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    Analaysis of Ultrasonic Vibration Assisted Turing of Engineering Ceramics

    , M.Sc. Thesis Sharif University of Technology Zabihi Hosseini, Morteza (Author) ; Movahhedi, Mohammad Reza (Supervisor) ; Akbari, Javad (Supervisor)
    Abstract
    Due to high strength, hardness and high resistance to abrasion, ceramics are difficult for machining. Also as the conductivity coefficient of these materials is low, major amount of produced heat during machining process will be absorbed in the cutting tool which causes intensive wear in cutting tool edge. As a result employing traditional machining for these materials because of low machining speed, tool wear, high roughness and large cutting force, has little efficiency in practice. Therefore non-traditional machining method may improve efficacy. In this thesis effect of utilizing ultrasonic vibration in machining process of fused cast silica ceramic has been studied. Aim of this study at... 

    Establishment, Characterization and Evaluation of a Reference Field in a MNSR Reactor for Calibration Neutron Dosimeters

    , Ph.D. Dissertation Sharif University of Technology Asgari, Afrouz (Author) ; Hosseini, Abolfazl (Supervisor) ; Choopan Dastjerdi, Mohammad Hossein (Co-Supervisor) ; Mokhtari, Javad (Co-Supervisor)
    Abstract
    The purpose of this research is to establish a neutron reference field for the calibration of neutron dosimeters based on the beam of the neutron radiography system in the Isfahan miniature neutron source reactor (MNSR). The aim is to address the several limitations, including the inability to achieve a wide range of dosimetry, high uncertainty due to variations in distance from the source, significant scattering, and non-uniformity. To overcome these issues, a linear, stable, and wide-range dosimetry field based on MNSR have been established, characterized and evaluated by using the variations of the reactor power. In the first step of establishing the calibration field, the linear and... 

    Models in Science: Ontology and Epistemology of Models

    , M.Sc. Thesis Sharif University of Technology Hosseini Nasab, Mehdi (Author) ; Akbari Takhtameshlou, Javad (Supervisor)
    Abstract
    Various philosophical views on scientific models, in this research, are reviewed and criticized. From a syntactic point of view, a scientific theory is nothing but its models, and this is the theory that illustrates how the model is constructed. Pragmatic view, by adopting a pluralistic view, argue that the interpretive model provides the basis for the concretization of the abstract concepts of the theory, and it is possible that representational model is incompatible with the theory itself. The model works better than theory even in functions such as prediction, explanation and representation in some places. A group of philosophers believe that with the introduction of fiction discussion,... 

    Semantic Approach to the Scientific Theories and Its Realistic or Anti Realistic Consequences

    , M.Sc. Thesis Sharif University of Technology Hosseini Ghourtani, Ahmad (Author) ; Akbari Takhtameshlou, Javad (Supervisor)
    Abstract
    Different views and approaches have been adopted regarding the nature of scientific theories in the philosophy of science, which can be generally divided into two main parts: A) Syntactic (linguistic) approach, which is also called the traditional or received view, B) Semantic approach (model-based view).The main and dominant idea in the syntactic view, first proposed by logical empricists is that a scientific theory is an axiomatic system in a formal language (first-order language) that is subject to deduction and is partially interpreted by a set of correspondence rules. This view has been the subject of numerous attacks and criticisms since the 1960s, after which an alternative approach,... 

    Simulation and Design of a One-Dimensional Position-Sensitive Scintillator detector using GEANT4 Monte Carlo Code

    , M.Sc. Thesis Sharif University of Technology Amtaeh, Abolfazl (Author) ; Hosseini, Abolfazl (Supervisor) ; Kochakpour, Javad (Co-Supervisor)
    Abstract
    Precise prediction of radiation interaction position in detectors plays a crucial role in medical and industrial imaging systems. Position-sensitive detectors based on scintillators are widely used in industrial tomography and surface scanning applications such as cargo scanners. Since materials and objects in an industrial application have large dimensions and high densities for scanning these objects, we need a large detector and a high-energy gamma source or a dense detector to detect the photon transmitted from the object. Inorganic scintillator detectors with dense materials such as NaI(Tl) are widely used in industry. However, for large objects, several detectors must be used, each... 

