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      Lithospheric stresses associated with nontransform offsets of the Mid-Atlantic Ridge: Implications from a finite element analysis

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      Tectonics
      American Geophysical Union (AGU)

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          Limits on lithospheric stress imposed by laboratory experiments

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            New evidence on the state of stress of the san andreas fault system.

            Contemporary in situ tectonic stress indicators along the San Andreas fault system in central California show northeast-directed horizontal compression that is nearly perpendicular to the strike of the fault. Such compression explains recent uplift of the Coast Ranges and the numerous active reverse faults and folds that trend nearly parallel to the San Andreas and that are otherwise unexplainable in terms of strike-slip deformation. Fault-normal crustal compression in central California is proposed to result from the extremely low shear strength of the San Andreas and the slightly convergent relative motion between the Pacific and North American plates. Preliminary in situ stress data from the Cajon Pass scientific drill hole (located 3.6 kilometers northeast of the San Andreas in southern California near San Bernardino, California) are also consistent with a weak fault, as they show no right-lateral shear stress at approximately 2-kilometer depth on planes parallel to the San Andreas fault.
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              Multi-channel seismic imaging of a crustal magma chamber along the East Pacific Rise

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                Author and article information

                Journal
                Tectonics
                Tectonics
                American Geophysical Union (AGU)
                02787407
                August 1993
                August 1993
                : 12
                : 4
                : 982-1003
                Article
                10.1029/93TC00364
                3882b59f-d9a0-4375-a1aa-818dc28f00d8
                © 1993

                http://doi.wiley.com/10.1002/tdm_license_1.1

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