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Unraveling Legal Complexities: Muslim and non-Muslim Estate Administration Process in Malaysia and Brunei
, Article De Jure: Jurnal Hukum dan Syar'iah ; Volume 16, Issue 2 , 2024 , Pages 531-554 ; 20851618 (ISSN) ; Alihan, A. A ; Hamid, A. A. A ; Sultan, B ; Sharif University of Technology
2024
Abstract
Estate administration involves managing and distributing a deceased individual’s assets to beneficiaries, as well as managing the liabilities. This process comprises legal, financial, and administrative tasks that ensure assets are transferred based on the deceased's wishes and in accordance with the law. In Southeast Asia countries such as Indonesia, Malaysia and Brunei where Muslims represents the majority of population, the Islamic law plays an integral part in the inheritance management as the process to be in line with the Islamic teachings and principle. The role of the syariah authority namely the syariah courts is prevalent and therefore, abidance to the rule under the syariah legal...
Performance characterization of ultrahigh speed optically amplified spectral-phase encoded OCDMA systems with second-harmonic-generation effect in thin and thick crystal receiver structures [electronic resource]
, Article IEEE Transactions on Communications ; October 2011, Vol 59, No. 10, P. 2818-2831 ; Matinfar, M. D ; Salehi, J. A ; Sharif University of Technology
Abstract
In this paper we study and evaluate the performance of a spectral-phase encoded optical CDMA (SPE-OCDMA) system using advanced receiver structures based on second harmonic generation (SHG) effect imposed in a Thick or Thin crystal. This receiver structure is employed as the nonlinear pre-processor prior to the conventional low-speed photodetector. In our performance evaluation amplified spontaneous emission (ASE) of the optical amplifiers, receiver front end thermal noise and photodetector shot noise which are effective in low power conditions, and multiple access interference (MAI) noise which is the dominant source of noise in high power conditions in any coherent OCDMA communications...
Wireless optical CDMA lAN: digital implementation analysis [electronic resource]
, Article IEEE Journal of Selected Area in Communications (JSAC) ; 2009 Vol. 27, No. 9, PP. 1676-1686, Dec ; Matinfar, M. D ; Salehi, J. A ; Sharif University Of Technology
Abstract
In this paper we present and investigate a digital design and implementational details of a wireless optical CDMA (OCDMA) system based on generalized optical orthogonal codes (OOCs). A detailed digital implementation analysis and transmitter/receiver architectures in the context of the above design are fully studied. We analyze various subsystems for a wireless OCDMA system including detector and receiver structure, acquisition, and tracking blocks as well as evaluating their performance in a typical wireless OCDMA communication system. By analyzing two main parts of the system, namely, chip-level detector and OCDMA receiver blocks we evaluate the performance of the overall system....
Saline brine desalination: Application of sweeping gas membrane distillation (SGMD)
, Article Desalination and Water Treatment ; Volume 71 , 2017 , Pages 12-18 ; 19443994 (ISSN) ; Kargari, A ; Bastani, D ; Soleimani, M ; Shirazi, M. M. A ; Sharif University of Technology
Desalination Publications
2017
Abstract
In this work, desalination of saline brines using the sweeping gas membrane distillation (SGMD) process is investigated. The Taguchi method was applied for optimization of the operating parameters. An L9 orthogonal array was used to investigate the influence of pertinent variables, including feed temperature (Tf: 45°C, 55°C and 65°C), feed flow rate (Qf: 200, 400 and 600 mL/min), feed concentration (Cf: 10, 25 and 50 g/L) and sweeping gas flow rate (Qc: 4, 10, and 16 SCFH) on the distillate flux. Results of the experiments showed that maximum distillate flux, which was about 10 L/m2 h, obtained at 65°C feed temperature, 16 SCFH sweeping gas flow rate and brackish water with 10 g/L salt...
