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    Novel thermal aspects of hybrid nanofluid flow comprising of manganese zinc ferrite MnZnFe2O4, nickel zinc ferrite NiZnFe2O4 and motile microorganisms

    , Article Ain Shams Engineering Journal ; Volume 13, Issue 5 , 2022 ; 20904479 (ISSN) Ahmad, S ; Akhter, S ; Imran Shahid, M ; Ali, K ; Akhtar, M ; Ashraf, M ; Sharif University of Technology
    Ain Shams University  2022
    Abstract
    An enhancement in heat transfer due to nanofluids is essentially required in various thermal systems. Hybrid nanofluids possess high thermal conductivity and, have ability to embellish and enhance the thermal strength of common fluids. Our concern in this paper is to examine the innovative attributes of hybrid nanofluids like Manganese zinc ferrite (MnZnFe2O4) and Nickel zinc ferrite (NiZnFe2O4) in the bio-convective flow of motile gyrotactic microorganisms subject to Darcy Forchheimer medium. The effect of activation energy has also been taken into account. Mathematical treatment is carried out via MATLAB software. The use of MnZnFe2O4 - NiZnFe2O4/H2O exhibits improved thermal... 

    Groundwater age and origin and its relation with anthropogenic and climatic factors

    , Article Water (Switzerland) ; Volume 16, Issue 2 , 2024 ; 20734441 (ISSN) Iqbal, U ; Nabi, G ; Iqbal, M ; Masood, M ; Arshed, A. B ; Saifullah, M ; Shahid, M ; Sharif University of Technology
    2024
    Abstract
    Groundwater plays a major role in addressing the worldwide problem of water scarcity and food security. With a growing population and increasing urbanization, there is a rising demand for groundwater to meet agricultural and domestic water needs. A variety of advanced approaches are necessary to sustain groundwater management. This study investigated the age and origin of groundwater, as well as its relationship with anthropogenic and climatic factors. Stable isotopes were used, namely oxygen-18 (18O) and deuterium (2H) for the estimation of groundwater origin and radioactive isotopes of Tritium (3H) for the estimation of its age. The investigation of stable isotopes revealed that the... 

    Darcy–Forchheimer micropolar flow of (Cu, Al2O3, and TiO2) nanomaterials-based-ethylene glycol: Successive over relaxation method

    , Article Numerical Heat Transfer; Part A: Applications ; Volume 85, Issue 20 , 2024 , Pages 3412-3430 ; 10407782 (ISSN) Shahid, M. I ; Ahmad, S ; Akhter, S ; Duraihem, F. Z ; Ashraf, M ; Jamsed, W ; Sharif University of Technology
    2024
    Abstract
    Nanofluids have a crucial rule in augmentation of the heat transfer in several energy systems. Also, the whirling constituents of micropolar fluid have many practical employments in modern engineering and technology. The concerned work investigates the novel features of micropolar and nanoparticles’ flow over a stretching cone under the Darcy–Forchheimer and chemical reaction effects. Our analysis covers the features of three types (Cu, Al2O3, and TiO2) on ethylene glycol-based nanofluids. The pertinence and importance of Darcy–Forchheimer flows can be found in large spectrum of engineering mechanisms like solar absorption and filtration, drainage problems, solar cells, ground stream... 

    Regularity of Area-Minimizing Currents

    , M.Sc. Thesis Sharif University of Technology Shahid Kalhori, Mohsen (Author) ; Safdari, Mohammad (Supervisor)
    Abstract
    This research introduces temperature measurement by a non-intrusive pyrometric method of the ratio of two colors of soot. For pyrometry, the spectral sensitivity of the Nikon D7100 camera was obtained by developing a neural network based on the results of photographing colored papers and their spectrum, and this camera was used for temperature measurement. Based on the dependence of soot radiation on temperature and the spectral sensitivity of the camera, a calibration chart has been extracted on the ratio of the green channel to the red channel of the camera with the soot temperature, which is used to produce the temperature contour using the flame image. The temperature contour of... 

