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1.
This article advances critical geographies of youth through examining the spatiality implicit in the imagined futures of young women in rural India. Geographers and other scholars of youth have begun to pay more attention to the interplay between young people’s past, present, and imagined futures. Within this emerging body of scholarship the role of the family and peer group in influencing young people’s orientations toward the future remain underexamined. Drawing on eleven months of ethnographic fieldwork, my research focuses on a first generation of college-going young women from socioeconomically marginalized backgrounds in India’s westernmost state of Gujarat. I draw on the “possible selves” theoretical construct in order to deploy a flexible conceptual framework that links imagined post-educational trajectories with motivation to act in the present. In tracing the physical movement of these young women as they navigate and complete college, my analysis highlights the ways in which particular kinds of spaces and spatial arrangements facilitate and limit intra- and inter-generational contact, and the extent to which this affects young women’s conceptions of the future. I conclude by considering the wider implications of my research for ongoing debates surrounding youth transitions, relational geographies of age, and education in the Global South.  相似文献   

2.
Models have become so fashionable that many scientists and engineers cannot imagine working without them. The predominant use of computer codes to execute model calculations has blurred the distinction between code and model. The recent controversy regarding model validation has brought into question what we mean by a ‘model’ and by ‘validation.’ It has become apparent that the usual meaning of validation may be common in engineering practice and seems useful in legal practice but it is contrary to scientific practice and brings into question our understanding of science and how it can best be applied to such problems as hazardous waste characterization, remediation, and aqueous geochemistry in general. This review summarizes arguments against using the phrase model validation and examines efforts to validate models for high-level radioactive waste management and for permitting and monitoring open-pit mines. Part of the controversy comes from a misunderstanding of ‘prediction’ and the need to distinguish logical from temporal prediction. Another problem stems from the difference in the engineering approach contrasted with the scientific approach. The reductionist influence on the way we approach environmental investigations also limits our ability to model the interconnected nature of reality. Guidelines are proposed to improve our perceptions and proper utilization of models. Use of the word ‘validation’ is strongly discouraged when discussing model reliability.  相似文献   

3.
赣南大吉山与漂塘花岗岩及有关成矿作用特征对比   总被引:20,自引:0,他引:20  
对江西南部大吉山和漂塘两个钨矿床有关的花岗岩的岩石化学和微量元素地球化学特征、成因及其与成矿的关系等方面进行了对比研究,认为两者不同的成矿作用特征主要是由于大吉山花岗岩比漂塘花岗岩的分异演化程度更高而造成的。对前人提出的含钨花岗岩、含钽铌花岗岩及花岗岩产出的动力学背景等问题,也进行了一些初步讨论。  相似文献   

4.
The distribution of Cu, Co, As and Fe was studied downstream from mines and deposits in the Idaho Cobalt Belt (ICB), the largest Co resource in the USA. To evaluate potential contamination in ecosystems in the ICB, mine waste, stream sediment, soil, and water were collected and analyzed for Cu, Co, As and Fe in this area. Concentrations of Cu in mine waste and stream sediment collected proximal to mines in the ICB ranged from 390 to 19,000 μg/g, exceeding the USEPA target clean-up level and the probable effect concentration (PEC) for Cu of 149 μg/g in sediment; PEC is the concentration above which harmful effects are likely in sediment dwelling organisms. In addition concentrations of Cu in mine runoff and stream water collected proximal to mines were highly elevated in the ICB and exceeded the USEPA chronic criterion for aquatic organisms of 6.3 μg/L (at a water hardness of 50 mg/L) and an LC50 concentration for rainbow trout of 14 μg/L for Cu in water. Concentrations of Co in mine waste and stream sediment collected proximal to mines varied from 14 to 7400 μg/g and were highly elevated above regional background concentrations, and generally exceeded the USEPA target clean-up level of 80 μg/g for Co in sediment. Concentrations of Co in water were as high as in 75,000 μg/L in the ICB, exceeding an LC50 of 346 μg/L for rainbow trout for Co in water by as much as two orders of magnitude, likely indicating an adverse effect on trout. Mine waste and stream sediment collected in the ICB also contained highly elevated As concentrations that varied from 26 to 17,000 μg/g, most of which exceeded the PEC of 33 μg/g and the USEPA target clean-up level of 35 μg/g for As in sediment. Conversely, most water samples had As concentrations that were below the 150 μg/L chronic criterion for protection of aquatic organisms and the USEPA target clean-up level of 14 μg/L. There is abundant Fe oxide in streams in the ICB and several samples of mine runoff and stream water exceeded the chronic criterion for protection of aquatic organisms of 1000 μg/L for Fe. There has been extensive remediation of mined areas in the ICB, but because some mine waste remaining in the area contains highly elevated Cu, Co, As and Fe, inhalation or ingestion of mine waste particulates may lead to human exposure to these elements.  相似文献   

