Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Mohamed E. Kandil is active.

Publication


Featured researches published by Mohamed E. Kandil.


Journal of Chemical & Engineering Data | 2006

Measurement of the viscosity and density of a reference fluid, with nominal viscosity at T = 298 K and p = 0.1 MPa of 29 MPa·s, at temperatures between (273 and 423) K and pressures below 275 MPa

Mohamed E. Kandil; Kenneth R. Harris; Anthony R. H. Goodwin and; Kai Hsu; Kenneth N. Marsh


Journal of Chemical & Engineering Data | 2011

Vapor-Liquid Equilibria Measurements of the Methane + Pentane and Methane + Hexane Systems at Temperatures from (173 to 330) K and Pressures to 14 MPa

Mohamed E. Kandil; Markus J. Thoma; Tauqir H. Syed; Jerry Guo; Brendan F. Graham; Kenneth N. Marsh; Stanley H. Huang; Eric F. May


Journal of Chemical & Engineering Data | 2010

Relative permittivity of dimethylsulfoxide and N, N -dimethylformamide at temperatures from (278 to 328) K and pressures from (0.1 to 5) MPa

Johannes Hunger; Richard Buchner; Mohamed E. Kandil; Eric F. May; Kenneth N. Marsh; G.T. Hefter


Journal of Chemical & Engineering Data | 2010

Vapor-liquid equilibria measurements of methane + 2-methylpropane (isobutane) at temperatures from (150 to 250) K and pressures to 9 MPa

Mohamed E. Kandil; Eric F. May; Brendan F. Graham; Kenneth N. Marsh; Mark A. Trebble; Robert D. Trengove; Stanley H. Huang


The Journal of Chemical Thermodynamics | 2015

Phase equilibrium measurements of (methane + benzene) and (methane + methylbenzene) at temperatures from (188 to 348) K and pressures to 13 MPa

Thomas J. Hughes; Mohamed E. Kandil; Brendan F. Graham; Kenneth N. Marsh; Stanley H. Huang; Eric F. May


International Journal of Greenhouse Gas Control | 2014

Simulating the Capture of CO2 from Natural Gas: New Data and Improved Models for Methane + Carbon Dioxide + Methanol

Thomas J. Hughes; Mohamed E. Kandil; Brendan F. Graham; Eric F. May


Journal of Chemical & Engineering Data | 2008

Determination of the Relative Permittivity, ϵ′, of Methylbenzene at Temperatures between (290 and 406) K and Pressures below 20 MPa with a Radio Frequency Re-Entrant Cavity and Evaluation of a MEMS Capacitor for the Measurement of ϵ′

Mohamed E. Kandil; Kenneth N. Marsh; Anthony R. H. Goodwin


Journal of Chemical & Engineering Data | 2007

Measurement of the viscosity of liquid cyclopentane obtained with a vibrating wire viscometer at temperatures between (273 and 353) K and pressures below 45 MPa

Kiyofumi Kurihara; Mohamed E. Kandil; Kenneth N. Marsh; Anthony R. H. Goodwin


Journal of Chemical & Engineering Data | 2007

Determination of the Relative Permittivity and Density within the Gas Phase and Liquid Volume Fraction Formed within the Two-Phase Region for (0.4026 CH4 + 0.5974 C3H8) with a Radio Frequency Re-entrant Cavity

Mohamed E. Kandil; Kenneth N. Marsh; Anthony R. H. Goodwin


International Journal of Greenhouse Gas Control | 2017

Measurements of electrical resistivity, NMR pore size and distribution, and x-ray CT-scan for performance evaluation of CO2 injection in carbonate rocks: A pilot study

Abdulrauf Rasheed Adebayo; Mohamed E. Kandil; Taha M. Okasha; Modiu Sanni

Collaboration


Dive into the Mohamed E. Kandil's collaboration.

Top Co-Authors

Avatar

Kenneth N. Marsh

University of Western Australia

View shared research outputs
Top Co-Authors

Avatar

Eric F. May

University of Western Australia

View shared research outputs
Top Co-Authors

Avatar

Brendan F. Graham

University of Western Australia

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Abdullah S. Sultan

King Fahd University of Petroleum and Minerals

View shared research outputs
Top Co-Authors

Avatar

Nayef M. Alsaifi

King Fahd University of Petroleum and Minerals

View shared research outputs
Top Co-Authors

Avatar

Thomas J. Hughes

University of Western Australia

View shared research outputs
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Researchain Logo
Decentralizing Knowledge