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khoeini-moghaddam--s
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Cylindrical solutions in braneworld gravity
, Article Physical Review D - Particles, Fields, Gravitation and Cosmology ; Volume 72, Issue 6 , 2005 ; 15507998 (ISSN) ; Nouri Zonoz, M ; Sharif University of Technology
2005
Abstract
In this article we investigate exact cylindrically symmetric solutions to the modified Einstein field equations in the braneworld gravity scenarios. It is shown that for the special choice of the equation of state 2U+P=0 for the dark energy and dark pressure, the solutions found could be considered formally as solutions of the Einstein-Maxwell equations in 4-D general relativity. © 2005 The American Physical Society
Analytical and numerical study of quantum transport in an array of nanorings: A case study with double rings
, Article Physica E: Low-Dimensional Systems and Nanostructures ; Volume 47 , January , 2013 , Pages 297-302 ; 13869477 (ISSN) ; Khoeini, F ; Sharif University of Technology
2013
Abstract
We present an analytical method to obtain an expression for electron transmission through an array of disordered nanorings (ADNRs) sandwiched between two semi-infinite metallic leads in different lead-ring coupling strengths. Our approach is based on the nearest-neighbor tight-binding approximation and transfer matrix method. First, we derive an analytical formula for electron transmission across the system. Next, we apply our approach to study of the electron transport in a perfect double nanoring (PDNR) and design a NOR gate using the magnetic fluxes inputs. The conductance, current-voltage characteristics and threshold voltage of the system are calculated in the weak and strong coupling...
Preparation and morphological study of epoxy/silane modified nanoclay nanocomposites
, Article Asian Journal of Chemistry ; Volume 22, Issue 1 , 2010 , Pages 797-807 ; 09707077 (ISSN) ; Bazgir, S ; Tamizifar, M ; Nemati, A ; Arzanp, K ; Sharif University of Technology
2010
Abstract
Epoxy-clay nanocomposites were prepared using silane modified montmorillonite. The clay was first purified using a 1-inch hydrocyclon apparatus. The purified clay was modified with various amounts of (γ)-3-aminopropyltrimethoxysilane as a modifier. The synthesized organoclay was mixed and swollen by a mixture of epoxy resin and stoichiometric amount of curing agent at different temperature, mixing time and agitation. Finally, the compounds were cured in an oven at 90 °C for 2 h. The nanostructure materials were characterized using X-ray diffraction and transmission electron microscopy. The X-ray diffraction patterns showed that the impurities and large particles (greater than 5 microns) are...
Design and Simulation of a Dedicated Analog Circuit to Protect against Power Analysis Attack
, M.Sc. Thesis Sharif University of Technology ; Sharifkhani, Mohammad (Supervisor)
Abstract
With the rapid development of the communication technology, the demand for secure data transferring is inevitable. In this regard, all of secure systems such as Sim-Cards, Smart Cards, to name but a few, enjoy crypto hardware in order to encrypt data. The palpitating heart of these apparatuses, that is, processor, is based on well-known cryptographic algorithms such as AES, RSA, etc. In short, the security depends on the hidden key and in e. g., AES-128 bit, time to disclose the key is in order of 2128. Therefore, no computer can disclosure it in that this period is approximately equivalent to 1032 years in case of the processing computer runs on a 1GHz clock frequency, and a try-out of a...
Investigation of the modification process and morphology of organosilane modified nanoclay
, Article Ceramics - Silikaty ; Volume 53, Issue 4 , 2009 , Pages 254-259 ; 08625468 (ISSN) ; Bazgir, S ; Tamizifar, M ; Nemati, A. L. I ; Arzani, K ; Sharif University of Technology
2009
Abstract
This work deals with the preparation of epoxy-clay nanocomposites. The results show that the mechanical properties of nanocomposites depend on their compatibility, the epoxy resin used and the purity of the nanoclay. The used bentonite was purified and the effects of the organoclay synthesis and various additives on its characteristics were evaluated. X-ray Diffraction (XRD), X-ray Fluorescence (XRF) and Scanning Electron Microscopy (SEM) were used to analyze the microstructure and the phase composition of the nanoclay. The XRD results revealed that when the modifier addition was increased from 10wt.% to 40 wt.%, the interlayer spacing of the nanoclay increased from 12.43 Å being...