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6.
Average concentrations of Pb, Zn, Cu, and other metals, as well as S and As, were calculated for the Aue granitic cupola, the contact aureole of which hosts the large vein-type uranium deposit of Schlema-Alberoda and the Schneeberg uranium-base metal deposit (Erzgebirge, Germany). The cupola was exposed by mine workings and boreholes, which provided an opportunity to evaluate variations in the abundances of metals in the granites over a vertical interval of more than 2.5 km and estimate their losses in the upper oxidized part of the investigated volume of the cupola (coefficient of iron oxidation, KO Fe, increases in the granites from bottom to top from 7 to 70%) compared with the lower unaltered and unoxidized part (with a KO Fe plateau at about 5%). The average concentrations of metals in the upper part of the cupola are lower than those in the lower part by a factor of 2.5 for Pb, 1.56 for Zn, 1.45 for Cu, 1.3 for Co, etc. A similar decrease in the abundances of ore elements along the vertical section associating with the relative epigenetic alteration and oxidation of the granite was previously described by us for U and Th and for the components of high-temperature ores, W, Sn, and Mo. The removal of ore elements from the granite was accompanied by a decrease in the bulk contents of sulfur and arsenic by a factor of 1.35 and 1.65, respectively. The leaching of trace metals from the granites of the upper part of the Aue cupola was followed by their partial redeposition above the cupola in the ore veins of the Schlema and Schneeberg deposits. Original Russian Text ? Vikt. L. Barsukov, N.T. Sokolova, O.M. Ivanitskii, 2006, published in Geokhimiya, 2006, No. 9, pp. 967–982.  相似文献   

7.
Most sulfide-rich magmatic Ni-Cu-(PGE) deposits form in dynamic magmatic systems by partial melting S-bearing wall rocks with variable degrees of assimilation of miscible silicate and volatile components, and generation of barren to weakly-mineralized immiscible Fe sulfide xenomelts into which Ni-Cu-Co-PGE partition from the magma. Some exceptionally-thick magmatic Cr deposits may form by partial melting oxide-bearing wall rocks with variable degrees of assimilation of the miscible silicate and volatile components, and generation of barren Fe ± Ti oxide xenocrysts into which Cr-Mg-V ± Ti partition from the magma. The products of these processes are variably preserved as skarns, residues, xenoliths, xenocrysts, xenomelts, and xenovolatiles, which play important to critical roles in ore genesis, transport, localization, and/or modification. Incorporation of barren xenoliths/autoliths may induce small amounts of sulfide/chromite to segregate, but incorporation of sulfide xenomelts or oxide xenocrysts with dynamic upgrading of metal tenors (PGE > Cu > Ni > Co and Cr > V > Ti, respectively) is required to make significant ore deposits. Silicate xenomelts are only rarely preserved, but will be variably depleted in chalcophile and ferrous metals. Less dense felsic xenoliths may aid upward sulfide transport by increasing the effective viscosity and decreasing the bulk density of the magma. Denser mafic or metamorphosed xenoliths may also increase the effective viscosity of the magma, but may aid downward sulfide transport by increasing the bulk density of the magma. Sulfide wets olivine, so olivine xenocrysts may act as filter beds to collect advected finely dispersed sulfide droplets, but other silicates and xenoliths may not be wetted by sulfides. Xenovolatiles may retard settling of – or in some cases float – dense sulfide droplets. Reactions of sulfide melts with felsic country rocks may generate Fe-rich skarns that may allow sulfide melts to fractionate to more extreme Cu-Ni-rich compositions. Xenoliths, xenocrysts, xenomelts, and xenovolatiles are more likely to be preserved in cooler basaltic magmas than in hotter komatiitic magmas, and are more likely to be preserved in less dynamic (less turbulent) systems/domain/phases than in more dynamic (more turbulent) systems/domains/phases. Massive to semi-massive Ni-Cu-PGE and Cr mineralization and xenoliths are often localized within footwall embayments, dilations/jogs in dikes, throats of magma conduits, and the horizontal segments of dike-chonolith and dike-sill complexes, which represent fluid dynamic traps for both ascending and descending sulfides/oxides. If skarns, residues, xenoliths, xenocrysts, xenomelts, and/or xenovolatiles are present, they provide important constraints on ore genesis and they are valuable exploration indicators, but they must be included in elemental and isotopic mass balance calculations.  相似文献   

