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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
|---|---|---|---|---|---|---|---|
| 1 | مقاله | Gamma irradiated electro-conductive polylactic acid/polyaniline nanofibers | Ashraf, S. S. | Elsevier Ltd, | 2020 |
Electroconductive.
Gamma ray. Polyaniline nanoparticles. Polylactic acid. Wettability. Electric conductivity. Electrospinning. Gamma rays. Hydrophilicity. Irradiation. Morphology. Nanoparticles. Polyaniline. Polyesters. Polymeric implants. Tensile strength. Wetting. Electrospinning process. Electrospun nanofibers. Interfacial interaction. Mechanical and electrical properties. Mechanical and thermal properties. Poly lactic acid. Nanofibers. |
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| 2 | مقاله | Effect of physico-chemical properties of nanoparticles on their intracellular uptake | Sabourian, P. | MDPI AG, | 2020 |
Active/passive transport.
Cellular uptake. Intracellular delivery. Nanoparticles. Physico-chemical properties. Caveolin. Clathrin. Ion pump. Ligand. Nanoparticle. Protein corona. Active transport. Electricity. Exocytosis. Geometry. Hydrophilicity. Hydrophobicity. Internalization. Intracellular transport. Ligand binding. Macropinocytosis. Nonhuman. Particle size. Passive transport. Phagocytosis. Physical chemistry. Review. Surface property. Elasticity. |
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| 3 | مقاله | Simulation analysis of MHD hybrid Cu-Al2O3/H2O nanofluid flow with heat generation through a porous media | Ali, K. | John Wiley and Sons Ltd, | 2021 |
Alumina.
Aluminum oxide. Chemical stability. Heat transfer. Laminar flow. Nanofluidics. Porous materials. Shear stress. Thermal conductivity. Flow and heat transfer. Hybrid nanoparticle. Induced magnetic fields. Mechanical resistance. Simulation analysis. Successive over relaxation. Thermal characteristics. Transfer phenomenon. Magnetohydrodynamics. |
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| 4 | مقاله | Simulation analysis of MHD hybrid Cu-Al2O3/H2O nanofluid flow with heat generation through a porous media | Ali, K. | John Wiley and Sons Ltd, | 2021 |
Alumina.
Aluminum oxide. Chemical stability. Heat transfer. Laminar flow. Nanofluidics. Porous materials. Shear stress. Thermal conductivity. Flow and heat transfer. Hybrid nanoparticle. Induced magnetic fields. Mechanical resistance. Simulation analysis. Successive over relaxation. Thermal characteristics. Transfer phenomenon. Magnetohydrodynamics. |
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| 5 | مقاله | Fabrication and characterization of biaxially electrospun collagen/alginate nanofibers, improved with Rhodotorula mucilaginosa sp. GUMS16 produced exopolysaccharides for wound healing applications | Ashraf, S. S. | Elsevier B.V, | 2022 |
Collagen.
Exopolysaccharide. Tissue engineering. Wound dressing. Carbon. Collagen nanofiber. Collagen type 1. Macrogol. Nanofiber. Nitrogen. Oxygen. Sodium alginate nanofiber. Unclassified drug. Alginic acid. Biomaterial. Fungal polysaccharide. Absorption. Animal tissue. Biocompatibility. Bovine. Cell adhesion. Cell migration. Cell proliferation. Cell viability. Contact angle. Controlled study. Cross linking. Cytotoxicity. Electrospinning. Energy dispersive X ray spectroscopy. Fourier transform infrared spectroscopy. Hydrophilicity. Nanofabrication. Nonhuman. Particle size. Rhodotorula mucilaginosa. Scanning electron microscopy. Tendon. Tensile strength. Animal. Biological dressing. Chemical phenomena. Chemistry. Mechanics. Spectroscopy. Alginates. Animals. Biocompatible Materials. Biological Dressings. Fungal Polysaccharides. Mechanical Phenomena. Nanofibers. Rhodotorula. Spectrum Analysis. Wound Healing. |
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| 6 | مقاله | Targeting reactive astrocytes by pH-responsive ligand-bonded polymeric nanoparticles in spinal cord injury | Sabourian, P. | Springer, | 2023 |
pH-responsive.
Polymeric nanoparticle. Reactive astrocyte. Spinal cord injury. Targeted delivery. |
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| 7 | مقاله | Flow and heat transfer analysis of nanofluid (cuo/water) subject to inclined magnetic field and thermal radiation: a numerical approach | Abdullah, M. | Iranian Institute of Research and Development in Chemical Industries, | 2023 |
Copper oxide.
Finite difference. Inclined magnetic field. Nanofluids. Thermal radiation. |
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| 8 | مقاله | Flow inspection of micropolar nanofluids with motile gyrotactic microorganisms across symmetric channel in porous medium by quasi-linearization technique | Ali, K. | 2024 |
Micropolar nanofluids.
Motile microbes. Thermal radiation. Bacteria. Flow of fluids. Linearization. Nanofluidics. Nonlinear equations. Ordinary differential equations. Partial differential equations. Porous materials. Reynolds number. Transport properties. Gyrotactic microorganisms. Linearization technique. Micropolar. Micropolar nanofluid. Motile microbe. Nanofluids. Porous medium. Quasi linearization. Quasi-linearization technique. Symmetric channels. Heat radiation. |
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| 9 | مقاله | Darcy–forchheimer micropolar flow of (Cu, Al2O3, and TiO2) nanomaterials-based-ethylene glycol: successive over relaxation method | Imran Shahid, M. | Taylor and Francis Ltd, | 2023 |
Aluminum oxide.
Darcy–forchheimer flow. Ethylene glycol. Micropolar nanofluid. Successive over relaxation technique. |
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| 10 | مقاله | Darcy–Forchheimer micropolar flow of (Cu, Al2O3, and TiO2) nanomaterials-based-ethylene glycol: Successive over relaxation method | Shahid, M. I. | 2024 |
Absorption spectroscopy.
