Knowledge

Stony-iron meteorite

Source đź“ť

49: 17: 1074: 1023: 390: 464: 296: 1091: 360: 1096: 1175: 75: 63: 39: 152:
Stony-iron meteorites are all differentiated, meaning that they show signs of alteration. They are therefore
517: 1079: 903: 1028: 1018: 807: 802: 503: 1086: 512: 440: 1170: 740: 508: 499: 489: 383: 187: 1048: 797: 420: 267: 534: 986: 956: 763: 758: 677: 198:
The meteoric iron of stony-irons is similar to that of iron meteorites, consisting mostly of
996: 893: 629: 321: 583: 8: 898: 610: 570: 376: 474: 325: 991: 843: 588: 54: 312:
Buseck, P.R. (1977). "Pallasite meteorites: mineralogy, petrology, and geochemistry".
1149: 1117: 790: 750: 457: 333: 292: 57:
showing the mixture of meteoric iron and silicates that is typical of this division.
775: 329: 142: 138: 110: 1011: 832: 785: 722: 652: 821: 730: 647: 469: 452: 425: 146: 346:
F. Heide, F. Wlotzka: Meteorites, Messengers from Space. Springer Verlag 1985.
223: 1164: 1137: 1043: 1033: 865: 848: 695: 368: 247: 168: 134: 27:
Meteorites that consist of nearly equal parts of meteoric iron and silicates
1127: 883: 770: 735: 603: 545: 445: 211: 180: 160: 106: 1055: 951: 935: 930: 637: 598: 593: 479: 403: 153: 970: 642: 620: 239: 164: 497: 1144: 1006: 975: 888: 710: 700: 667: 657: 526: 435: 411: 399: 251: 1112: 780: 662: 255: 243: 235: 231: 227: 219: 215: 199: 98: 925: 705: 690: 685: 207: 203: 176: 172: 102: 1132: 430: 1122: 210:. Accessory minerals that also include non-silicates are: 183:. The meteoric iron occurs in clasts instead of a matrix. 206:
in different proportions. The silicates are dominated by
48: 133:
are meteorites that consist of nearly equal parts of
291:(Sec. ed.). Cambridge: Cambridge Univ. Press. 1162: 398: 384: 120:95 pallasites, 183 mesosiderites (278 Total) 280: 391: 377: 47: 286: 14: 1163: 311: 372: 145:, that are mostly silicates, and the 171:with embedded silicates (most of it 289:Meteorites and their parent planets 141:. This distinguishes them from the 24: 33:Stony-iron meteorite (siderolites) 25: 1187: 159:The stony-irons are divided into 149:, that are mostly meteoric iron. 190:schemes, usually called "Type". 186:They are in the top rank of all 357:Meteorites, comets, and planets 314:Geochimica et Cosmochimica Acta 349: 340: 305: 167:. Pallasites have a matrix of 13: 1: 273: 193: 334:10.1016/0016-7037(77)90044-8 7: 261: 10: 1192: 1029:extraterrestrial materials 287:McSween, Harry Y. (1999). 1105: 1064: 969: 944: 918: 874: 820: 749: 721: 676: 628: 619: 525: 488: 410: 116: 93: 74: 62: 46: 37: 32: 188:Meteorite classification 808:Meteorites on Mars list 803:Martian meteorites list 268:Glossary of meteoritics 1176:Stony-iron meteorites 957:Nonmagmatic meteorite 175:). Mesosiderites are 127:Stony-iron meteorites 117:Total known specimens 1024:Ca–Al-rich inclusion 179:which show signs of 18:Stony–iron meteorite 326:1977GeCoA..41..711B 355:Karl K. Turekian. 