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  • 1
    Publication Date: 2020-02-12
    Language: English
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  • 2
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    Zentralinstitut für Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts für Physik der Erde
    Publication Date: 2020-03-13
    Description: The tables and graphs result from evaluation of Model 1 (see Veröffentlichungen des Zentralinstituts für Physik der Erde, Nr. 41, Potsdam 1976). They help to approximate values of the hydrostatic pressure P, the bulk modulus and its pressure derivative and the seismic parameter of a sample at any volume contraction x in the range between 0.5 and 1 if these quantities referred to the initial state (P = 0) are known. The considered functions are tabulated for a set of grid points of the rectangle 0.5 ≤ x ≤ 1, 2.1 ≤ ϰ_1 ≤ 10, where ϰ_1 is the initial value of the pressure derivative of the bulk modulus. The lattice pitchs are 0.01 in x and 0.1 in ϰ_1. The inverse problem can also be solved approximately with the aid of the tables and, above all, the plots presented here by using the "method of corresponding curves".
    Description: Summary 1. Preface 2. Theoretical excursus 3. Some remarks on Model 1 4. Instructions for using tables and plots 5. References 6. Tables and figures
    Language: English
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  • 3
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2021-01-26
    Language: English
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  • 4
    Publication Date: 2021-01-29
    Language: German , English
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  • 5
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2021-01-29
    Language: English
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  • 6
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2021-01-29
    Language: German , English
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  • 7
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2021-01-29
    Language: English
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  • 8
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2021-01-29
    Language: English
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  • 9
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    Federal Institut of Technology
    In:  ESC-Proceedings
    Publication Date: 2020-02-12
    Language: English
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  • 10
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    Deutsches GeoForschungsZentrum GFZ
    Publication Date: 2020-02-12
    Description: The Institute of Seismology, University of Helsinki (ISUH) was founded in 1961 as a response to the growing public concern for environmental hazards caused by nuclear weapon testing. Since then ISUH has been responsible for seismic monitoring in Finland. The current mandate covers government regulator duties in seismic hazard mitigation and nuclear test ban treaty verification, observatory activities and operation of the Finnish National Seismic Network (FNSN) as well as research and teaching of seismology at the University of Helsinki. The first seismograph station of Finland was installed at the premises of the Department of Physics, University of Helsinki in 1924. However, the mechanical Mainka seismographs had low magnification and thus the recordings were of little practical value for the study of local seismicity. The first short-period seismographs were set up between 1956 and 1963. The next significant upgrade of FNSN occurred during the late 1970’s when digital tripartite arrays in southern and central Finland became fully operational, allowing for systematic use of instrumental detection, location and magnitude determination methods. By the end of the 1990’s, the entire network was operating using digital telemetric or dial-up methods. The FNSN has expanded significantly during the 21st Century. It comprises now 36 permanent stations. Most of the stations have Streckeisen STS-2, Nanometrics Trillium (Compact/P/PA/QA) or Guralp CMG-3T broad band sensors. Some Teledyne-Geotech S13/GS13 short period sensors are also in use. Data acquisition systems are a combination of Earth Data PS6-24 digitizers and PC with Seiscomp/Seedlink software or Nanometrics Centaurs. The stations are connected to the ISUH with Seedlink via Internet and provide continuous waveform data at 40 Hz (array) or 100-250 Hz sampling frequency. Further information about instrumentation can be found at the Institute’s web site (www.seismo.helsinki.fi). Waveform data is available from the GEOFON data centre.
    Language: English
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  • 11
    Publication Date: 2020-02-12
    Language: English
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  • 12
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    Polish Academy of Sciences
    In:  Publications of the Institute of Geophysics | ESC-Proceedings
    Publication Date: 2020-02-12
    Language: English
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  • 13
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    Zentralinstitut für Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts für Physik der Erde
    Publication Date: 2020-02-12
    Description: Evaluation of numerous data from different methods of measurement and theories applied in high-pressure physics shows that the strain energy of a monophase system, which represents the low- or a high-pressure phase of a hydrostatically compressed substance mostly relevant to planetary physics, approximates to a term proportional to the square of an auxiliary function of the volumetric contraction, the bulk modulus and its successive partial derivatives with respect to pressure at the initial state of the thermodynamical system. From this it follows that new-defined polynomial equations in the initial values of the bulk modulus and its pressure derivatives must be satisfied, which is checked for many elements, halides, oxides, minerals, and rocks. Using a suitably chosen auxiliary function, the strain energy, pressure, bulk modulus and its first pressure derivative at any equilibrium state of the monophase system are represented by approximation functions of the volumetric contraction as well as the initial values of the bulk modulus and its derivatives. The information content of these functional relations called Model N if they include derivatives of the bulk modulus only up to the order N surpasses, already in the cases N = 1 end N = 2, that of other relations hitherto used for interpreting the compressional behaviour of different substances. Model 1 is discussed on the base of more than 70 substances with various compressional properties, among them stishovite and solid hydrogene, proved to be suitable, in particular, for the physics of the interiors of the Earth and of terrestrial planets. Considering the reliability of the data material available, Model 1 is pointed out to predict experimental values from the tested substances for volumetric contractions down to about 0.5 with a relative error between 1 % and 5 %. Model 2, extending the information volume of Model 1, turns out to be appropriate for volumetric contractions less than 0.5 as is the case in the interiors of the Jovian planets. For practical use of both models tables and graphs of sensitivities and errors of significant quantities are presented. In case data from shock-wave experiments on rocks and minerals are available, Model 1 is used for identification of crystal structures of high-pressure phases. As a result, for the majority of high-pressure phases the compressional behaviour differs from that of the corresponding oxide mixtures. For some substances new conclusions on their crystal structures can be drawn.
