| Ref | Author | I? | Title | SPSS | GAP1 | GAP2 | GAP3 |
|---|---|---|---|---|---|---|---|
| 33 | M A Lanphere | New Evidence on the Magnetic Reversal Time Scale From Volcanic Rocks in the Cascade Range, Washington, Oregon, and California | 1513 | 1535 | |||
| 101 | A C Lavoie | Geophysical Modeling and Interpretation of Gravimetric and Magnetic Data, Gaspe, Canada | |||||
| 103 | C Jalbert | Depth to Bedrock Determination in a Typical Sub-Arctic Watershed, Yukon Territory, Canada | |||||
| 428 | E Herrero-Bervera | Records of the Lower Mammoth From the Wai'anae Volcano, O'ahu, Hawaii, USA: Identical Records | 1513 | 1535 | |||
| 609 | W Xu | Titanomaghemite With Sphene Inclusions in Ocean-Floor Basalt: An Indication of Hydrothermal Alteration and Its Magnetic Effect | 1540 | 1550 | |||
| 774 | H Akram | Origin of Magnetic Suscepitibility Variations of Loess-Paleosol in Pakistan: Pedogenesis or Local Influx? | |||||
| 775 | M Fuller | On Magnetic Contamination Acquired During APC Coring | 1533 | 1594 | |||
| 776 | S Ji-Cheng | On the Spherical Harmonic Inversion of Paleomagnetic Data | 1522 | 1535 | |||
| 3012 | G Kletetschka | The Impact of the Solar Wind on the Geomagnetic Field | 2784 | 1510 | |||
| 3018 | D J Dunlop | Determining Paleotemperatures and Burial History Using Thermoviscous Remagnetization of Pyrrhotite and Magnetite | 1533 | 1525 | |||
| 3023 | O Ozdemir | Origin of Coercivity in Multi-domain Magnetite | 1540 | ||||
| 3139 | A J Newell | Analytical Expressions for SD-PSD Critical Sizes | 1540 | 1500 | |||
| 3153 | D Labendz | Percolation Theory With Embedded Networks: A Possibility to Describe Conduction Mechanisms? | 0644 | 1020 | |||
| 3261 | W D Stanley | Magnetotelluric Profile in the Big Bend Segment of the San Andreas Fault | 1515 | 0925 | |||
| 3306 | O L Anderson | The Heat of Crystallization of Iron in the Core and Gamma | 3924 | 3939 | |||
| 3319 | P A Vlag | Relationship Between Sediments and Source Material: A Rock Magnetic and Geochemical Study of Lac St. Front (France) | 1512 | 1540 | |||
| 3370 | R J O'Connell | I | True Polar Wander and Hot-Spot Motion From Mantle Flow Models | ||||
| 3402 | S J Doh | Paleomagnetic Study and SEM Observations of the Remagnetized (Late Carboniferous-Permian) Pyeongan Supergroup in the Yeongwol Area, Korea | 1500 | 1533 | |||
| 3454 | G D Acton | High-Resolution Geomagnetic and Rock Magnetic Records From Pleistocene Sediment Drifts in the NW Atlantic, ODP Leg 172 | 1522 | 1521 | |||
| 3459 | S I Braginsky | On the Stratified Ocean at the Top of the Core | 1507 | 1555 | |||
| 3509 | R Zhu | The Cobb Mountain Geomagnetic Event Recorded in a Loess Section at Weinan, North-Central China | 1513 | 1507 | |||
| 3510 | C Laj | Geomagnetic Field Intensity at Hawaii for the Last 400 Ka: New Results From Core HSDP (Big Island, Hawaii) | 1521 | 1522 | |||
| 3539 | M A Smethurst | The Global Palaeomagnetic Database on the Internet at http://dragon.no | 1500 | 1599 | |||
| 3718 | A Jackson | Frozen Flux and the Historical Core Magnetic Field | 1545 | 8115 | |||
| 3788 | B Guo | Phase Lag Between Ocean and Continent Climate Changes: Constrained by Matuyama/Brunhes Polarity Boundary | |||||