8.
Many studies compare utilization of different marine habitats by fish and decapod crustaceans; few compare multiple vegetated habitats, especially using the same sampling equipment. Fish and invertebrates in seagrass, mangrove, saltmarsh, and nonvegetated habitats were sampled during May–August (Austral winter) and December–January (Austral summer) in the Barker Inlet-Port River estuary, South Australia. Sampling was undertaken using pop nets in all habitats and seine nets in seagrass and nonvegetated areas. A total of 7,895 fish and invertebrates spanning 3 classes, 9 orders, and at least 23 families were collected. Only one fish species,Atherinosoma microstoma, was collected in all 4 habitats, 11 species were found in 3 habitats (mangroves, seagrass, and nonvegetated), and 13 species were only caught in seagrass and nonvegetated habitats. Seagrass generally supported the highest numbers of fish and invertebrates and had the greatest species richness. Saltmarsh was at the other extreme with 29 individuals caught from two species. Mangroves and nonvegetated habitats generally had more fish, invertebrates, and species than saltmarsh, but less than seagrass. Analyses of abundances of individual species generally showed an interaction between habitat and month indicating that the same patterns were not found through time in all habitats. All habitats supported distinct assemlages although seagrass and nonvegetated assemblages were similar in some months. The generality of these patterns requires further investigation at other estuaries. Loss of vegetated habitats, particularly seagrass, could result in loss of species richness and abundance, especially for organisms that were not found in other habitats. Although low abundances were found in saltmarsh and mangroves, species may use these habitats for varying reasons, such as spawning, and such use should not be ignored.  相似文献   

9.
《International Geology Review》2012,54(10):1510-1522
Quantum-chemical interpretations of differentiation of the “normal” magmatic melt (the “Bowen's fork”) show certain defects in the traditionally crystallochemical interpretations of mineral structures and of the sequence of crystallization of minerals. The “dynamic unit,” in transitions from phase to phase and from lattice to lattice, proves to be the uncharged SiO2 molecule and not the SiO4 tetrahedron, which is but a static architectural detail of crystal structures. Different mechanisms and types of silicification (figs. 3-8), condensation and structures of the chains (figs. 9-14), structures of zeolites and other aluminosilicates (figs. 14, 17, 18), and the quantumchemical representation of corundum, as “molecular” Al2O3, illustrate further reevaluations of traditionalism in mineralogy.  相似文献   