Peculiar transport properties in Z-shaped graphene nanoribbons: A nanoscale NOR gate
, Article Thin Solid Films ; Volume 548 , 2013 , Pages 443-448 ; 00406090 (ISSN) ; Khoeini, F ; Shokri, A ; Sharif University of Technology
2013
Abstract
A nanoscale logic NOR gate has been theoretically designed by magnetic flux inputs in a Z-shaped graphene nanoribbon composed of an armchair ribbon device sandwiched between two semi-infinite metallic zigzag ribbon leads. The calculations are based on the tight-binding model and iterative Green's function method, in which the conductance as well as current-voltage characteristics of the nanosystem are calculated, numerically. We show that the current and conductance are highly sensitive to both the magnetic fluxes subject to the device and the size of the system. Our results may have important applications for building blocks in the nanoelectronic devices based on graphene nanoribbons
An on-line BIST technique for delay fault detection in CMOS circuits
, Article 16th Asian Test Symposium, ATS 2007, Beijing, 8 October 2007 through 11 October 2007 ; November , 2007 , Pages 73-76 ; 10817735 (ISSN); 0769528902 (ISBN); 9780769528908 (ISBN) ; Hessabi, S ; Sharif University of Technology
2007
Abstract
This paper presents a simulation-based study of the delay fault testing in CMOS logic circuits. A novel built-in self-test (BIST) technique is presented for detecting delay faults in this logic family. This scheme does not need test-pattern generation, and thus can be used for robust on-line testing. Simulation results for area, delay, and power overheads are presented. © 2007 IEEE
Pressureless sintering of ZrB 2 ceramics codoped with TiC and graphite
, Article International Journal of Refractory Metals and Hard Materials ; Volume 81 , 2019 , Pages 189-195 ; 02634368 (ISSN) ; Nemati, A ; Zakeri, M ; Shahedi Asl, M ; Sharif University of Technology
Elsevier Ltd
2019
Abstract
In this research, the pressureless sintering of ZrB 2 composites were studied to obtain the highest densification and investigate the effects of TiC (2–10% wt) and graphite (1–2% wt) additives on the sinterability. The results showed that by adding TiC, the porosity and water absorption of the samples decreased, resulting in an increase in the density of the samples up to ~98% of the theoretical density. The addition of graphite and TiC reduced the surface oxide layers, improved the density and prevented the grain growth. The graphite additive reacted with B 2 O 3 and ZrO 2 and allowed the system to achieve a complete densification at 2000 °C. Both TiC and graphite additives were completely...
Comprehensive study on the effect of SiC and carbon additives on the pressureless sintering and microstructural and mechanical characteristics of new ultra-high temperature ZrB2 ceramics
,
Article
Ceramics International
;
Volume 41, Issue 9, Part A
,
November
,
2015
,
Pages 11456–11463
;
02728842 (ISSN)
; Nemati, A
; Zakeri, M
; Tamizifar, M
; Samadi, H
;
Sharif University of Technology
Elsevier Ltd
2015
Abstract
The combined effects of SiC and carbon additives on the densification, structure and characteristics of pressureless sintered ZrB2 -SiC ceramic composites were studied. The ZrB2 -SiC (1-10wt%) composite powders were mixed by 1-2wt% carbon. The prepared powder mixtures were then cold-consolidated and sintered in argon environment in the temperature range of 1800-2100°C for 2h. The constituted phases and microstructural evolutions were studied using x-ray diffraction and scanning electron microscope equipped with an energy dispersive x-ray detector. The obtained results concluded that the densification was increased by extending the sintering time and also by prior holding...
On optimal dynamic pegging in rescheduling for new order arrival
, Article Computers and Industrial Engineering ; Volume 136 , 2019 , Pages 46-56 ; 03608352 (ISSN) ; Saitou, K ; Sharif University of Technology
Elsevier Ltd
2019
Abstract
A rescheduling method for new order arrival is presented based on the concept of dynamic pegging in multi-level production. Upon the arrival of new, unplanned orders, dynamic pegging enables the re-assignment of the Work-In-Progress (WIP) to the existing or newly arrived orders in such a way that the cost of rescheduling is minimized. A simple yet inspiring Mixed Integer Programming (MIP) model is proposed that combines dynamic pegging with rescheduling. The resulting schedules are compared with the ones obtained from two other basic rescheduling approaches. Analysis of the comparisons confirm the superiority of the proposed method in terms of total rescheduling costs. © 2019
Predictive-reactive rescheduling for new order arrivals with optimal dynamic pegging
, Article 16th IEEE International Conference on Automation Science and Engineering, CASE 2020, 20 August 2020 through 21 August 2020 ; Volume 2020-August , 8 October , 2020 , Pages 710-715 ; Saitou, K ; Sharif University of Technology
IEEE Computer Society
2020
Abstract
This paper presents a new predictive-reactive rescheduling method for adjusting production schedules in response to the unplanned arrival of new orders in multi-level production. It is based on the concept of dynamic pegging, which enables the reassignment of the Work-In-Progress (WIP) to the existing or newly arrived orders at the time of rescheduling. Extending our previous work on reactive rescheduling with dynamic pegging, the new approach incorporates a probabilistic predictive model of new order arrival in the initial scheduling at the begging of the scheduling horizon. A Mixed Integer Programming (MIP) model is developed for two-phase, predictive-reactive scheduling before and after...