    Description: 1. Introduction 2. Basic relations 3. Approximations for the equation of state 4. The conditions of the auxiliary variable 5. Development of Model 1 and Model 2 6. Practical analysis of the models 6. 1. Preliminaries 6.2. The parameters "0 and "1 6.3. Intercomparison of different forms of the equation of state 6.4. The parameter n2 6.5. Problems of accuracy 6.6. Discussion of [x,P]-data of elements 6.7. Discussion of [x,P]-data of halides 6.8. Discussion of [x,P]-data of oxides, minerals, and rocks 6.9. On the "interpolating equations of state" 7. Conclusion 8. Tables and Figures References
    Language: English
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  • 14
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    Polish Academy of Sciences
    In:  Publications of the Institute of Geophysics | ESC-Proceedings
    Publication Date: 2020-02-12
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  • 15
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts für Physik der Erde
    Publication Date: 2023-01-04
    Language: English
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  • 16
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    In:  Protokoll über das 09. Kolloquium Elektromagnetische Tiefenforschung: Neustadt/Weinstraße, 22.03. - 26.03.1982
    Publication Date: 2022-12-15
    Language: English
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  • 17
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    In:  Protokoll über das 09. Kolloquium Elektromagnetische Tiefenforschung: Neustadt/Weinstraße, 22.03. - 26.03.1982
    Publication Date: 2022-12-15
    Language: English
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  • 18
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    Zentralinstitut für Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts für Physik der Erde
    Publication Date: 2023-01-11
    Description: This 3rd International Symposium "Geodesy and Physics of the Earth" was according to its tenor the continuation of the Symposia of 1970 and 1973 dealing with the same basic topic. It was especially devoted to the possibilities of Satellite Geodesy to study geodynamic processes. By this also those problems of the use of observations of artificial satellites for geodetic and geophysical purposes were dealt with that had regularly been treated in the preceding years and will be treated further by A. Massevitsch in the symposia presided by her. Several papers were devoted especially to the problems of the Special Study Group 5.49 of the International Association of Geodesy "Use of Geodetic Data for Studies of Earth-Moon-System" (President E. Tengström). Part 2 : Global and Planetary Dynamics of the Earth
    Language: English
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  • 19
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    In:  Protokoll über das 10. Kolloquium Elektromagnetische Tiefenforschung: Grafrath/Oberbayern, 19.03. - 23.03.1984
    Publication Date: 2022-11-15
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  • 20
    Publication Date: 2022-11-15
    Language: German , English
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  • 21
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    In:  Protokoll über das 08. Kolloquium Elektromagnetische Tiefenforschung: Berlin-Lichtenrade, 01.04. - 03.04.1980
    Publication Date: 2023-01-26
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  • 22
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    In:  Protokoll über das 08. Kolloquium Elektromagnetische Tiefenforschung: Berlin-Lichtenrade, 01.04. - 03.04.1980
    Publication Date: 2023-01-27
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  • 23
    Publication Date: 2023-01-27
    Language: German , English
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  • 24
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    Polish Academy of Sciences
    In:  Publications of the Institute of Geophysics | ESC-Proceedings
    Publication Date: 2020-02-12
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  • 25
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    Akadémiai Kiadó
    In:  ESC-Proceedings
    Publication Date: 2020-02-12
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  • 26
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    Polish Academy of Sciences
    In:  Publications of the Institute of Geophysics | ESC-Proceedings
    Publication Date: 2020-02-12
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  • 27
    Publication Date: 2020-02-12
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  • 28
    Publication Date: 2020-02-12
    Language: English
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  • 29
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    Zentralinstitut für Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts für Physik der Erde
    Publication Date: 2020-03-13
    Description: The permanent rotation of the N.E.Pacific Rift is divided into three first-order rotations covering the whole rift between 20° and 60° N. during the last 80 mio years. The general movement of a clockwise rotation (35-40° altogether) was interrupted during the time between 40 and 20 m.y.b.p. by a weak counterclockwise one (8° altogether). These superordinate rotations can be subdivided in smaller ones with an average duration of 10 m.y. only. It is to suppose that all these rotations are a readjustment of the rift to a changed position of the spreading pole. Compared to it, short-time, oscillatory rotations represent compensating movements of the rift and stabilizing efforts of the plate. For the S.E.Pacific Rift it is supposed that the. Counterclockwise rotation taking place there for the last 7 m.y. is continuing, as may be concluded from the distribution of earthquake epicentres. Furthermore, the problems of pendulum movements and hinge zones at the S.E. and N.E.Pacific Rifts are discussed, which represent the magmatic activity of the rift. Hinge zones are lines of weakness of rifts, which can become fault zones. Up to now they were not mentioned in literature. The internal deformations of the Pacific Plate and Juan de Fuca Plate off California indicated by kinks of the rift, fault-folding and strike slip faults became intense about 1-2 m.y.b.p.
    Description: 1. Introduction 2. Superordinate rotations of the East Pacific Rift between 20° and 60° N. 2.1. The clockwise rotation of the N.E. Pacific Rift 80 m.y.b.p. (1st period) 2.2. The counterclockwise rotation of the N.E. Pacific Rift :from 71 to 63 m.y.b.p. (2nd period) 2.3. Rotations of the rift during a transitional stage about 65 to 60 m.y.b.p. (3rd period) 2.4. The great clockwise rotation of the N.E. Pacific Rift 63 to 50 m.y.b.p. (4th period) 2.5. Rotations with a stabilizing function in a transitional stage from 50 to 40 m.y.b.p. (5th period) 2.6. The great counterclockwise rotation of the N.E. Pacific Rift 43 to 20 m.y.b.p. (6th period) 3. Total rotation of the East Pacific Rift between Clarion and Aja Fracture Zones 3.1. Sum of rotations of the rift 3.2. Special position of the plate section between 33° and 37° N. 3.3. The significance of the Mendocino-Pioneer double structure 4. Rotations of the Pacific-Antarctic Rift between 30° and 65° s. 4.1. Complex movements of the rift 4.2. Recent tendencies 5. Magmatic activity of the rift 5.1. Characteristics of rift activity 5.2. Hinge zones of the rift rotations 6. Plate deformation 6.1. Rift rotation at a collision of plates 6.2. Rift shortening due to compression 7. Conclusions References
    Language: English
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  • 30
    Publication Date: 2020-03-09
    Description: Bosum, W.: Bericht über magnetische Messungen in der Bohrung KTB-VB Oberpfalz mit Hilfe eines 3-Komponenten-Bohrlochmagnetometers. Teufenbereich 490 m - 1.210m (Bohrlochmeßphase 3.000 m). p. 141-147. Zoth, G.: Beschreibung des Temperatur/Salinitäts-Kombinationsmeßgerätes. p. 151-152. Schmitz, D.: Zur Methodik der Kernorientierung. p. 153-155. Kessels, W.: Die orientierte Kernentnahme unter Verwendung eines Neigungs- und Richtungsrekorders am Innenkernrohr. p. 157-163. Bram, K.: Vertikales seismisches Profil - VSP. p. 165-177. Hänel, R., Draxler, J.: Borehole Geophysics of KTB. p. 179-218. Draxler, J., Hänel, R.: The Continental Deep Drilling Programme of the Federal Republic of Germany (KTB) - First Logging and Evaluation Results. p. 219-247.