| 3898 | N Grammatika | Data Processing as the Major Cause of Anisotropy of the Satellite Magnetic Anomalies | 1517 | 1545 | |||
| 3935 | P Patriat | Deep-Tow Magnetic Profiling Across Anomalies 12-13 and 5D-6 in the Southern Indian Ocean: The Magofond Experiment | 1535 | 1521 | |||
| 3982 | E Platzman | Relationship Between Rock Magnetic Properties and Paleomagnetic Observations in Greenschist Grade Dyke Rocks From Southern Spain | 1540 | 1525 | |||
| 4057 | A D Walker | Statistical Models of the Earth's Magnetic Field | |||||
| 4155 | O Portniaguine | Focusing of Inversion Images for Magnetotelluric Data | |||||
| 4202 | N Golubev | EM Study of the Lateral Conductivity Variations Using Finite Functions Method | 1515 | ||||
| 4272 | M Urbat | Diagenetic Alteration of the NRM in Peru Basin Sediments: Multi-parameter Analysis of the Magnetic Signal | 1500 | ||||
| 4290 | U Barckhausen | Geomagnetic Borehole Measurements Through Steel Casing | 0634 | 0915 | |||
| 4306 | D E Loper | Modeling Small-Scale Flow in the Core | 1507 | 3210 | |||
| 4519 | O Ritter | New Processing for Magnetotelluric Remote Reference Observations | 0600 | 0644 | |||
| 4734 | M T Juarez | Late Eocene Through Late Miocene Paleointensity Data From Submarine Basaltic Glasses: Evidence of a Cenozoic Dipole Low | 1521 | 1560 | |||
| 4817 | G N NGobi | Environmental History of Lake Victoria and Its Drainage Basin Since the Last Glacial Maximum: Evidence From Sediment Magnetism | |||||
| 4883 | M Yakymchuk | The Problem on Analytical Prolongation of Potential Fields | 0903 | 3230 | |||
| 4891 | J P Light | Remnant Magnetism and a Single-Event Occupation at Lost Dunes Archaeological Site, Eastern Oregon: Implications for the Reevaluation of the Fish Lake, Oregon Secular Variation Curve | 1503 | 1522 | |||
| 4944 | J G Ogg | Oxfordian Magnetic Polarity Time Scale | 1535 | 9609 | |||
| 4974 | T Nakatsuka | High-Resolution Aeromagnetic Survey in an Urbanized Area: Reduction of Artificial Source Effect | 1517 | ||||
| 5008 | P Rochette | Very Low PSV During Kiaman: Is It Real? Revisit of the Esterel Volcanics | 1540 | ||||
| 5062 | J P Valet | Absolute Paleointensity From Radiocarbon Dated Lavas Flows From the Big Island of Hawaii | 1521 | 1530 | |||
| 5081 | H Shi | Shock-Induced Drilling Remanence in Bore Core Rock Samples | 1599 | ||||
| 5200 | B Ortega | Late Pleistocene Palaeoenvironmental Study From Sonora Desert, Mexico: Preliminary Results From Rock Magnetism and Pollen | 1512 | 1540 | |||
| 5244 | M Nakai | Magnetic Parameters of Cretaceous-Paleogene Sediments From the Blake Nose, Western Atlantic: ODP Leg 171B; Sites 1049-1053 | |||||
| 5271 | M L Osete | Palaeomagnetism of Pliocene Volcanism From the Sierra de las Cruces, Mexico Basin | 1525 | ||||
| 5319 | W Marzocchi | Testing the Existence of a Preferred Path of the Geomagnetic Field During Reversals | |||||
| 5403 | N D Opdyke | Paleomagnetism of Undeformed Bluestone (Miss.) Formation of West Virginia | 1525 | 8102 | |||
| 5429 | S L Neal | Variation of the Electrical Conductivity of the Upper Mantle Beneath the Oceans and Continents Using Very Long Period Magnetotellurics | 1515 | ||||