An on-line BIST technique for stuck-open fault detection in CMOS circuits
, Article 10th Euromicro Conference on Digital System Design Architectures, Methods and Tools, DSD 2007, Lubeck, 29 August 2007 through 31 August 2007 ; 2007 , Pages 619-625 ; 076952978X (ISBN); 9780769529783 (ISBN) ; Hessabi, S ; Drager ; Sharif University of Technology
2007
Abstract
This paper presents a simulation-based study of the stuck-open fault testing in CMOS logic circuits. A novel built-in self-test (BIST) technique is presented for detecting stuck-open faults in these logic families. This scheme does not need test-pattern generation, and thus can be used for robust on-line testing. Simulation results for area, delay, and power overheads are presented. © 2007 IEEE
A novel predictive-reactive rescheduling method for products assembly lines with optimal dynamic pegging
, Article Computers and Industrial Engineering ; Volume 171 , Volume 171 , 2022 ; 03608352 (ISSN) ; Saitou, K ; Sharif University of Technology
Elsevier Ltd
2022
Abstract
In this paper a new predictive-reactive rescheduling method is presented based on the dynamic pegging concept. Scheduling adjustments in a multi-level, mixed-model production system are invoked in response to the unplanned events, such as new order arrival, changes in due dates, and order cancellation. By using the dynamic pegging approach at the time of rescheduling, Work-In-Progress (WIP) can be reassigned to the existing or new orders. Based on our previous work on reactive-only rescheduling with dynamic pegging, a Mixed Integer Programming (MIP) model is developed for predictive-reactive scheduling of new orders of different product types that arrive following exponential distribution. A...
Performance evaluation and improvement of PC-SAFT equation of state for the asphaltene precipitation modeling during mixing with various fluid types
, Article Fluid Phase Equilibria ; Volume 554 , 2022 ; 03783812 (ISSN) ; Jamshidi, S ; Sharif University of Technology
Elsevier B.V
2022
Abstract
One of the significant problems of the upstream flow assurance community is precipitation or deposition of asphaltene that leads to affect the economics of oil production seriously. Knowledge of asphaltene onset pressure (AOP) and amount of asphaltene precipitation in the change of temperature, pressure, and composition is the essential information for preventing this problem. Recent studies have shown that thermodynamic models based on the solubility nature of asphaltenes using an equation of state (EOS) are the most effective approach to asphaltene behavior modeling. In this research, the common version of the SAFT equation, known as the Perturbed Chain form of Statistical Association...
A three-stage scenario based operational performance test approaches for production capacity enhancement: Case study on the 5th refinery of South Pars Gas Complex in Iran
, Article Journal of Natural Gas Science and Engineering ; Volume 27,Part 3 , November , 2015 , Pages 1758-1770 ; 18755100 (ISSN) ; Farzad, S ; Moghaddam, S. N ; Saremi, H. S ; Sharif University of Technology
Elsevier
2015
Abstract
In this work, the possibility of capacity enhancement in the South Pars Gas Complex of Iran has been studied. Mass balance is studied and data validation and reconciliation have been carried out in 5th refinery of South Pars Gas Complex in order to achieve the reliable data of the plant. Then the possibility of capacity increase has been studied, taking into account the important parameters such as alteration of the plant pressure profile. Calculation of the key parameters for different equipment at higher feed rate, specified the unit of operations which may have trouble during the capacity enhancement. The performance of export gas compressors, dehydration unit and High-Integrity Pressure...
