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  • 101
    Journal available for loan
    Journal available for loan
    Associated volumes
    In: Canadian Journal of Earth Sciences
    Type of Medium: Journal available for loan
    Pages: S.1033-1588
    Language: English
    Location: Lower compact magazine
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  • 102
    Journal available for loan
    Journal available for loan
    Associated volumes
    In: Canadian Journal of Earth Sciences
    Type of Medium: Journal available for loan
    Pages: S.1589-2084
    Language: English
    Location: Lower compact magazine
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  • 103
    Monograph available for loan
    Monograph available for loan
    Leipzig : Teubner
    Call number: 3089
    Type of Medium: Monograph available for loan
    Pages: VI, 137 S. : Ill., graph. Darst.
    Uniform Title: Grundlagen der modernen Quantenphysik
    Language: English
    Location: Upper compact magazine
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  • 104
    Call number: 4/M 02.0107
    In: Lecture notes in earth sciences
    Type of Medium: Monograph available for loan
    Pages: 111 S.
    ISBN: 3540656049
    Series Statement: Lecture notes in earth sciences 85
    Classification:
    A. 2.5.
    Language: English
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  • 105
    Monograph available for loan
    Monograph available for loan
    Amsterdam [u.a.] : North-Holland
    Call number: 7525
    Type of Medium: Monograph available for loan
    Pages: XV, 494 S.
    Edition: 2nd print.
    ISBN: 0720422337
    Series Statement: Studies in logic and the foundations of mathematics
    Language: English
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  • 106
    Monograph available for loan
    Monograph available for loan
    Moscow : MIR
    Call number: 9347
    Type of Medium: Monograph available for loan
    Pages: 311 S.
    Language: English
    Location: Upper compact magazine
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  • 107
    Monograph available for loan
    Monograph available for loan
    Moscow : Mir Publ.
    Call number: 9274
    Type of Medium: Monograph available for loan
    Pages: 336 S. : graph. Darst.
    Uniform Title: Elektricestvo i magnetism
    Language: English
    Location: Upper compact magazine
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  • 108
    Call number: M 01.0518
    Type of Medium: Monograph available for loan
    Pages: XVIII, 609 S.
    Classification:
    Geochemistry
    Language: English
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  • 109
    Monograph available for loan
    Monograph available for loan
    Upper Saddle River, NJ : Prentic Hall
    Call number: 4/M 02.0007
    Type of Medium: Monograph available for loan
    Pages: XIV, 482 S.
    ISBN: 0023728213
    Classification:
    A.0.3.
    Language: English
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  • 110
    Monograph available for loan
    Monograph available for loan
    New York [u.a.] : Oxford Univ. Press
    Call number: 19/M 02.0006 ; AWI S2-02-0077
    Type of Medium: Monograph available for loan
    Pages: X, 369 S. + 1 CD-ROM
    Edition: 2nd ed.
    ISBN: 0195100158
    Series Statement: Applied geostatistics series
    Classification:
    Mathematical Geology
    Language: English
    Location: Reading room
    Location: Reading room
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    Branch Library: AWI Library
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  • 111
    Monograph available for loan
    Monograph available for loan
    Amsterdam [u.a.] : Elsevier
    Associated volumes
    Call number: 9/G 9176
    In: Developments in sedimentology
    Type of Medium: Monograph available for loan
    Pages: XVI, 223 S. : Ill., graph. Darst., Kt.
    Series Statement: Developments in sedimentology 17
    Language: English
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  • 112
    Monograph available for loan
    Monograph available for loan
    Berlin [u.a.] : Springer
    Associated volumes
    Call number: 4/M 02.0106
    In: Lecture notes in earth sciences
    Type of Medium: Monograph available for loan
    Pages: X, 652 S.
    ISBN: 3540635033
    Series Statement: Lecture notes in earth sciences 83
    Classification:
    Geomagnetism, Geoelectromagnetism
    Language: English
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  • 113
    Monograph available for loan
    Monograph available for loan
    Clausthal : Trans Tech Publications
    Associated volumes
    Call number: 12012
    In: Handbook on mechanical properties of rocks
    Type of Medium: Monograph available for loan
    Pages: XIX, 280 S.
    Edition: 1st ed.
    ISBN: 0878490108
    Series Statement: 2, 1
    Language: English
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  • 114
    Series available for loan
    Series available for loan
    Warszawa : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(68) / Regal 35
    In: Materialy i prace
    Type of Medium: Series available for loan
    Pages: 41 S.
    Series Statement: Materialy i prace 68
    Language: English
    Location: Magazine - must be ordered
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  • 115
    Series available for loan
    Series available for loan
    Warszawa : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(72) / Regal 35
    In: Materialy i prace
    Type of Medium: Series available for loan
    Pages: 99 S.
    Series Statement: Materialy i prace 72
    Language: English
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  • 116
    facet.materialart.
    Unknown
    Paris : Inter-Union Commission on Geodynamics
    Associated volumes
    Call number: 91.1243
    In: Report ...
    Pages: 17 S.
    Language: English
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  • 117
    Series available for loan
    Series available for loan
    Warszawa : Panstw. Wyd. Naukowe
    Associated volumes
    Call number: SR 91.0236(75) / Regal 35
    In: Materialy i prace
    Type of Medium: Series available for loan
    Pages: 58 S.
    Series Statement: Materialy i prace 75
    Language: English
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  • 118
    Series available for loan
    Series available for loan
    Hannover : Schweizerbart
    Associated volumes
    Call number: SR 99.0054(10)
    In: Geologisches Jahrbuch
    Type of Medium: Series available for loan
    Pages: 62 S. + 3 Kt.-Beil., 1 Beil.
    Series Statement: Geologisches Jahrbuch : Reihe B 10
    Language: English
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  • 119
    Call number: 9/SR 90.0096(19)
    In: Memoir
    Type of Medium: Series available for loan
    Pages: 747 S.
    Series Statement: Memoir / American Association of Petroleum Geologists 19
    Language: English
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  • 120
    Series available for loan
    Series available for loan
    Delft : Nederlands Commissie voor Geodäsie
    Associated volumes
    Call number: SR 90.0083(46)
    In: Publications on geodesy
    Type of Medium: Series available for loan
    Pages: XI, 225 S.
    ISBN: 9061322669
    Series Statement: Publications on geodesy / Netherlands Geodetic Commission N.S. 46
    Language: English
    Location: Lower compact magazine
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  • 121
    Call number: SR 90.0084(53)
    In: Geodätisch-geophysikalische Arbeiten in der Schweiz
    Type of Medium: Series available for loan
    Pages: 155 S.
    Series Statement: Geodätisch-geophysikalische Arbeiten in der Schweiz 53
    Language: English
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  • 122
    Call number: SR 90.0085(97,5)
    In: Reports of the Finnish Geodetic Institute
    Type of Medium: Series available for loan
    Pages: 15 S.
    ISBN: 9517112122
    Series Statement: Reports of the Finnish Geodetic Institute 97,5
    Language: English
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  • 123
    Call number: M 91.0848
    In: Internal report / The Danish Geodetic Institute
    Type of Medium: Monograph available for loan
    Pages: 63 S.
    Series Statement: Internal report / The Danish Geodetic Institute 3
    Language: English
    Location: Upper compact magazine
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  • 124
    Call number: SR 90.0085(96,3)
    In: Reports of the Finnish Geodetic Institute
    Type of Medium: Series available for loan
    Pages: 19 S.