    Language: German , English
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  • 31
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    In:  KTB Reports
    Publication Date: 2020-03-09
    Description: Borm, G.: Die Spannungsmeßprojekte im KTB-Programm. p. 1-8. Berckhemer, H.: Eigenspannungen an Tiefbohrkernen als Ausdruck des tektonischen Spannungsfeldes. p. 9-24. Baumann, H., Negendank, J. F. W.: Differenz-Deformations-Analyse an Bohrkernen aus großer Teufe. p. 25-33. Azzam, R.: Spannungsmeßprinzip für den Einsatz in tiefen Bohrlöchern auf der Basis des seitlichen Überbohrens von Dehnungsmeßsensoren an der Bohrlochwandung. p. 35-51. Rummel, F.: Hydraulic Fracturing Stress Measurements, Theory and Practice. p. 53-65. Clauß, B., Fuchs, K.: Borehole Breakout Method for Stress Determination - Theory and Practice. p. 67-83. Borm, G., Reik, G.: Gebirgsspannungs-Monitorstation für die KTB. p. 85-97. Borm, G.: Standfestigkeitsanalyse der Kontinentalen Tiefbohrung als geowissenschaftliche Gemeinschaftsaufgabe. p. 99-115. Lempp, Ch., Natau, O.: Untersuchungen zum festigkeitsmechanischen Verhalten kristalliner Gesteine bei Temperaturen bis 300 C. p. 117-142.
    Language: German , English
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  • 32
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    In:  KTB Reports
    Publication Date: 2020-03-10
    Description: Maronde, D.: Das zweite Jahr des Schwerpunktprogramms "Kontinentales Tiefbohrprogramm der Bundesrepublik Deutschland (KTB)". p. A1-A2. Emmermann, R.: Bericht über den Stand des Projektes. p. A3-A9. Stettner, G.: Geologische Kartierungen im engeren und weiteren Umfeld der Tiefbohrung, Beispiele von deren Auswertung in Beziehung zum Profil der Vorbohrung und das Vorhaben einer geologischen KTB-Umfeldkarte 1:10000. p. A10-A23. Reinhardt, J., Kleemann, U., Blümel, p., Schreyer, W.: Geothermobarometry of metapelites as a key to the pressure and temperature history of the ZEV (Zone von Erbendorf-Vohenstrauss), NE Bavaria. p. A24-A32. Faber, E., Whiticar, M. J.: C- und H-Isotope in leichtflüchtigen Kohlenwasserstoffen der KTB-Vorbohrung. p. A33-A41. Erzinger, J., Heinschild, H. J., Figgemeier,C., Samel, M: Ergebnisse der Gasanalytik in der KTB-Vorbohrung. p. A42-A45. Ziegenbein, D., Skrotzki, R., Hoefs, J., Müller, H., Reutel, Chr., Emmermann, R.: Fluidtransport und Graphitbildung auf Störungszonen. p. A46-A53. Haak, V., Stoll, J., Winter, H.: Why is the electrical resistivity around the KTB-hole so low? p. A54-A60. Müller, H., Tapfer, M., Emmermann, R., Wimmenauer, W.: Die Paragneise im Profil der KTB-Vorbohrung. p. A61-A66. Patzak, M., Okrusch, M., Röhr, C.: Metabasite der KTB-Vorbohrung, Vorläufige Ergebnisse bis 1610 m. p. A67-A80. Hoernes, S., Grimmeisen, W., Hoefs, J., Simon, K.: Größenordnung der Fluid-Gesteins-Wechselwirkung abgeleitet aus Sauerstoff- und Wasserstoff-Isotopendaten der Gesteine und Minerale der KTB-Vorbohrung. p. A81-A82. Walther, J., Reutel, Ch., Althaus, E., Behr, H. J., Homann, D., Horn, E.: Paläofluide in Gesteinen der KTB-Vorbohrung. p. A83-A96. Althaus, E., Walther, J.: Laser-aktivierte Massenspektrometrie (LAMMA) an Fluideinschlüssen. p. A97-99. Schmitz, D., Hirschmann, G., Kohl, J., Röhr, C., Dietrich, H.-G.: Die Orientierung der Bohrkerne in der KTB Vorbohrung. p. A100-A110. Vollbrecht, A., Rust, S., Weber, K.: Mikrorißgenerationen in der KTB-Vorbohrung und im Umfeld. p. A111-A119. Lippmann, E., Bücker, Ch., Huenges, E., Rauen, A., Wienand, J., Wolter, K.: Gesteinsphysik im KTB-Feldlabor: Messungen und Ergebnisse. p. A120-A129. Nover, G., Buntebarth, G., Kern, H., Pohl, J., Pusch, G., Schopper, J. R., Schult, A., Will, G.: Ergebnisse gesteinsphysikalischer Untersuchungen an Bohrkernen und ihre Bedeutung für das KTB. p. A130-A140. Haverkamp, S., Wohlenberg, J., Walter, R.: FACIOLOG-Korrelation von bohrlochgeophysikalischen Messungen mit kristallinem Gestein. p. A141-A151. Emmermann, R., Lauterjung, J., Stroh, A.: Das lithostratigraphische Profil der KTB-Vorbohrung bestimmt durch röntgenographische Phasenanalyse von Bohrmehl. p. A152-A164. Draxler, J., Bücker, Ch., Tapfer, M.: Element und Mineralbestimmung mit dem Geochemical Logging Tool. p. A165-A189. Burkhardt, H., Erbas, K., Honarmand, H.: Entwicklung einer Bohrlochsonde zur in-situ-Messung der Wärmeleitfähigkeit. p. A190-A195. Haack, U., Gohn, E., Bücker, Ch., Zoth, G.: Vergleich der Wärmeproduktionsdaten aus Labor- und Bohrlochmessungen. p. A196-A206. Wagner, G. A., van den Haute, p., Hejl, E.: Apatit-Spaltspuruntersuchungen an Gesteinen der KTB-Vorbohrung: Ein Beitrag zur spätkretazischen und tertiären