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Jackson, James

Publications and source records attributed to Jackson, James.

Final Report

This multi-year grant partially supported the Infrared Space Observatory (ISO) data analysis and related activities of three Guest Investigators (Prof. Dan Clemens, Prof. Thomas Bania, and Prof. James Jackson) at Boston University for ten distinct ISO investigations. Support under this grant covered "Years 1 & 2" of the ISO activities at Boston University. "Year 3" activities support is currently in force under a separate JPL contract, with Prof. James Jackson as the Block Grant PI; "Year 4" support has been requested from JPL and that proposal is currently pending.

Clemens, Dan

Active faulting and block rotations in the western Transverse Ranges, California

This paper uses the results of five years of VLBI measurements in conjunction with data on slip vectors of major earthquakes and the dominant westerly trend of faults and blocks to argue that these data are consistent with the concept that rotations about vertical axes in the western Transverse Ranges in California continue at rates of several degrees per million years. It is suggested that rotations about vertical axes may occur in the western Transverse Ranges without these rotations necessarily being manifestations of continuous deformation at depth and that attempts to account for the relative motion of the Pacific and the North America plates by adding rates of slip on major faults are likely to fail.

Jackson, James

Real-time optical laboratory solution of parabolic differential equations

An optical laboratory matrix-vector processor is used to solve parabolic differential equations (the transient diffusion equation with two space variables and time) by an explicit algorithm. This includes optical matrix-vector nonbase-2 encoded laboratory data, the combination of nonbase-2 and frequency-multiplexed data on such processors, a high-accuracy optical laboratory solution of a partial differential equation, new data partitioning techniques, and a discussion of a multiprocessor optical matrix-vector architecture.

Casasent, David