    Highly efficient absorber with enhanced magnetoelectric properties based on Y, Gd, and Pr doped NMZ nanoferrites

    , Article Journal of Magnetism and Magnetic Materials ; Volume 537 , 2021 ; 03048853 (ISSN) Akhtar, M.N ; Yousaf, M ; Lu, Y ; Baqir, M. A ; Azhar Khan, M ; Ahmad, M ; Sarosh, A ; Shahid Nazir, M ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    NMZ ferrites doped with rare earth having spinel composition Ni0.5Mn0.3Zn0.2X0.02Fe1.98O4, whereas X = Y, Pr and Gd were synthesized by sol gel auto-ignition method. XRD, FESEM, VSM and VNA were used to determine the phase, microstructural, magnetic and electromagnetic properties of rare earths doped NMZ ferrite. XRD analysis confirms the single phase of the rare earths doped NMZ ferrite. FESEM images shows Pr doped NMZ ferrite has less agglomerations and more porous structure as compared to NMZ and other rare earths doped NMZ ferrites. Magnetic analysis shows the enhancement in saturation magnetization and remanence with the doping of Y, Pr and Gd in NMZ ferrite. Dielectric properties were... 

    Highly efficient absorber with enhanced magnetoelectric properties based on Y, Gd, and Pr doped NMZ nanoferrites

    , Article Journal of Magnetism and Magnetic Materials ; Volume 537 , 2021 ; 03048853 (ISSN) Akhtar, M. N ; Yousaf, M ; Lu, Y ; Baqir, M. A ; Azhar Khan, M ; Ahmad, M ; Sarosh, A ; Shahid Nazir, M ; Sharif University of Technology
    Elsevier B.V  2021
    Abstract
    NMZ ferrites doped with rare earth having spinel composition Ni0.5Mn0.3Zn0.2X0.02Fe1.98O4, whereas X = Y, Pr and Gd were synthesized by sol gel auto-ignition method. XRD, FESEM, VSM and VNA were used to determine the phase, microstructural, magnetic and electromagnetic properties of rare earths doped NMZ ferrite. XRD analysis confirms the single phase of the rare earths doped NMZ ferrite. FESEM images shows Pr doped NMZ ferrite has less agglomerations and more porous structure as compared to NMZ and other rare earths doped NMZ ferrites. Magnetic analysis shows the enhancement in saturation magnetization and remanence with the doping of Y, Pr and Gd in NMZ ferrite. Dielectric properties were... 

    Simplified model predictive current control of four-level nested neutral point clamped converter

    , Article Sustainability (Switzerland) ; Volume 15, Issue 2 , 2023 ; 20711050 (ISSN) Atif, R ; Hassan, M ; Bilal Shahid, M ; Mudassir Munir, H ; Saeed, M. S. R ; Shahzad, M ; Isik, S ; Alharbi, M ; Sharif University of Technology
    Multidisciplinary Digital Publishing Institute (MDPI)  2023
    Abstract
    Model predictive control (MPC) is an efficient and growing approach to power converter control. This paper proposes an improved and simplified model predictive current control (MPCC) technique for a four-level nested neutral point clamped (4L-NNPC) converter. Conventional MPCC exhibits better performances as compared to the conventional linear control system such as fast dynamic response, consideration of the system constraints, and nonlinearities. However, the application of the conventional model predictive current control (MPCC) approach on complex systems provokes a significant number of calculations, which is the main hurdle to its practical implementation. To fix this flaw, this paper... 

    Darcy–forchheimer micropolar flow of (Cu, Al2O3, and TiO2) nanomaterials-based-ethylene glycol: successive over relaxation method

    , Article Numerical Heat Transfer; Part A: Applications ; 2023 ; 10407782 (ISSN) Imran Shahid, M ; Ahmad, S ; Akhter, S ; Duraihem, F. Z ; Ashraf, M ; Jamsed, W ; Sharif University of Technology
    Taylor and Francis Ltd  2023
    Abstract
    Nanofluids have a crucial rule in augmentation of the heat transfer in several energy systems. Also, the whirling constituents of micropolar fluid have many practical employments in modern engineering and technology. The concerned work investigates the novel features of micropolar and nanoparticles’ flow over a stretching cone under the Darcy–Forchheimer and chemical reaction effects. Our analysis covers the features of three types (Cu, Al2O3, and TiO2) on ethylene glycol-based nanofluids. The pertinence and importance of Darcy–Forchheimer flows can be found in large spectrum of engineering mechanisms like solar absorption and filtration, drainage problems, solar cells, ground stream... 