Hebungsgeschichte. p. A207-A215. Burkhardt, H., Erbas, K., Giese, p., Haak, U., Honarmand, H., Huenges, G., Stiefel, A., Wilhelm, H., Zoth, G., Buntebarth, G., Schulz, R.: Das vorhergesagte und das gemessene Temperaturprofil. p. A216-A242. Heinemann, B., Mastin, L.: First Evaluation of Four-Arm-Caliper and Borehole Televiewer Measurements in the KTB pilot hole below 500 m depth. p. A243-A244. Wolter, K. E., Berckhemer, H.: Retardierte Entspannungsdeformation an KTB-Bohrkernen. p. A245-A257. Zang, A., Lienert, M., Aulbach, E., Berckhemer, H.: Elastische- und Festigkeitsanisotropien von KTB-Kernen. p. A250-A273. Kessels, W.: Beobachtungen und Interpretationen zum zeitabhängigen Verhalten der Bohrlochstabilität in der KTB-Vorbohrung. p. A274-A302. Borm, G., Bühler, M., Lempp, Ch., Natau, O., Pimentel, E., Röckel, Th.: Bohrloch- und Bohrkern-Instabilitäten an Beispielen der KTB-Vorbohrung. p. A303-A322. Zoback, M., Fuchs, K.: Probing the deep Crustal Stress Field and Brittle-Ductile Transition. p. A323-A324. Engeser, B., Tran Viet, T., Herold, K., Ujma, K. H.: Die Bohrspülung und das Mud Logging Konzept der Vorbohrung, Umsetzung der dabei gewonnenen Erfahrungen bei der Vorbereitung und Durchführung der Hauptbohrung. p. A325-A332. Krüger, V., Oppelt, J.: Voreilende Pilot-Motorkernbohrsysteme; Kernbohrsysteme für wissenschaftliche Bohrprojekte. p. B333. Jürgens, R., Lohmann, M., Mertens, V.: Steuerstabilisator zum Vertikalbohren. p. B334. Mertens, V., Lohmann, M., Jürgens, R.: Zielbohrstange ZBE zum Vertikalbohren. p. B335. Ujma, K. H.: Datenerfassung und Auswertung beim Mud-Logging. p. B337. Quadflieg,E. ,et al.: Werkstoffauswahl für das Bohrgestänge. p. B340. DST: Kombinierte Rotary-Seilkerntechnik. p. B341. Marx, C., Stoffels, p., Schamp, J.: Untersuchungen zur Belastbarkeit von Bohrsträngen für ultratiefe Bohrungen. p. B342. Marx, C., Faraz, M. A.: Feststoffkontrolle und Entsorgung hochtemperaturbelasteter Bohrspülungen. p. B343. Marx, C., Deutsch, U., Luy, R.: Untersuchung der Mechanismen bei Bohren in Hartgesteinen zur Optimierung des Bohrprozesses. p. B344. Herold, C.-p., Müller, H.: KTB-Spülungsdaten 0 - 3888,5 m. p. B345. Höll, R., Rohrmüller, J., Günzel, F., Stettner, G.: Geologische Kartierung im Umfeld der KTB-Bohrung. p. B346. Kleemann, U.: Petrologie ZEV-Südrand. p. B348. Kleemann, U., Stein, E., Blümel, p.: Mylonite im Grenzbereich zwischen ZEV und Moldanubikum. p. B349. Doerr, M., Pekdeger, A., Rasper, M., Lodemann, M., Weise, S., Fritz, p., Forster, M., Rauert, W., Stichler, W.: Hydrogeochemische Untersuchungen im Umfeld der Kontinentalen Tiefbohrung. p. B350. Dürr, W., Franke, W., Kramm, U.: U/Pb-Daten von Zirkonen klastischer Sedimente - Beiträge zur Entwicklung der Böhmischen Masse. p. B351. Bardua, J., Nollau, G.: KTB-Umfeld - Geologische Kartierung und Entwurf der geologischen Karte 1:10000. p. B352. Stöckhert, B.: Zur Konstruktion geotektonischer Modelle um die Bohrlokation Oberpfalz. p. B353. Hirschmann, G.: Die Bedeutung des Bohemikums für die KTB-Lokation. p. B354. Ahrent, H., Behr, H. J., Vollbrecht, A., Weber, K., Welzel, B.: Verlängerung der Bohrung nach oben -Analyse der Abtragungsprodukte. p. B355. Behr ,H. J., Große, S., Heinrichs, T.: Das Schwerebild und der variskische Plutonismus im Umfeld der KTB-Lokation. p. B356. Behr, H. J., Helmcke, D., Hirschmann, G., Kuhlmann, S.: Methoden des Störungsnachweises im kristallinen Grundgebirge des KTB-Umfeldes. p. B357. Moehrmann, H., Behrmann, J., Franke, W.: Tektonische Transportrichtungen im Münchberger Kristallin - erste Ergebnisse. p. B358. Schmidt, T., Gebrande, H., Bopp, M, Neurieder, p.: Krustenstruktur im KTB-Umfeld, seismisch abgebildet durch Weitwinkel-Migration. p. B359. Meichelböck, M., Gebrande, H.: Tau-P-Geschwindigkeitsanalysen im KTB-Umfeld. p. B360. Kästner, U., Bram, K., Hubral, p., Macdonald, C., Rühl, Th., Sandmeier, K. J.: Seismic investigations at the KTB-drilling site, Upper Palatinate, West Germany. p. B361. Asch, G., Gebrande, H., Schmedes, E., Soffel, H.: Seismologisches Lokalarray KTB. p. B365. DEKORP: Integrierte Seismik Oberpfalz 1989. p. B366. Günzel, F., Soffel, H. C.: Feldmagnetik im Gebiet westlich der KTB-Kernfläche. p. B367. Arroyo, M., Haak, V.: Elektromagnetische Tiefenforschung im KTB-Umfeld: Ein Magnetotellurik-Profil östlich des Kernbereichs. p. B368. Gundelach, V., Steveling, E.: Elektromagnetische Tiefenforschung im KTB-Umfeld: MT mit Pulsationen und langperiodischen Variationen. p. B369. Stoll, J. et al.: Elektromagnetische Tiefenforschung im KTB-Umfeld: Die Eigenpotentialanomalie im Kernbereich. p. B370. Winter, H., Haak, V.: Elektromagnetische Tiefenforschung im KTB-Umfeld: Die Leitfähigkeitsanomalie im Kernbereich. p. B371. Klare, B., Schröder, B.: Rekonstruktion Jungmesozoisch/Känozoischen Unterbauabtrags. p. B372. Schetelig, K., Blümel, p., Gräfen, B.: Gesteinsbrüche und Anisotropie in der KTB-Vorbohrung. p. B373. Heitfeld, K.