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dehghani-ashkezari--h
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| # | Type | Title | Author | Publisher | Pub. Year | Subjects | Call Number |
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| 1 | پایان نامه |
شبیه سازی بلادرنگ گیرش طحال به منظور استفاده در آموزش مجازی جراحی لاپاراسکوپی
Real Time Simulation of Grasping Procedure of Large Internal Organs during Laparoscopic Surgery |
دهقانی اشکذری، حسین Dehghani Ashkezari, Hossein | صنعتی شریف | 1391 | زمان حقیقی Real Time / تغییر شکل بزرگ Large Deformation / بافت های نرم Soft Tissues / جراحی لاپاراسکوپی Laparoscopic Surgery / مدل سازی Modeling / مدل جرم - فنر - میراگر Mass-Spring-Damper Model |
08-43267
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| 2 | مقاله | Real time simulation of grasping procedure of large internal organs during laparoscopic surgery | Dehghani Ashkezari, H. | 2012 |
Biological model.
Equipment. Methodology. Algorithms. Computer Simulation. Humans. Laparoscopy. Models, Biological. Spleen. |
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| 3 | مقاله | Real time simulation of grasping procedure of large internal organs during laparoscopic surgery | Dehghani Ashkezari, H. | 2012 |
Coefficients of friction.
Collision detection algorithm. Contact forces. Contact points. Internal organs. Laparoscopic surgery. Large deformations. Mass-Spring-Damper Models. Nonlinear visco-elastic. Pull force. Real time. Real time simulations. Spleen tissues. Stress relaxation behavior. Surgical procedures. Surgical simulation systems. Tangential components. Training process. Deformation. Laparoscopy. Transients. Virtual reality. Tissue. |
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| 4 | مقاله | Integrating hydrodynamic and acoustic cell separation in a hybrid microfluidic device: a numerical analysis | Ashkezari, A. H. K. | Springer, | 2022 |
Cells.
Cytology. Fluidic devices. Fractionation. Hybrid systems. Liquid chromatography. Microfluidics. Numerical methods. Biomedical research. Cell separation. Clinical research. Critical issues. Microfluidic method. Microfluidics devices. Numerical investigations. Pinched-flow fractionations. Separation process. Target cells. Clinical research. |
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| 5 | مقاله | A plasmonic gold nanofilm-based microfluidic chip for rapid and inexpensive droplet-based photonic PCR | Jalili, A. | Nature Research, | 2021 |
Polymerase chain reaction (PCR)
Point-of-care (POC) Droplet-based photonic PCR (dpPCR) system. Polydimethylsiloxane. Microfluidic chips. Light-emitting diodes (LEDs) Alcohol oxidase (AOX) |
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| 6 | مقاله | Photocatalytic degradation of vancomycin using titanium dioxide and optimization by central composite design | Dehghani, F. | Springer Science and Business Media Deutschland GmbH, | 2022 |
Advanced oxidation process.
Antibiotic. Aqueous solution. Photocatalysis. Removal efficiency. Response surface methodology. Catalysts. Design of experiments. Efficiency. Irradiation. Linear regression. Photocatalytic activity. Photodegradation. Scanning electron microscopy. Surface properties. Wastewater treatment. Advanced Oxidation Processes. Central composite designs. Optimisations. Photocatalytic degradation. Removal efficiencies. Response-surface methodology. Synthesised. Vancomycin. Wastewater treatment process. ]+ catalyst. Titanium dioxide. Antibiotics. Composite. Degradation. Optimization. |
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| 7 | مقاله | Vancomycin removal using TiO2–clinoptilolite/UV in aqueous media and optimisation using response surface methodology | Dehghani, F. | Taylor and Francis Ltd, | 2022 |
central composite design.
clinoptilolite. Antibiotics. Degradation. Groundwater. High performance liquid chromatography. Organic carbon. Photocatalytic activity. Potable water. Surface properties. Surface waters. Wastewater treatment. Zeolites. Antibiotic degradation. Aqueous media. Central composite designs. Clinoptilolites. Independent variables. Optimal conditions. Optimisations. Reactor volume. Response-surface methodology. Vancomycin. Titanium dioxide. |
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| 8 | مقاله | Vancomycin removal using TiO2–clinoptilolite/UV in aqueous media and optimisation using response surface methodology | Dehghani, F. | 2024 |
Central composite design.
Clinoptilolite. Antibiotics. Degradation. Groundwater. High performance liquid chromatography. Organic carbon. Photocatalytic activity. Potable water. Surface properties. Surface waters. Wastewater treatment. Zeolites. Antibiotic degradation. Aqueous media. Central composite designs. Clinoptilolites. Independent variables. Optimal conditions. Optimisations. Reactor volume. Response-surface methodology. Vancomycin. Titanium dioxide. |
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| 9 | پایان نامه |
منشا پتانسیل کوانتومی: آیا پیشنهادهای ارائه شده موفق بوده اند؟
Origin of Quantum Potential: Have the Presented Proposals Been Successful? |
طالبیان اشکذری، علیرضا Talebian Ashkezari, Alireza | صنعتی شریف | 1390 | مکانیک کوانتومی Quantum Mechanics / پتانسیل کوانتومی Quantum Potential / معادله هدایت Guiding Equation / نظریه دوبروی - بوهم de Broglie-Bohm Theory / معادله هامیلتون - ژاکوبی اصلاح شده Modified Hamilton-Jacobi Equation |
04-42528
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| 10 | مقاله | Flexural instability of viscoelastic spinning cylinders partially filled with liquid | Dehghani Firouz Abadi, R. | 2009 |
Fluid-structure interaction.