    ISBN: 9517111975
    Series Statement: Reports of the Finnish Geodetic Institute 96,3
    Language: English
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  • 125
    Call number: SR 90.0085(97,1)
    In: Reports of the Finnish Geodetic Institute
    Type of Medium: Series available for loan
    Pages: 60 S.
    ISBN: 9517112017
    Series Statement: Reports of the Finnish Geodetic Institute 97,1
    Language: English
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  • 126
    Series available for loan
    Series available for loan
    Washington, DC : Smithsonian Institution Press
    Associated volumes
    Call number: SR 90.0088(9)
    In: Smithsonian contributions to paleobiology
    Type of Medium: Series available for loan
    Pages: 256 S.
    Series Statement: Smithsonian contributions to paleobiology 9
    Language: English
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  • 127
    Call number: SR 90.0085(95,7)
    In: Reports of the Finnish Geodetic Institute
    Type of Medium: Series available for loan
    Pages: 77 S.
    ISBN: 9517111908
    Series Statement: Reports of the Finnish Geodetic Institute 95,7
    Language: English
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  • 128
    Call number: SR 90.0086(73)
    In: Veröffentlichungen des Finnischen Geodätischen Institutes = Suomen Geodeettisen Laitoksen Julkaisuja = Publications of the Finnish Geodetic Institute
    Type of Medium: Series available for loan
    Pages: 44 S.
    Series Statement: Veröffentlichungen des Finnischen Geodätischen Institutes 73
    Language: English
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  • 129
    Call number: SR 90.0081(134)
    In: Reports of the Department of Geodetic Science and Surveying
    Type of Medium: Series available for loan
    Pages: IV, 15 S.
    Series Statement: Report / Department of Geodetic Science, the Ohio State University 134
    Language: English
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  • 130
    Call number: SR 90.0081(152)
    In: Reports of the Department of Geodetic Science and Surveying
    Type of Medium: Series available for loan
    Pages: IV, 69 S.
    Series Statement: Report / Department of Geodetic Science, the Ohio State University 152
    Language: English
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  • 131
    Series available for loan
    Series available for loan
    Washington, DC : Smithsonian Institution Press
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    Call number: SR 90.0088(17)
    In: Smithsonian contributions to paleobiology
    Type of Medium: Series available for loan
    Pages: IV, 51 S.
    Series Statement: Smithsonian contributions to paleobiology 17
    Language: English
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  • 132
    Call number: SR 90.0093(S9)
    In: UNISURV report
    Type of Medium: Series available for loan
    Pages: VII, 264 S.
    ISBN: 0858390132
    Series Statement: UNISURV report / University of New South Wales, School of Surveying S9
    Language: English
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  • 133
    Call number: SR 90.0085(74,2)
    In: Reports of the Finnish Geodetic Institute
    Type of Medium: Series available for loan
    Pages: 37 S.
    ISBN: 951711009X
    Series Statement: Reports of the Finnish Geodetic Institute 74,2
    Language: English
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  • 134
    Call number: SR 90.0081(145)
    In: Reports of the Department of Geodetic Science and Surveying
    Type of Medium: Series available for loan
    Pages: III, 35 S.
    Series Statement: Report / Department of Geodetic Science, the Ohio State University 145
    Language: English
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  • 135
    Call number: SR 90.0081(213)
    In: Reports of the Department of Geodetic Science and Surveying
    Type of Medium: Series available for loan
    Pages: III, 17 S.
    Series Statement: Report / Department of Geodetic Science, the Ohio State University 213
    Language: English
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  • 136
    Call number: SR 90.0081(217)
    In: Reports of the Department of Geodetic Science and Surveying
    Type of Medium: Series available for loan
    Pages: IV, 42 S.
    Series Statement: Report / Department of Geodetic Science, the Ohio State University 217
    Language: English
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  • 137
    Call number: SR 90.0086(51)
    In: Veröffentlichungen des Finnischen Geodätischen Institutes = Suomen Geodeettisen Laitoksen Julkaisuja = Publications of the Finnish Geodetic Institute
    Type of Medium: Series available for loan
    Pages: 57 S.
    Series Statement: Veröffentlichungen des Finnischen Geodätischen Institutes 51
    Language: English
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  • 138
    Series available for loan
    Series available for loan
    Washington, DC : Smithsonian Institution Press
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    Call number: SR 90.0088(3)
    In: Smithsonian contributions to paleobiology
    Type of Medium: Series available for loan
    Pages: XIV, 390 S.
    Series Statement: Smithsonian contributions to paleobiology 3
    Language: English
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  • 139
    Series available for loan
    Series available for loan
    Washington, DC : Smithsonian Institution Press
    Associated volumes
    Call number: SR 90.0088(83)
    In: Smithsonian contributions to paleobiology
    Type of Medium: Series available for loan
    Pages: III, 37 S.
    Series Statement: Smithsonian contributions to paleobiology 83
    Language: English
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  • 140
    Monograph available for loan
    Monograph available for loan
    Washington, D.C. : Mineralogical Society of America
    Associated volumes
    Call number: 11/M 99.0430 ; 11/M 00.0102 ; 11/M 99.0037
    In: Reviews in mineralogy
    Description / Table of Contents: This volume was prepared for a short course by the same title, organized by Russell J. Hemley and Ho-kwang Mao and sponsored by the Mineralogical Society of America, December 4-6, 1998 on the campus of the University of California at Davis. High-pressure mineralogy has historically been a vital part of the geosciences, but it is only in the last few years that the field has emerged as a distinct discipline as a result of extraordinary recent developments in high-pressure techniques. The domain of mineralogy is now no less than the whole Earth, from the deep crust to the inner core-the entire range of pressures and temperatures under which the planet's constituents were formed or now exist. The primary goal of this field is to determine the physical and chemical properties of materials that underlie and control the structural and thermal state, processes, and evolution of the planet. New techniques that have come 'online' within the last couple of years make it possible to determine such properties under extreme pressures and temperatures with an accuracy and precision that rival measurements under ambient conditions. These investigations of the behavior of minerals under extreme conditions link the scale of electrons and nuclei with global processes of the Earth and other planets in the solar system. It is in this broad sense that the term 'Ultrahigh-Pressure Mineralogy' is used for the title of this volume of Reviews in Mineralogy. This volume sets out to summarize, in a tutorial fashion, knowledge in this rapidly developing area of physical science, the tools for obtaining that knowledge, and the prospects for future research. The book, divided into three sections, begins with an overview (Chapter 1) of the remarkable advances in the ability to subject minerals-not only as pristine single-crystal samples but also complex, natural mineral assemblages-to extreme pressure-temperature conditions in the laboratory. These advances parallel the development of an arsenal of analytical methods for measuring mineral behavior under those conditions. This sets the stage for section two (Chapters 2-8) which focuses on high-pressure minerals in their geological setting as a function of depth. This top-down approach begins with what we know from direct sampling of high-pressure minerals and rocks brought to the surface to detailed geophysical observations of the vast interior. The third section (Chapters 9-19) presents the material fundamentals, starting from properties of a chemical nature, such as crystal chemistry, thermochemistry, element partitioning, and melting, and moving toward the domain of mineral physics such as melt properties, equations of state, elasticity, rheology, vibrational dynamics, bonding, electronic structure, and magnetism. The Review thus moves from the complexity of rocks to their mineral components and finally to fundamental properties arising directly from the play of