    Modeling of sorption enhanced steam methane reforming in an adiabatic packed bed reactor using various CO2 sorbents

    , Article Journal of Environmental Chemical Engineering ; Volume 9, Issue 5 , 2021 ; 22133437 (ISSN) Shahid, M. M ; Abbas, S. Z ; Maqbool, F ; Ramirez Solis, S ; Dupont, V ; Mahmud, T ; Sharif University of Technology
    Elsevier Ltd  2021
    Abstract
    A 1-D heterogeneous model of sorption-enhanced steam methane reforming (SE-SMR) process in a packed bed reactor consisting of nickel catalyst well mixed with CO2 sorbent particles is investigated for three types of common sorbents. The performance of SE-SMR process is studied under low medium pressure conditions (3 – 11 bar) to find the optimum operating conditions. Optimal CaO sorption corresponding to 82% CH4 conversion and 85% H2 purity is found at 900 K, 3 bar, 3.5 kgm−2s−1 and S/C of 3.0. In contrast, lithium zirconate (LZC) and hydrotalcite (HTC) sorbents exhibited best sorptions under the operating conditions of 773 K, 5 bar and S/C of 3 with CH4 conversion of 91.3% and 55.2%, and H2... 

    Synthesis of tin oxide nanoparticles in order to study its properties

    , Article Digest Journal of Nanomaterials and Biostructures ; Volume 16, Issue 1 , 2021 , Pages 41-49 ; 18423582 (ISSN) Shahzad, N ; Ali, N ; Shahid, A ; Khan, S ; Alrobei, H ; Sharif University of Technology
    S.C. Virtual Company of Phisics S.R.L  2021
    Abstract
    Pure tin oxide nanoparticles ware synthesized via Co-precipitation method. The as-synthesized nanoparticles were characterized by Fourier transform infrared spectroscopy (FTIR), thermo-gravimetric analysis (TGA), X-ray diffraction (XRD) and diffuse reflectance spectroscopy (DRS). X-ray diffraction shows that tetrahedral shaped nanoparticles of crystallite size 47.35nm were prepared successfully. The crystallinity was established due the reduction in distortion ratio and dislocation density. The value of strain showed that the nanoparticles fabricated were of high stability. The direct and indirect optical band gap of as-synthesized SnO2 nanoparticles were determined from the reflectance... 

    Polymeric pH-responsive metal-supramolecular nanoparticles for synergistic chemo-photothermal therapy

    , Article Langmuir ; Volume 40, Issue 32 , 2024 , Pages 16813-16823 ; 07437463 (ISSN) Ruan, B ; Zheng, Z ; Basak Kayitmazer, A ; Ahmad, A ; Ramzan, N ; Shahid Rafique, M ; Wang, J ; Xu, Y ; Sharif University of Technology
    2024
    Abstract
    Stimuli-responsive drug delivery carriers, particularly those exhibiting pH sensitivity, have attracted significant scholarly interest due to their promising potential in anticancer therapeutic applications. This phenomenon can primarily be ascribed to the inherently acidic nature of tumor microenvironments. However, pH-responsive carriers frequently require the incorporation of functional groups or materials sensitive to pH changes. Given the pH-sensitive characteristics of metal coordination with natural small-molecule drugs, organometallic supramolecules present a facile and effective strategy for integrating pH-responsive behavior into these systems. Meanwhile, utilizing the natural... 

    Conformal invariance and quantum aspects of matter

    , Article International Journal of Modern Physics A ; Volume 15, Issue 7 , 2000 , Pages 983-988 ; 0217751X (ISSN) Motavali, H ; Salehi, I. I ; Golshani, M ; Sharif University of Technology
    2000
    Abstract
    The vacuum sector of the Brans-Dicke theory is studied from the viewpoint of a non-conformally invariant gravitational model. We show that, this theory can be conformally symmetrized using an appropriate conformal transformation. The resulting theory allows a particle interpretation, and suggests that the quantum aspects of matter may be geometrized  

    Manipulation of structural, electronic and transport properties of hydrogen-passivated graphene atomic sheet through vacancy defects: First-principles numerical simulations based on density-functional-theory along with tight-binding approximation