1158: 1157: 1150:Near-Earth object 1118:Atmospheric entry 965: 964: 914: 913: 816: 815: 124: 123: 16:(Redirected from 1183: 983:Characteristics 759:Basaltic Breccia 626: 625: 523: 522: 495: 494: 393: 386: 379: 370: 369: 363: 353: 347: 344: 338: 337: 309: 303: 302: 284: 143:stony meteorites 55:Esquel meteorite 51: 30: 29: 21: 1191: 1190: 1186: 1185: 1184: 1182: 1181: 1180: 1171:Meteorite types 1161: 1160: 1159: 1154: 1101: 1060: 973: 961: 940: 910: 870: 812: 786:Orthopyroxenite 745: 717: 672: 615: 515: 507: 484: 406: 397: 367: 366: 354: 350: 345: 341: 310: 306: 299: 285: 281: 276: 264: 196: 147:iron meteorites 97:Meteoric iron ( 89: 58: 53:A slice of the 28: 23: 22: 15: 12: 11: 5: 1189: 1179: 1178: 1173: 1156: 1155: 1153: 1152: 1147: 1142: 1141: 1140: 1130: 1125: 1120: 1115: 1106: 1103: 1102: 1100: 1099: 1094: 1089: 1084: 1083: 1082: 1077: 1071:Meteorites by 1068: 1066: 1062: 1061: 1059: 1058: 1053: 1052: 1051: 1046: 1038: 1037: 1036: 1031: 1026: 1016: 1015: 1014: 1009: 1001: 1000: 999: 994: 989: 980: 978: 967: 966: 963: 962: 960: 959: 954: 948: 946: 945:Obsolete terms 942: 941: 939: 938: 933: 928: 922: 920: 916: 915: 912: 911: 909: 908: 907: 906: 901: 896: 886: 880: 878: 872: 871: 869: 868: 863: 860: 857: 854: 851: 846: 841: 838: 835: 830: 826: 824: 818: 817: 814: 813: 811: 810: 805: 800: 795: 794: 793: 783: 778: 773: 768: 767: 766: 755: 753: 747: 746: 744: 743: 738: 733: 731:Impact breccia 727: 725: 719: 718: 716: 715: 714: 713: 708: 703: 693: 688: 682: 680: 674: 673: 671: 670: 665: 660: 655: 650: 645: 640: 634: 632: 623: 617: 616: 614: 613: 608: 607: 606: 601: 596: 586: 581: 580: 579: 576: 568: 567: 566: 563: 560: 557: 554: 551: 548: 543: 540: 531: 529: 520: 492: 490:Classification 486: 485: 483: 482: 477: 472: 470:Micrometeorite 467: 462: 461: 460: 450: 449: 448: 443: 438: 433: 423: 417: 415: 408: 407: 396: 395: 388: 381: 373: 365: 364: 348: 339: 320:(6): 711–740. 304: 298:978-0521587518 297: 278: 277: 275: 272: 271: 270: 263: 260: 242:, low-calcium 195: 192: 122: 121: 118: 114: 113: 95: 91: 90: 88: 87: 84: 80: 78: 72: 71: 66: 60: 59: 52: 44: 43: 35: 34: 26: 9: 6: 4: 3: 2: 1188: 1177: 1174: 1172: 1169: 1168: 1166: 1151: 1148: 1146: 1143: 1139: 1136: 1135: 1134: 1131: 1129: 1126: 1124: 1121: 1119: 1116: 1114: 1111: 1108: 1107: 1104: 1098: 1097:Organizations 1095: 1093: 1090: 1088: 1085: 1081: 1078: 1076: 1075:find location 1073: 1072: 1070: 1069: 1067: 1063: 1057: 1054: 1050: 1049:Widmanstätten 1047: 1045: 1044:Neumann lines 1042: 1041: 1039: 1035: 1034:meteoric iron 1032: 1030: 1027: 1025: 1022: 1021: 1020: 1017: 1013: 1010: 1008: 1005: 1004: 1002: 998: 995: 993: 990: 988: 985: 984: 982: 981: 979: 977: 972: 968: 958: 955: 953: 950: 949: 947: 943: 937: 934: 932: 929: 927: 924: 923: 921: 917: 905: 902: 900: 899:Eagle Station 897: 895: 892: 891: 890: 887: 885: 882: 881: 879: 877: 873: 867: 864: 861: 858: 855: 852: 850: 847: 845: 842: 839: 836: 834: 831: 828: 827: 825: 823: 819: 809: 806: 804: 801: 799: 796: 792: 789: 788: 787: 784: 782: 779: 777: 774: 772: 769: 765: 762: 761: 760: 757: 756: 754: 752: 748: 742: 739: 737: 734: 732: 729: 728: 726: 724: 720: 712: 709: 707: 704: 702: 699: 698: 697: 694: 692: 689: 687: 684: 683: 681: 679: 675: 669: 666: 664: 661: 659: 656: 654: 651: 649: 646: 644: 641: 639: 636: 635: 633: 631: 627: 624: 622: 618: 612: 609: 605: 602: 600: 597: 595: 592: 591: 590: 587: 585: 582: 577: 574: 573: 572: 569: 564: 561: 558: 555: 552: 549: 547: 544: 541: 538: 537: 536: 533: 532: 530: 528: 524: 521: 519: 514: 510: 505: 501: 496: 493: 491: 487: 481: 478: 476: 473: 471: 468: 466: 463: 459: 456: 455: 454: 451: 