-H., Azzam, R., Jungrichter, J.: Gesteinsbrüche und Anisotropie in der KTB-Vorbohrung. Teil 2. p. B374. Azzam, R., Heitfeld, K.-H.: Spannungsmeßsonde. p. B375. Reik, G., Borm, G.: Gebirgsspannungs- und Hydraulik-Monitorstation. p. B376. Berckhemer, H., Zang, A., Lienert, M., Aulbach, E.: Elastische- und Festigkeitsanisotropie von KTB-Kernen. p. B377. Wolter, K., Aulbach, E., Berckhemer, H.: Retardierte Entspannungsdeformation an KTB-Bohrkernen. p. B378. Baumann, et al.: DDA an KTB-Gesteinen. p. B379. Hinze, E., Reimers, W.: Röntgenographische Ermittlung von Last- und Eigenspannungen in Gesteinen. p. B380. Natau, O., Lempp, Ch., Balthasar: Felsmechanische Prüfmaschinen zur Bestimmung KTB-relevanter Materialparameter. p. B381. Natau, O., Lempp, Ch.: Wechsellastversuche zur Entfestigung von Granit bei 250 C. p. B382. Natau, O., Röckel, Th.: Festigkeitsmechanische Index-Untersuchungen im KTB-Feldlabor. p. B383. Natau, O., Borm, G., Lempp, Ch., Bühler, M.: Dreidimensionale FE-Modellrechnungen zum Einfluß der Foliation von Paragneis auf die Bohrlochstabilität. p. B384. Fuchs, K., Blümling, p., Mastin, L., Heinemann, B.: Evaluation to Four-Arm-Caliper and Televiewer measurements in the KTB-well. p. B385. Bremer, M., Jakob, K. H., Jonas, M., Ramirez, J. J., Schopper ,J. R.: Entwicklung und Erprobung von Auswerteverfahren im Kristallin. p. B386. Debschütz, W., Schopper, J. R.: Untersuchung der Porenraumstruktur kristalliner Gesteine durch stationäre Permeabilitätsmessungen. p. B387. Siebert, J., Pusch, G.: Untersuchungen zur Porenraumstruktur kristalliner Gesteine durch stationäre und instationäre Durchströmungsmessungen unter variablen Druck- und Temperaturbedingungen. p. B388. Zimmermann, G., Burkhardt, H.: Bestimmung der Porosität und Permeabilität aus Bohrlochlogs im Kristallin und statistische Verfahren. p. B389. Büttgenbach, T., Neubauer, F. M., Strack, K.-M.: DABACOS - a reference database for physical properties of rocks and correlation studies. p. B390. Richter, J., Neubauer, F. M., Strack, K.-M.: Interactive borehole and surface gravity interpretation. p. B391. Kuth, Ch., Neubauer, F. M., Strack, K.-M.: Induction-log simulations for 3-d conductivity structures. p. B392. Pohl, J., Soffel, H.: Gesteinsmagnetische und Paläomagnetische Messungen an Bohrkernen der KTB-Vorbohrung. p. B393. Krammer, K., Pohl, J.: Das Suszeptibilitäts-Log der KTB-Vorbohrung bis 2772 m. p. B394. Bosum, W., Geipel, H., Rolf, C.: Magnetische Diskontinuitäten. p. B395. Vogelsang, D., Pape, H., Grinat, M.: Ip logging related to properties of crystalline rocks. p. B396. Leven, M., Spitzer, K., Steveling, E.: Ein Bohrlochmagnetometer für eine vertikale Gradientensondierung. p. B397. Nover, G. et al.: Dispersion der elektrischen Leitfähigkeit. p. B398. Burkhardt, H., Erbas, K., Huenges, E., Hornamand, H.: Modelling of the temperature field in the surrounding of the KTB. p. B399. Büttgenbach, T., Neubauer, F. M., Strack, K.-M.: Modelling of the temperature field in the surroundings of the KTB-VB (Part B). p. B401. Huenges, E., Buntebarth, G., Zoth, G.: Die Wärmestromdichte in der KTB-Oberpfalz VB. p. B404. Schult, A.: Thermische Leitfähigkeit von Bohrkernproben unter in situ Bedingungen. p. B405. Kern, H., Siegesmund, S.: Elastic wave velocities, anisotropy and density of KTB core samples at PT conditions. p. B406. Kümpel, H.-J.: Poroelastische und thermoelastische Verformungen durch die Hauptbohrung am unteren Ende der Vorbohrung. p. B407. Brokmeier, H. G., Heinicke, F., Bunge, H. J., Ritter, C.: Quantitative texture analyses of quartz using neutron diffraction. p. B408. Merz, p., Will, G., Schäfer, W.: Texture investigations of rocks and ores with neutron diffraction using a position-sensitive detector. p. B409. Burkhardt, H., Erbas, K., Honarmand, H.: Quantifizierung von Korngrößen, Kornformen und Phasenverteilung in Kernen der Vorbohrung (0-1000m). p. B411. Pieper, U., Stöckhert, B.: Reaktionsgefüge in Kernen der Vorbohrung (0-1000m). p. B412. Krohe, A., Stöckhert, B.: Mikroskopische Gefüge in Kernen der Vorbohrung (0-1000m). p. B413. Wall, H. de, Zarske, G., Weber, K.: Textur- und Formanalyse an Gesteinen der KTB-Vorbohrung: I. Texturen und Mikrogefüge. p. B414. Duyster, J., Wall, H. de, Weber, K.: Textur- und Formanalyse an Gesteinen der KTB-Vorbohrung: II. Formanalyse. p. B415. Juckenack, C., Wall, H. de, Weber, K.: Textur- und Formanalyse an Gesteine der Vorbohrung: III. Anisotropie der magnetischen Suszeptibilität. p. B416. Zulauf, G., Kleinschmidt, G., Oncken, O.: Faults and cataclasis in the close neighborhood of the KTB drillhole. p. B417. Behrmann, J. H., Heinisch, H., Lich, S., Volp, A., Zadow, A.: Scherkriterien im KTB: kontinuierliche Kernaufnahme duktiler Verformung von 480m bis 2004m Teufe. p. B418. Weber, K., Behr, H.