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Publications by J. Murali Krishnan
Discussion of “Linear and Nonlinear Rheological Properties of Bituminous Mastics Under Large Amplitude Oscillatory Shear Testing” by Aboelkasim Diab and Zhanping You
Journal of Materials in Civil Engineering
Building
Mechanics of Materials
Materials Science
Civil
Structural Engineering
Construction
Related publications
Closure to “Linear and Nonlinear Rheological Properties of Bituminous Mastics Under Large Amplitude Oscillatory Shear Testing” by Aboelkasim Diab and Zhanping You
Journal of Materials in Civil Engineering
Building
Mechanics of Materials
Materials Science
Civil
Structural Engineering
Construction
Shear Viscosity and Nonlinear Behavior of Whole Blood Under Large Amplitude Oscillatory Shear
Biorheology
Physiology
Dynamics of Entangled Polymer Chains With Nanoparticle Attachment Under Large Amplitude Oscillatory Shear
Journal of Polymer Science, Part B: Polymer Physics
Plastics
Condensed Matter Physics
Polymers
Theoretical Chemistry
Materials Chemistry
Physical
Macromolecular Tumbling and Wobbling in Large-Amplitude Oscillatory Shear Flow
Physics of Fluids
Mechanics of Materials
Condensed Matter Physics
Mechanical Engineering
Fluid Flow
Transfer Processes
Computational Mechanics
Rheological Behaviour of Polymer-Modified Bituminous Mastics: A Comparative Analysis Between Physical and Chemical Modification
Construction and Building Materials
Building
Civil
Construction
Structural Engineering
Materials Science
From Firm to Fluid – Structure-Texture Relations of Filled Gels Probed Under Large Amplitude Oscillatory Shear
Journal of Food Engineering
Food Science
Evaluating Self Healing Capability of Bituminous Mastics
Experimental Mechanics
Mechanics of Materials
Mechanical Engineering
Aerospace Engineering
Exact Analytical Solution for Large-Amplitude Oscillatory Shear Flow From Oldroyd 8-Constant Framework: Shear Stress
Physics of Fluids
Mechanics of Materials
Condensed Matter Physics
Mechanical Engineering
Fluid Flow
Transfer Processes
Computational Mechanics
Series Expansion for Shear Stress in Large-Amplitude Oscillatory Shear Flow From Oldroyd 8-Constant Framework
Canadian Journal of Chemical Engineering
Chemical Engineering