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Chemistry

D-Index
52
Citations
14171
World Ranking
13377
National Ranking
3507

Overview

Cornelius T. Moynihan was affiliated with Rensselaer Polytechnic Institute in the United States. The available data shows no record of recent papers, frequent co-authors, or specific publication venues associated with their academic career.

The scientist did not have documented book publications or known awards. There is also no detailed information on the main fields or subfields of study, nor specific topics that were the focus of their research.

Given the absence of detailed records on published works, research contributions, or collaborations, it is not possible to outline particular areas of scientific inquiry or thematic emphases for this individual.

The data confirms that Cornelius T. Moynihan is deceased, and the profile reflects their academic affiliation and the limited public record available.

Best Publications

  • Dependence of the Fictive Temperature of Glass on Cooling Rate

    Cornelius T. Moynihan;Allan J. Easteal;Mary Ann De Bolt;Joseph Tucker

  • Dependence of the glass transition temperature on heating and cooling rate

    Cornelius T. Moynihan;Allan J. Easteal;James Wilder;Joseph Tucker

  • STRUCTURAL RELAXATION IN VITREOUS MATERIALS

    C. T. Moynihan;P. B. Macedo;C. J. Montrose;P. K. Gupta

  • Thermodynamic determination of fragility in liquids and a fragile-to-strong liquid transition in water

    Kaori Ito;Cornelius T. Moynihan;C. Austen Angell

  • Electrical relaxation in a glass-forming molten salt

    F. S. Howell;R. A. Bose;P. B. Macedo;C. T. Moynihan

  • Analysis of Structural Relaxation in Glass Using Rate Heating Data

    Mary Ann Debolt;Allan J. Easteal;P. B. Macedo;Cornelius T. Moynihan

  • Electrical Relaxation in Na2O·3SiO2 Glass

    V. Provenzano;L. P. Boesch;V. Volterra;C. T. Moynihan

  • Correlation between the Width of the Glass Transition Region and the Temperature Dependence of the Viscosity of High‐Tg Glasses

    Cornelius T. Moynihan

  • Non-exponential structural relaxation, anomalous light scattering and nanoscale inhomogeneities in glass-forming liquids

    C.T. Moynihan;J. Schroeder

  • Comments on the electric modulus function

    I.M. Hodge;K.L. Ngai;C.T. Moynihan

  • Estimation of activation energies for structural relaxation and viscous flow from DTA and DSC experiments

    C.T. Moynihan;S.-K. Lee;M. Tatsumisago;T. Minami

  • Kinetics of Crystallization of ZrF4‐Ba2‐LaF3 Glass by Differential Scanning Calorimetry

    Narottam P. Bansal;Robert H. Doremus;Allan J. Bruce;C.T. Moynihan

  • Prigogine–Defay ratio for systems with more than one order parameter

    Prabhat K. Gupta;Cornelius T. Moynihan

  • Conductivity relaxation in a concentrated aqueous electrolyte solution

    J. H. Ambrus;C. T. Moynihan;P. B. Macedo

  • Description and analysis of electrical relaxation data for ionically conducting glasses and melts

    Cornelius T. Moynihan

  • Analysis of electrical relaxation in glasses and melts with large concentrations of mobile ions

    Cornelius T Moynihan

  • Intrinsic and impurity infrared absorption in As2Se3 glass

    C.T. Moynihan;P.B. Macedo;M.S. Maklad;R.K. Mohr

  • Linear and non-linear structural relaxation

    C.T. Moynihan;S.N. Crichton;S.M. Opalka

  • Structural relaxation in poly(vinyl acetate)

    Hiroyuki Sasabe;Cornelius T. Moynihan

  • Weak‐Electrolyte Models for the Mixed‐Alkali Effect in Glass

    C. T. Moynihan;A. V. Lesikar

Frequent Co-Authors

Narottam P. Bansal
Narottam P. Bansal Glenn Research Center
Robert H. Doremus
Robert H. Doremus Rensselaer Polytechnic Institute
Jacques Lucas
Jacques Lucas University of Rennes
K. L. Ngai
K. L. Ngai University of Pisa
Malcolm D. Ingram
Malcolm D. Ingram University of Aberdeen
Steve W. Martin
Steve W. Martin Iowa State University
William A. Lanford
William A. Lanford University at Albany, State University of New York
Himanshu Jain
Himanshu Jain Lehigh University
Gary E. Wnek
Gary E. Wnek Case Western Reserve University
Jesus Santamaria
Jesus Santamaria University of Zaragoza

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