-J., Behrmann, J., Hacker, W., Heinisch, H., Kohl, J., Vollbrecht, A., Wall, H. de, Zadow, A., Zulauf, G.: Beobachtungen zum Deformationspfad der Gesteine aus der KTB-Vorbohrung. p. B419. Strotzki, W.: TEM study of the microstructure in amphibolites. p. B420. Drechsel, U., Weber, K.: Experimentelle hydrolytische Entfestigung von Gesteinen. p. B421. Rust, S., Vollbrecht, A., Weber, K.: Mikrorißanalysen im KTB - Charakterisierung häufiger Rißtypen. p. B422. Heidelbach, F., Junckenack, C., Kern, H., Siegesmund, S., Vollbrecht, A., Weber, K.: Texture- and microcrack-related velocity anisotropy in Püllersreuthmylonite. p. B423. Zadow, A., Heinisch, H., Gebrande, H.: Gefügeregelung und Ultraschall-Anisotropie von Gneisproben aus der KTB-Vorbohrung. p. B424. von Drach, V. et al.: Sr-Isotopensystematik und Nd-Modellalter an Gesteinen der KTB-Vorbohrung. p. B425. Kreuzer, H., Okrusch, M., Raschka, H., Schüssler, U., Seidel, E., Vejnar, Z.: Ar/Ar-Datierungen am NW-Rand der Böhmischen Masse. p. B426. Gehlen, K. von, Matthes, S., Okrusch, M., Röhr, C.: Ultramafitite in der KTB-VB. p. B427. Röhr, C., Gehlen, K. v.: Geothermobarometrie eines Staurolith führenden Paragneises aus der ZEV. p. B428. Bambauer, H. U., Breit, U., Kroll, H.: Feldspäte in KTB Proben. p. B429. Simon, K. et al.: O,H,C-Isotopen der KTB-Vorbohrung. p. B431. Borchardt, R., Emmermann, R.: Petrologie und Geochemie von Alterationsprozessen in der Kontinentalen Kruste. p. B432. Petrov, I., Bershov, L. V., Agel, A., Hafner, S. S., Zimmerle, W.: Stable and metastable defects (Dependencies on temperature and radioactivity). p. B433. Moh, G., Hoecker, G., Amthauer, G.: Voruntersuchungen zur Beurteilung der intra- und interkristallinen Kationenverteilung an Gesteinen der KTB-Vorbohrung. p. B434. Müller, H., Romacker, M., Wimmenauer, W.: Geochemische Untersuchungen an den Paragneisen der KTB-Vorbohrung und von Püllersreuth. p. B435. Meier, H., Hecker, W.: Bestimmung radioaktiver Höfe in Gesteinen der KTB-Vorbohrung. p. B436. Schwarz, S., Stöckhert, B., Toetz, A.: Bestimmung der Konzentration von natürlichen Plutonium in Gesteinen der KTB. p. B437. Patzak, M., Okrusch, M.: Metabasites from the KTB pilote hole - the first 500 m. p. B438. Friedrich, G., Vogtmann-Becker, J., Kotnik, M., Redecke, p., Herzig, p., Kontny, A., van Delden, S., Keyssner, S.: Bildungsbedingungen von Chlorit in metamorphen Gesteinen der Oberpfalz. p. B439. Friedrich, G., Kotnik, M., Vogtmann-Becker, J., Herzig, p., Kontny, A., Keyssner, S.: Sulfidchemismus als Temperaturindikator in den Gesteinen der ZEV. p. B440. Puchelt, H., Blum, N.: Systematik der Schwefelisotopenverteilung in Lithologien der KTB-Bohrung. Beiträge zum 2. KTB Kolloquium, p. B441. Albat, F., Grauert, B., Hansen, B.: Sr-Isotopenverteilung in einem Kleinbereichsprofil durch Gneise der Bohrung Püllersreuth (ZEV). p. B442. Barth, H., Ganz, M., Brandt, R.: Metamorph-hydrothermale Anreicherung von Wolfram und Gold in Kalksilikaten und an Scherzonen. p. B443. Wagner, G. A. et al.: Spaltspur-Geothermochronologie am KTB-Bohrkern und an Umfeldgesteinen. p. B444. Reutel, Chr., Skrotzki, W., Vollbrecht, A.: TEM and RMP studies of graphites of the pilot borehole and the associated field. p. B445. Leveque et al.: Strontium- und Blei-Isoptope an Gesteinen und hydrothermalen Kluftfüllungen. p. B446. Wendt, I., Carl, C., Kreuzer, H., Müller, p., Stettner, G.: Rb-Sr-Datierung des Friedenfelser Granits und aplitischer Gänge. p. B447. Fritz, p., Lodemann, M., Rauert, W., Heinschild, H.-J., Homann, K. D., Miehe, R., Pusch, G., Dürr, M., Pekdeger, A., Rasper, M.: Zusammensetzung von Tiefenwässern in den offenen Klüften der KTB-Vorbohrung. p. B448. Lodemann, M., Weise, S., Forster, M., Fritz, p., Rauert, W., Stichler, W., Pekdeger, A.,Dürr, M., Rasper, M.: Isotopenhydrologische Untersuchungen im KTB-Umfeld. p. B449. Lodemann, M., Fritz, p., Rauert, W., Trimborn, p., Graf, W.: Isotopenhydrologische Untersuchungen an der Bohrspülung. p. B450. Faber et al.: C- und H-Isotope in leichtflüchtigen Kohlenwasserstoffen der KTB-Vorbohrung. p. B451. Behr, H. J., Neuser, R., Schmidt-Mumm, A., Schneider, N.: Untersuchungen zur Kathodolumineszenz, Infrarotspektroskopie und Dekrepitometrie am Bohrprofil der KTB-Vorbohrung. p. B452. Behr, H. J., Frentzel-Beyme, K.: Kataklase und Bohrlochrandausbrüche, Nachweise und Prognosemöglichkeiten. p. B453. Reutel, Chr., Horn, E. E., Topp, J.: Paläofluiduntersuchungen am Bohrprofil der KTB-Vorbohrung. p. B454. Heusser, E., Kirsten, T., Richter, H., Oehm, J.: Edelgasisotopensystematik im Bohrkernabschnitt 500m - 1500m. p. B455. Weise, S., Fritz, p.: Heliumisotopenmessungen an Gasen aus der Bohrspülung und aus Fluidprobennehmern. p. B456. Homann, K. D.: Geowissenschaften im KTB-Feldlabor - Geochemie - Flüssigkeitsuntersuchungen. p. B457. Eichinger, L., Buheitel, F., Lodemann, M., Pekdeger, A.: Erste Ergebnisse von Rn- und Ra-Isotopengehaltsbestimmungen an Grundwässern des KTB-Umfeldprogramms. p. B458. Figgemeier, C., Samel, M., Heinschild, H.