electrons and nuclei. The following themes crosscut its chapters. Composition of the mantle and core Our knowledge of the composition of the Earth in part is rooted in information on cosmochemical abundances of the elements and observations from the geological record. But an additional and essential part of this enterprise is the utilization of the growing information supplied by mineral physics and chemistry in detailed comparison with geophysical (e.g. seismological) observations for the bulk of the planet. There is now detailed information from a variety of sources concerning crust-mantle interactions in subduction (Liou et aI., Chapter 2; Mysen et aI., Chapter 3). Petrological, geochemical, and isotope studies indicate a mantle having significant lateral variability (McDonough and Rudnick, Chapter 4). The extent of chemical homogeneity versus layering with depth in the mantle, a question as old as the recognition of the mantle itself, is a first-order issue that threads its way throughout the book. Agee (Chapter 5) analyzes competing models in terms of mineral physics, focusing on the origin of seismic discontinuities in the upper mantle. Bina (Chapter 6) examines the constraints for the lower mantle, with particular emphasis given to the variation of the density and bulk sound velocity with depth through to the core-mantle boundary region (Jeanloz and Williams, Chapter 7). Stixrude and Brown (Chapter 8) examine bounds on the composition of the core. Mineral elasticity and the link to seismology The advent of new techniques is raising questions of the mineralogy and composition of the deep Interior to a new level. As a result of recent advances in seismology, the depth-dependence of seismic velocities and acoustic discontinuities have been determined with high precision, lateral heterogeneities in the planet have been resolved, and directional anisotropy has been determined (Chapters 6 and 7). The first-order problem of constraining the composition and temperature as a function of depth alone is being redefined by high-resolution velocity determinations that define lateral chemical or thermal variations. As discussed by Liebermann and Li (Chapter 15), measurements of acoustic velocities can now be carried out simultaneously at pressures that are an order of magnitude higher, and at temperatures that are a factor of two higher, than those possible just a few years ago. The tools are in hand to extend such studies to related properties of silicate melts (Dingwell, Chapter 13). Remarkably, the solid inner core is elastically anisotropic (Chapter 8); with developments in computational methods, condensed-matter theory now provides robust and surprising predictions for this effect (Stixrude et aI., Chapter 19), and with very recent experimental advances, elasticity measurements of core material at core pressures can be performed directly (Chapters 1 and 15). Mantle dynamics The Earth is a dynamic planet: the rheological properties of minerals define the dynamic flow and texture of material within the Earth. Measurement of rheological properties at mantle pressures is a significant challenge that can now be addressed (Weidner, Chapter 16). Deviatoric stresses down to 0.1 GPa to pressures approaching 300 GPa can be quantified in high-pressure cells using synchrotron radiation (Chapter 1). The stress levels are an appropriate scale for understanding earthquake genesis, including the nature of earthquakes that occur at great depth in subducted slabs (deep-focus earthquakes) as these slabs travel through the Earth's mantle. Newly developed high-pressure, high-precision x-ray tools such as monochromatic radiation with modern detectors with short time resolution and employing long duration times are now possible with third-generation synchrotron sources to study the rheology of deep Earth materials under pressure (Chapter 1). Fate of subducting slabs One of the principal interactions between the Earth's interior and surface is subduction of lithosphere into the mantle, resulting in arc volcanoes, chemical heterogeneity in the mantle, as well as deep-focus earthquakes (Chapters 2 and 3). Among the key chemical processes associated with subduction is the role of water in the recycling process (Prewitt and Downs, Chapter 9), which at shallower levels is essential for understanding arc volcanism. Mass and energy transport processes govern global recycling of organic and inorganic materials, integration of these constituents in the Earth's interior, the evolution (chemically and physically) of descending slabs near convergent plate boundaries, and the fate of materials below and above the descending slab. Chapters 5 and 6 discuss the evidence for entrainment and passage of slabs through the 670 km discontinuity, and the possibility of remnant slabs in the anomalous D" region near the core-mantle boundary (Chapter 7). The ultimate fate of the materials cycled to such depths may affect interactions at the core-mantle boundary and may also hold clues to the initiation of diapiric rise. The evolution and fate of a subducting slab can now be addressed by experimental simulation of slab conditions, including in situ monitoring of a simulated slab in high-pressure apparatus in situ x-ray and spectroscopic techniques. The chemistry of volatiles changes appreciably under deep Earth conditions: they can be structurally bound under pressure (Prewitt and Downs, Chapter 9). Melting Understanding pressure-induced changes in viscosity and other physical properties of melts is crucial for chemical differentiation processes ranging from models of the magma ocean in the Earth's early history to the formation of magmatic ore deposits. (Chapter 13). Recent evidence suggests that melting may take place at great depth in the mantle. Seismic observations of a low-velocity zone and seismic anisotropy at the base of the mantle have given rise to debate about the existence of regions of partial melt deep in the mantle (Chapter 7). Deep melting is also important for mantle convection from subduction of the lithosphere to the rising of hot mantle plumes. Very recent advances in determination of melting relations of mantle and core materials with laser-heating techniques are beginning to provide accurate constraints (Shen and Heinz, Chapter 12). Sometimes lost in the debate on melting curves is the fact that a decade ago, there simply were no data for most Earth materials, only guesses and (at best) approximate models. Moreover, it is now possible to carry out in situ melting studies on multi-component systems, including natural assemblages, to deep mantle conditions. These results address whether or not partial melting is responsible for the observed seismic anomalies at the base of the mantle and provide constraints for mantle convection models (Chapter 7). The enigma of the Earth's core The composition, structure, formation, evolution, and current dynamic state of the Earth's core is an area of tremendous excitement (Chapter 8). The keys to understanding the available geophysical data are the material properties of liquid and crystalline iron under core conditions. New synchrotron-based methods and new developments in theory are being applied to determine all of the pertinent physical properties, and in conjunction with seismological and geodynamic data, to develop a full understanding of the core and its interactions with the mantle (Chapter 7). There has been considerable progress in determining the melting and phase relations of iron into the megabar range with new techniques (Chapter 12). Constraints are also obtained from theory (Chapter 19). These results feed into geophysical models for the outer and inner core flow, structural state, evolution, and the geodynamo. Moreover, there is remarkable evidence that the Earth's inner core rotates at a different rate than the rest of the Earth. This evidence in turn rests on the observation that the inner core is elastically anisotropic, a subject of current experimental and theoretical study from the standpoint of mineral physics, as described above. The thermodynamic framework Whole Earth processes must be grounded in accurate thermodynamic descriptions of phase equilibria in multi-component systems, as discussed by Navrotsky (Chapter 10). New developments in this area include increasingly accurate equations of state (Duffy and Wang, Chapter 14) required for modeling of phase equilibria as well as for direct comparison with seismic density profiles through the planet. Recent developments in in situ vibrational spectroscopy and theoretical models provide a means for independently testing available thermochemical data and a means for extending those data to high pressures and temperatures (Gillet et aI., Chapter 17). Accurate determinations of crystal structures provide a basis for understanding thermochemical trends (Chapter 9). Systematics for understanding solid-solution behavior and element partitioning are now available, at least to