10.
Stratiform quartz-sulphide lodes in Ingladhal occur in a typical Precambrian green-stone-belt environment comprising metabasalts, tuff, chert and cherty iron-sulphide formation. Unusually high cobalt contents of metavolcanics and of sulphide minerals in orebodies suggest a consanguinity between ores and rocks. 90% of total nickel, 70% of total cobalt but only 30% of total copper in rocks occur in silicate phases and thus indicate an early separation of copper from cobalt and nickel. Unusually high non-sulphide copper in barren bedded cherts implies availability of Cu-rich solution prior to their lithification. Pyrite in sediments, in volcanics, and in orebodies is characterized by a distinctive pattern of Co-Ni distribution in each case. Partitioning of Co and Ni between coexisting sulphide pairs is complex, but gross equilibrium is indicated. Very high trace metal content of orebody pyrite sharply contrasts with very low such values in pyrite from adjacent sediments and points to a higher temperature of formation of orebodies.  相似文献   

11.
Acid leaching of the primitive C-chondrite Murchison and O-chondrite QUE 97008 reveal nucleosynthetic anomalies in Cr, Sr, Ba, Nd, Sm and Hf. The anomalies in all but Cr and Sm are best explained by variable additions of pure s-process nuclides to a background nebular composition slightly enriched in r-process isotopes compared to average Solar System material. Leaching leaves a residue in Murchison that is strongly enriched in s-process nuclides with depletions of over 0.1% in 135Ba and seven parts in 10,000 in 84Sr. If there are p-process anomalies in these two elements, they are lost in the variability caused by different r-, s-process contributions to the normalizing isotopes. The concentration and isotope systematics are consistent with the Ba and Sr isotopic composition in the Murchison residue being strongly influenced by s-process-rich presolar SiC. In general, the nucleosynthetic isotope anomalies are 2- to 5-fold smaller in QUE 97008 than in Murchison. The different magnitudes of isotope anomalies are similar to the difference in matrix abundance between CM and O chondrites consistent with the suggestion that the carriers of nucleosynthetically anomalous material preferentially reside in the matrix and that some of this material has been distributed throughout the O-chondrite minerals as a result of thermal metamorphism.Neodymium, Sm and Hf display variable s-, r-process nuclide abundances as in Ba and Sr, but the anomalies are much smaller (e.g. ε148Nd, ε148Sm = −5.7, 2.1, respectively, in Murchison and −0.43, 0.16, respectively in QUE 97008 residues). After correcting Nd and Sm for s-, r-process variability, Sm in whole rock chondrites shows variable relative abundances of the p-process isotope 144Sm that correlate weakly with 142Nd suggesting that the direct p-process contribution to 142Nd is small (∼7-9%). Nucleosynthetic variability in Nd explains the range in 142Nd/144Nd seen between C and O, E-chondrites, but not the difference between chondrites and all modern Earth rocks, leaving decay of 146Sm and a superchondritic Sm/Nd ratio as the likely explanation for Earth’s high 142Nd/144Nd.  相似文献   

12.
A theoretical model was developed to study the chemical speciation of the trace elements Zn, Cd, Cu and Pb aqueous solutions and their responses to variations in ionic strength and complexation. Two mixing solutions were investigated, a freshwater-seawater system and a freshwater-brine system. The brine was a calcium, sodium-chloride solution with a molal ionic strength of two. Trace element associations with the ligands OH?, Cl?, CO2?3, SO2?4, and HCO?3 were considered at pHs from 3.5 to 11.0 at 25°C. In general, the relative importance of the various ligand-trace element complexes can be predicted from a comparison of their stability constants. However, the effect of pH on the importance of a given complex is not readily apparent from the stability constants. Freshwater-seawater mixtures, as might be found in a totally mixed estuary, show that seawater composition is the dominant control on chemical complexing. Chloride complexing is similar for lead and zinc in the freshwater-brine mixtures. This similarity may account in part for the association of lead and zinc in strata-bound ore deposits.  相似文献   

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14.
正Over four years ago,a group of investigators came together to determine if Big Data approaches (specifically data mining,machine learning and analytics in general) might provide insight into some of the grand challenges in Earth's history:evolution of minerals,rise of oxygen,life,influence of super continental cycles,quantifying the magnitude of extinction events,and more.As a result,the team of mineralogists,petrologists,geochemists,  相似文献   