Copper immobilized onto a triazole functionalized magnetic nanoparticle: A robust magnetically recoverable catalyst for "click" reactions
, Article RSC Advances ; Volume 5, Issue 5 , 2015 , Pages 3894-3902 ; 20462069 (ISSN) ; Ayati, S. E ; Sharif University of Technology
2015
Abstract
A novel magnetic heterogeneous copper catalyst was synthesized by immobilization of copper ions onto triazole functionalized Fe3O4. The catalyst was fully characterized by FT-IR, TGA, CHN, SEM, TEM, EDX and atomic adsorption spectroscopy. The resulting catalyst was used in the synthesis of 1,2,3-triazoles via a one-pot three component reaction of alkynes, alkyl halides, sodium azides under green conditions. The catalyst was reused ten times and no significant loss of activity was observed
Experimental and analytical investigation of concrete confined by external pre-stressed strips
, Article Concrete Repair, Rehabilitation and Retrofitting II - Proceedings of the 2nd International Conference on Concrete Repair, Rehabilitation and Retrofitting, ICCRRR, 24 November 2008 through 26 November 2008, Cape Town ; 2009 , Pages 375-376 ; 9780415468503 (ISBN) ; Mohebbi, S ; Samadi, M ; Sharif University of Technology
2009
Abstract
Strengthening is often a necessary measure to overcome an unsatisfactory deficient situation or where a new code requires the structure or a member of it to be modified to achieve new requirements. In the engineering practice such restraint to lateral dilation, indicated by the name of confinement, has been traditionally provided to compression members through steel transverse reinforcement in the form of spirals, circular hoops or rectangular ties. Steel and concrete jackets are other techniques for providing additional confinement for compression members, too. This paper presents the results of experimental and analytical study on the application of strapping technique for retrofitting of...
A novel highly dispersive magnetic nanocatalyst in water : Glucose as an efficient and green ligand for the immobilization of copper(II) for the cycloaddition of alkynes to azides
, Article RSC Advances ; Volume 6, Issue 83 , 2016 , Pages 80234-80243 ; 20462069 (ISSN) ; Saberi, V ; Kalhor, S ; Ayati, S. E ; Sharif University of Technology
Royal Society of Chemistry
2016
Abstract
A new heterogeneous and highly dispersive nanocatalyst in water was prepared by the immobilization of Cu2+ onto glucose on Fe3O4. The catalyst was fully characterized by FT-IR, TGA, CHN, SEM, EDX, and atomic absorption spectroscopy. The synthesized catalyst was used in the synthesis of different derivatives of 1,2,3-triazole via a one-pot three-component reaction of alkynes, alkyl halides, and sodium azide. To the best of our knowledge, this novel catalyst adheres to the principles of green chemistry. The nanocatalyst could be recycled and reused in several runs without significant loss of activity
Improved pair-wise LSB matching steganography with a new evaluating system
, Article 2012 6th International Symposium on Telecommunications, IST 2012, 6 November 2012 through 8 November 2012 ; November , 2012 , Pages 982-986 ; 9781467320733 (ISBN) ; Soleymanpour-Moghaddam, S ; Mahyabadi, M ; Sharif University of Technology
2012
Abstract
In this paper, a novel steganographic method is proposed which is based on the spatial domain: Least Significant Bit (LSB). The LSB matching method proposed by Mielikainen utilizes a binary function to reduce the number of changed pixel values. While in this paper a bipolar evaluating system is proposed to assess the performance of different orders for LSB matching. Afterward a genetic algorithm strategy is employed to search for an optimal solution among all the permutation orders. The experimental results show that by employing the proposed bipolar evaluating system, the distortion of the stego-image is reduced while the probability of detection is decreased
Effect of carbon nanotube geometries on mechanical properties of nanocomposite via nanoscale representative volume element
, Article Journal of Solid Mechanics ; Volume 8, Issue 3 , 2016 , Pages 568-577 ; 20083505 (ISSN) ; Ghavanloo, E ; Fazelzadeh, S. A ; Sharif University of Technology
Islamic Azad University
2016
Abstract
Predicting the effective elastic properties of carbon nanotube-reinforced nanocomposites is of great interest to many structural designers and engineers for improving material and configuration design in recent years. In this paper, a finite element model of a CNT composite has been developed using the Representative volume element (RVE) to evaluate the effective material properties of nanocomposites. Based on this model, the effects of geometrical characteristics such as the aspect ratio, orientation and volume fraction of the CNTs in conjunction with the interphase behavior on the mechanical properties of the nanocomposites are elucidated and the elastic properties of a complex polymeric...