Optimal capacity allocation for executing mapreduce jobs in cloud systems
, Article Proceedings - 16th International Symposium on Symbolic and Numeric Algorithms for Scientific Computing, SYNASC 2014, 22 September 2014 through 25 September 2014 ; Sept , 2015 , Pages 385-392 ; 9781479984480 (ISBN) ; Rizzi, A. M ; Ardagna, D ; Ciavotta, M ; Passacantando, M ; Movaghar, A ; Sharif University of Technology
Institute of Electrical and Electronics Engineers Inc
2015
Abstract
Nowadays, analyzing large amount of data is of paramount importance for many companies. Big data and business intelligence applications are facilitated by the MapReduce programming model while, at infrastructural layer, cloud computing provides flexible and cost effective solutions for allocating on demand large clusters. Capacity allocation in such systems is a key challenge to providing performance for MapReduce jobs and minimize cloud resource cost. The contribution of this paper is twofold: (i) we formulate a linear programming model able to minimize cloud resources cost and job rejection penalties for the execution of jobs of multiple classes with (soft) deadline guarantees, (ii) we...
Development of the tigre compton telescope for intermediate-energy gamma-ray astronomy
, Article IEEE Transactions on Nuclear Science ; Volume 50, Issue 2 , 2003 , Pages 251-257 ; 00189499 (ISSN) ; Bhattacharya, D ; Polsen, M ; Zych, A. D ; Samimi, J ; Akyuz, A ; Sharif University of Technology
2003
Abstract
Gamma-ray observations in the low and medium energy range (0.1-100 MeV) with sufficiently sensitive telescopes will provide unique insights into many outstanding high-energy astrophysics questions. The University of California, Riverside (UCR) Tracking and Imaging Gamma-Ray Telescope (TIGRE) Compton gamma-ray telescope uses multilayers of silicon strip detectors to, for the first time, track the Compton electron and CsI(Tl)-photodiode detectors to measure the scattered photon energy. By combining the Compton telescope's inherent imaging capability with improved background discrimination, a larger field-of-view and improved spectral and spatial resolutions, a significant improvement in...
Numerical study of mixing performance in T-junction passive micromixer with twisted design
, Article Chemical Engineering and Processing - Process Intensification ; Volume 194 , 2023 ; 02552701 (ISSN) ; Hosseinzadeh, K ; Akbari, S ; Mahboobtosi, M ; Ranjbar, A. A ; Ganji, D. D ; Sharif University of Technology
Elsevier B.V
2023
Abstract
In this study, numerical computations are performed with the main purpose of shedding light on the mixing characteristics in an innovative T-shaped micromixer equipped with a twisted structure. A 3-D model is presented and verified to mix two miscible fluids in a single phase. By considering different geometrical cases, the proposed T-mixer is compared using the standard T-mixer (Base case) running in the same operational conditions. Furthermore, the impacts of variation in the geometry of twisted design are scrutinized for Re (Reynolds number) in the extent of 1≤Re≤500 with the focus of obtaining a significant mixing quality for flow through the micromixer. MI (Mixing index), PI...
Radiation and convection heat transfer optimization with MHD analysis of a hybrid nanofluid within a wavy porous enclosure
, Article Journal of Magnetism and Magnetic Materials ; Volume 566 , 2023 ; 03048853 (ISSN) ; Erfani Moghaddam, M. A ; Nateghi, S ; Behshad Shafii, M ; Ganji, D. D ; Sharif University of Technology
Elsevier B.V
2023
Abstract
Thermal performance maximization is a necessity in various systems that are dealing with any scale of heat flux. This requirement has been intensified due to introduction of more complex and highly crammed products, making heat dissipation a daunting task. Addressing this challenge, a curved porous star-shaped enclosure with a rounded cavity and occupied by hybrid nanoparticles of Fe3O4-Al2O3 scattered uniformly in 1-Hexanol has been simulated by Galerkin finite element method. The temperature difference between inner cavity and outer wavy surface stirred the heat flux within the bounded domain. The determinants of thermal evolution are classified by porosity alteration, radiation intensity,...
