Chondrites: Their metallic minerals, thermal histories, and parent planets

Icarus - Tập 6 Số 1-3 - Trang 1-49 - 1967
John A. Wood1,2
1Enrico Fermi Institute for Nuclear Studies, University of Chicago USA
2Smithsonian Institution Astrophysical Observatory, Cambridge, Massachusetts, USA11Present address.

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Allen, 1950, The transformations α→γ and γ→α in iron-rich binary iron-nickel alloys, J. Iron Steel Inst. (London), 166, 281

Anders, 1964, Origin, age, and composition of meteorites, Space Sci. Rev., 3, 583, 10.1007/BF00177954

Benedicks, 1910, Synthèse du fer météorique, Nova Acta Regiae Soc. Sci. Upsaliensis (4), 2, 26

Brentnall, 1962, The response of Canyon Diablo meteorite to heat treatment, J. Iron Steel Inst. (London), 200, 947

Brezina, 1904, The arrangement of collections of meteorites, 43, 211

Cameron, 1959, A revised table of abundances of the elements, Astrophys. J., 129, 676, 10.1086/146667

Cameron, 1963, Combined oxygen and carbon potentials for steel, J. Iron Steel Inst. (London), 201, 217

Chalmers, 1959

Chladni, 1797, Fortsetzung der Bemerkungen über Feuerkugeln und niedergefallene Massen, Mag. Neuest. Zust. Naturk. (Jena), 1, 17

Daubrée, 1866, Expériences synthétiques relatives aux méteorites (Troisiéme Partie), Compt. Rend., 62, 660

Derge, 1937, The structures of meteoric irons, Am. J. Sci., 34, 203, 10.2475/ajs.s5-34.201.203

Dodd, 1965, Significance of the unequilibrated ordinary chondrites, J. Geophys. Res., 70, 3801, 10.1029/JZ070i016p03801

Eberhardt, 1966, Rare gas measurements in 30 stone meteorites, Z. Naturforsch., 21a, 414

Eberhardt, 1960, Helium in stone meteorites, Astrophys. J., 131, 38, 10.1086/146804

Evernden, 1960, Argon diffusion in glauconite, microcline, sanidine, leucite and phlogopite, Am. J. Sci., 258, 583, 10.2475/ajs.258.8.583

Fish, 1960, The record in the meteorites. III. On the development of meteorites in asteroidal bodies, Astrophys. J., 132, 243, 10.1086/146918

Fredriksson, 1963, Shock-induced veins in chondrites, 974

Fredriksson, 1964, Shock emplaced argon in a stony meteorite, J. Geophys. Res., 69, 1403, 10.1029/JZ069i007p01403

Fredriksson, 1963, The light-dark structure in the Pantar and Kapoeta stone meteorites, Geochim. Cosmochim. Acta, 27, 717, 10.1016/0016-7037(63)90038-3

Geiss, 1958, Argon-potassium ages and the isotopic composition of argon from meteorites, Astrophys. J., 127, 224, 10.1086/146453

Goldstein, 1964, The Growth of the Widmanstätten Pattern in Metallic Meteorites

Goldstein, 1965, The formation of the kamacite phase in metallic meteorites, J. Geophys. Res., 70, 6223, 10.1029/JZ070i024p06223

Goldstein, 1964, Diffusion in the Fe-Ni system at 1 atm and 40 kbar pressure, Trans. AIME, 233, 812

Goldstein, 1965, A re-evaluation of the iron-rich portion of the FeNi system, Trans. AIME, 233, 2083

Goldstein, 1965, The growth of the Widmanstätten pattern in metallic meteorites, Gepchim. Cosmochim. Acta, 29, 893, 10.1016/0016-7037(65)90085-2

Goles, 1960, The record in the meteorites. I. The former environment of stone meteorites as deduced from K40Ar40 ages, Geochim. Cosmochim. Acta, 18, 177, 10.1016/0016-7037(60)90004-1

Hellawell, 1957, The constitution of alloys of iron and manganese with transition elements of the first long period, Phil. Trans. Roy. Soc. London, A 249, 417, 10.1098/rsta.1957.0004

Heymann, D. (1965). Unpublished work.

Heymann, 1966, Canyon Diablo meteorite: metallographic and mass spectrometric study of 56 fragments, J. Geophys. Res., 71, 619, 10.1029/JZ071i002p00619

Hintenberger, H.,Schulz, L., and Wänke, H. (1966). Paper in preparation.

