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Flow Simulation to Assess Effects of Various Parameters on Performance of a Gas Ultrasonic Flowmeter
, M.Sc. Thesis Sharif University of Technology ; Mazaheri, Karim (Supervisor)
Abstract
In this thesis we are going to improve an ultrasonic flowmeter accuracy by considering the influence of different parameters like temperature, pressure, etc. Firstl of all different cases of flow condition in which ultrasonic flowmeter may work are specified, then velocity and temperature profile of pipe flow are determined using Fluent software. In thr next step ultrasonic pulses transmitted are simulated by the use of code written in Matlab to find wave travel time in the flow. Evetually an accurate relation of calibration for flowmeter is determined by the use of travel time and all other flow properties to evaluate the accuracy of flowmeter in diffent cases. Relation extracted can be...
Instagram and its Relation to Moral Values
, M.Sc. Thesis Sharif University of Technology ; Hosseini, Hassan (Supervisor)
Abstract
In this thesis, the value-ladenness or value-neutrality of technology, new social media and as a result Instagram is investigated. It is also discussed whether values can be taken into account during the design process of technical artefacts, including new social media and Instagram, and methods are developed for this purpose. Several methods have been developed for this purpose, some of them and their compatibility with modern social media are explained; including the Value-Sensitive-Design method and the disclosive computer ethics design method. The frameworks of ethical philosophy such as virtue ethics are reviewed and the appropriate ethical framework for the analysis of new social media...
Design and Characterization of Liquid Crystal–Based Tunable Metasurfaces for Microwave Holographic Antenna Applications
, M.Sc. Thesis Sharif University of Technology ; Ahmadi Boroujeni, Mehdi (Supervisor)
Abstract
Liquid crystals are an integral part of modern technologies. Although they have a long history of application, their use in microwave and millimeter-wave regimes is relatively recent and has attracted increasing research interest in recent decades. The effective utilization of liquid crystals in microwave engineering requires an accurate understanding of their electromagnetic response, particularly their anisotropic behavior under applied electric fields. In this thesis, a novel method is proposed for retrieving the electromagnetic parameters of nematic liquid crystals, with a primary focus on the dielectric permittivity tensor. Since nematic liquid crystals are anisotropic, non-magnetic...
The Impedimetric Human Papiloma Virous DNA Biosensor Fabrication Based on Gold Nanotubes
, Ph.D. Dissertation Sharif University of Technology ; Ghorbani, Mohammad (Supervisor) ; Sasanpour, Pezhman (Supervisor)
Abstract
An impedimetric human papilloma virus (HPV) DNA biosensor based on gold nanotubes (AuNTs) in label free detection was materialized. The AuNTs decorated nanoporous polycarbonate (AuNTs-PC) template as biosensor electrode was fabricated by electrodeposition method. The single strand DNA (ss-DNA) probe was covalently immobilized onto the AuNTs-PC electrode. The hybridization of target sequences with the ss-DNA probe was observed by the electrochemical impedance spectroscopy (EIS). The biosensor showed high selectivity and could differentiate between the complementary, mismatch and non-complementary DNA sequences. The EIS measurements were matched to Randle's equivalent circuit. The...
Fabrication of a Tactile Sensor Based on Triboelectric Nanogenerators
, Ph.D. Dissertation Sharif University of Technology ; Mohammadpour, Raheleh (Supervisor) ; Sasanpour, Pezhman (Supervisor)
Abstract
Humans need the five senses to understand and interact constructively with their surrounding environment; in the world of robots and intelligent systems, this is achieved using sensors. In the modern world, tactile sensors based on triboelectric effect play a prominent role in important application areas such as health monitoring, human-computer interaction, robotics, pressure mapping, and electronic signature. Triboelectric nanogenerators (TENGs) are one type of energy harvesting systems that convert mechanical energy into electrical energy. In these sensors, due to the contact and touch with the triboelectric material, an electric charge is generated and induced into the electrode, then...
Designing Electrophysiological Characterization System of Biological Cells Based on the Use of Nanostructured Electrodes
, Ph.D. Dissertation Sharif University of Technology ; Vossoughi, Manouchehr (Supervisor) ; Sasanpour, Pezhman (Supervisor) ; Mohammadpour, Raheleh (Supervisor)
Abstract
In the last half century, the recording of the electrophysiological activities of the neurons has been one of the most effective methods for neuroscience development. One of the techniques used to record the activity of the nerve cells is the use of multi-electrode arrays (MEAs). Current MEAs still face limitations such as low signal-to-noise ratio (SNR) and low spatial resolution. There is a need to develop arrays that are smaller in size and have less impedance to achieve better spatial resolution and lower noise levels. The main focus of this research is on the designing and fabrication of multi-electrode arrays and improvement of their properties using nanostructures and conductive...
Fabrication of Gas Nanosensor based on 2D Nanostructure Titanium trisulfide/Graphene Heterojunction
, Ph.D. Dissertation Sharif University of Technology ; Iraji Zad, Azam (Supervisor) ; Sasanpour, Pezhman (Supervisor) ; Esfandiar, Ali (Co-Supervisor)
Abstract
Titanium trisulfide (TiS3), a transition metal chalcogenide, bears the potential to replace silicon, when taking the form of nanoflakes, due to its favorable band gap and optical response. In this work, first we investigate the response of TiS3 nanoflakes to gas detection through a careful quantum computational approach and a few succinct measurements. The computations are benchmarked and compared with a relevant experiment at each step, where their results/conclusions are discussed. The most stable surface of TiS3 particles is determined to (001), in agreement with the literature. The adsorption of 5 gas molecules is characterized through formulating and estimating their adsorption...
Fabrication of Triboelectric Nanogenerators based on Two-Dimensional Materials
, M.Sc. Thesis Sharif University of Technology ; Mohammadpour, Raheleh (Supervisor) ; Akhavan, Omid (Supervisor) ; Sasanpour, Pezhman (Supervisor) ; Shokrgozar, Mohammad Ali (Co-Supervisor)
Abstract
Triboelectric nanogenerator (TENG) works based on the accumulation of electrostatic charges produced on the surface of two dissimilar materials while they are brought into physical contact. When the surfaces are separated by a mechanical force, the induced triboelectric charges generate a potential drop, which can lead to generate an electrical current. Since their invention in 2012, TENGs have shown a rapid development in diversity of structure, amount of output power and range of applications, such as self-powered sensors, touch pads, and smart skin. Various kinds of mechanical force can be used for producing electrical energy: human motion, walking, vibration, rotating tire, wind, flowing...