15.
Sand bars of the three important rivers of the Gangetic Alluvium, namely the Ganga, Yamuna and Son are investigated. Megaripples of undulatory type are the most abundant bed forms present, and are responsible for the development of large-scale cross-bedding, the most common bedding structure present in the area. Giant ripples, with superimposed megaripples are recorded in one sand bar in the Yamuna River. On a steeply sloping point bar in the Ganga River, delta-like lobes have produced foreset bedding oriented towards the main channel, at right angles to the direction of the main flow.  相似文献   

16.
Whenever data sampling is regular along a coordinate in space and/or time, it is relevant to look for approximate shift invariance which casts the forward problem into a convolution formulation. The resulting computations may be speeded up significantly through the Fourier transform. For nonlinear problems the Born approximation in horizontally stratified media leads to just such a result.In many cases the noise is well approximated by a stationary process, and it turns out that the resulting inverse solution is then a multi-channel deconvolution. This formulation allows very fast inversion in the periodic approximation of densely sampled high volume data sets.New applications within geophysical well logging, continuous geoelectrical sounding/profiling, and 3D helioseismic tomography demonstrate the wide applicability of this method.  相似文献   

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18.
Present status of geologic mapping indicates that there are three major units of Precambrian rocks in Mexico. The oldest (older than 1,700 m. y.) and the youngest (younger than 700 m. y.) are confined to the northwest part of the country. The intermediate unit (1,300-800 m. y.) is distributed in eastern and southern Mexico and extend into northern Guatemala.The rocks making up the oldest unit accumulated as greywackees and associated volcanics in a eugeosyncline prior to 1,700 m. y. ago; this eugeosyncline extended into Mexico from the north-northeast, where it bordered the older Precambrian craton. These rocks underwent metamorphism and anatexis around 1,700 m. y. ago, that produced the development of the amphibolite-granulite facies and the emplacement of granitic stocks and batholiths.A similar history, but somewhat younger, is recorded for the Precambrian rocks in eastern and southern Mexico. These rocks accumulated in the southern continuation of the Grenville Geosyncline as greywackees and volcanics, starting about 1,300 m. y. ago. These rocks underwent metamorphism and anatexis during the interval of 1,000-900 m. y. ago to form the Oaxacan Structural Belt.An event of granitic magmatism, around 700 m. y. ago, is evidenced in the extreme northwest and southeast of Mexico which, heretofore is not recognized in Texas. In the northwest, this was followed by the intrusion of diabase dykes, prior to the deposition of the youngest Precambrian sediments.During latest Precambrian time, in northwest Mexico, an about 2,000 m thick sequence of conglomerate, sandy shale and dolomite, containingCollenia, Cryptozoa and other organisms, accumulated on top of the eroded older Precambrian metamorphics and granitic rocks, that formed the northeast flank of the miogeosynclinal part of the ancestral North American Cordilleran Geosyncline, representing a