the uppermost regions of the lower mantle (Fei, Chapter 11). New measurements for dense hydrous phases are beginning to provide answers to fundamental questions regarding their stability of hydrous phases in the mantle (Chapters 3 and 9) and the partitioning of hydrogen and oxygen between the mantle and core (Chapter 8). Novel physical phenomena at ultrahigh pressures One of the key recent findings in high-pressure research is the remarkable effect of pressure on the chemistry of the elements, at conditions ranging from deep metamorphism of crustal minerals (Chapter 2) to "contact metamorphism" at the core-mantle boundary (Chapter 7). Pressure-induced changes in Earth materials represent forefront problems in condensed-matter physics. New crystal structures appear and the chemistry of volatiles changes (Chapter 9). Pressure-induced electronic transitions and magnetic collapse in transition metal ions strongly affect mineral properties and partitioning of major, minor, and trace elements (Chapter 11). Evidence for these transitions from experiment (Chapter 18) and theory (Chapter 19) is important for developing models for Earth formation and chemical differentiation. The conventional view of structurally and chemically complex minerals of the crust giving way to simple, close-packed structures of the deep mantle and a simple iron core is being replaced by a new chemical picture wherein dense silicates, oxides, and metals exhibit unusual electronic and magnetic properties and chemistry. In the end, this framework must dovetail with seismological observations indicating an interior of considerable regional variability, both radially and laterally depending on depth (e.g. Chapters 6 and 7). New classes of global models Information concerning the chemical and physical properties of Earth materials at high pressures and temperatures is being integrated with geophysical and geochemical data to create a more comprehensive global view of the state, processes, and history of the Earth. In particular, models of the Earth's interior are being developed that reflect the details contained in the seismic record but are bounded by laboratory information on the physics and chemistry of the constituent materials. Such "Reference Earth Models" includes the development of reference data sets and modeling codes. Tools that produce seismological profiles from hypothesized mineralogies (Chapters 4 and 5) are now possible, as are tools for testing these models against 'reference' seismological data sets (Chapter 6). These models incorporate the known properties of the Earth, such as crust and lithosphere structure, and thus have both an Earth-materials and seismological orientation. Other planets The Earth cannot be understood without considering the rest of the solar system. The terrestrial planets of our solar system share a common origin, and our understanding of the formation of the Earth is tied to our understanding of the formation of its terrestrial neighbors, particularly with respect to evaluating the roles of homogeneous and heterogeneous processes during accretion. As a result of recent developments in space exploration, as well as in the scope of future planetary missions, we have new geophysical and geochemical data for the other terrestrial planets. Models for the accretion history of the Earth can now be reevaluated in relation to this new data. Experiments on known Earth materials provide the thermodynamic data necessary to calculate the high-pressure mineralogy of model compositions for the interior of Mars and Venus. Notably, the outer planets have the same volatile components as the Earth, just different abundances. Studies of the outer planets provide both an additional perspective on our own planet as well as a vast area of opportunity for application of these newly developed experimental techniques (Chapter 1 and 17). New techniques in the geosciences The utility of synchrotron radiation techniques in mineralogy has exceeded the expectations of even the most optimistic. New spectroscopic methods developed for high-pressure mineralogy are now available for characterizing small samples from other types of experiments. For example, the same techniques developed for in situ studies at high pressures and temperatures are being used to investigate microscopic inclusions such as coesite in high-pressure metamorphic rocks (Chapter 2) and deep-mantle samples as inclusions in diamond (Chapter 3). With the availability of a new generation of synchrotron radiation sources (Chapter 1) and spectroscopic techniques (Chapter 17), a systematic application of new methods, including micro tomographic x-ray analysis of whole rock samples, is now becoming routinely possible. Contributions in technology. Finally, there are implications beyond the geosciences. Mineralogy has historically has led many to conceptual and technical developments used in other fields, including metallurgy and materials science, and the new area of ultrahigh pressure mineralogy continues this tradition. As pointed out in Chapter 1, many highpressure techniques have their origins in geoscience laboratories, and in many respects, geoscience leads development of high-pressure techniques in physics, chemistry, and materials science. New developments include the application of synthetic diamond for new classes of 'large-volume' high-pressure cells. Interestingly, information on diamond stability, including its metastable growth, feeds back directly on efforts to grow large diamonds for the next generation of such high-pressure devices (Chapter 1). Microanalytical techniques, such as micro-spectroscopy and x-ray diffraction, developed for high-pressure research are now used outside of this field of research as well. The study of minerals and mineral analogs under pressure is leading to new materials. As in the synthesis of diamond itself, these same scientific approaches promise the development of novel, technological materials.
    Type of Medium: Monograph available for loan
    Pages: xvi, 671 S.
    ISBN: 0-939950-48-0 , 978-0-939950-48-5
    ISSN: 1529-6466
    Series Statement: Reviews in Mineralogy 37
    Classification:
    Mineralogy
    Language: English
    Note: I. Overview Chapter 1. New Windows on the Earth's Deep Interior by Ho-kwang Mao and Russell J. Hemley, p. 1 - 32 II. Minerals in Context: The Earth's Deep Interior Chapter 2. High-pressure minerals from deeply subducted metamorphic rocks by J.G. Liou, R.Y. Zhang, W.G. Ernst, Douglas Rumble III, and Shigenori Maruyama, p. 33 - 96 Chapter 3. The Upper Mantle Near Convergent Plate Boundaries by Bjorn O. Mysen, Peter Ulmer, Juergen Konzett, and Max W. Schmidt, p. 97 - 138 Chapter 4. Mineralogy and Composition of the Upper Mantle by William F. McDonough and Roberta L. Rudnick, p. 139 - 164 Chapter 5. Phase Transformations and Siesmic Structure in the Upper Mantle and Transition Zone by Carl B. Agee, p. 165 - 204 Chapter 6. Lower Mantle Mineralogy and the Geophysical Perspective by Craig R. Bina, p. 205 - 240 Chapter 7. The Core-Mantle Boundary Region by Raymond Jeanloz and Quentin Williams, p. 241 - 260 Chapter 8. The Earth's Core by Lars Stixrude and J. Michael Brown, p. 261 - 282 Chapter 9. High-Pressure Crystal Chemistry by Charles T. Prewitt and Robert T. Downs, p. 283 - 318 III. Mineral Fundamentals: Physics and Chemistry Chapter 10. Thermodynamics of High-Pressure Phases by Alexandra Navrotsky, p. 319 - 342 Chapter 11. Solid Solutions and Element Partitioning at High Pressures and Temperatures by Yingwei Fei, p. 343 - 368 Chapter 12. High-Pressure Melting of Deep Mantle and Core Materials by Guoyin Shen and Dion L. Heinz, p. 369 - 396 in the 2002-02-07 print version, the first page of Chapter 12 (page 369) was switched with the first page of Chapter 13 (p. 397) Chapter 13. Melt Viscosity and Diffusion under Elevated Pressures by Donalds B. Dingwell, p. 397 - 424 in the 2002-02-07 print version, the first page of Chapter 12 (page 369) was switched with the first page of Chapter 13 (p. 397) Chapter 14. Pressure-Volume-Temperature Equations of State by Thomas S. Duffy and Yanbin Wang, p. 425 - 458 Chapter 15. Elasticity at High Pressures and Temperatures by Robert C. Liebermann and Baosheng Li, p. 459 - 492 Chapter 16. Rheological Studies at High Pressure by Donald J. Weidner, p. 493 - 524 Chapter 17. Vibrational Properties at High Pressures and Temperatures by Philippe Gillet, Russell J. Hemley, and Paul F. McMillan, p. 525 - 590 Chapter 18. High-Pressure Electronic and Magnetic Properties by Russell J. Hemley, Ho-kwang Mao, and Ronald E. Cohen, p. 591 - 538 Chapter 19. Theory of Minerals at High Pressure by Lars Stixrude, Ronald E. Cohen, and Russell J. Hemley, p. 639 - 671
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    Ohio
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    In: Reports of the Department of Geodetic Science and Surveying
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    Pages: III, 52 S.