-J., Erzinger, J.: Gasanalytik an Proben der KTB-Vorbohrung. p. B459. Althaus, E., Walther, J.: Laser-aktivierte Massenspektrometrie (LAMMA) an Fluideinschlüssen. p. B460. Walther, J., Althaus, E.: Paläofluide in Kernproben der KTB-Vorbohrung. p. B461. von Brunn, H., Zimmermann, B.: Druckentwicklung in einer Formation bei der Simulation hydraulischer Bohrlochtests. p. B462. Roth, F.: Deformationen im Untergrund eines geschichteten elastischen Halbraums aufgrund einer Dislokationsquelle. p. B463. Dietrich, H.-G., Heinisch, M., Wöhrl, Th.: Die geowissenschaftliche Bohrungsbearbeitung im KTB-Feldlabor. p. B464. Wöhrl, Th., Dietrich, H.-G., Heinisch, M.: Probenfliessplan im KTB-Feldlabor. p. B465. Müller, H., Keyssner, S., Röhr, C.: Geowissenschaften im KTB-Feldlabor - Geologie - Geologisches Profil (0 - 3900m) und Entwicklung der Gesteine. p. B466. Hacker, W., Kohl, J., Röhr, C., Sigmund, J.: Geowissenschaften im KTB-Feldlabor - Geologie - Geologische Strukturen in Gesteinen der KTB Vorbohrung. p. B467. Schmitz, D., Hirschmann, G., Kohl, J., Röhr, C., Wohlgemuth, L.: Die Orientierung von Bohrkernen in der KTB-Vorbohrung. p. B468. Hirschmann, G., Bram, K., Behr, H. J.: Entwurf eines Vorprofils der Hauptbohrung. p. B469. Stroh, A., Heinschild, H.-J., Homann, K. D., Tapfer, M., Zimmer, M.: Geowissenschaften im KTB-Feldlabor - Geochemie - A. Aufgaben und Untersuchungsmethoden. p. B470. Heinschild, H.-J., Homann, K. D., Stroh, A., Tapfer, M., Zimmer, M.: Geowissenschaften im KTB-Feldlabor - Geochemie - B. Ergebnisse. p. B471. Lauterjung, J., Stroh, A., Emmermann, R.: Röntgenbeugung und Phasenanalyse - eine alte Methode, ein neues Konzept. p. B472. Lippmann, E.: Geowissenschaften im KTB-Feldlabor - Geophysik - Dichte und Schallwellengeschwindigkeit. p. B473. Wienand, J., Bücker, Ch., Huenges, E., Lippmann, E., Rauen, A., Wolter, K. E.: Geowissenschaften im KTB-Feldlabor - Geophysik - Porosität und elektrische Eigenschaften. p. B474. Rauen, A., Bücker, Ch., Huenges, E., Lippmann, E., Wienand, J., Wolter, K. E.: Geowissenschaften im KTB-Feldlabor - Geophysik - Natürliche remanente Magnetisierung und Suszeptibilität. p. B475. Bücker, Ch., Huenges, E., Lippmann, E., Rauen, A., Wienand, J., Wolter K.E.: Geowissenschaften im KTB-Feldlabor - Geophysik - Gamma-Spektroskopie und Wärmeproduktionsrate. p. B476. Friese-Haug, M., Wächter, J.: Geowissenschaften im KTB-Feldlabor - Datenverarbeitung - KTBase (KTB-database): Kern eines wissenschaftlich/technischen Informationssystems: Hardware-Konzept und Struktur der Datenbank. p. B477.
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  • 43
    Publication Date: 2020-03-10
    Description: Röhr, C., Hacker, W., Keyssner, S., Kohl, J., Müller, H.: B. Geologie. Tiefbohrung KTB-Oberpfalz VB, Ergebnisse der geowissenschaftlichen Bohrungsbearbeitung. p. B1-B114. Stroh, A.,Heinschild, H. J., Homann, K. D, Tapfer, M., Zimmer, M.: C. Geochemie. KTB Oberpfalz VB - Röntgenanalytik, Spülungsanalytik, Gasanalytik. p. C1-C104. Huenges, E., Bücker, Ch., Wolter, K. E., Wienand, J., Rauen, A., Lippmann, E.: D. Geophysik. Deep Drilling KTB-Oberpfalz VB, Results of the Geoscientific Proceedings in the KTB-Laboratory, Depth Interval: 1709 - 2500 m. p. D1-D83. Zulauf, G., Kohl, J.: E. Ergänzende Untersuchungen. KTB Oberpfalz VB - Bruchtektonik im Teufenbereich von 1177 bis 1530 m. p. E1-E14. Homann, K. D., Müller, H.: F. Wechselwirkung zwischen Dehydril-HT-Bohrspülung und Gesteinsmehl. p. F1-F45. Homann, K. D.: G. Flüssigkeitseinschlußuntersuchungen im KTB-Feldlabor. p. G1-G30. Röckel, Th., Natau, O.: H. Tiefbohrung KTB Oberpfalz VB - Erste Ergebnisse felsmechanischer Index-Versuche bis 1998 m. p. H1-H22. Wächter, J., Friese-Haug, M.: I. KTB Oberpfalz VB - Datenverarbeitung. p. I1-I20. Wächter, J., Lauterjung, J., Giese, p.: I. KTB Oberpfalz VB - Datenverarbeitung. Zielsetzung und Organisationsstruktur der KTB-Datenverarbeitung. p. I2-I5. Wächter, J., Friese-Haug, M.: I. KTB Oberpfalz VB - Datenverarbeitung. KTBase (KTB database) - der Kern eines wissenschaftlich/technischen Informationssystems: Hardware-Konfiguration und Struktur der Datenbank. p. I6-I20.
