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Chemistry

D-Index
43
Citations
18266
World Ranking
17037
National Ranking
930

Overview

Graham Williams is affiliated with Swansea University in the United Kingdom. Their academic profile reflects a research career connected to this institution.

Available data does not list any recent papers authored by Graham Williams. There are no records of frequent co-authors or frequent publication venues to indicate ongoing collaborative networks or preferred journals and conferences for dissemination of research.

The scientist's work does not have documented main fields of study, subfields, or specific topics covered in published research within the provided data.

There are no records of book publications or awards won by Graham Williams available in the provided information.

Overall, Graham Williams is a researcher associated with Swansea University, though specific scientific contributions, areas of expertise, and scholarly output details are not available in the shared data.

Best Publications

  • Anelastic and Dielectric Effects in Polymeric Solids

    Norman Gerard McCrum;B. E. Read;G. (Graham) Williams

  • Non-symmetrical dielectric relaxation behaviour arising from a simple empirical decay function

    Graham Williams;David C. Watts

  • Further considerations of non symmetrical dielectric relaxation behaviour arising from a simple empirical decay function

    G. Williams;D. C. Watts;S. B. Dev;A. M. North

  • Analysis of the α, β, and γ relaxations in polychlorotrifluoroethylene and polyethylene: Dielectric and mechanical properties

    John D. Hoffman;G. Williams;E. Passaglia

  • Molecular aspects of multiple dielectric relaxation processes in solid polymers

    Graham Williams

  • Conference on Electrical Insulation and Dielectric Phenomena

    Graham Williams

  • Use of the dipole correlation function in dielectric relaxation

    Graham. Williams

  • Changes in molecular dynamics during bulk polymerization of an epoxide-amine system as studied by dielectric relaxation spectroscopy

    Jérôme Fournier;Graham Williams;Christine Duch;George Anthony Aldridge

  • One-dimensional electronic conductivity in discotic liquid crystals

    N. Boden;R.J. Bushby;J. Clements;M.V. Jesudason

  • Dipole relaxation in polyethyl methacrylate and polyethyl acrylate as a function of frequency, temperature and pressure. The α, β and αβ relaxations

    Graham Williams

  • Dipole relaxation of polypropylene oxide as a function of frequency, temperature and pressure

    Graham Williams

  • Molecular Motion in the Glassy State: The Effect of Temperature and Pressure on the Dielectric Relaxation of Polyvinyl Chloride

    Graham Williams;David C. Watts

  • Correlation function approach to the dielectric behaviour of amorphous polymers

    M. Cook;D. C. Watts;G. Williams

  • Time-correlation functions and molecular motion

    G. Williams

  • Complex dielectric constant of dipolar compounds as a function of temperature, pressure and frequency. Part 1 .—General relations and a consideration of models for relaxation

    Graham Williams

  • Complex dielectric constant of dipolar compounds as a function of temperature, pressure and frequency. Part 2.—The α–relaxation of polymethyl acrylate

    Graham Williams

  • Molecular dynamics of the supercooled liquid state. A dielectric study of the low frequency motions of fluorenone in o-terphenyl and mixed solvents and of di-n-butyl phthalate in o-terphenyl

    Michael F. Shears;Graham Williams

  • The dielectric and dynamic mechanical properties of polyoxymethylene (Delrin)

    B.E. Read;G. Williams

  • The dielectric, dynamic mechanical and nuclear resonance properties of polyethylene oxide as a function of molecular weight†

    T. M. Connor;B. E. Read;G. Williams

  • Molecular dynamics of liquid crystalline side-chain polymers: The dielectric relaxation behaviour of a siloxan polymer in the nematic and isotropic phases

    G.S. Attard;G. Williams;G.W. Gray;D. Lacey

  • Dielectric and optical studies of a nematogen (4,4-n-heptyl-cyanobiphenyl)

    Mansel Davies;Rafik Moutran;Alun H. Price;Martin S. Beevers

Frequent Co-Authors

David C. Watts
David C. Watts University of Manchester
George P. Simon
George P. Simon Monash University
Frank E. Karasz
Frank E. Karasz University of Massachusetts Amherst
João F. Mano
João F. Mano University of Aveiro
George Floudas
George Floudas University of Ioannina
Peter F. Knowles
Peter F. Knowles University of Leeds
Neville Boden
Neville Boden University of Leeds
Richard J. Bushby
Richard J. Bushby University of Leeds

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