| 5462 | Y Xu | In-Situ Electrical Conductivity Measurements of Olivine, Wadsleyite, and Ringwoodite in the Multianvil Apparatus | 3914 | 3900 | |||
| 5480 | T Hatakeyama | Paleomagnetism and Rockmagnetism of Proterozoic Banded Iron Formation in the Hamersley Province, Western Australia | 1519 | 1527 | |||
| 5655 | S A McEnroe | Paleomagnetism and Rock Magnetic Behavior of Grenvillian Granulite Rocks, Adirondack Mountains, New York | 1527 | 1540 | |||
| 5693 | R L Reynolds | Use of Sediment Grain Size to Establish the Glacial Origin of Magnetic Property Variations at Upper Klamath Lake, OR | 1512 | 1600 | |||
| 5744 | Y Guyodo | A First Synthetic Record of Relative Paleointensity During the Brunhes Chron | 1521 | 1560 | |||
| 5746 | J Lerbekmo | Cryptochrons in C24r | 1520 | 1535 | |||
| 5853 | R D Cottrell | Magnetic Hysteresis Properties of Single Crystals: Prelude to Paleointensity Studies | 1500 | 1521 | |||
| 5864 | M T Cioppa | Testing for Drilling-Induced Remanence in the Mississippian Upper Debolt Formation, Central Alberta | 1594 | 1533 | |||
| 5866 | G McIntosh | Palaeomagnetism of a Late Miocene Lava-Flow Sequence Near Tepic, Nayarit, Mexico | 1519 | 1521 | |||
| 5945 | M T Smethurst | Paleomagnetic Age for the Navan Pb-Zn Orebody, Ireland | 1527 | 3665 | |||
| 6005 | J G Rosenbaum | Geochemical Constraint on the Interpretation of Magnetic Property Variations in Loess/Paleosol Sequences From Central Alaska | 1512 | 1600 | |||
| 6153 | M Matsushima | The Anisotropy of Local Turbulence in the Earth's Core | 1510 | ||||
| 6171 | N Seama | A Newly Developed Deep-Tow Three Component Magnetometer | 3005 | 3094 | |||
| 6431 | T Endale | Magnetostratigraphy and Paleomagnetism of the Early Oligocene Ethiopian Trap | 1540 | ||||
| 6449 | A Duba | Electrical Conductivity of a High-Pressure Silicate Perovskite and Magnesiowustite Assemblage | 1500 | 3900 | |||
| 6568 | E M Oatney | Trans-Yamuna Active Fault System Near the Main Boundary Thrust in the Himalayan Foothills of Northwest India | 7221 | 8107 | |||
| 6597 | M S Petronis | Paleomagnetic Data Bearing on Vertical-Axis Rotation Within the Central Death Valley Extended Terrane | 1525 | 8109 | |||
| 6612 | S G Lucas | Paleomagnetic Results for the Upper Permian Redbeds of the Dewey Lake Formation, Southeast New Mexico, USA | 1525 | 1520 | |||
| 6708 | J W Geissman | Magnetizations in Ash-Flow Tuffs Acquired During High-Amplitude, Short-Lived Polarity Events/Reversals | 1535 | 1513 | |||
| 6767 | M W Hamburger | Structure and Deformation Style in the Tien Shan: Constraints From Tomography and Earthquake Source Mechanisms | 8102 | 7230 | |||
| 6874 | C I Caballero-Miranda | Magnetic Fabric and Flow Conditions and Direction Along Two Vertical Profiles of a 2000 Year Old Lava | 1518 | 1527 | |||
| 6938 | R S Molina-Garza | Paleomagnetic Data and Ar-Ar Age Determinations for the Late Triassic Acatita Pluton, Southwest Coahuila, Mexico | 1525 | ||||
| 7025 | A M Soler-Arechalde | A Kinematic Model for the Acambay-Morelia Area, Mexican Volcanic Belt | 1525 | 1520 | |||
| 7026 | M Jackson | Field, Frequency, and Temperature Dependence of AC Susceptibility in Multidomain Titanomagnetites | 1540 | 1519 | |||
| 7159 | J Aurnou | An Experimental Study of Rotating Magnetoconvection | 1507 | 1510 | |||
