1121.3 1025.9 1025.5 857.70906 43.452 131 1094.5 925.7 1128.1 1031.4 1031.2 955.03657 40.1719 131.5 1101.5 931.6 1134.1 1037.1 1037 867.64087 35.8641 132 1108.5 936.4 1141.1 1042.8 1042.9 1040.7586 38.5146 132.5 1115.25 941.8 1147.1 1048.5 1048.7 916.74806 38.6848 133 1121.75 946.4 1153.6 1054 1054.3 792.59258 31.0691 133.5 1128.5 952.2 1159.8 1059.6 1060.1 878.01109 38.0639 134 1135.5 957.1 1166.6 1065.1 1065.9 874.64134 38.7348 134.5 1142.25 963.1 1172.1 1070.7 1071.5 930.76491 41.3161 135 1148.75 968.2 1179.1 1076 1077.1 868.48036 42.9863 135.5 1155.25 973.6 1184.9 1081.7 1082.9 1404.6884 63.1131 136 1161.75 978.4 1191.7 1087.7 1088.8 1455.8613 65.5076 136.5 1168.25 984.1 1197.5 1093.5 1094.6 1365.872 64.7982 137 1174.75 989.4 1204.8 1099.1 1100.4 1570.0013 73.4215 137.5 1181 994.7 1210.4 1104.7 1106.2 1562.7158 83.8528 138 1187 999.4 1216.8 1110.2 1112 1673.8248 85.6937 138.5 1193.25 1004.9 1222.2 1115.7 1117.6 1704.9043 70.167 139 1199.75 1009.4 1228.7 1121.3 1123.2 2274.05 99.5085 139.5 1206 1015.3 1234.5 1126.8 1128.9 2306.0037 105.16 140 1212 1020.9 1240.8 1132.3 1134.7 3923.6476 102.202 140.5 1218 1026.4 1246.1 1137.7 1140.4 2796.7909 112.98 141 1224 1031 1252.3 1143.2 1146.2 2223.6171 103.953 141.5 1229.75 1036.5 1257.8 1148.7 1152 1788.7103 98.4743 142 1235.25 1041.4 1264.2 1154.4 1157.9 1780.041 92.3008 142.5 1241 1047.3 1269.8 1159.8 1163.6 1252.7661 61.9431 143 1247 1052.4 1276.6 1165.3 1169.4 1206.6186 56.0409 143.5 1252.75 1057.6 1281.9 1170.5 1175.2 1002.0514 47.1392 144 1258.25 1062.8 1288.2 1176 1181 1062.3558 47.0951 144.5 1263.5 1068.5 1293.4 1180.8 1186.7 816.97732 35.8329 145 1268.5 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