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  • 44
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2021-01-26
    Language: English , German
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  • 45
    Publication Date: 2021-01-29
    Language: English
    Type: info:eu-repo/semantics/book
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  • 46
    Publication Date: 2023-06-19
    Language: German , English
    Type: info:eu-repo/semantics/conferenceObject
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  • 47
    Publication Date: 2023-02-10
    Language: German , English
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  • 48
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2023-02-17
    Language: English
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  • 49
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    Zentralinstitut Physik der Erde
    In:  Veröffentlichungen des Zentralinstituts Physik der Erde
    Publication Date: 2023-05-05
    Language: English
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  • 50
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    In:  Protokoll über das 08. Kolloquium Elektromagnetische Tiefenforschung: Berlin-Lichtenrade, 01.04. - 03.04.1980
    Publication Date: 2023-01-19
    Language: German , English
    Type: info:eu-repo/semantics/conferenceObject
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  • 51
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    In:  Protokoll über das 08. Kolloquium Elektromagnetische Tiefenforschung: Berlin-Lichtenrade, 01.04. - 03.04.1980
    Publication Date: 2023-01-19
    Language: English
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  • 52
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    In:  Protokoll über das 08. Kolloquium Elektromagnetische Tiefenforschung: Berlin-Lichtenrade, 01.04. - 03.04.1980
    Publication Date: 2023-01-19
    Language: German , English
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  • 53
    Publication Date: 2023-11-29
    Language: German , English
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  • 54
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    In:  KTB Report 87-2: Grundlagenforschung und Bohrlochgeophysik; Beiträge zur Tagung der Deutschen Geophysikalischen Gesellschaft in Clausthal-Zellerfeld (31.3. - 4.4.1987)
    Publication Date: 2024-01-18
    Language: English
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  • 55
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    In:  Protokoll über das 11. Kolloquium Elektromagnetische Tiefenforschung: Schloß Lerbach bei Köln, 11.03.- 13.03.1986
    Publication Date: 2023-11-23
    Language: English , French
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  • 56
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    In:  Protokoll über das 10. Kolloquium Elektromagnetische Tiefenforschung: Grafrath/Oberbayern, 19.03. - 23.03.1984
    Publication Date: 2023-11-23
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  • 57
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    In:  Protokoll über das 09. Kolloquium Elektromagnetische Tiefenforschung: Neustadt/Weinstraße, 22.03. - 26.03.1982
    Publication Date: 2023-11-23
    Language: English
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  • 58
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    In:  KTB Report 88-8: Arbeitsgruppe 3 ; Spannungsmessungen und Bohrlochstabilität
    Publication Date: 2024-06-07
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  • 59
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    In:  KTB Report 88-8: Arbeitsgruppe 3 ; Spannungsmessungen und Bohrlochstabilität
    Publication Date: 2024-06-07
    Language: English
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  • 60
    Call number: SR 90.0008(85-26)
    In: Paper
    Type of Medium: Map available for loan
    Pages: 1 Kt.
    ISBN: 0660121565
    Series Statement: Paper / Geological Survey of Canada 85-26
    Language: English
    Location: Lower compact magazine
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  • 61
    Call number: SR 90.0008(87-14)
    In: Paper
    Type of Medium: Map available for loan
    Pages: 4 Kt. auf 1 Bl. : mehrfarb. ; Blattgr.100 x 100 cm, gefaltet 18 x 20 cm
    ISBN: 0660125412
    Series Statement: Paper / Geological Survey of Canada 87-14
    Language: English
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  • 62
    Call number: SR 90.0008(84-14)
    In: Paper
    Type of Medium: Map available for loan
    Pages: 1 Faltkt.: mehrfarbig ; 142 x 101 cm, gefaltet
    Series Statement: Paper / Geological Survey of Canada 84-14
    Language: English
    Location: Lower compact magazine
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  • 63
    Call number: K 96.0194 / Fach 44
    In: Berggrunnskart
    Type of Medium: Map available for loan
    Pages: 1 Kt., gefaltet
    Language: Norwegian
    Location: Upper compact magazine
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  • 64
    Call number: K 02.0260/1-7 / Fach 15
    Type of Medium: Map available for loan
    Pages: 1 Kt. auf 7 Bl.
    Language: Russian
    Location: Upper compact magazine
    Branch Library: GFZ Library
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  • 65
    Map available for loan
    Map available for loan
    Uppsala : Sveriges Geologiska Undersökning
    Associated volumes
    Call number: K 1987.11977 / Kt.-Regal rechts
    In: Sveriges Geologiska Undersökning
    Type of Medium: Map available for loan
    Pages: 91 S. + 1 Kt. : mehrfarb. ; 75 x 50 cm, gefaltet
    ISBN: 9171584323
    Series Statement: Sveriges Geologiska Undersökning : Serie Ae, Jordartsgeologiska kartblad 63 = 7A,NO/7B,NV
    Language: Swedish
    Location: Upper compact magazine
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  • 66
    Map available for loan
    Map available for loan
    Roma : Consiglio Nazionale delle Ricerche Progetto Finalizzato Geodinamic
    Call number: K 95.0026 / Fach 48
    Type of Medium: Map available for loan
    Language: English
    Location: Upper compact magazine
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  • 67
    Call number: MR 24.95669
    In: Vol. K-1, Plates
    Type of Medium: Map available for loan
    Pages: 5 Karten
    ISBN: 0660131145
    Series Statement: Geology of Canada ...
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  • 68
    Call number: MR 24.95657
    In: Vol. N, Plates
    Type of Medium: Map available for loan
    Pages: 12 Karten
    ISBN: 0813752086
    Series Statement: Geology of Canada ...
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  • 69
    Map available for loan
    Map available for loan
    Boulder, Colo. : The Geological Society of America
    Associated volumes
    Call number: AD MR 22.94999 ; MR 24.95683
    In: Vol. A , Plates
    Type of Medium: Map available for loan
    Pages: 12 Karten
    ISBN: 0813752078
    Series Statement: Geology of Canada ...
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  • 70
    Call number: K-00-0142
    Type of Medium: Map available for loan
    Pages: 1 Kt. in 2 Bl. : mehrfarb.
    Language: Russian
    Note: In kyrill. Schr.
    Location: AWI Reading room
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  • 71
    Call number: AWI K-05-0087
    Type of Medium: Map available for loan
    Pages: 1 Blatt
    Language: English
    Branch Library: AWI Library
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  • 72
    Call number: K 1989.12859 / Fach 57
    Type of Medium: Map available for loan
    Pages: 1 Kt. auf 2 Bl.
    Language: English
    Location: Upper compact magazine
    Branch Library: GFZ Library
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