| 7219 | S Lund | Initial Paleomagnetic Results From ODP Leg 172: Evidence for at Least 14 Geomagnetic Field Excursions During the Brunhes Epoch | 1513 | 1522 | |||
| 7305 | U G Pascale | Recovering the Geomagnetic Field From Intensity Data Given Some Knowledge About the Equator | 1532 | ||||
| 7309 | J Bloxham | An Earthlike Numerical Dynamo Model | 1510 | 1560 | |||
| 7379 | P Olson | Origin of Magnetic Field Structures in a Convection-Driven Dynamo | 1507 | 1510 | |||
| 7551 | D Williamson | Downward Diffusion of Fine Grained Pedogenic Particles in Eolianite-Paleosol Sequences From Canary Islands? | |||||
| 7666 | M Dumberry | Response of the Fluid Core to Changes in the Length of Day | 1507 | 8124 | |||
| 8007 | A Chulliat | A Local Approach to Core Flow Computation | 1507 | 1510 | |||
| 8030 | X Quidelleur | Link Between Excursions and Paleointensity Inferred From Abnormal Field Directions Recorded at La Palma Around 600 ka | 1513 | 1035 | |||
| 8041 | J Carlut | Analysis of the Mean and Variance of the Earth's Magnetic Field Over the Last 5 Million Years | 1522 | 3260 | |||
| 8080 | E Dormy | Role of the Heating in Finite Amplitude Convection in Rapidly Rotating Spherical Shells | 1510 | 1507 | |||
| 8084 | A Pawse | Rock Magnetic Characterization of El Chichon Volcanic Ash and Atmospheric Fractionation | 1540 | 1599 | |||
| 8128 | H Boehnel | New Paleomagnetic Data From Baja California | 1525 | ||||
| 8137 | C Forest | An MHD Dynamo Experiment | 1510 | 2149 | |||
| 8204 | C Mac Niocaill | A New Silurian Paleolatitude for Eastern Avalonia and Evidence for Caledonian Crustal Rotations in Southwestern Ireland | 1525 | 1532 | |||
| 8244 | L M Alva-Valdivia | Rock Magnetic Properties in the Tuxtla Volcanic Field, Mexico | 1540 | 1522 | |||
| 8288 | P D Weiler | Magnetic and Grain-Shape Fabrics of Fluvial Sediments in Quaternary Thrust Sheets From an Active Fold and Thrust Belt, Northeastern Papua New Guinea | 1518 | 8094 | |||
| 8305 | S Beske-Diehl | Rock Magnetic Characterization and ESR Spectra of Volcanic Ash: A Summary of Results to Date | 1540 | 1599 | |||
| 8437 | C J Pluhar | Preliminary Data Suggest Counterclockwise Tectonic Rotation of Waucoba Lake Sediments, Owens Valley, California | 1525 | 9350 | |||
| 8468 | V Courtillot | Paleointensity Results During the Reunion Event | 1521 | 1535 | |||
| 8500 | L Meynadier | Consequences of Field Anomalies Induced by Underlying Flows Onto Paleomagnetic Records in Volcanics | |||||
| 8522 | L Hongre | An Analysis of the Geomagnetic Field Over the Past 2000 Years | 1500 | 1503 | |||
| 5684 | B M Clement | Pleistocene Geomagnetic Polarity Transition Record From the NW Atlantic: Preliminary Results From ODP Leg 172 | GP01 | 1535 | 1513 | ||
| 4300 | G A Glatzmaier | Studying Reversal Frequency With Geodynamo Simulations | GP02 | 1500 | 1510 | ||
| 4792 | L Tauxe | I | Noise in the Quiet Zone | GP02 | 1521 | 1560 | |
| 5066 | M Iorio | Lower Cretaceous Geomagnetic Field Behaviour: Polarities, Transitions, and Secular Variations | GP02 | 1535 | 1522 | ||
| 5069 | D H Tarling | Marine Magnetic Anomaly Spectral Peaks and the Earth'’s Orbital Frequencies | GP02 | 1535 | 1522 | ||