Hintenberger, 1964, Radiogene, Spallogene und Primordiale Edelgas in Steinmeteoriten, Z. Naturforsch., 19a, 327, 10.1515/zna-1964-0307

Howard, 1802, Experiments and observations on certain stony and metalline substances, which at different times are said to have fallen on the Earth; also in various kinds of native iron, Phil. Trans. Roy. Soc. London, 92, 168, 10.1098/rstl.1802.0009

Jones, 1949, Free energy and metastable states in the iron-nickel and iron-manganese systems, J. Iron Steel Inst. (London), 163, 121

Kaufman, 1956, The martensitic transformation in the iron-nickel system, Trans. AIME, 206, 1393

Keil, 1964, The Chainpur meteorite, Am. Museum Novitates, 2173, 28

Kirsten, 1963, Edelgas- und Kalium-Bestimmungen an einer grösseren Zahl von Steinmeteoriten, Geochim. Cosmochim. Acta, 27, 13, 10.1016/0016-7037(63)90070-X

Knox, 1956, The microstructure of a small aerolite, Meteoritics, 1, 491, 10.1111/j.1945-5100.1956.tb01387.x

Knox, 1963, The microstructure of several stony meteorites, Geochim. Cosmochim. Acta, 27, 261, 10.1016/0016-7037(63)90028-0

König, 1962, Untersuchungen an Steinmeteoriten mit extrem hohem Edelgasgehalt. I. Der Chondrit Pantar, Z. Naturforsch., 16a, 1124

Kullerud, 1963, The FeNiS system, Carnegie Inst. (Washington) Year Book, 62, 175

Kvasha, 1961, Some recent observations on the textures of chondrites (in Russian), Meteoritika, 20, 124

Manuel, 1964, Isotopic composition of the rare gases in the Fayetteville meteorite, J. Geophys. Res., 69, 1413, 10.1029/JZ069i007p01413

Marshall, 1961, Devitrification of natural glass, Geol. Soc. Am. Bull., 72, 1493, 10.1130/0016-7606(1961)72[1493:DONG]2.0.CO;2

Mason, 1962, The classification of chondritic meteorites, Am. Museum Novitates, 2085, 20

Mason, 1963, The carbonaceous chondrites, Space Sci. Rev., 1, 621, 10.1007/BF00212446

Mason, 1962, Descriptions of two meteorites: Karoonda and Erakot, Am. Museum Novitates, 2115, 10

Mason, 1962, The Renazzo meteorite, Am. Museum Novitates, 2106, 11

Massalski, 1958, The mode and morphology of massive transformations in CuGa, CuZn, CuZnGa and CuGaGe alloys, Acta Meta., 6, 243, 10.1016/0001-6160(58)90143-3

Merrihue, 1963, Excess xenon-129 in chondrules from the Bruderheim meteorite, J. Geophys. Res., 68, 325, 10.1029/JZ068i001p00325

Merrihue, 1966, Xenon and Krypton in the Bruderheim meteorite, J. Geophys. Res., 71, 263, 10.1029/JZ071i001p00263

Merrihue, 1962, Rare gases in the chondrite Pantar, J. Geophys. Res., 67, 2017, 10.1029/JZ067i005p02017

Miyashiro, 1962, Common occurence of high-temperature plagioclase in chondrites, Japan. J. Geol. Geogr., 33, 235

Moore, 1965, Carbon abundances in chondritic meteorites, Science, 149, 317, 10.1126/science.149.3681.317

Moore, C.B. (1965). Unpublished work.

Moore, C.B. and Mason, B. (1965). Unpublished work.

Müller, 1966, Chemische Unterschiede bei uredelgashaltigen Steinmeteoriten, Earth Planetary Sci. Letters, 1, 25, 10.1016/0012-821X(66)90100-2

Nordenskjöld, 1878, On the composition and common origin of certain meteorites, Nature, 18, 510, 10.1038/018510a0

Osmond, 1904, Sur les fers météoriques, Rev. Mét., 1, 69, 10.1051/metal/190401010069

Owen, 1949, Further X-ray study of the iron-nickel system, J. Iron Steel Inst. (London), 163, 132

Owen, 1960, The kinetics of the martensite transformation in iron alloys, J. Iron Steel Inst. (London), 196, 142

Perry, 1944, The metallography of meteoric iron, U.S. Natl. Museum Bull., 184, 206

Prior, 1916, On the genetic relationship and classification of meteorites, Mineral. Mag., 18, 26, 10.1180/minmag.1916.018.83.04

Ramdohr, 1963, The opaque minerals in stony meteorites, J. Geophys. Res., 68, 2011, 10.1029/JZ068i007p02011

Reed, 1963, Heavy elements in the Pantar meteorite, J. Geophys. Res., 68, 3531, 10.1029/JZ068i011p03531

Reed, 1964, Composition of the metallic phases in some stone and stony-iron meteorites, Nature, 204, 374, 10.1038/204374a0

Reynolds, 1960, Isotopic composition of primordial xenon, Phys. Rev. Letters, 4, 351, 10.1103/PhysRevLett.4.351

Reynolds, 1964, Rare gases in the chondrite Renazzo, J. Geophys. Res., 69, 3263, 10.1029/JZ069i015p03263