    , M.Sc. Thesis Sharif University of Technology Abtahi, Mohammad Reza (Author) ; Abedini, Javad (Supervisor)
    Abstract
    In this piece of work, a gravity model is suggested as Iranian non-fuel export model to OIC countries. The most important results out of this model are the acquired coefficients of two variables, namely “ECO membership” and “Economic and Trade Freedom of Importer”. At first, we expected that for importer, being a member of ECO would increase the amount of trade with iran. Surprisingly, this is not what we see in a model. In fact, as ECO has not achieved any tangible success in increasing trade between its members, eastern Asian Muslim countries has become an important trade partner for iranians. This result is compatible with other pieces of researches about ECO. “Economic and Trade Freedom... 

    Relay-assisted Multiple-input Multiple-output Underwater Wireless Optical Communication Systems

    , M.Sc. Thesis Sharif University of Technology Jamali, Mohammad Vahid (Author) ; Salehi, Javad (Supervisor)
    Abstract
    Today’s growing interest to the underwater explorations and navigations demands to design appropriate underwater communication methods and systems. However, radio frequencies which are widely being used in free space communications, can’t be a good candidate for underwater wireless communications, due to their sever attenuation in water. On the other hand, underwater acoustic communication has been widely studied and implemented in the past decades, inspired by suitable propagation of acoustic waves through the underwater medium. Nevertheless, acoustic communication systems have limited bandwidth, lower propagation speed and lower security than optical counterparts, which suggests underwater... 

    Mobility-Aware Resource Allocation in Hybrid Visible Light Communication and 5G Radio Access Technologies Networks

    , M.Sc. Thesis Sharif University of Technology Dastgheib, Mohammad Amir (Author) ; Salehi, Javad (Supervisor)
    Abstract
    Visible light communication (VLC) uses huge license-free spectral bandwidth of visible light for high-speed wireless communication. Since each VLC access point covers a small area, handovers of mobile users are inevitable. In order to deal with these handovers, developing fast and effective resource allocation algorithms is a challenge. this paper introduces the problem of mobility-aware optimization of resources in hybrid VLC and 5G radio access technologies networks using the T-step look-ahead policy and employing the notion of handover efficiency. It is shown that the handover efficiency can correlate the overall performance of the network with future actions based on the mobility of... 

    Introducing a Numerical Method for Estimating Median Crack Depth during Machining on Optical Glasses

    , Ph.D. Dissertation Sharif University of Technology Asqari, Mohammad Amin (Author) ; Akbari, Javad (Supervisor)
    Abstract
    In present research, a cohesive based finite element model has been introduced to estimate median crack depth during mechanical machining on optical glasses. Development of the machining numerical model has been initiated by investigating the indentation process. Experimental results of this step have been calibrated primary numerical model which has been used in the scratch process. Due to differences between the scratch mechanism and indentation one, mathematical bases fracture formulas and cohesive relations have been developed. After extracting primary result, using them in the scratch model and developing the primary model, ultimately numerical model has been evolved to an abstract... 

    Growth Decomposition and Estimation of Investment-Specific Technological Change in Iran’s Industry

    , M.Sc. Thesis Sharif University of Technology Hosseini Jebeli, Hossein (Author) ; Nili, Massoud (Supervisor) ; Abedini, Javad (Co-Advisor)
    Abstract
    The aim of this research was estimation of investment-specific technological change, using industrial database which is published annually by Bureau of Statistics of Iran. Investment-specific technological change is the quality improvement of investment in capital goods during the time. Before estimation of this rate, production function (regarding 130 industrial activities and during 14 years, 1994-2007) was estimated. All industries classified in 4 groups based on the level of technology used in them. Then factor’s production elasticities were compared between different groups of industries. The results showed that in high-tech industries the elasticities of skilled workers, import and... 