| 5438 | W Lowrie | Polynomial Representation of Geomagnetic Polarity Reversal Sequences | GP02 | 1535 | 1560 | ||
| 5587 | G Muttoni | Towards a Better Definition of the Middle Triassic Magnetostratigraphy and Biostratigraphy in the Tethys Realm | GP02 | 9609 | 1520 | ||
| 6014 | J A Tarduno | Reversed Polarity Data From Mid-Cretaceous Lavas (Rajmahal Traps, India): Tests and Geomagnetic Implications | GP02 | 1520 | 1535 | ||
| 6460 | Y Gallet | An Alternative Description of the Geomagnetic Polarity Time Scale: Implication on the Origin of Superchrons | GP02 | 1507 | 1535 | ||
| 7982 | N Halim | Paleomagnetism of Xining-Lanzhou Basin, Kunlun and Qiangtang Blocks (China): New Cretaceous and Lower Tertiary Results and Their Implications on the Geodynamic of Central Asia | GP02 | 1525 | 8110 | ||
| 8085 | C Constable | I | What Does G Expect From P in the CQZ? | GP02 | 1521 | 1522 | |
| 364 | E Cowgill | Kinematics of the Central Altyn Tagh Fault System, NW China | GP03 | 0905 | 8109 | ||
| 365 | D Wanming | Cenozoic Volcanism and Lithospheric Evolution of the Northern Tibetan Plateau, China | GP03 | 0905 | 8109 | ||
| 366 | A Yin | Spacing of N-S Rifts in Tibet Implies Lithospheric Extension | GP03 | 0905 | 8109 | ||
| 464 | W Chuan Zhen | Tectonic Structure Expressed in the Topography and in the Magnetic and Gravity Fields of China and Adjacent Seas | GP03 | 1219 | 1545 | ||
| 466 | W R Roest | Tectonics of Central Asia, as Seen in Public-Domain Regional Magnetic and Topographic Data | GP03 | 8110 | 1545 | ||
| 594 | S Gilder | I | Everything You Wanted to Know About the Tan-Lu Fault and Were Inclined to Ask | GP03 | 1525 | 8110 | |
| 777 | M Fuller | I | On the Paleomagnetism of SE Asia | GP03 | 1525 | 1527 | |
| 3109 | X Zhao | New Cambrian and Ordovician Paleomagnetic Poles From Tarim and Their Paleogeographic Implications | GP03 | 1525 | 1599 | ||
| 3124 | B R Hacker | I | New Constraints on the Orogen-Scale Architecture of the Ultrahigh-Pressure Dabie-Hong'an-Tongbai Shan, China | GP03 | 1035 | 3660 | |
| 3126 | Z X Li | I | Tectonic History of East Asia: From Rodinia to Eurasia | GP03 | |||
| 3753 | L E Webb | I | Characteristics and Implications of the Onch Hayrhan Metamorphic Core Complex of Southern Mongolia | GP03 | 8000 | 8100 | |
| 3762 | C L Johnson | I | Sedimentary Response to Late Mesozoic Extension, Southern Mongolia | GP03 | 8000 | 8100 | |
| 3844 | K P Kodama | Central Asian Inclination Anomalies: Possible Inclination Shallowing in Red Beds? | GP03 | 1525 | 1540 | ||
| 3878 | J R Ali | Paleomagnetic Data From a Jurassic Philippine Sea Plate SSZ Ophiolite, East Indonesia | GP03 | 1525 | 8157 | ||
| 3895 | T Kanamatsu | Tectonic Evolution of the Miocene - Pleistocene Accretionary Sequence in the Boso and Miura Peninsulas, Central Japan: Evidence From AMS and Paleomagnetic Studies | GP03 | 1525 | 1527 | ||
| 4235 | C D Parkinson | Mesozoic Tectonic Evolution of the Sundaland Margin, Indonesia | GP03 | 8102 | 9320 | ||
| 4464 | W J Dunlap | Extrusion of Young Migmatites, Karakoram Fault Zone, Northern Ladakh, India | GP03 | 8102 | 8107 | ||
| 4472 | P Henry | I | From Himalayas to Tibet: The Effect on Topographic Elevation of Metamorphic Transformations in the Roots of Mountain Belts and Plateaus | GP03 | |||
