World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
37
Citations
5557
World Ranking
8389
National Ranking
2325

Overview

James C. Browne is affiliated with The University of Texas at Austin in the United States. Their research spans multiple fields, primarily focusing on Computer Science and Physics and Astronomy. Within these disciplines, they have contributed to various specialized areas including Astronomy and Astrophysics, Computer Networks and Communications, Signal Processing, Artificial Intelligence, and Radiology, Nuclear Medicine and Imaging.

Browne's work addresses several complex topics such as Advanced Database Systems and Queries, Data Management and Algorithms, Semantic Web and Ontologies, Gamma-ray bursts and supernovae, Astrophysical Phenomena and Observations, and Medical Imaging Techniques and Applications.

The scientist has authored publications in different prominent venues. Their recent papers include the following:

  • SQL Has Problems. We Can Fix Them: Pipe Syntax In SQL, 2024, Proceedings of the VLDB Endowment
  • Study of the $in ^{34}$Ar($α,p$)$^{37}$K reaction rate via proton scattering on $^{37}$K, and its impact on properties of modeled X-Ray bursts, 2024, arXiv (Cornell University)

Their research collaborations involve frequent co-authors such as Jeff Shute, Shannon Bales, Matthew W. Brown, Brandon Dolphin, and Romit Kudtarkar.

Browne's publication record reflects interdisciplinary approaches linking computer science methods with astrophysical and medical applications. Their contributions to database query syntax and nuclear reaction rates illustrate the diversity of their scientific work.

Best Publications

  • Analytic models for rollback and recovery strategies in data base systems

    K. M. Chandy;J. C. Browne;C. W. Dissly;W. R. Uhrig

  • A fast solution method for three‐dimensional many‐particle problems of linear elasticity

    Yuhong Fu;Kenneth J. Klimkowski;Gregory J. Rodin;Emery Berger

  • The CODE 2.0 graphical parallel programming language

    Peter Newton;James C. Browne

  • On partitioning dynamic adaptive grid hierarchies

    M. Parashar;J.C. Browne

  • Gypsy: A language for specification and implementation of verifiable programs

    Allen L. Ambler;Donald I. Good;James C. Browne;Wilhelm F. Burger

  • Distributed pagerank for P2P systems

    K. Sankaralingam;S. Sethumadhavan;J.C. Browne

  • PerfExpert: An Easy-to-Use Performance Diagnosis Tool for HPC Applications

    Martin Burtscher;Byoung-Do Kim;Jeff Diamond;John McCalpin

  • POEMS: end-to-end performance design of large parallel adaptive computational systems

    V.S. Adve;R. Bagrodia;J.C. Browne;E. Deelman

  • CODE: a unified approach to parallel programming

    J.C. Browne;M. Azam;S. Sobek

  • Visual programming and debugging for parallel computing

    J.C. Browne;S.I. Hyder;J. Dongarra;K. Moore

  • Open XDMoD: A Tool for the Comprehensive Management of High-Performance Computing Resources

    Jeffrey T. Palmer;Steven M. Gallo;Thomas R. Furlani;Matthew D. Jones

  • Direct-Resolvent-Operator Computations on the Hydrogen-Molecule Dynamic Polarizability, Rayleigh, and Raman Scattering

    A. Lewis Ford;A. Lewis Ford;James C Browne

  • Modified method of perturbed stationary states. IV. Electron-capture cross sections for the reaction C/sup 6 +/+H(1s). -->. C/sup 5 +/(n,l)+H/sup +/

    T. A. Green;E. J. Shipsey;James C Browne

  • Comprehensive resource use monitoring for HPC systems with TACC stats

    Todd Evans;William L. Barth;James C. Browne;Robert L. DeLeon

  • Systems Engineering for High Performance Computing Software: The HDDA/DAGH Infrastructure for Implementation of Parallel Structured Adaptive Mesh

    Manish Parashar;James C. Browne

  • Trace-driven modeling and analysis of CPU scheduling in a multiprogramming system

    Stephen Sherman;Forest Baskett;J. C. Browne

  • A Common Data Management Infrastructure for Adaptive Algorithms for PDE Solutions

    Manish Parashar;James C. Browne;Carter Edwards;Kenneth Klimkowski

  • Conceptual and Implementation Models for the Grid

    M. Parashar;J.C. Browne

  • Rayleigh and Raman Cross Sections for the Hydrogen Molecule

    A. Lewis Ford;James C Browne

  • SIMULTANEOUS UPDATE OF PRIORITY STRUCTURES.

    Jit Biswas;James C. Browne

  • Poems: end-to-end performance design of large parallel adaptive computational systems

    Ewa Deelman;Aditya Dube;Adolfy Hoisie;Yong Luo

  • General approach to mapping of parallel computations upon multiprocessor architectures

    S. J. Kim;James C Browne

Frequent Co-Authors

Daniel P. Miranker
Daniel P. Miranker The University of Texas at Austin
Leszek Demkowicz
Leszek Demkowicz The University of Texas at Austin
Ivo Babuška
Ivo Babuška The University of Texas at Austin
Manish Parashar
Manish Parashar University of Utah
J. T. Oden
J. T. Oden The University of Texas at Austin
Aloysius K. Mok
Aloysius K. Mok The University of Texas at Austin
Geoffrey C. Fox
Geoffrey C. Fox University of Virginia
Chandrajit L. Bajaj
Chandrajit L. Bajaj The University of Texas at Austin
Ravi Jain
Ravi Jain Google (United States)
Vikram Adve
Vikram Adve University of Illinois at Urbana-Champaign

If you think any of the details on this page are incorrect, let us know.

Report an issue

We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:

Related Online Degrees & Career Pathways

Exploring engineering and technology fields in the USA opens the door to a diverse range of online degrees and career paths. Tech-savvy students interested in digital experience can benefit from ui ux degree programs, which develop skills in user interface and user experience design—essential for app, web, and product design careers.

Leadership-minded individuals might pursue a project management degree, offering core skills to manage teams, budgets, and deadlines in technology-driven industries. Those fascinated by emerging tech like blockchain can consider universities offering cryptocurrency degree programs, opening doors to opportunities in fintech and digital currencies.

Engineering and tech also intersect with the sports industry. For those with a passion for both, sports degree online options prepare graduates to manage teams, events, or sports technology innovations.

By exploring these varied online degrees, students can align their studies with high-growth sectors, finding rewarding pathways in the ever-evolving landscape of engineering and technology.

Best Scientists Citing James C. Browne

Trending Scientists

Recently Published Articles