    Production of Uranium Dioxide Nano Powder With Hydrothermal Method in Supercritical Water Reactor

    , M.Sc. Thesis Sharif University of Technology Golzary, Abooali (Author) ; Outokesh, Mohammad (Supervisor) ; Ahmadi, Javad (Supervisor) ; Karimi Sabet, Javad (Co-Advisor)
    Abstract
    Hydrothermal supercritical method is one of the most suitable methods for metal oxide nano powder, ceramics and mineral catalyst synthesis. Metal oxides nanopowder in its pure or mixed form has wide potential application as chemical industrial catalyst, hot Superconductors, magnetic material, gas sensors and car catalyst convertors. One of the most important metal oxides aspects of application is uranium oxide as nuclear reactor fuel is used. In addition, UO2 is selective catalyst for converting methane to methanol process and Decomposition of organic Chlorine material. In Supercritical hydrothermal method done in high pressure reactor with critical to fluid, is new method for the... 

    Lithium Isotopes Separation by Electrolysis Amalgam by a Continuous Method

    , M.Sc. Thesis Sharif University of Technology Kowsari, Mohammad Reza (Author) ; Outokesh, Mohammad (Supervisor) ; Ahmadi, Javad (Co-Advisor)
    Abstract
    Lithium has 9 isotopes which two isotopes are stable and remaining isotopes are unstable and have half-life. Lithium stable isotopes include 6Li and 7Li that their abundance is 7.53% and 92.47% respectively. Importance of lighter lithium isotope appears for its small cross section against thermal neutron and producing fusion reactors fuel in nuclear industries. Thermal neutron absorption cross section for 6Li and 7Li are 950 barn and 37 mbarn respectively. Interesting of these isotopes in nuclear industry is due to the large difference in the absorption cross section.6Li compounds implied for tritium producing in coat of nuclear fusion reactor with DT fuel. Following tritium is used in... 

    Hilbert’s Program

    , M.Sc. Thesis Sharif University of Technology Hosseini, Mohammad Erfan (Author) ; Ardeshir, Mohammad (Supervisor)
    Abstract
    In this thesis, we provide a comprehensive overview of the efforts made towards achieving the goals of Hilbert’s program, and evaluate how successful They are. We begin by discussing Gödel’s incompleteness theorems, and then as a first attempt we present a brief presentation of Gentzen’s consistency theorem. Subsequently, various research fields that branched out from these initial efforts are explored, encompassing the application of the Omega-Rule, reverse mathematics, and self-verifying systems. Furthermore, we present the concept of “Almost Finitistic Consistency” as an alternative approach within Hilbert’s program. In conclusion, a thorough assessment of the success of Hilbert’s program... 

    Design, Analysis and Manufacturing of Gas Foil Bearing

    , M.Sc. Thesis Sharif University of Technology Majidi, Mohammad Hassan (Author) ; Akbari, Javad (Supervisor) ; Movahhedy, Mohammad Reza (Supervisor)
    Abstract
    Foil gas bearings are compliant surface, self-acting hydrodynamic bearings that use ambient gas as their working fluid. They do not require external pressurization and are typically constructed from several layers of sheet metal foils. In high-speed, high-temperature applications the GFB’s have the advantage of developing higher load capacities than with fixed geometry gas bearings. Since GFB’s have a complex structure consisting of a spring-like substructure with an overlying flexible surface, there exists a great variety of permutations on any given design. At current work presents a 1D model for GFB with couple solving Reynolds and Euler-Bernoulli beam equation. This mean top foil assume to... 

    A Study on Automatic and Early Detection of Lameness in Dairy Cattle

    , M.Sc. Thesis Sharif University of Technology Honarvar Mahjoobin, Mohammad Hadi (Author) ; Akbari, Javad (Supervisor)
    Abstract
    Lameness in dairy cattle is a crucial welfare issue in dairy industry, and over the years scientists are attempting to present a detection method. In recent years it is attracting more attention to make the identification and discrimination of sounds and lames systematic and automatic. Right now, the most hopeful results have been obtained through the measurement of Ground Reaction Forces (GRF) of hooves, and analysis of load distribution between four legs, which seems applicable for wide use in dairy industry. However, the accuracy, validity, and reliability of discrimination is still far from an acceptable point, that is because of a great lack in understanding quantitative effects of the... 