Alumina. Aluminum oxide. Cell engineering. Chemical reactions. Copper compounds. Ethylene. Flow of fluids. Heat transfer. Nanofluidics. Polyols. Solar cells. Titanium dioxide. Darcy–forchheim flow. Forchheimer. Micropolar. Micropolar flows. Micropolar nanofluid. Nanofluids. Relaxation techniques. Successive over relaxation. Successive over relaxation technique. Ethylene glycol. |
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| 11 | مقاله | Fabrication and characterization of biaxially electrospun collagen/alginate nanofibers, improved with Rhodotorula mucilaginosa sp. GUMS16 produced exopolysaccharides for wound healing applications | Ashraf, S. | Elsevier B.V, | 2021 |
Collagen.
Tissue engineering. Exopolysaccharide. Wound dressing. |
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| 12 | مقاله | Thermal-exergetic behavior of triangular vortex generators through the cylindrical tubes | Pourhedayat, S. | Elsevier Ltd, | 2020 |
Exergy loss.
Friction factor. Heat exchanger. Thermal performance. Turbulator. Aspect ratio. Friction. Heat exchangers. Heat transfer. Petroleum reservoir evaluation. Vortex flow. Exergy loss. Friction factors. Thermal Performance. Triangular. Turbulators. Winglet. Tubes (components) |
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| 13 | مقاله | Novel thermal aspects of hybrid nanofluid flow comprising of manganese zinc ferrite MnZnFe2O4, nickel zinc ferrite NiZnFe2O4 and motile microorganisms | Ahmad, S. | Ain Shams University, | 2022 |
Manganese Zinc Ferrite.
Motile Microorganisms. Nickel Zinc Ferrite. Activation energy. Ferrite. Flow of fluids. Manganese. Manganese compounds. Microorganisms. Nanofluidics. Nickel. Nickel compounds. Thermal conductivity. Zinc. Zinc compounds. Forchheimer. Gyrotactic microorganisms. Hybrid nanofluid. Manganese-zinc ferrites. Motile micro-organisms. Nanofluid flow. Nanofluids. Nickel Zinc ferrites. Thermal aspects. Thermal systems. Iron compounds. |
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| 14 | مقاله | Thermal attributes of hybrid (MWCNT-NiZnFe2O4) nanofluid flow having motile microbes and activation energy: A computational approach | Ali, K. | Elsevier Ltd, | 2023 |
Activation energy.
Darcy-Forchheimer medium. Motile microorganisms. Multi-wall carbon nanotubes. Nickel zinc ferrites. |
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| 15 | مقاله | Mhd flow of cu-al2o3/water hybrid nanofluid through a porous media | Ahmad, S. | Begell House Inc, | 2021 |
Boundary conditions.
Chemical stability. Heat transfer. Mass transfer. Nanofluidics. Ordinary differential equations. Porous materials. Shear stress. Thermal conductivity. Heat and mass transfer. Hybrid nanoparticle. Mass transfer rate. Mechanical resistance. Partial Differential Equations (PDEs) Similarity transformation. Successive over relaxation. System of differential equations. Magnetohydrodynamics. |
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| 16 | مقاله | Mhd flow of cu-al2o3/water hybrid nanofluid through a porous media | Ahmad, S. | Begell House Inc, | 2021 |
Boundary conditions.
Chemical stability. Heat transfer. Mass transfer. Nanofluidics. Ordinary differential equations. Porous materials. Shear stress. Thermal conductivity. Heat and mass transfer. Hybrid nanoparticle. Mass transfer rate. Mechanical resistance. Partial Differential Equations (PDEs) Similarity transformation. Successive over relaxation. System of differential equations. Magnetohydrodynamics. |
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| 17 | مقاله | Casson fluid flow with heat and mass transfer in a channel using the differential transform method | Yasmin, A. | University of Kuwait, | 2022 |
Casson fluid.
Channel flow. Differential transform method (DTM) Quasi-linearization method (QLM) Shrinking wall. |
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| 18 | مقاله | Investigating deep neural network architecture and feature extraction designs for sensor-based human activity recognition | Ahangarani, D. | Institute of Electrical and Electronics Engineers Inc, | 2023 |
contrastive learning.
deep learning. human activity recognition. pretraining. sensors. |
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| 19 | پایان نامه | به کارگیری روش مونت کارلو برای محاسبات نویز نوترونی در حوزه فرکانس A Monte Carlo Method for Neutron Noise Calculation in the Frequency Domain | قربانی اشرف، مهدی Ghorbani Ashraf, Mahdi | صنعتی شریف | 1399 | نویز نوترونی Neutron Noise / روش مونت کارلو Monte Carlo Method / حوزه فرکانسی Frequency Domain / نظریه ترانسپورت Transport Theory / روش تفاضل محدود Finite Difference Method |
46-53789
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| 20 | مقاله | Structural and dielectric properties of Sr4Zn2Fe36O60 U-type hexaferrites with optimized Gd contents and sintered by a two-step process | Idrees, M. | Elsevier Ltd, | 2022 |
Dielectric properties.
Ferrites. FTIR. Photo luminance. Raman spectra. XRD. Absorption spectroscopy. Crystallite size. Dielectric losses. Electric fields. Ferrite. Ferrites. Gadolinium. Iron compounds. Lattice constants. Raman scattering. Sintering. Sol-gels. X ray diffraction. Zinc compounds. Dielectric parameters. Dielectrics property. FTIR. Gadolinia. Gd contents. Photo luminance. Synthesised. Two-step process. U-type hexaferrite. XRD. Fourier transform infrared spectroscopy. |
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