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    Call number: SR 90.0081(132)
    In: Reports of the Department of Geodetic Science and Surveying
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    Pages: III, 15 S.
    Series Statement: Report / Department of Geodetic Science, the Ohio State University 132
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    Call number: M 00.0183
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    Pages: 480 S.
    Series Statement: Proceedings of the Royal Society of Victoria vol. 110, no. 1/2 = Thematic issue
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    Language: English
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    Call number: S 96.0498(297)
    In: Report
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    Pages: 32 S.
    Series Statement: Report / Max-Planck-Institut für Meteorologie 297
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    Meteorology and Climatology
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    Call number: S 96.0498(298)
    In: Report
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    Call number: SR 90.0081(174)
    In: Reports of the Department of Geodetic Science and Surveying
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    Pages: VII, 81 S.
    Series Statement: Report / Department of Geodetic Science, the Ohio State University 174
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    Call number: SR 90.0093(S12)
    In: UNISURV report
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    Pages: V, 226 S.
    ISBN: 0858390140
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    In: Communications : Serie A / Observatoire Royal de Belgique
    Pages: S. 203 - 208
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    In: EUREF publication
    In: Mitteilungen des Bundesamtes für Kartographie und Geodäsie
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    Pages: 284 S.
    Series Statement: Mitteilungen des Bundesamtes für Kartographie und Geodäsie 6
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    Standford, Calif.
    Call number: M 99.0440
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    Pages: 416 S.
    ISSN: 1058-2525
    Series Statement: Standford geothermal program workshop report SGP-TR-162
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    Geothermal Energy
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    Call number: SR 90.0009(305)
    In: Memoir
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    Pages: VII, 72 S. + 2 Kt.-Beil.
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  • 153
    Call number: 21/SR 90.0917(16-18) ; 21/SR 90.0917(16)
    In: Veröffentlichungen des Zentralinstituts Physik der Erde, Nr. 16
    Type of Medium: Series available for loan
    Pages: 64 Seiten , Illustrationen , 30 cm
    Edition: Als Manuskript gedruckt
    Series Statement: Veröffentlichungen des Zentralinstituts Physik der Erde Nr. 16
    Language: German , English
    Note: Enthält auch: Erkenntnisse der Gebirgsmechanik über.das mechanische Verhalten verschiedenartiger Gesteine / Höfer, K.-H. , Enthält auch: Zur Bedeutung der Crack-porosity bei Messungen unter hydrostatischem Druck / HURTIG, E.; u. a. , Enthält auch: Lateral inhomogeneities of the Earth's mantle and their petrological interpretation / FUCHS, K.; LIEBAU, F.; MAYER-ROSA, D. , Enthält auch: Velocity and density distributions in the upper mantle of Europe as derived from seismological observations / MAYER-ROSA, D.; MÜLLER, St. , Enthält auch: Die Druckabhängigkeit der CURIE-Temperatur von Titanomagnetiten / SCHULT, A. , Enthält auch: Die elektrische Leitfähigkeit von natürlichen Olivinen bei hohen Drücken und Temperaturen / SCHOBER, M.; SCHULT, A. , Enthält auch: Betrachtungen zum Näherungscharakter von Festkörpermodellen für das Erdinnere / STILLER, H. , Enthält auch: Influence of pore-fluid pressure in rocks on tensile cracking under high pressure / TEISSEYRE, R. , Enthält auch: Die Hochdrucktechnologie des Zentralinstituts Physik der Erde in Potsdam und die Zusammenarbeit mit dem Zentralinstitut Physik der Erde in Moskau auf dem Gebiet der Hochdruck-Hochtemperatur-Physik / VOLLSTÄDT, H.: WAGNER, F.C. , Enthält auch: Experimentelle Untersuchung der spezifischen Volumendeformation, der Kompressibilität und der Dichte von Gesteinen unter hohem Druck / LEBEDEV, T.S.; SAPOVAL, V.I. ; KORCIN, V.A. , Enthält auch: Der elektrische Widerstand von Mineralen und Gesteinen unter hohen Drücken und Temperaturen und der Bau der ·Erdkruste und des oberen Erdmantels / OESBERG, R.-P. , Enthält auch: On the possible density d.ecrease of the upper mantle in the saismic channel zone for Vs / TARKOV, A.P. , Enthält auch: Apparate und Methoden zur Untersuchung physikalischer Eigenschaften von Gesteinen unter hohen Drücken / VOLAROVIC, M.P.
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    Call number: SR 90.0931(20/3)
    In: Fieldiana
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    Pages: S. 53-64
    Series Statement: Fieldiana : Geology 20/3
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    Pages: S. 77-83
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    Call number: SR 90.0931(20/4)
    In: Fieldiana
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    Pages: 166 S.
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    In: Fieldiana
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    Pages: XIII, 182 S.
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    Pages: XII, 108 S.
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    Pages: VII; 117 S.
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    Ottawa
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    Call number: SR 90.0925(18)
    In: Economic geology report
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    Pages: VII, 108 S. + 5 Beil.
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    Call number: SR 90.0925(26)
    In: Economic geology report
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    Köln : Inst. für Geophysik und Meteorologie
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    Call number: S 93.0427(129) ; ZSP-560-129
    In: Mitteilungen aus dem Institut für Geophysik und Meteorologie der Universität zu Köln
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    ISSN: 0069-5882
    Series Statement: Mitteilungen aus dem Institut für Geophysik und Meteorologie der Universität zu Köln 129
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    Call number: SR 90.0931(29)
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    Pages: VIII, 193 S.
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    Call number: SR 90.0931(23/6)
    In: Fieldiana
    Type of Medium: Series available for loan
    Pages: S. 79-98
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    Cambridge : Cambridge Univ. Press
    Call number: M 00.0005 ; AWI G4-98-0233
    Type of Medium: Monograph available for loan
    Pages: XXI, 341 S. : Ill, graph. Darst., Kt.
    Edition: 1. publ.