    Boron Isotope Separation by Distillation of BF3-(C2H5)2O Complex

    , M.Sc. Thesis Sharif University of Technology montazeri, Meysam (Author) ; Otukesh, Mohammad (Supervisor) ; Ahmadi, Javad (Supervisor)
    Abstract
    Natural boron consists of two stable isotopes, mass 10 (19.3%) and mass 11 (80.7%). 10B isotope has a large thermal neutron capture cross-section and it therefore, used widely in such aspects as modern industry, military equipment, medical science and so on. specially the demand of atomic energy industry for the boron isotope is increased severely. So the separation of 10B from natural boron has received very wide attention at present. There are many kinds of methods on the boron isotopes separation, such as chemical exchange reaction and distillation in boron trifluoride method, ion exchange in boric acid solution method, counter current recycle membrane cascades in boron trifluoride... 

    The Synthesis and Characterization of Nano Zeolitic Molecular Sieve for Separation of 133Xe from 85Kr

    , Ph.D. Dissertation Sharif University of Technology Charkhi, Amir (Author) ; Kazemeini, Mohammad (Supervisor) ; Ahmadi, Javad (Supervisor)
    Abstract
    In this study the feasibility of xenon separation from xenon-krypton mixture was investigated by utilizing of the chromatographic column filled with nano and micron sized NaY zeolite. For this purpose the nano NaY with the yield of 100% related to Al2O3 and the average size of 98.6 nm was synthesized through the clear solution method with the mid-adding of NaOH. Furthermore, a novel method for granulation of nano zeolite was developed by utilizing sodium alginate as an external template. In this method the production of uniform spherical granules with the different sizes in the range of several milimiteres to 100 µm was easily performed. Moreover, the results showed that the adding of... 

    Separation of Boron Isotopes by Distillation of (CH3)2O-BF3 Complex

    , M.Sc. Thesis Sharif University of Technology abdollahi, Mojtaba (Author) ; Outokesh, Mohammad (Supervisor) ; Ahmadi, Javad (Supervisor)
    Abstract
    Natural boron includes two stable isotopes 10B and 11B with 19.3 and 80.7 weight percent respectivley.10B isotope has a high thermal neutron absorption cross section. So isotope 10B material is suitable for making atomic reactor control rods. Other and even more important applications of 10B are in disclosing neutrons in order to measure neutron reactors fluxes and also are in nuclear physics laboratories and medical radiation. This isotope also is used in the pharmaceutical and the military industries. There are several methods for separating boron isotopes. Among the distillation methods, thermal diffusion of BF3, distillation of BF3, distillation of methyl borate, boric acid distillation... 

    Using Game Theory to Battle Jammer in Control Channel of Ad-hoc Cognitive Radio Networks

    , M.Sc. Thesis Sharif University of Technology Golzari Oskoui, Mohammad Reza (Author) ; Salehi, Javad (Supervisor)
    Abstract
    Due to both dynamic and opportunistic spectrum access, Cognitive radio networks is a promising solution for spectrum scarcity problem. In cognitive radio networks, users need to have a control channels in order to cooperate for sharing the sensing information, channel sharing and etc. In Ad-hoc cognitive radio networks because of the absence of infrastructure and central nodes, every user runs a distributed algorithm to create a common control channel. If the control channel gets jammed, network’s performance degrades dramatically, therefore the jammer’s target in cognitive radio networks is the control channels to disturb the networks’ performance. The traditional solution to confront... 

    Synthesis and Fuctionalization of Graphene oxide for Thorium Adsorption

    , M.Sc. Thesis Sharif University of Technology Doram, Amir (Author) ; Outokesh , Mohammad (Supervisor) ; Ahmadi, Javad (Supervisor)
    Abstract
    In this work, graphene oxide (GO) and Amino ethyl phosphonic acid (AEPA) functionalized graphene were synthesized using chemical method. In addition, reduced graphene was prepared by chemical and supercritical methods. Physical, chemical, morphological properties of as-synthesized materials were investigate using XRD, FTIR, RAMAN, UV, TEM, TGA, and BET. Thickness of monolayer GO which synthesized using Hummer’s method was evaluated 1 nm using AFM. FTIR and CHN results were affirmed the presence of AMPA onto graphene nanosheets. Adsorption properties of functionalized graphene for Th ions from aqueous solution was examined. Isotherm adsorption results demonstrated that maximum adsorption...