| 4588 | B C Burchfiel | I | Cenozoic Tectonic Evolution Around the Eastern Himalayan Syntaxis | GP03 | 8110 | 9320 | |
| 5023 | G Bertrand | The Cenozoic Deformation of the Shan Scarp (Myanmar) Records the Path of India | GP03 | 8158 | 9320 | ||
| 5077 | G W Michel | Ongoing and Recent Deformation in Central and SE-Asia | GP03 | ||||
| 5118 | B H Hager | I | GPS Measurement of the Velocity Field of the Central Tien Shan Mountains, Kyrgyzstan and Kazakstan | GP03 | 1208 | 8102 | |
| 5206 | L S Chan | Geophysical and Geochemical Studies of the Linhuashan Fault Zone in Southeastern China | GP03 | 9320 | 8015 | ||
| 5268 | M M Lemaire | The Contribution of New Paleomagnetic Results From the Turan Plate to the Kinematic History of Central Asia from the Permian to the Jurassic | GP03 | 1525 | 9320 | ||
| 5678 | K P Furlong | Tibetan Mantle Fabric and Crust-Mantle Kinematics | GP03 | ||||
| 6205 | A Replumaz | A Numerical Approach to Restore Intracontinental Deformation: The Indochina Block During Tertiary | GP03 | 8110 | 9320 | ||
| 6223 | M De Batist | Active Compression in the Issyk-Kul Lake Basin (Central Tien Shan, Kirghizstan) | GP03 | ||||
| 6321 | J Klerkx | The Telektskoye Basin (Gorny Altai) as an Example of the Early Stage of Evolution of Continental Rifts | GP03 | ||||
| 6603 | F Kong | Evolution of the East China Sea Basin and Adjacent Plate Interaction | GP03 | 8105 | 9320 | ||
| 8307 | C E Isachsen | U-Pb Age Constraints on Deposition, Intrusion, and Metamorphism of Early Proterozoic Rocks in the Indus Syntaxis, Northwest Himalaya, Pakistan | GP03 | 1035 | 8102 | ||
| 8334 | D D Schelling | Late Paleozoic through Neogene Structural Evolution of the Junggar Basin, Northwest China | GP03 | 8000 | 8110 | ||
| 8452 | D Fang | New Paleomagnetic Data of Cretaceous and Tertiary Redbeds From the Northern Tarim Basin, Northwest China, Provide More Evidence for Anomalously Shallow Inclinations | GP03 | 1525 | 1518 | ||
| 444 | D A Mercer | Preliminary Paleomagnetic Results of the Lower Cambrian Nebo Quartzite, Chilhowee Group, Eastern Tennessee | GP04 | 1525 | 1527 | ||
| 695 | J E Mound | True Polar Wander and Global Sea Level Variations | GP04 | 1239 | 4556 | ||
| 3047 | T H Torsvik | Paleozoic TPW or Continental Drift? | GP04 | 1525 | 8120 | ||
| 3178 | B M Steinberger | Time Changes of Geoid and Inertia Tensor for Various Models of Mantle Flow | GP04 | 8120 | 1234 | ||
| 3841 | R W Barendregt | Stratigraphy and Paleomagnetism of the Late Miocene Davis Creek Silt, East Block of the Cypress Hills, Saskatchewan | GP04 | 1535 | 3344 | ||
| 3890 | C A Raymond | I | Pacific Hotspot Relative Motion | GP04 | |||
| 4119 | R S Gross | I | Astrometric and Space-Geodetic Observations of Polar Wander | GP04 | 1239 | ||
| 4254 | N C Mitchell | Modeling Cenozoic Sedimentation in the Central Equatorial Pacific and Implications for True Polar Wander | GP04 | 1525 | 3022 | ||
| 4477 | R Van der Voo | I | Rates of True Polar Wander | GP04 | 1239 | 1247 | |
| 4478 | J Beer | Reconstruction of the Paleomagnetic Dipole Moment by Cosmogenic Isotopes | GP04 | 1521 | 1503 | ||