    ISBN: 0521664004
    Language: English
    Note: Contents: Preface. - List of Symbols. - 1 Groundwater flow. - 1.1 Darcy's law. - 1.1.1 The limits of Darcy's law. - 1.1.2 Driving forces for groundwater flow. - 1.2 Crustal permeability. - 1.2.1 Permeability versus porosity. - 1.2.2 Heterogeneity and anisotropy. - 1.2.3 Scale dependence. - 1.2.4 Depth dependence. - 1.2.5 Time dependence. - 1.2.6 Some limiting values. - 1.3 Conceptualizing groundwater systems. - 1.4 The continuum approach. - 1.5 The groundwater flow equation. - 1.5.1 Conservation of mass. - 1.5.2 The storage term. - 1.5.3 Various forms of the groundwater flow equation Problems. - 2 Solute transport. - 2.1 Governing equations. - 2.1.1 Molecular diffusion. - 2.1.2 Advection. - 2.1.3 Mechanical dispersion. - 2.1.4 Mass balance equation. - 2.1.5 Chemical reactions. - 2.1.6 Initial and boundary conditions. - 2.2 Numerical solution techniques. - 2.3 Density-driven flow. - 2.4 Multicomponent diffusion. - 2.5 Multicomponent reactive transport. - 2.5.1 Rate-based reactions. - 2.5.2 Surface reactions. - 2.5.3 Homogeneous reactions. - 2.5.4 Heterogeneous reactions. - 2.5.5 Solution algorithms Problems. - 3 Heat transport. - 3.1 Governing equations. - 3.1.1 Choice of dependent variables. - 3.1.2 Statements of mass and energy conservation. - 3.1.3 A form of Darcy's law for two-phase flow of compressible fluids. - 3.1.4 Conductive heat flux. - 3.1.5 One-dimensional forms of the governing equations. - 3.1.6 Extending the governing equations to three dimensions. - 3.1.7 Assumptions. - 3.1.8 Fluid properties. - 3.1.9 Numerical solution. - 3.2 Initial and boundary conditions. - 3.3 Temperature-based formulations. - 3.4 One-dimensional groundwater flow. - 3.4.1 Steady vertical flow. - 3.4.2 Flow in a confined aquifer or fault zone. - 3.5 Dimensionless numbers. - 3.5.1 Nusselt number. - 3.5.2 Peclet number. - 3.5.3 Rayleigh number. - 3.6 Buoyancy-driven flow. - 3.7 Heatpipes Problems. - 4Regional-scale flow and transport. - 4.1Sources and sinks of fluid. - 4.1.1 Geologic forcing. - 4.1.2 Anomalous fluid pressures. - 4.1.3 Hydraulic fracturing. - 4.1.4 The Gulf Coast. - 4.1.5 Accretionary prisms. - 4.2 Regional-scale solute transport. - 4.2.1 Groundwater age. - 4.2.2 Large-scale dispersion. - 4.2.3 Evolution of regional groundwater chemistry. - 4.3 Regional-scale heat transfer. - 4.3.1 The conductive regime in sedimentary basins. - 4.3.2 Thermal effects of groundwater flow in sedimentary basins. - 4.3.3 Some case studies of sedimentary basins. - 4.3.4 An example from volcanic terrane. - 4.3.5 The stress-heat flow paradox of the San Andreas fault Problems. - 5 Ore deposits. - 5.1Mississippi Valley-type deposits. - 5.1.1 Evidence for regional-scale brine migration. - 5.1.2 The salt problem. - 5.1.3 Controls on ore deposition. - 5.1.4 Driving forces for fluid flow. - 5.1.5 The Irish MVTs. - 5.2 Sediment-hosted uranium. - 5.2.1 Redox control of uranium solubility. - 5.2.2 Tabular uranium deposits. - 5.2.3 Unconformity-type uranium deposits. - 5.3 Supergene enrichment of porphyry copper. - 5.4 Colombian emeralds. - Problems. - 6 Hydrocarbons. - 6.1 Maturation. - 6.1.1 The oil window. - 6.1.2 Groundwater flow and the thermal regime. - 6.2 Migration. - 6.2.1 Capillary effects. - 6.2.2 Primary migration. - 6.2.3 Secondary migration. - 6.3 Entrapment. - 6.4 Governing equations for immiscible multiphase flow. - 6.5 Case studies. - 6.5.1 The Uinta basin. - 6.5.2 The Los Angeles basin. - Problems. - 7 Geothermal processes. - 7.1 Crustal heat flow. - 7.1.1 Measurement. - 7.1.2 Lateral and vertical variations. - 7.1.3 Perturbations due to groundwater flow. - 7.2 Magmatic-hydrothermal systems. - 7.2.1 Magmatic heat sources. - 7.2.2 Heat transfer from magma to groundwater. - 7.2.3 Fluid circulation near magma bodies. - 7.2.4 Permeabilities in near-magma environments. - 7.3 Fluid flow and heat transport near the critical point. - 7.3.1 One-dimensional pressure-enthalpy paths. - 7.3.2 Two-dimensional convection. - 7.4 Multiphase processes. - 7.4.1 Phase separation. - 7.4.2 Vapor-dominated zones. - 7.4.3 Pressure transmission. - 7.4.4 Boiling point-depth curves. - 7.5 Hotsprings. - 7.6 Geysers. - 7.7 Geothermal resources. - 7.8 Ore deposits. - 7.9 Subsea hydrothermal systems. - 7.9.1 Importance to the Earth's thermal budget. - 7.9.2 Influence on ocean chemistry. - 7.9.3 Quantitative description. - Problems. - 8 Earthquakes. - 8.1 Effective stress. - 8.2 Coulomb's law of failure. - 8.3 Induced seismicity. - 8.3.1 The Rocky Mountain arsenal. - 8.3.2 Rangely,Colorado. - 8.4 Fluid pressures at seismogenic depths. - 8.4.1 Hubbert and Rubey. - 8.4.2 Irwin and Barnes model for the San Andreas. - 8.4.3 Byerlee and Rice models for the San Andreas. - 8.5 Earthquake-induced hydrologic phenomena. - 8.5.1 Stream flow and springs. - 8.5.2 Well behavior. - 8.5.3 Geysering. - 8.6 Effect of earthquakes on crustal permeability. - 8.6.1 Analysis of the Loma Prietacase. - 8.6.2 State-of-stress and the orientation of conductive fractures. - Problems. - 9 Evaporites. - 9.1 Evaporite formation. - 9.1.1 The marine evaporite problem. - 9.1.2 Groundwater inflow. - 9.1.3 CaCl2 brines. - 9.1.4 Magnesium depletion. - 9.1.5 Continental evaporites. - 9.1.6 Groundwater outflow. - 9.2 Bedded evaporites. - 9.3 Saltdomes. - 9.3.1 Variable-density convection. - 9.3.2 Caprock formation. - Problems. - 10 Diagenesis and metamorphism. - 10.1 Reaction-Flow coupling. - 10.2 Diagenesis of siliciclastic sequences. - 10.2.1 Diagenesis in sedimentary basins. - 10.2.2 Silica cementation by thermal convection. - 10.3 Diagenesis of carbonate platforms. - 10.3.1 Dolomitization. - 10.3.2 Mixing-zone dissolution. - 10.4Local-scale diagenetic features. - 10.4.1 Mechanochemical coupling. - 10.4.2 Geochemical banding. - 10.5 Metamorphism. - 10.5.1 The evidence for voluminous fluid fluxes. - 10.5.2 The nature of permeability in metamorphic environments. - 10.5.3 Contact metamorphism at Skaergaard. - 10.5.4 Low-pressure metamorphic belts. - Problems. - References. - Index.
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  • 171
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    In: Earth and Planetary Science Letters
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    Pages: 651 S.
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  • 173
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    In: European Earthquake Engineering
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  • 175
    Call number: M 99.0614
    In: Il Nuovo cimento della Società Italiana di Fisica
    Type of Medium: Monograph available for loan
    Pages: S. 247-631
    Series Statement: Il Nuovo cimento della Società Italiana di Fisica : C, Geophysics and space physics 22,3-4
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    A.2.1.