2-d models. Coupled field equations. Cylinder axis. Cylinder walls. Flexural motions. Fluid forces. Fluid motions. Free vibration characteristics. Free vibrations. Governing equations. Hamilton principles. Instability. Instability conditions. Inviscid flows. Laplace domains. Lateral accelerations. Linearized navier-stokes equations. Partially filled cylinder. Spinning frequency. Stability analysis. Stability boundaries. Stability conditions. Structural motions. Cylinders (shapes) Elasticity. Fluid dynamics. Fluid structure interaction. Fluids. Liquid sloshing. Stability. Viscoelasticity. Viscosity. Viscous flow. Navier Stokes equations. |
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| 11 | مقاله | An analytic approach used to design a low power and low phase noise CMOS LC oscillator | Dehghani, R. | 2005 |
Acoustic noise.
CMOS integrated circuits. Computer simulation. Electric network analysis. Energy utilization. CMOS technology. Low power. Nonlinear oscillators. Phase noise. Oscillators (electronic) |
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| 12 | مقاله | δ M formalism: a new approach to cosmological perturbation theory in anisotropic inflation | Talebian Ashkezari, A. | Institute of Physics Publishing, | 2018 |
Cosmological perturbation theory.
Ination. |
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| 13 | مقاله | Extract Non-Line-of-Sight state of base stations and error mitigation technique for wireless localization in micro-cell networks | Dehghani, H. L. | 2012 |
Cellular networks.
Cellular network. Mean location error. NLOS. TOA. Wireless localization. Algorithms. Base stations. Cellular neural networks. Errors. Tracking (position) |
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| 14 | مقاله | Non-line-of-sight error mitigation technique for wireless localization in micro-cell networks | Dehghani, H. L. | 2011 |
Cellular networks.
Cellular network. Correction algorithms. Error mitigation. Metropolitan area. Micro cell. Network-based. NLOS. NLOS error. Non-line-of-sight. Non-line-of-sight propagation. Novel algorithm. Wireless localization. Wireless localization systems. Algorithms. Cellular neural networks. Errors. Metropolitan area networks. Wireless networks. |
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| 15 | مقاله | Reduced order modeling of liquid sloshing in 3D tanks using boundary element method | Dehghani Firouzabadi, R. | 2009 |
Equations of motion.
Fluids. Liquid sloshing. Modal analysis. ROM. Tanks (containers) Three dimensional. Analysis techniques. Analytical results. Boundary element formulations. Boundary element models. Cylindrical tanks. Eigen-analysis. Eigenvectors. Fluid motions. Free surfaces. Governing equations. Lateral motions. Liquid free surfaces. Mode shapes. Reduced order modeling. Reduced order modeling techniques. Reduced-order models. Sloshing. Sloshing frequencies. Velocity potentials. Boundary element method. |
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| 16 | مقاله | Effect of thermomechanical processing on forming limit diagrams predicted by neural networks | Dehghani, K. | 2008 |
Annealing.
Backpropagation. Carbon. Carbon steel. Cold rolling. Forecasting. Forming. Image classification. Network protocols. Plastic flow. Sensor networks. Steel. Strain hardening. Superconducting wire. Thermomechanical treatment. Vegetation. Yield stress. Forming limit diagrams. Low carbon steels. Manufacturing process. Materials manufacturing modeling. Neural network modeling. Thermomechanical processing. Neural networks. |
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| 17 | مقاله | Nonlinear dynamics of extensible viscoelastic cantilevered pipes conveying pulsatile flow with an end nozzle | Askarian, A. R. | Elsevier Ltd, | 2017 |
Bifurcation.
Extensible pipe. Nonlinear vibration. Pulsating flow. Aspect ratio. Bifurcation (mathematics) Dynamics. Equations of motion. Galerkin methods. Geometry. Gravitation. Nonlinear equations. Nozzles. Power spectral density. Spectral density. Adams algorithms. Adaptive time step. Case-studies. Hamilton's principle. Non-linear vibrations. Phase plane. Flow of fluids. |
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| 18 | مقاله | Analytical solution of an induced fiber grating relative humidity sensor | Dehghani Sanij, M. | Springer, | 2020 |
Love’s strain potential.
Optical fiber. Photo-elastic effect. Relative humidity sensor. |
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| 19 | مقاله | Sloshing effects on supersonic flutter characteristics of a circular cylindrical shell partially filled with liquid | Zarifian, P. | John Wiley and Sons Ltd, | 2018 |
Finite element methods.
Fluid-structure interaction. Shells. Stability. Supersonic. Aerodynamic stability. Aerodynamics. Air. Computation theory. Convergence of numerical methods. Cylinders (shapes) Finite element method. Fluid structure interaction. Flutter (aerodynamics) Hydrostatic pressure. Shells (structures) Axial compression load. Circular cylindrical shells. Cylinder partially filled with liquids. Initial configuration. Liquid-filled cylinders. Sanders' shell theories. Liquid sloshing. |
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| 20 | مقاله | Hydroelastic analysis of two degree of freedom hydrofoil using a reduced-order hydrodynamic model considering unsteady partial sheet cavity flows | Alavi, S. M. | Academic Press, | 2018 |
2D hydrofoil.
Finite element method. Hydroelastic analysis. Partial sheet cavitation. Potential flow. Reduced order modeling. Angle of attack. Cavitation. Degrees of freedom (mechanics) Hydrodynamics. Hydroelasticity. Hydrofoils. Iterative methods. Modal analysis. Elastic axis locations. Hydro-elastic analysis. Hydrodynamic systems. Reduced order models. Sheet cavitation. Two degrees of freedom. Two-degree of freedom. Velocity fluctuations. |
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