Seasonal variations in the oxidative stress and inflammatory potential of PM2.5 in Tehran using an alveolar macrophage model; The role of chemical composition and sources
, Article Environment International ; Volume 123 , 2019 , Pages 417-427 ; 01604120 (ISSN) ; Antkiewicz, D. S ; Hemming, J. D. C ; Shafer, M. M ; Lai, A. M ; Arhami, M ; Hosseini, V ; Schauer, J. J ; Sharif University of Technology
Elsevier Ltd
2019
Abstract
The current study was designed to assess the association between temporal variations in urban PM2.5 chemical composition, sources, and the oxidative stress and inflammatory response in an alveolar macrophage (AM) model. A year-long sampling campaign collected PM2.5 samples at the Sharif University in Tehran, Iran. PM-induced reactive oxygen species (ROS) production was measured both with an acellular dithiothreitol consumption assay (DTT-ROS; ranged from 2.1 to 9.3 nmoles min−1 m−3) and an in vitro macrophage-mediated ROS production assay (AM-ROS; ranged from 125 to 1213 μg Zymosan equivalents m−3). The production of tumor necrosis factor alpha (TNF-α; ranged from ~60 to 518 pg TNF-α m−3)...
Metal foam and fin implementation into a triple concentric tube heat exchanger over melting evolution
, Article Theoretical and Applied Mechanics Letters ; Volume 12, Issue 2 , 2022 ; 20950349 (ISSN) ; Hassani Soukht Abandani, M. R ; Hosseinzadeh, K ; Shafii, M. B ; Ganji, D. D ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
It is believed that it is going to be a sizeable mismatch between supply and demand when it comes to renewable resources. Lately, researchers are on course to compensate for the unpredictabilityof such resources by the employment of phase change materials (PCMs). Having multiple advantages, PCMs generally suffer from inadequate thermal conductivity which causes prolonged transition procedures. To tackle this issue, this study is fixated on two parameterswhich are linked to fins addition and porous media incorporation in a melting process within a triple concentric tube heat exchanger (TCTHX). The results provided by multiple cases underlined the significance of natural convection in the bare...
Investigation of second grade viscoelastic non-Newtonian nanofluid flow on the curve stretching surface in presence of MHD
, Article Results in Engineering ; Volume 17 , 2023 ; 25901230 (ISSN) ; Mardani, M. R ; Paikar, M ; Hasibi, A ; Tavangar, T ; Nimafar, M ; Ganji, D. D ; Shafii, M. B ; Sharif University of Technology
Elsevier B.V
2023
Abstract
MHD extended flow of second-grade viscoelastic nanofluid is studied in two-dimensional mode on a curve stretching surface. Items like Joule heating and curvature parameter have been applied to inspect the heat transfer and mass transfer rates. To produce the nonlinear ordinary differential system, appropriate transformations are used. The quasi-linearization method is utilized to derive the solutions numerically. The impact of specific variables on the properties of fluid has been studied. Conclusions indicate that the increase in Schmidt number halted the fluid concentration, whereas temperature grew because of an increment in radiation parameter. Viscous fluid velocity and concentration...
Three dimensional pressure transient behavior study in stress sensitive reservoirs
, Article Journal of Petroleum Science and Engineering ; Volume 152 , 2017 , Pages 204-211 ; 09204105 (ISSN) ; Shamloo, A ; Asadbegi, M ; Dezfuli, A. D ; Sharif University of Technology
Elsevier B.V
2017
Abstract
Stress sensitivity is a phenomenon that affects reservoir rock properties, such as permeability and therefore changes the well pressure transient behavior. This paper aims to study these behaviors in stress sensitive reservoirs and evaluate the pressure loss in such reservoirs during the process of hydrocarbon production. A power model is used to correlate the changes in permeability with pore pressure. A novel semi-implicit three-dimensional finite element method has been employed to numerically solve the flow problem. The numerical results have been validated by analytical results obtained in a non-sensitive reservoir. Pressure drawdown test for different scenarios has been studied. The...