447: 444: 442: 439: 437: 434: 432: 429: 428: 427: 424: 422: 419: 418: 416: 413: 409: 405: 401: 394: 389: 387: 382: 380: 375: 374: 371: 362: 358: 352: 343: 335: 331: 327: 323: 319: 315: 308: 300: 294: 290: 283: 279: 269: 266: 265: 259: 257: 253: 249: 248:schreibersite 245: 241: 237: 233: 229: 225: 221: 217: 213: 209: 205: 201: 191: 189: 184: 182: 178: 174: 170: 169:meteoric iron 166: 162: 161:mesosiderites 157: 155: 150: 148: 144: 140: 136: 135:meteoric iron 132: 128: 119: 115: 112: 108: 104: 100: 96: 92: 85: 82: 81: 79: 77: 73: 70: 67: 65: 61: 56: 50: 45: 42: — 41: 38:—  36: 31: 19: 1128:Impact event 1109: 884:Mesosiderite 875: 798:Shergottites 771:Chassignites 736:Mare basalts 535:Carbonaceous 446:strewn field 356: 351: 342: 317: 313: 307: 288: 282: 212:carlsbergite 197: 185: 181:metamorphism 158: 151: 130: 126: 125: 107:tetrataenite 86:Mesosiderite 68: 1056:CI1 fossils 952:Amphoterite 936:Octahedrite 931:Hexahedrite 638:Acapulcoite 565:C ungrouped 480:Parent body 404:meteoritics 224:daubrĂ©elite 154:achondrites 131:siderolites 94:Composition 1165:Categories 997:weathering 971:Mineralogy 919:Structural 894:Main group 876:Stony-iron 678:Asteroidal 643:Brachinite 621:Achondrite 441:statistics 400:Meteorites 274:References 240:merrillite 194:Mineralogy 165:pallasites 69:Stony-iron 1145:Meteoroid 1110:See also: 1040:Patterns 1007:chondrule 976:petrology 889:Pallasite 781:Nakhlites 711:Howardite 701:Diogenite 668:Winonaite 658:Lodranite 630:Primitive 584:Kakangari 571:Enstatite 527:Chondrite 436:impactite 412:Meteorite 252:tridymite 139:silicates 111:silicates 83:Pallasite 76:Subgroups 1113:Asteroid 1092:Journals 1019:Minerals 1012:presolar 904:Pyroxene 791:ALH84001 764:NWA 7034 663:Ureilite 611:Rumuruti 589:Ordinary 518:grouplet 421:Glossary 262:See also 256:troilite 244:pyroxene 236:ilmenite 232:graphite 228:feldspar 220:cohenite 216:chromite 200:kamacite 177:breccias 99:kamacite 1003:Grains 926:Ataxite 751:Martian 706:Eucrite 691:Aubrite 686:Angrite 475:Notable 465:Largest 458:hunting 322:Bibcode 208:olivine 204:taenite 173:olivine 103:taenite 1138:shower 1133:Meteor 1087:Awards 776:Kaidun 431:bolide 295:  105:& 1123:Comet 1065:Lists 987:shock 853:IIIAB 723:Lunar 653:IIICD 513:group 504:class 1080:type 974:and 859:IIIF 856:IIIE 833:IIAB 822:Iron 741:List 516:and 509:clan 500:type 453:Find 426:Fall 402:and 293:ISBN 254:and 202:and 163:and 137:and 64:Type 40:Type 992:TKW 866:IVB 862:IVA 849:IIG 844:IIE 840:IID 837:IIC 696:HED 648:IAB 498:By 414:... 361:112 330:doi 129:or 109:); 1167:: 829:IC 604:LL 578:EL 575:EH 562:CV 559:CR 556:CO 553:CM 550:CK 546:CI 542:CH 539:CB 511:, 502:, 328:. 318:41 316:. 258:. 250:, 246:, 238:, 234:, 230:, 226:, 222:, 218:, 214:, 156:. 101:, 599:L 594:H 506:, 392:e 385:t 378:v 359:, 336:. 332:: 324:: 301:. 20:)

Index

Stony–iron meteorite
Type

Esquel meteorite
Type
Stony-iron
Subgroups
kamacite
taenite
tetrataenite
silicates
meteoric iron
silicates
stony meteorites
iron meteorites
achondrites
mesosiderites
pallasites
meteoric iron
olivine
breccias
metamorphism
Meteorite classification
kamacite
taenite
olivine
carlsbergite
chromite
cohenite
daubréelite

Text is available under the Creative Commons Attribution-ShareAlike License. Additional terms may apply.

↑