| 5400 | M J Harris | Tectonic Motion of the Jurassic Fourth of July Batholith, Northern British Columbia, From Paleomagnetism | GP04 | 1525 | 8157 | ||
| 5634 | D T A Symons | Paleomagnetic and Geobarometric Study of the Teslin Crossing Stock, Stikine Terrane, Yukon, Canada | GP04 | 1525 | 8157 | ||
| 5733 | D Gubbins | Geomagnetic Reversal Transition Fields: A Test of 4-Fold Symmetry | GP04 | 1535 | 1510 | ||
| 5954 | D A Evans | I | Pre-Mesozoic True Polar Wander: Tests and Implications | GP04 | 1525 | 8120 | |
| 7363 | R Sabadini | I | True Polar Wander: Implications for the Rotational Dynamics of the Earth and for the Structure of the Mantle | GP04 | 1239 | 1236 | |
| 7702 | B C Johnson | Rapid Motion of the Hawaiian Hotspot Relative to the Paleomagnetic Axis Since 32 Ma: Implications for True Polar Wander | GP04 | 1525 | 3040 | ||
| 7739 | M A Richards | Rotational Dynamics and Mantle Convection | GP04 | 1525 | 8120 | ||
| 7897 | V J DiVenere | Inter-hemispheric Relative Motion Between the Indo-Atlantic and Pacific Hotspots | GP04 | 8121 | 1525 | ||
| 8145 | R G Gordon | Pacific Plate Apparent Polar Wander From 81 Ma to 32 Ma From Skewness of Marine Magnetic Anomalies | GP04 | ||||
| 8187 | D V Kent | I | Contribution of Nondipole Fields to Estimates of True Polar Wander | GP04 | 1525 | 1545 | |
| 8420 | R L Ripperdan | Can an "Etch-A-Sketch" Plate Motion Model Account for Phanerozoic Paleogeographic Changes? | GP04 | 1525 | 1645 | ||
| 8473 | C F Yoder | I | Contributions to Present-Day Secular Polar Motion, dJK2L/dt and UT1 | GP04 | 1239 | 1645 | |
| 3097 | M A Dungan | A New Model for the Origin of the Fish Canyon Magma Body: Central San Juan Volcanic Field, Colorado, USA | GP05 | ||||
| 3098 | O Bachmann | Pyroclastic Eruption of Voluminous Lava-Like Fish Canyon Dacite: A Precursor to the Collapse of the La Garita Caldera, Central San Juan Volcanic Field, Colorado, USA | GP05 | ||||
| 3208 | P W Lipman | I | Ash-Flow Sheets of the Central San Juan Caldera Complex: Forty Years of Progress and Problems in Correlations and Eruption Mechanisms | GP05 | 8404 | 3640 | |
| 3305 | R Torres | Accumulation and Dry-State Remobilization Processes in the June 15, 1991, Ignimbrite at Mount Pinatubo, Philippines | GP05 | 8414 | |||
| 4577 | H C Palmer | Caetano Tuff, Nevada: Distribution and Source Region Inferred From Magnetic Properties | GP05 | 1518 | 1525 | ||
| 4794 | J D Moore | Paleomagnetic Emplacement-Temperature and Thermal-Profile Estimates for Nonwelded Pyroclastic-Flow Deposits, Miocene Peralta Tuff, Jemez Mountains, New Mexico | GP05 | 1527 | 8404 | ||
| 4940 | J P Stimac | The Anisotropy of Magnetic Susceptibility (AMS) Technique to Locate the Source of the Rattlesnake Ash-Flow Tuff, Central Oregon | GP05 | 1518 | 8404 | ||
| 6023 | J G Rosenbaum | I | Magnetic Properties of Ash-Flow Sheets: Insights Into Depositional and Cooling Histories | GP05 | 1519 | 1540 | |
| 7286 | W C McIntosh | I | L40KAr/L39KAr Correlation of Rhyolitic Ignimbrites, Ashes, and Lavas | GP05 | |||
| 7377 | L Brown | Paleomagnetism of the Fish Canyon Tuff and Pagosa Peak Dacite: Directional Changes Due to Secular Variation or Rheomorphism? | GP05 | 1560 | 1518 |
Return to AGU 1997 Fall Meeting
Return to Sorted Abstracts Top Page
Return to Meetings