Adsorption dynamics of surface-modified silica nanoparticles at solid-liquid interfaces
, Article Langmuir ; Volume 38, Issue 41 , 2022 , Pages 12421-12431 ; 07437463 (ISSN) ; Bastani, D ; Mohammadi, A ; Kordzadeh, A ; Sharif University of Technology
American Chemical Society
2022
Abstract
Understanding the adsorption dynamics of nanoparticles at solid-liquid interfaces is of paramount importance to engineer nanoparticles for a variety of applications. The nanoparticle surface chemistry is significant for controlling the adsorption dynamics. This study aimed to experimentally examine the adsorption of surface-modified round-shaped silica nanoparticles (with an average diameter of 12 nm), grafted with hydrophobic (propyl chains) and/or hydrophilic (polyethylene glycol chains) agents, at an aqueous solution-silica interface with spherical soda-lime glass beads (diameter of 3 mm) being used as adsorbents. While no measurable adsorption was observed for solely hydrophobic or...
Catalytic converter reducing dual fuel (natural gas/diesel) engine emissions
, Article Scientia Iranica ; Volume 6, Issue 5 , 2000 , Pages 75-81 ; 10263098 (ISSN) ; Kazemeini, M ; Soltanieh, M ; Checkel, M. D ; Badakhshan, A ; Zheng, M ; Mirosh, E. A ; Sharif University of Technology
Sharif University of Technology
2000
Abstract
Using natural gas combined with diesel fuel in diesel engines provides a considerable contribution to modern industrial societies in order to control air pollution and, also, generalize and facilitate the use of public vehicles. In spite of the attractive features of this idea, including reduction of NO(X) and particulates, there is an important burden imposed upon the system at low to intermediate torques, namely high concentration of CO and unburned total hydrocarbons (THC), mostly composed of methane. In this work, based upon the oxidation of CO and unburned HCs and through experimental results, application of a monolithic oxidizing bifunctional catalytic converter as a novel...
Inherently safer process route ranking index (ISPRRI) for sustainable process design
, Article Journal of Loss Prevention in the Process Industries ; Volume 80 , 2022 ; 09504230 (ISSN) ; Shariff, A. M ; Buang, A ; Umer, A ; Zaini, D ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
The growth of process industries has escalated the probability of loss containment scenarios of hazardous materials that can be tackled via process safety schemes. For preliminary design stage, the inherent scheme is more promising to generate sustainable process designs. For this purpose, various process routes are typically compared to recognize the safer one via numerous indexing methods to eliminate routes with hazardous materials. However, these indices lack in accommodating the equipment characteristics and the underutilization of process and chemical characteristics. Specifically for chemical characteristics, the toxicity aspect has not been engaged for process route selection in...
Determination of austenite grain coarsening temperature of a Nb-microalloyed steel sheet
, Article Advanced Materials Research, 21 January 2011 through 23 January 2011 ; Volume 213 , January , 2011 , Pages 600-603 ; 10226680 (ISSN) ; 9783037850619 (ISBN) ; Otaaghvar, V. A ; Khaki, M. M ; Sharif University of Technology
2011
Abstract
Thermomechnical processing and controlled rolling of microalloyed steel sheets are affected by several factors according to the final properties of product. To create the high mechanical properties, a uniform and fine-grain structure is necessary in hot rolled final products. To produce such microstructures, every stage of the thermomechanical processing of the steel rolling has to be carefully controlled. Hence, first step is grain coarsening control that it usually occurs during reheating for slab. For this purpose, seven different reheating temperatures between 1000 to 1300 °C with 50 °C increments were chosen in this investigation for soaking treatment. By soaking the specimens in...