    Language: English
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  • 176
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    Washington, D.C. : Mineralogical Society of America
    Associated volumes
    Call number: 11/M 99.0611
    In: Reviews in mineralogy
    Description / Table of Contents: This volume was written in preparation for a short course by the same title, sponsored by the Mineralogical Society of America, October 22 and 23, 1999 in Golden, Colorado, prior to MSA's joint annual meeting with the Geological Society of America. Research emphasis in traditional mineralogy has often focused on detailed studies of a few hundred common rock-forming minerals. However, scanning the contents of a current issue of American Mineralogist or Canadian Mineralogist, or the titles of recent Reviews in Mineralogy volumes reveals that the emphasis of mineralogical research has undergone considerable change recently. Less-common, low-temperature minerals are receiving ever increasing attention, often owing to their importance to the environment. A tremendous challenge lies ahead for mineralogists and geochemists: the occurrences, structures, stabilities, and paragenesis of perhaps a thousand low-temperature minerals require detailed study if geoscientists are to be properly equipped to tackle environmental problems today and in the future. In many low-temperature environments mineral assemblages are extremely complex, with more than 10 species common in many em-size samples. This Reviews in Mineralogy volume provides detailed reviews of various aspects of the mineralogy and geochemistry of uranium; hopefully the reader will benefit from this presentation, and perhaps more importantly, the reader may develop a sense of the tremendous amount of work that remains to be done, not only concerning uranium in natural systems, but for low-temperature mineralogy and geochemistry in general. The low crustal abundance of uranium belies its mineralogical and geochemical significance: more than five percent of minerals known today contain uranium as an essential constituent. Uranium is a geochemical and geochronological indicator, and the U-Pb decay series has long been one of the most important systems for dating rocks and minerals. Uranium is an important energy source, and the uranium nuclear fuel cycle has generated a great deal of interest in uranium mineralogy and geochemistry since the first controlled nuclear fission reaction nearly sixty years ago. Current interest in uranium mineralogy and geochemistry stems in large part from the utilization of uranium as a natural resource. Environmental issues such as coping with uranium mine and mill tailings and other uranium-contaminated sites, as well as permanent disposal of highly radioactive uranium-based nuclear fuels in deep geologic repositories, have all refocused attention on uranium. More than twenty years have passed since the 1978 Mineralogical Association of Canada's Short Course on Uranium Deposits. A realignment of research focus has clearly occurred since then, from exploration and exploitation to environmental remediation and geological "forecasting" of potential future impacts of decisions made today. The past decades have produced numerous remarkable advances in our understanding of uranium mineralogy and geochemistry, as well as technological and theoretical advances in analytical techniques which have revolutionized research of trace-elements, including uranium. It was these advances that provided us the impetus to develop this volume. We have attempted to produce a volume that incorporates most important aspects of uranium in natural systems, while providing some insight into important applications of uranium mineralogy and geochemistry to environmental problems. The result is a blend of perspectives and themes: historical (Chapter 1), crystal structures (Chapter 2), systematic mineralogy and paragenesis (Chapters 3 and 7), the genesis of uranium ore deposits (Chapters 4 and 6), the geochemical behavior of uranium and other actinides in natural fluids (Chapter 5), environmental aspects of uranium such as microbial effects, groundwater contamination and disposal of nuclear waste (Chapters 8, 9 and 10), and various analytical techniques applied to uranium-bearing phases (Chapters 11-14).
    Type of Medium: Monograph available for loan
    Pages: 679 S.
    ISBN: 0-939950-50-2 , 978-0-939950-50-8
    ISSN: 1529-6466
    Series Statement: Reviews in mineralogy 38
    Classification:
    Mineralogy
    Language: English
    Note: Chapter 1. Radioactivity and the 20th Century by Rodney C. Ewing, p. 1 - 22 Chapter 2. The Crystal Chemistry of Uranium by Peter C. Burns, p. 23 - 90 Chapter 3. Systematics and Paragenesis of Uranium Minerals by Robert Finch and Takaski Murakami, p. 91 - 180 Chapter 4. Stable Isotope Geochemistry of Uranium Deposits by Mostafa Fayek and T. Kurtis Kyser, p. 181 - 220 Chapter 5. Environmental Aqueous Geochemistry of Actinides by William M. Murphy and Everett. L. Shock, p. 221 - 254 Chapter 6. Uranium Ore Deposits: Products of the Radioactive Earth by Jane Plant, Peter R. Simpson, Barry Smith, and Brian F. Windley, p. 255 - 320 Chapter 7. Mineralogy and Geochemistry of Natural Fission Reactors in Gabon by Janusz Janeczek, p. 321 - 392 Chapter 8. Geomicrobiology of Uranium by Yohey Suzuki and Jillian F. Banfield, p. 393 - 432 Chapter 9. Uranium Contamination in the Subsurface: Characterization and Remediation by Abdessalam Abdelouas, Werner Lutze, and H. Eric Nuttall, p. 433 - 474 Chapter 10. Uranium Mineralogy and the Geologic Disposal of Spent Nuclear Fuel by David Wronkiewicz and Edgar Buck, p. 475 - 498 Chapter 11. Spectroscopic Techniques Applied to Uranium in Minerals by John M. Hanchar, p. 499 - 520 Chapter 12. Infrared Spectroscopy and Thermal Analysis of the Uranyl Minerals by Jiri Cejka, p. 521- 622 Chapter 13. Analytical Methods for the Determination of Uranium in Geological and Environmental Materials by Stephen F. Wolf, p. 623 - 652 Chapter 14. Identification of Uranium-bearing Minerals and Inorganic Phases by X-ray Powder Diffraction by Frances C. Hill , p. 653 - 680
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  • 177
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    Edinburgh : Scottish Academic Press
    Associated volumes
    Call number: 9/MR 90.0952
    In: Special publications / the Geological Society, London, Volume 4
    Type of Medium: Monograph available for loan
    Pages: XVI, 809 Seiten , Illulstrationen
    ISBN: 0707300479
    Series Statement: Special publications / the Geological Society, London 4
    Language: English
    Note: Table of Contents Alpine—Himalayan Orogens Pyrenees Maurice Mattauer and Jacques Henry Geological Society, London, Special Publications, 4, 3-21, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.01 Betic Cordilleras Harmanus Engbertus Rondeel and Otto Jan Simon Geological Society, London, Special Publications, 4, 23-35, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.02 Moroccan Rif Georges Choubert and Anne Faure-Muret Geological Society, London, Special Publications, 4, 37-46, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.03 Eastern Atlas André Caire Geological Society, London, Special Publications, 4, 47-59, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.04 Northern Apennines Giuliano Sestini Geological Society, London, Special Publications, 4, 61-84, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.05 Central Alps and Jura Mountains Daniel Bernoulli, Hans Peter Laubscher, Rudolf Trümpy and Eduard Wenk Geological Society, London, Special Publications, 4, 85-108, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.06 Eastern Alps Ernest Ronald Oxburgh Geological Society, London, Special Publications, 4, 109-126, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.07 Carpathian Mountains Krzysztof Birkenmajer Geological Society, London, Special Publications, 4, 127-157, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.08 Hellenides Alan Gilbert Smith and Eldridge Morton Moores Geological Society, London, Special Publications, 4, 159-185, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.09 Eastern Turkey Emin Ilhan Geological Society, London, Special Publications, 4, 187-197, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.10 Southern Iran: Zagros Mountains Norman Leslie Falcon Geological Society, London, Special Publications, 4, 199-211, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.11 Northern Iran: Alborz Mountains Jovan Stöcklin Geological Society, London, Special Publications, 4, 213-234, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.12 Afghanistan-West Pakistan John Bicknell Auden Geological Society, London, Special Publications, 4, 235-253, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.13 Karakorum Mountains Ardito Desio Geological Society, London, Special Publications, 4, 255-266, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.14 Himalaya Augusto Gansser Geological Society, London, Special Publications, 4, 267-278, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.15 Indoburman Ranges Rudolf Oskar Brunnschweiler Geological Society, London, Special Publications, 4, 279-299, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.16 Peninsular Thailand Cedric Keith Burton Geological Society, London, Special Publications, 4, 301-315, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.17 Sumatra John A Katili Geological Society, London, Special Publications, 4, 317-331, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.18 Borneo Neville Seymour Haile Geological Society, London, Special Publications, 4, 333-347, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.19 Banda Arcs Michael Geoffrey Audley-Charles Geological Society, London, Special Publications, 4, 349-363, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.20 Sulawesi Michael