Zobrazeno 1 - 10
of 37
pro vyhledávání: '"M. Ashraf Uddin"'
Publikováno v:
Informatics in Medicine Unlocked, Vol 35, Iss , Pp 101128- (2022)
Matrix metalloproteinases-1 is recognized as a potential target of tumors and cancer for their role in breaking down collagen and extracellular matrix proteins. Our study screened 51 peptides against MMP-1 to find potent inhibitors for preventing bre
Externí odkaz:
https://doaj.org/article/72e81562ce71472398ba4435bea356da
Akademický článek
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Autor:
Sharmin Akther, Koichi Iwakabe, A.F.M. Sanaullah, Sabera T. Nishi, Faisal Hossain, M.K.M. Ziaul Hyder, Shaila Sharmin, Jayanti Karmaker, M. Ashraf Uddin, Ismail M.M. Rahman, M. Jafar Ahmed, Suman Barua, Shahanara Begum
Publikováno v:
Journal of Molecular Liquids. 337:116457
Dynamic viscosities (ηexp) for binary mixtures of ethylbenzene with butan-1-ol, pentan-1-ol, hexan-1-ol, heptan-1-ol, and octan-1-ol were measured at varying temperatures (298.15–323.15 K; interval, 5 K) and atmospheric pressure. Viscosity deviati
Autor:
Farida Yeasmin, M. Ashraf Uddin, Koichi Iwakabe, Ismail M.M. Rahman, M. Habibullah, A. F. M. Sanaullah
Publikováno v:
Journal of Molecular Liquids. 297:111900
Densities and speeds of sound were determined for the binary mixtures of heptan-1-ol with cumene, or mesitylene at atmospheric pressure and varying temperatures in the range of 298.15–323.15 K. The experimental data were used to calculate excess mo
Publikováno v:
Journal of Solution Chemistry. 44:1584-1610
The kinematic and dynamic viscosities for binary systems of hexan-1-ol with the ortho-, meta-, and para-isomers of dimethylbenzenes have been determined at T = (303.15, 308.15, 313.15, 318.15, and 323.15) K and at atmospheric pressure, and are compar
Publikováno v:
IOSR Journal of Mathematics. 10:41-50
A large eddy simulation of a plane turbulent channel flow is performed by using the third order Low- Storage Runge-Kutta method in time and second order Finite Difference formulation in space with staggered grid at a Reynolds number 590 based on the
Autor:
Ismail M.M. Rahman, M. Ashraf Uddin, M. Habibullah, Koichi Iwakabe, Hiroshi Hasegawa, Masuk Anowar, M. Mahbub Alam
Publikováno v:
Journal of Chemical & Engineering Data. 58:2887-2897
Densities, ρexp, viscosities, ηexp, and speeds of sound, cexp, of pure heptan-1-ol and 1,4-dioxane and their binary mixtures have been measured over the entire range of composition at temperatures from (298.15 to 323.15) K with an interval of 5 K a
Autor:
M. Habibullah, Anisul Azam, Koichi Iwakabe, Hiroshi Hasegawa, Ismail M.M. Rahman, M. Ashraf Uddin
Publikováno v:
Journal of Chemical & Engineering Data. 56:3323-3327
Densities and viscosities of the binary systems of phenylmethanol with 2-butanone were measured for the entire composition range at T = (303.15, 308.15, 313.15, 318.15, and 323.15) K and at the atmospheric pressure. The excess molar volumes were deri
Autor:
M. Ashraf Uddin, Koichi Iwakabe, Hiroshi Hasegawa, Anath B. Adhikhari, M. Abdul Majid, Ismail M.M. Rahman
Publikováno v:
Journal of Chemical and Engineering Data. 56(4):1718-1721
金沢大学理工研究域物質化学系
Viscosities of binary liquid mixtures of butan-2-one with benzene were measured at a number of mole fractions at T = (303.15, 313.15, and 323.15) K and atmospheric pressure. The viscometric behavior is
Viscosities of binary liquid mixtures of butan-2-one with benzene were measured at a number of mole fractions at T = (303.15, 313.15, and 323.15) K and atmospheric pressure. The viscometric behavior is
Autor:
Koichi Iwakabe, M. Ashraf Uddin, Hiroshi Hasegawa, Ismail M.M. Rahman, M. Habibullah, Khaled Saifuddin, Kamalendra N. Das
Publikováno v:
Journal of Chemical and Engineering Data. 55(11):5370-5374
金沢大学理工研究域物質化学系
Densities and viscosities of binary liquid mixtures of hexan-1-ol + o-xylene, + m-xylene, or + p-xylene were measured at a number of mole fractions at T = (308.15 and 318.15) K and atmospheric pressure.
Densities and viscosities of binary liquid mixtures of hexan-1-ol + o-xylene, + m-xylene, or + p-xylene were measured at a number of mole fractions at T = (308.15 and 318.15) K and atmospheric pressure.