near-shore facies. These rocks deformed together with the overlying Paleozoic sedimentary rocks at the end of the Paleozoic, during the Sonoran Orogeny.The present abrupt truncation in the west of both the older and youngest Precambrian rocks in northwest Mexico against the Gulf of California, is the result of the combination of late Paleozoic movements along the Texas Lineament and Torreón-Monterrey Fracture Zone, of the regeneration due to Early Jurassic metamorphism and anatexis, and of movements along the late Mesozoic-Tertiary San Andreas Fault System. A similar truncation of the younger Precambrian rocks in southern Mexico against the Pacific Ocean crust, is considered to be result of a combined thrust and left-lateral movement along the Jalisco-Nicoya Fault during medial Tertiary time.
Zusammenfassung Nach dem augenblicklichen Stand der geologischen Kartierung gibt es drei Haupteinheiten präkambrischer Gesteine in Mexiko. Die ältesten (> 1700 M. J.) und die jüngsten (< 700 M. J.) sind auf den Nordwestteil des Landes beschränkt, während die mittlere Einheit (1300-800 M. J.) in Ost- und Südmexiko vorkommt und sich bis nach Nord-Guatemala erstreckt.Die Gesteine der ältesten Serie - Grauwacken und vulkanische Gesteine — wurden vor mehr als 1700 M. J. in einer Eugeosynklinale abgelegt, die nach Mexiko von NNE her hineinreichte, wo sie einen noch älteren Kraton begrenzte. Vor etwa 1700 M. J. wurden diese Gesteine der Metamorphose und Anatexis unterzogen; daraus resultierte die Amphibolit-Granulit-Fazies, die Platznahme von Granitstöcken und Batholiten.Eine ähnliche Geschichte hatten die jüngeren präkambrischen Gesteine Ostund Süd-Mexikos. Hier wurden, beginnend etwa vor 1300 M. J., in der südlichen Fortsetzung der Grenville-Geosynklinale Grauwacken und vulkanische Gesteine abgelagert. Vor 1000-900 M. J. fanden Metamorphose und Anatexis statt, und der Oaxacan-Strukturbogen entstand.Granitischer Magmatismus fand vor etwa 700 M. J. im äußersten Nordwesten Mexikos (ebenfalls südöstlich von Mexiko) statt, der in Texas bisher nicht nachgewiesen wurde. Ihm folgten Diabasintrusionen; nach denen kam es zur Ablagerung jüngster präkambrischer Sedimente.Im jüngsten Präkambrium wurde in NW-Mexiko eine etwa 2000 m mächtige Serie von Konglomeraten, sandigem Tonstein und Dolomit (Collenia, Cryptozoa und andere Organismen enthaltend) abgelagert, und zwar diskordant auf älter präkambrischen metamorphen und granitischen Gesteinen. Sie bildeten in Küstenfazies die Nordostflanke des miogeosynklinalen Teiles der angestammten nordamerikanischen Kordilleren-Geosynklinale. Sie wurden zusammen mit den überlagernden paläozoischen Sedimenten am Ende des Paläozoikums gefaltet (Sonoran-Orogenese).Das heutige plötzliche Aufhören der älteren und der jüngsten präkambrischen Gesteine Nordwest-Mexikos im Westen gegen den Golf von Kalifornien ist das Ergebnis der Kombination von spätpaläozoischen Bewegungen entlang dem Texas-Lineament und der Torreón-Monterrey-Bruchzone (s. Abb. 11), ihrer Regeneration während frühjurassischer Metamorphose bzw. Anatexis und von Bewegung entlang der spätmesozoisch-tertiären San-Andreas-Bewegung. Ein ähnliches Aufhören der jüngeren präkambrischen Gesteine in Süd-Mexiko gegen die Kruste des Pazifiks gilt als das Ergebnis gleichzeitiger Überschiebung und linksseitlicher Seitenverschiebung im mittleren Tertiär entlang der Jalisco-Nicoya-Verwerfung.