Characterization of polymeric membranes for membrane distillation using atomic force microscopy
, Article Desalination and Water Treatment ; Volume 51, Issue 31-33 , 2013 , Pages 6003-6008 ; 19443994 (ISSN) ; Bastani, D ; Kargari, A ; Tabatabaei, M ; Sharif University of Technology
Taylor and Francis Inc
2013
Abstract
As membrane distillation (MD) is an under-developed separation process, specific membranes for MD applications are not yet commercially available. Therefore, microporous polymeric membranes made of hydrophobic materials fabricated for microfiltration purposes are usually used for MD applications. Characterization of such kind of membranes is important in order to achieve a better in-depth understanding of their performance and to fabricate specific membranes for MD process. One of the emerging characterization methods is atomic force microscopy (AFM) analysis. AFM is a newly developed high-resolution method that is useful for studying the surface topography of various types of membranes, and...
Critical voltage, thermal buckling and frequency characteristics of a thermally affected GPL reinforced composite microdisk covered with piezoelectric actuator
, Article Mechanics Based Design of Structures and Machines ; 2020 ; Ghabussi, A ; Forooghi, A ; Shavalipour, A ; Habibi, M ; won Jung, D ; Safa, M ; Sharif University of Technology
Taylor and Francis Inc
2020
Abstract
Due to the remarkable progress in the field of the manufacturing process, smart composites have become the desired target for high-tech engineering applications. Accordingly, for the first time, thermal buckling, critical voltage and vibration response of a thermally affected graphene nanoplatelet reinforced composite (GPLRC) microdisk in the thermal environment are explored with the aid of generalized differential quadrature method (GDQM). Also, the current microstructure is coupled with a piezoelectric actuator (PIAC). The extended form of Halpin-Tsai micromechanics is used to acquire the elasticity of the structure, whereas, the variation of thermal expansion, Poisson’s ratio, and density...
Critical voltage, thermal buckling and frequency characteristics of a thermally affected GPL reinforced composite microdisk covered with piezoelectric actuator
, Article Mechanics Based Design of Structures and Machines ; Volume 50, Issue 4 , 2022 , Pages 1331-1353 ; 15397734 (ISSN) ; Ghabussi, A ; Forooghi, A ; Shavalipour, A ; Habibi, M ; won Jung, D ; Safa, M ; Sharif University of Technology
Taylor and Francis Ltd
2022
Abstract
Due to the remarkable progress in the field of the manufacturing process, smart composites have become the desired target for high-tech engineering applications. Accordingly, for the first time, thermal buckling, critical voltage and vibration response of a thermally affected graphene nanoplatelet reinforced composite (GPLRC) microdisk in the thermal environment are explored with the aid of generalized differential quadrature method (GDQM). Also, the current microstructure is coupled with a piezoelectric actuator (PIAC). The extended form of Halpin-Tsai micromechanics is used to acquire the elasticity of the structure, whereas, the variation of thermal expansion, Poisson’s ratio, and density...
Synthesis and characterization of two binuclear nickel(II) complexes of thiophenol-based "end-off" compartmental ligands and their application as catalysts for selective oxidation of sulfides
, Article Journal of Coordination Chemistry ; Volume 69, Issue 1 , 2016 , Pages 103-111 ; 00958972 (ISSN) ; Amini, M ; Assoud, A ; Bagherzadeh, M ; Boghaei, D. M ; Sharif University of Technology
Taylor and Francis Ltd
2016
Abstract
Reaction of the binucleating S-protected ligand precursors 2-(N,N-dimethylthiocarbamato)-5-methylisophthalaldehyde di-2′-hydroxy anil (I) and 2-(N,N-dimethylthiocarbamato)-5-methylisophthalaldehyde di-2′-hydroxy 5′-methyl anil (II) with nickel(II) acetate tetrahydrate in the presence of pyrazole afforded the binuclear nickel(II) complexes [LINi2(pz)] (1) and [LIINi2(pz)] (2), respectively. The complexes have been characterized by routine physicochemical studies as well as by X-ray single crystal structure analysis. In both complexes, Ni(II) ions are doubly bridged by the thiophenolic sulfur of the pentadentate Schiff base ligand and a pyrazolate group. Efficient protocols for the oxidation...