    , Article Materials Research Express ; Volume 6, Issue 8 , 2019 ; 20531591 (ISSN) Sattar, A ; Irfan, M ; Iqbal, A ; Shahid, F. A ; Junaid Amjad, R ; Usman, A ; Mahmood, H ; Latif, H ; Imran, M ; Akhtar Ehsan, S ; Akhtar, M. N ; Akbar, N ; Sharif University of Technology
    Institute of Physics Publishing  2019
    Abstract
    Using the first-principles procedure of density-functional-theory within tight-binding approximation and nonequilibrium Green's function formalism, this paper reports on the impact of vacancy defects on the structural, electronic and transport properties of hydrogen-passivated graphene atomic sheet. After the introduction of vacancy defects in graphene atomic sheet passivated with hydrogen atoms, apart from increase in band gap, a suppression is noted in the intensity of transmission channels and density of states arising from the long array deformations of the graphene sheet and a corresponding shift of the Fermi level. This in turn decreases the conductance of the defected graphene atomic... 

    Wave dispersion under finite deformation

    , Article Wave Motion ; Volume 50, Issue 3 , April , 2013 , Pages 374-388 ; 01652125 (ISSN) Abedinnasab, M. H ; Hussein, M. I ; Sharif University of Technology
    2013
    Abstract
    We derive exact dispersion relations for axial and flexural elastic wave motion in a rod and a beam under finite deformation. For axial motion we consider a simple rod model, and for flexural motion we employ the Euler-Bernoulli kinematic hypothesis and consider both a conventional transverse motion model and an inextensional planar motion model. The underlying formulation uses the Cauchy stress and the Green-Lagrange strain without omission of higher order terms. For all models, we consider linear constitutive relations in order to isolate the effect of finite motion. The proposed theory, however, is applicable to problems that also exhibit material nonlinearity. For the rod model, we... 

    Evaluation of the anti-cholelithiasis activity of vinegar-soaked Ficus carica fruit in adults: a randomized controlled trial

    , Article Pakistan Journal of Pharmaceutical Sciences ; Volume 37, Issue 6 , 2024 , Pages 1411-1419 ; 1011601X (ISSN) Bukhari, M ; Gull, I ; Fatima, M ; Malik, R ; ul Hasan Abid, M ; Ibrar, M ; Mukhtar, M ; Khan, I. A ; Khan, M. K ; Sharif University of Technology
    2024
    Abstract
    This study aimed to evaluate the efficacy of vinegar-soaked Ficus carica fruits (VSFCF) for managing cholelithiasis in adults. A parallel-group, single-blinded, randomized controlled trial at Noreen Nishat Welfare Hospital, Khanewal, Pakistan, was conducted from December 2023 to February 2024. Fifty adults with ultrasound-confirmed cholelithiasis were randomly assigned to receive either VSFCF (1 g/kg/day) or ursodiol (600 mg/day). Primary outcomes included gallstone size reduction, while secondary outcomes assessed symptom relief (pain, bloating, digestive discomfort) and hepatic markers. Data analysis was performed using SPSS with a significance level set at P<0.05. Results indicated a... 

    Ruddlesden-Popper phases of methylammonium-based two-dimensional perovskites with 5-Ammonium Valeric Acid AVA2MAn-1PbnI3 n+1 with n = 1, 2, and 3

    , Article Journal of Physical Chemistry Letters ; Volume 10, Issue 13 , 2019 , Pages 3543-3549 ; 19487185 (ISSN) Ashari Astani, N ; Jahanbakhshi, F ; Mladenović, M ; Alanazi, A. Q. M ; Ahmadabadi, I ; Ejtehadi, M. R ; Dar, M. I ; Grätzel, M ; Rothlisberger, U ; Sharif University of Technology
    American Chemical Society  2019
    Abstract
    5-Ammonium valeric acid (AVA) is a frequently used additive in the preparation of lead halide perovskites. However, its microscopic role as passivating, cross-linking, or templating agent is far from clear. In this work, we provide density functional theory-based structural models for the Ruddlesden-Popper (RP) phases of AVA2(CH3NH3)n-1PbnI3n+1 for n = 1, 2, and 3 and validate with experimental data on polycrystalline samples for n = 1. The structural and electronic properties of the AVA-based RP phases are compared to the ones of other linker families. In contrast to aromatic and aliphatic spacers without additional functional groups, the RP phases of AVA are characterized by the formation... 

