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Daniel E. Rosner

Daniel E. Rosner

D-Index & Metrics

Engineering and Technology

D-Index
45
Citations
8062
World Ranking
5476
National Ranking
1535

Overview

Daniel E. Rosner is affiliated with Yale University in the United States and conducts research primarily in the fields of Engineering and Social Sciences. Their work spans several subfields including Electrical and Electronic Engineering, Sociology and Political Science, Artificial Intelligence, Communication, and Computational Mechanics.

Their research topics cover a diverse range of subjects such as Social Media and Politics, Smart Grid Energy Management, Privacy, Security, and Data Protection, Aerosol Filtration and Electrostatic Precipitation, Cyclone Separators and Fluid Dynamics, IoT and Edge/Fog Computing, and Ethics and Social Impacts of AI.

Rosner has contributed to several recent publications, including:

  • Formulations for Bacteriophage Therapy and the Potential Uses of Immobilization (2021), published in Pharmaceuticals

While some papers in the provided data are authored by other researchers, Rosner's noted recent work reflects a focus on pharmaceutical applications and related biomedical engineering topics.

Frequent coauthors collaborating with Rosner include:

  • Răzvan Rughiniş
  • Simona-Nicoleta Vulpe
  • Cosima Rughiniş
  • Dragoș M. Obreja
  • George-Cristian Pătru

Rosner has published in multiple venues, with a notable presence in:

  • Zenodo (CERN European Organization for Nuclear Research)
  • Pharmaceuticals
  • Automation in Construction
  • Journal of Innovation & Knowledge
  • Frontiers in Computer Science

The scientist's work in engineering and social sciences intersects with emerging technologies and their societal implications. This includes innovations related to IoT systems, environmental monitoring, and the ethical considerations of artificial intelligence.

The combination of Rosner's research topics and publication history suggests an interdisciplinary approach that integrates technical engineering solutions with social and political aspects, especially in areas related to privacy, data protection, and the societal impact of digital technologies.

Best Publications

  • Fractal-like Aggregates: Relation between Morphology and Physical Properties.

    A.V. Filippov;M. Zurita;D.E. Rosner

  • Soot volume fraction and temperature measurements in laminar nonpremixed flames using thermocouples

    Charles S. McEnally;Ümit Özgür Köylü;Lisa D. Pfefferle;Daniel E. Rosner

  • Simultaneous measurements of soot volume fraction and particle size/ Microstructure in flames using a thermophoretic sampling technique

    Ümit Özgür Köylü;Charles S. McEnally;Daniel E. Rosner;Lisa D. Pfefferle

  • Fractal Morphology Analysis of Combustion-Generated Aggregates Using Angular Light Scattering and Electron Microscope Images

    Uemit Koeylue;Yangchuan Xing;Daniel E. Rosner

  • Use of a Generalized Stokes Number to Determine the Aerodynamic Capture Efficiency of Non-Stokesian Particles from a Compressible Gas Flow

    R. Israel;D. E. Rosner

  • Bivariate Extension of the Quadrature Method of Moments for Modeling Simultaneous Coagulation and Sintering of Particle Populations.

    Douglas L. Wright;Robert McGraw;Daniel E. Rosner

  • Thermophoretic Effects on Particles in Counterflow Laminar Diffusion Flames

    Alessandro Gomez;Daniel E Rosner

  • Monte Carlo Simulation of Particle Aggregation and Simultaneous Restructuring.

    Pushkar Tandon;Daniel E Rosner

  • Energy transfer between an aerosol particle and gas at high temperature ratios in the Knudsen transition regime

    A.V. Filippov;D.E. Rosner

  • Size- and Structure-lnsensitivity of the Thermophoretic Transport of Aggregated “Soot” Particles in Gases

    D. E. Rosner;D. W. Mackowski;P. Garcia-Ybarra

  • Transient Evaporation and Combustion of a Fuel Droplet Near Its Critical Temperature

    Daniel E. Rosner;W. S. Chang

  • Effects of interface kinetics, capillarity and solute diffusion on bubble growth rates in highly supersaturated liquids☆

    Unknown

  • Comparative studies of the attack of pyrolytic and isotropic graphite by atomic and molecular oxygen at high temperatures.

    Unknown

  • Experimental studies of soot particle thermophoresis in nonisothermal combustion gases using thermocouple response techniques

    Alfred D. Eisner;Daniel E. Rosner

  • Flame Synthesis of Valuable Nanoparticles: Recent Progress/Current Needs in Areas of Rate Laws, Population Dynamics, and Characterization

    Daniel E. Rosner

  • Simulation of microstructure/mechanism relationships in particle deposition

    M. Tassopoulos;J. A. O'Brien;D. E. Rosner

  • Aerodynamic levitation technique for containerless high temperature studies on liquid and solid samples

    David A. Winborne;Paul C. Nordine;Daniel E. Rosner;Neil F. Marley

  • Effects of inertia on the diffusional deposition of small particles to spheres and cylinders at low Reynolds numbers

    J. Fernandez De La Mora;D. E. Rosner

  • Plates of the Dinosaur Stegosaurus: Forced Convection Heat Loss Fins?

    James O. Farlow;Carl V. Thompson;Daniel E. Rosner

  • Chemical energy accommodation at catalyst surfaces. Flow reactor studies of the association of nitrogen atoms on metals at high temperatures

    Bret Halpern;Daniel E. Rosner

  • Synthesis and restructuring of inorganic nano-particles in counterflow diffusion flames

    Yangchuan Xing;Ümit Özgür Köylü;Daniel E. Rosner

  • Prediction of Spherule Size in Gas Phase Nanoparticle Synthesis

    Yangchuan Xing;Daniel E. Rosner

  • Correlation of thermophoretically-modified small particle diffusional deposition rates in forced convection systems with variable properties, transpiration cooling and/or viscous dissipation

    S. A. Gokoglu;D. E. Rosner

Frequent Co-Authors

Athanasios G. Konstandopoulos
Athanasios G. Konstandopoulos Aristotle University of Thessaloniki
Alessandro Gomez
Alessandro Gomez Yale University
Alexander V. Neimark
Alexander V. Neimark Rutgers, The State University of New Jersey
James O. Farlow
James O. Farlow Indiana University – Purdue University Fort Wayne

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