Geoffrey Audley-Charles Geological Society, London, Special Publications, 4, 365-378, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.21 Circum-Pacific and Caribbean Orogens Macquarie-Balleny Ridge Colin Peter Summerhayes Geological Society, London, Special Publications, 4, 381-386, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.22 New Zealand George William Grindley Geological Society, London, Special Publications, 4, 387-416, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.23 Tonga-Kermadec-Lau M. P. Hochstein, J. C. Schofield and G. G. Shor Geological Society, London, Special Publications, 4, 417-423, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.24 Fiji Peter Rodda Geological Society, London, Special Publications, 4, 425-431, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.25 New Hebrides Arthur James Warden and Andrew Harry Gordon Mitchell Geological Society, London, Special Publications, 4, 433-443, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.26 New Caledonia J. H. Guillon Geological Society, London, Special Publications, 4, 445-452, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.27 Solomon Islands Patrick Joseph Coleman and Brian Douglas Hackman Geological Society, London, Special Publications, 4, 453-461, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.28 East New Guinea John Milsom Geological Society, London, Special Publications, 4, 463-474, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.29 West Irian Jacobus Jan Hermes Geological Society, London, Special Publications, 4, 475-490, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.30 Philippine Archipelago Rupert William Roye Rutland and Malcolm Ross Walter Geological Society, London, Special Publications, 4, 491-500, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.31 Taiwan Chingchang Biq Geological Society, London, Special Publications, 4, 501-511, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.32 Southwest Japan Tatsuro Matsumoto and Toshio Kimura Geological Society, London, Special Publications, 4, 513-541, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.33 Northeast Japan Tokihiko Matsuda and Nobu Kitamura Geological Society, London, Special Publications, 4, 543-552, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.34 Aleutian Arc Ernest Hartwell Lathram Geological Society, London, Special Publications, 4, 553-561, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.35 Alaska Ernest H. Lathram, Arthur Grantz, David F. Barnes, David A. Brew, A. T. Ovenshine, George Plafker, Robert L. Detterman, Helen L. Foster, Michael Churkin, William W. Patton, Joseph M. Hoare, Irvin L. Tailleur, William P. Brosgé, Thomas P. Miller and C. L. Sainsbury Geological Society, London, Special Publications, 4, 563-589, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.36 Western Canada J. O. Wheeler, H. A. K. Charlesworth, J. W. H. Monger, J. E. Muller, R. A. Price, J. E. Reesor, J. A. Roddick and P. S. Simony Geological Society, London, Special Publications, 4, 591-623, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.37 Cuba Peter Humphrey Mattson Geological Society, London, Special Publications, 4, 625-638, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.38 Puerto Rico—Virgin Islands Peter Humphrey Mattson Geological Society, London, Special Publications, 4, 639-661, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.39 Lesser Antilles John Frederick Tomblin Geological Society, London, Special Publications, 4, 663-670, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.40 Trinidad John Baverstock Saunders Geological Society, London, Special Publications, 4, 671-682, 1 January 1974, https://doi.org/10.1144/GSL.SP.2005.004.01.41 Venezuelan Coast Ranges John Sebastian Bell Geologi
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    Bristol [u.a.] : Scottish Universities Summer School in Physics & Institute of Physics Publishing
    Call number: M 00.0042
    Type of Medium: Monograph available for loan
    Pages: xiii, 166 S.
    Edition: 2nd ed.
    ISBN: 0750306254
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  • 179
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    In: Neues Jahrbuch für Mineralogie, Abhandlungen
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    Vandoeuvre : Associat. Scient. pour la Géologie et es Applications
    Call number: M 00.0052
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    Pages: Getr. Zählung
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  • 181
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    Belmont, CA : Wadsworth
    Call number: 2/M 00.0305
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    Pages: viii, 152 S.
    Edition: 2nd. ed.
    ISBN: 0534528430
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  • 182
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    Urbana, Ill.
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    Call number: SR 90.1035(481)
    In: Circular
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    Pages: 43 S. + 4 Beil.
    Series Statement: Circular / Illinois State Geological Survey 481
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    Garching bei München
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    Call number: SR 90.1026(106)
    In: MPE-Report
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    Pages: 31 S.
    Series Statement: Max-Planck-Institut für Physik und Astrophysik, Institut für Extraterrestrische Physik 106
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    Garching bei München
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    Call number: SR 90.1026(96)
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    Series Statement: Max-Planck-Institut für Physik und Astrophysik, Institut für Extraterrestrische Physik 96
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    Call number: SR 90.1026(95)
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    Call number: SR 90.1037(7)
    In: Division of Soils technical paper
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    Pages: 32 S. + 1 Kt.-Beil.
    Series Statement: Division of Soil mechanics technical paper / Commonwealth Scientific and Industrial Research Organization, Australia 7
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    Call number: SR 90.1037(6)
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    Washington, DC : Smithsonian Institution Press
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    Call number: SR 90.1028(7)
    In: Smithsonian contributions to the earth sciences
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    Call number: AR 00.0328 / Regal 6
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    Call number: SR 90.1050(9,10)
    In: Special publication
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    Pages: 144 S.
    Series Statement: Special publication / Kentucky Geological Survey ser. 9 no. 10
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    Call number: SR 90.1028(8)
    In: Smithsonian contributions to the earth sciences
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  • 192
    Call number: SR 90.1046(10,15)
    In: Report of investigations
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    Pages: 26 S. + 10 Kt.-Beil., 1 Beil.
    Series Statement: Report of investigations / Kentucky Geological Survey ser. 10, no. 15
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  • 193
    Call number: SR 90.1035(488)
    In: Circular
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    Series Statement: Report of investigations / Kentucky Geological Survey ser. 9, no. 11
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    Call number: SR 90.1035(458)
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    Call number: SR 90.1026(73)
    In: MPE-Report
    Type of Medium: Series available for loan
    Pages: 60 S.
    Series Statement: Max-Planck-Institut für Physik und Astrophysik 73
    Language: English
    Location: Magazine - must be ordered
    Branch Library: GFZ Library
    Location Call Number Expected Availability
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  • 197
    Monograph available for loan
    Monograph available for loan
    Reading, Mass. [u.a.] : Addison-Wesley
    Call number: M 00.0378
    Type of Medium: Monograph available for loan
    Pages: X, 274 S.
    Series Statement: Addison-Wesley series in metallurgy and materials
    Classification:
    C.5.2.
    Language: English
    Location: Upper compact magazine
    Branch Library: GFZ Library
    Location Call Number Expected Availability
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  • 198
    Journal available for loan
    Journal available for loan
    Associated volumes
    In: Earth and Planetary Science Letters
    Type of Medium: Journal available for loan
    Pages: 526 S.
    Language: English
    Location: Lower compact magazine
    Branch Library: GFZ Library
    Location Call Number Expected Availability
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  • 199
    Call number: SR 90.1046(9,10)
    In: Report of investigations
    Type of Medium: Series available for loan
    Pages: 45 S.
    Series Statement: Report of investigations / Kentucky Geological Survey ser. 9, no. 10
    Language: English
    Location: Lower compact magazine
    Branch Library: GFZ Library
    Location Call Number Expected Availability
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  • 200
    Call number: SR 90.1037(4)
    In: Division of Soils technical paper
    Type of Medium: Series available for loan
    Pages: 88 S. + 1 Kt.-Beil.
    Series Statement: Division of Soil mechanics technical paper / Commonwealth Scientific and Industrial Research Organization, Australia 4
    Language: English
    Location: Lower compact magazine
    Branch Library: GFZ Library
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