Resumen El estado actual de la cartografía geológica indica que existen tres unidades principales de rocas precámbricas en México. La unidad más antigua (más antigua que 1,700 m. a) y la más reciente (más reciente que 700 m. a.) se limitan para la parte noroccidental del país. La unidad intermedia (1,300-800 m. a.) se encuentra en las partes oriental y meridional de México, y se extiende a la parte septentrional de Guatemala.Las rocas, que constituyen la unidad más antigua, se acumularon como grauvacas y rocas volcánicas relacionadas en un eugeosinclinal, antes de 1,700 m. a.; este eugeosinclinal se extendió a México desde el norte-noreste, donde rodeó un cratón precámbrico aún más antiguo. Estas rocas sufrieron metamorfismo y anatexis cerca de 1,700 m. a., procesos que produjeron el desarrollo de la facies de anfibolita-granulita y el emplazamiento de troncos y batólitos graniticos.Una historia similar, aunque algo más reciente, registran las rocas precámbricas en las partes oriental y meridional de México. Estas rocas acumularon en la prolongación meridional del Geosinclinal Grenville, como grauvacas y rocas volcánicas, a partir, hace aproximadamente de 1,300 m. a. Estas rocas pasaron por metamorphismo y anatexis durante el período comprendido entre 1,000 y 900 m. a., para formar la Faja Tectónica Oaxaqueña.Un evento de magmatismo granítico, ocurrido hace cerca de 700 m. a., se manifiesta en los extremos noroccidental y suroriental de México, y el cual aún no se ha identificado en Texas. En el noroeste, este evento fue seguido por la intrusión de diques de diabasa, antes del depósito de los sedimentos precámbricos de los más recientes.Durante el Precámbrico lo más tardío, en el noroeste de México, se acumuló una sequencia de cerca de 2,000 m de espesor, encima de las rocas metamórficas y graníticas precámbricas más antiguas profundamente erosionadas que formaron en flanco nororiental de la parte miogeosinclinal del ancestral Geosinclinal Cordillerano de Norte América; la secuencia consiste en conglomerado, lutita arenosa, y dolomita conCollenia, Cryptozoa, y con otros organismos, representando una facies cercana a la costa.La terminación actual abrupta occidental de las rocas precámbricas más antiguas y las más recientes en el noroeste de México contra el Golfo de California, es el resultado de movimientos paleozoicos tardios a lo largo del Almeamiento de Texas y de la Zona de Fracturamiento Torreón-Monterrey, de la regeneración producida por el rnetamorfismo y anatexis durante el Jurásico Temprano, y de movimientos a lo largo del Sistema de Fallas San Andreas durante el Mesozoico tardío-Terciario. Un truncamiento similar de las rocas precámbricas más recientes en el sur de México contra la corteza del Océano Pacífico, se considera como resultado tanto de movimiento lateral sinistral como de cabalgamiento a lo largo de la Falla Jalisco-Nicoya, durante el Terciario medio.

1 : (h700 ) ( 700 ) - ; (1300-800 ) . — — 1700 , NNE . 1700 , - , . . , 1300 Grenville . 1000-900 n. 700 - ( - ) , . , . NW – 2000 — , ( Collenia, Cryptozoa ). - . . - Terreon-Monterrey (p . 12), - , -- San-Andreas. , Jalisco-Nic.


Publication authorized by the Director of Instituto de Geologia, Universidad Nacional Autónoma de México.  相似文献   

19.
Precise determination of REE and Ba abundances in three carbonaceous (Orgueil Cl, Murchison C2 and Allende C3) and seven olivine-bronzite chondrites were carried out by mass spectrometric isotope dilution technique. Replicate analyses of standard rock and the three carbonaceous chondrites demonstrated the high quality of the analyses (accuracies for REE are ±1–2 per cent). Certain carbonaceous chondrite specimens showed small positive irregularities in Yb abundance. The Yb ‘anomaly’ (approximately + 5 per cent relative to the average of 10 ordinary chondrites) in Orgueil may relate to high temperature components. The REE pattern of Guareña (H6) exhibits comparatively extensive fractionation (about factor 2) with a negative anomaly for Eu (17 ± 1 percent) compared to the average H chondrite. This could be interpreted in terms of extensive thermal metamorphism leading to melting.Apart from absolute abundance differences, there appears to be small but recognizable fractionation among the average relative REE abundances of Cl, E, H and L chondrites. However, individual chondrites within these groups showed more or less fractionated REE patterns relative to each other. The distinction between H and L chondrites was well demonstrated in Eu-Sm correlation curves and absolute abundance differences of REE and major elements.Si-normalized atomic ratios of the REE abundances in different kinds of chondrites to those in Orgueil (Cl) chondrite were 0.58 (E), 0.75 (H), 0.81 (L), 1.07 (C2) and 1.32 (C3).  相似文献   

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