Ringwood, 1959, On the chemical evolution and densities of the planets, Geochim. Cosmochim. Acta, 15, 257, 10.1016/0016-7037(59)90062-6

Ringwood, 1961, Chemical and genetic relationships among meteorites, Geochim. Cosmochim. Acta, 24, 159, 10.1016/0016-7037(61)90016-3

Ringwood, 1965, Origin of chondrites, Nature, 207, 701, 10.1038/207701a0

Ringwood, 1962, The influence of high pressure on transformation equilibria in iron meteorites, Geochim. Cosmochim. Acta, 26, 999, 10.1016/0016-7037(62)90024-8

Rose, 1864, Beschreibung und Eintheilung der Meteoriten auf Grund der Sammlung im Mineral gisch Museum zu Berlin, Druck. d. Königl. Akad, Wiss., Berlin

Simons, 1962, Devitrification dikes and giant spherulites from Klondike, Arizona., Am. Minerologist, 47, 871

Speich, 1965, Yield strength and transformation substructure of quenched iron-nickel alloys, J. Iron Steel Inst. (London), 203, 480

Stacey, 1961, Thermomagnetic properties, natural magnetic moments, and magnetic anisotropies of some chondritic meteorites, J. Geophys. Res., 66, 1523, 10.1029/JZ066i005p01523

Stauffer, 1961, Primordial argon and neon in carbonaceous chondrites and ureilites, Geochim. Cosmochim. Acta, 24, 70, 10.1016/0016-7037(61)90008-4

Studier, 1966, Origin of organic matter in early solar system. I. Hydrocarbons

Suess, 1956, Abundances of the elements, Rev. Mod. Phys., 28, 53, 10.1103/RevModPhys.28.53

Suess, 1964, On the origin of gas-rich meteorites, Geochim. Cosmochim. Acta, 28, 595, 10.1016/0016-7037(64)90080-8

Swanson, 1964, Transformations in iron-nickel alloys, J. Iron Steel Inst. (London), 202, 104

Tschermak, 1885, Die Mikroskopische Beschaffenheit der Meteoriten, 4, 128

Turner, 1965, Extinct iodine-129 and trace elements in chondrites, J. Geophys. Res., 70, 5433, 10.1029/JZ070i021p05433

Urey, 1956, Diamonds, meteorites and the origin of the solar system, Astrophys. J., 124, 623, 10.1086/146269

Urey, 1961, Criticism of Dr. B. Mason's paper on ‘The origin of meteorites’, J. Geophys. Res., 66, 1988, 10.1029/JZ066i006p01988

Urey, 1964, A review of atomic abundances in chondrites and the origin of meteorites, Rev. Geophys., 2, 1, 10.1029/RG002i001p00001

Urey, 1953, The composition of the stone meteorites and the origin of the meteorites, Geochim. Cosmochim. Acta, 4, 36, 10.1016/0016-7037(53)90064-7

Urey, 1959, The metallic particles of some chondrites, Geochim. Cosmochim. Acta, 17, 113, 10.1016/0016-7037(59)90081-X

Vinogradov, 1964, Inert gases of stony meteorites (in Russian), Geokhimia, 7, 587

Wasserburg, 1955, Age of meteorites by the A40K40 method, Phys. Rev., 97, 86, 10.1103/PhysRev.97.86

Wiik, 1956, The chemical composition of some stony meteorites, Geochim. Cosmochim. Acta, 9, 279, 10.1016/0016-7037(56)90028-X

Wlotzka, 1963, Über die Hell-Dunkel-Struk-tur der urgashaltigen Chondrite Breitscheid und Pantar, Geochim. Cosmochim. Acta, 27, 419, 10.1016/0016-7037(63)90082-6

Wood, 1958, Silicate meteorite structures and the origin of the meteorites, Smithsonian Astrophys. Obs. Techn. Rept., 151

Wood, 1962, Metamorphism in chondrites, Geochim. Cosmochim. Acta, 26, 739, 10.1016/0016-7037(62)90036-4

Wood, 1963, On the origin of chondrules and chondrites, Icarus, 2, 152, 10.1016/0019-1035(63)90013-7

Wood, 1964, The cooling rates and parent planets of several iron meteorites, Icarus, 3, 429, 10.1016/0019-1035(64)90004-1

Wood, 1965, Metal grains in chondritic meteorites, Nature, 208, 1085, 10.1038/2081085a0

Zähringer, 1962, Isotopic-effeckt und Häufigkeiten der Edelgase in Steinmeteoriten und auf der Erde, Z. Naturforsch., 17A, 460, 10.1515/zna-1962-0603

Zähringer, 1966, Chronology of chondrites with rare gas isotopes, Meteoritika

Zies, 1929, The valley of ten thousand smokes. I. The fumarolic incrustations and their bearing on ore deposition. II. The acid gases contributed to the sea during volcanic activity, Natl. Geogr. Soc. Contrib. Tech. Papers, 1, 79