    Modulating glucose metabolism and relieving hypoxia for enhanced Chemo/Photoimmunotherapy with photosensitizing enzymatic nanodrugs

    , Article Chemical Engineering Journal ; Volume 498 , 2024 ; 13858947 (ISSN) Zheng, Z ; Lu, S ; Wu, Y ; Basak Kayitmazer, A ; Ahmad, A ; Ramzan, N ; Shahid Rafique, M ; Yang, J ; Zhou, X ; Xu, Y ; Si, Y ; Sharif University of Technology
    2024
    Abstract
    Photoimmunotherapy by photodynamic therapy (PDT) induces immunogenic cell death (ICD), providing anti-tumor treatment in a safe, precise, minimally invasive way. However, PDT-demanded massive oxygen consumption exacerbates the hypoxia and creates an acidic tumor microenvironment (TME), leading to an anaerobic glycolysis and immune escape condition. In this study, a natural anti-tumor resveratrol (RSV) nanodrug was introduced via Fe3+ coordination flash nanoprecipitation (cFNP) for enhanced aqueous solubility to specifically downregulate the expression of Pyruvate kinase M2 (PKM2) and lactate dehydrogenase A (LDHA), reduce the glucose resorption and lactate production, tipping the cellular... 

    Experimental analysis of cavitaion effects on drag force and back pressure of circular cylinder with free turbulence

    , Article Scientia Iranica ; Volume 16, Issue 4 B , 2009 , Pages 344-353 ; 10263098 (ISSN) Gavzan, I. J ; Rad, M ; Sharif University of Technology
    2009
    Abstract
    The characteristics of a cavitation water tunnel test setup and the experiments of cavitation around a circular cylinder with free stream turbulence are presented in this paper. The Reynolds number of flow is limited in the range of 1.26 × 105 to 3 × 105 and the far upstream flow has free turbulence. Drag force, back pressure, location of cavitation inception, length of cavity and appearance of cavitation are measured or observed and their results are presented here. It was found that the cavitation effects on the boundary layer and separation of flow over the cylinder and drag force become minimum at the cavitation number of 1.94. The cavitation inception occurs in the sub-layer and at an... 

    Design and fabrication of an ubiquitous, low-cost, and wearable respiratory bio-sensor using ionic soft materials

    , Article 26th National and 4th International Iranian Conference on Biomedical Engineering, ICBME 2019, 27 November 2019 through 28 November 2019 ; 2019 , Pages 55-59 ; 9781728156637 (ISBN) Annabestani, M ; Mirzaei, I ; Esmaeili Dokht, P ; Fardmanesh, M
    Institute of Electrical and Electronics Engineers Inc  2019
    Abstract
    The respiratory system is a vital organ system which makes breathing and gas exchange possible for human's body. The loss of functionality in this system is due to either genetical problems or environmental issues like pollution or toxic gases which in many cases is inevitable. These circumstances may cause different respiratory diseases which may not be curable presently but their side effects can be partly controlled by careful and timely analysis improving the quality of patient's life. So, an appropriate device for conducting different analysis can be effective for people who suffer from respiratory diseases such as chronic obstructive pulmonary disease (COPD), asthma, occupational lung... 

    A nonlinear SDP approach for matrix rank minimization problem with applications

    , Article ICIECA 2005: International Conference on Industrial Electronics and Control Applications 2005, Quito, 29 November 2005 through 2 December 2005 ; Volume 2005 , 2005 ; 0780394194 (ISBN); 9780780394193 (ISBN) Sadati, N ; Yousefi, M. I ; Sharif University of Technology
    IEEE Computer Society  2005
    Abstract
    We consider the problem of minimizing rank of a matrix under linear and nonlinear matrix inequality constraints. This problem arises in diverse applications such as estimation, control and signal processing and it is known to be computationally NP-hard even when constraints are linear. In this paper, we first formulize the RMP as an optimization problem with linear objective and simple nonlinear semialgebraic constraints. We then proceed to solve the problem with augmented Lagrangian method known in nonlinear optimization. Despite of other heuristic and approximate methods in the subject, this method guarantees to find the global optimum in the sense that it does not depends on the choice of...