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Chemistry

D-Index
55
Citations
8641
World Ranking
12372
National Ranking
3297

Overview

Marcus N. Myers is affiliated with the University of Utah in the United States. Their recent publication includes work presented at the XV International Conference on Durability of Building Materials and Components. This work focuses on mitigation technology related to alkali-silica reaction (ASR) in construction materials.

One notable paper by Myers is titled "A New Alkali-Silica Reaction (ASR) Mitigation Technology - Part I: Comparing with Li, Ca, Al Salts, and Densified Silica Fume", published in 2020 within the conference's eBook of Proceedings. This research explores comparative mitigation techniques using various chemical agents and materials to address ASR, a degradation process affecting concrete durability.

The scientist has collaborated with several co-authors, contributing to multidisciplinary investigation efforts. Frequent co-authors include:

  • Frank Shaode Ong
  • T. Vickers
  • J. Atienza
  • Kok-Onn Lee
  • Paul Seiler

Myers' publication history is concentrated in venues focusing on material durability and construction science, specifically the XV International Conference on Durability of Building Materials and Components.

The available data does not specify further main or subfields of study, nor topics beyond those covered in the publication provided. There are no documented awards or book publications linked with Myers.

Best Publications

  • Statistical theory for the equilibrium distribution of rigid molecules in inert porous networks. Exclusion chromatography

    J. Calvin Giddings;Eugene Kucera;Christopher Penn Russell;Marcus N. Myers

  • High Pressure Gas Chromatography of Nonvolatile Species

    J. Calvin Giddings;Marcus N. Myers;Lilian McLaren;Roy A. Keller

  • Flow-Field-Flow Fractionation: A Versatile New Separation Method

    JC Giddings;FJ Yang;MN Myers

  • Sedimentation field-flow fractionation

    J. Calvin. Giddings;Frank J. F. Yang;Marcus N. Myers

  • Theoretical and experimental characterization of flow field-flow fractionation

    J. Calvin. Giddings;Frank J. Yang;Marcus N. Myers

  • Computer characterization of chromatographic peaks by plate height and higher central moments

    Elimelech. Grushka;Marcus N. Myers;Paul D. Schettler;J. Calvin. Giddings

  • Electrical Field-Flow Fractionation of Proteins

    Karin Dahlgren Caldwell;Laya Floch Kesner;Marcus N. Myers;J. Calvin Giddings

  • Properties of the transition from normal to steric field-flow fractionation

    Marcus N. Myers;J. Calvin. Giddings

  • Dense Gas Chromatography at Pressures to 2000 Atmospheres

    J. Calvin Giddings;Marcus N. Myers;Jerry W. King

  • Thermal Diffusion of Polystyrene in Eight Solvents by an Improved Thermal Field-Flow Fractionation Methodology

    J. Calvin Giddings;Karin D. Caldwell;Marcus N. Myers

  • Steric Field-Flow Fractionation: A New Method for Separating I to 100 μm Particles

    J. Calvin Giddings;Marcus N. Myers

  • Colloid characterization by sedimentation field-flow fractionation: I. Monodisperse populations

    J.Calvin Giddings;George Karaiskakis;Karin D Caldwell;Marcus N Myers

  • Observations on Anomalous Retention in Steric Field-Flow Fractionation

    Karin D. Caldwell;Thanh T. Nguyen;Marcus N. Myers;J. Calvin Giddings

  • Programmed sedimentation field-flow fractionation

    Frank J. F. Yang;Marcus N. Myers;J. Calvin. Giddings

  • Analysis of Biological Macromolecules and Particles by Field‐Flow Fractionation

    Giddings Jc;Myers Mn;Caldwell Kd;Fisher

  • Flow field-flow fractionation as a methodology for protein separation and characterization.

    J.Calvin Giddings;Frank J. Yang;Marcus N. Myers

  • Continuous particle fractionation based on gravitational sedimentation in split-flow thin cells

    Stephen R. Springston;Marcus N. Myers;J. Calvin. Giddings

  • Moments analysis for the discernment of overlapping chromatographic peaks

    Elimelech. Grushka;Marcus N. Myers;J. Calvin. Giddings

  • Thermal field-flow fractionation of polystyrene samples

    Gary H. Thompson;Marcus N. Myers;J. Calvin. Giddings

  • Solubility phenomena in dense carbon dioxide gas in the range 270-1900 atmospheres

    J. Calvin Giddings;Joseph J. Czubryt;Marcus N. Myers

Frequent Co-Authors

J. Calvin Giddings
J. Calvin Giddings University of Utah
Karin D. Caldwell
Karin D. Caldwell Uppsala University
Myeong Hee Moon
Myeong Hee Moon Yonsei University
Daniel W. Armstrong
Daniel W. Armstrong The University of Texas at Arlington
Alain Berthod
Alain Berthod Centre national de la recherche scientifique, CNRS
Phil Ligrani
Phil Ligrani University of Alabama in Huntsville
Stephen R. Springston
Stephen R. Springston Brookhaven National Laboratory

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