Research Project

Research Project
Next Generation Manufacturing for Sustainable Biomaterial Design
Objective: The objective of the proposed project is to accelerate the path to the industrialization of the sustainable bioplastics developed in the previous research through capacity building for the youth community. This is an efficient way to reduce the production and consumption of non-sustainable plastics and decrease the negative effects of climate change.

Research Project
Multi-stage Low-cost Treatment of Dyes and Paints Wastewater by Coagulation, Adsorption, and Filtration for Reuse in Several Application
Objective/Contributions: Designing and constructing a low-cost, efficient, rapid environmentally friendly treatment system for textile and paint industries' recycling and treatment. Conducting a comprehensive literature database of all the reuse and treatment methods, in paints wastewater treatment and all the pilot plants, and treatment plants used success stories that successfully reduce the

Research Project
Experimental Study on Sustainable Production of Concrete with Treated Alum Sludge
Objectives: A huge amount of unwanted sludge is produced daily from water and wastewater treatment plants and disposed into landfills which causes numerous environmental challenges. This study aims to investigate the effect of replacing cement by alum sludge on the performance of normal concrete. Incorporating alum sludge in concrete production could be useful in protecting the environment by

Research Project
An Underwater AR based System for Marine Life Detection and Classification for Divers and Tourists
Objective/Contributions: Collecting and annotating an extensive dataset of fish images representing the fish species in the red sea. Building a machine learning model capable of detecting and classifying fish species from a real-time video. Building a proof-of-concept prototype for the AR hardware that is capable of capturing the live video of marine life, running the classification model, and

Research Project
Academic System Resource Planning: A Fully-Automated Smart Campus/ASRP
Objectives: The project aims at creating a smart automated academic and administrative university environment infiltrating the global perspective of Education Quality and best practices for University Management and Academic System Resource Planning within the HE system in EG through the design and development of a smart digital platform for monitoring, analysis and closed-loop feedback control of

Research Project
Non-reciprocal Devices Using Time Dependent Materials
This work targets an optical analogue for the electronic diode that is the cornerstone and one of the main reasons behind the diversity, maturity, and applicability of the field of electronics. In this work, we exploit intermodal coupling within spatio-temporally modulated systems to induce coupling between modes whose group velocities attain opposite signs. We analytically prove that when

Research Project
Machine Learning Inspired Electromagnetic Metasurfaces
Objective/Contributions: This project aims to design novel metasurfaces with various functionalities and to develop a platform integrating advanced electromagnetic theory and AI techniques toward a behavior-oriented era of designing such metasurfaces. Various frequency bands, including the microwave, mid-IR, and optical bands, are utilized for numerous real-life applications, including but not

Research Project
Wings Aeroelastic Experimental Analysis Using Piezoelectric Materials
The study of aeroelasticity is very important for any spacecraft vehicles such as aircrafts, missiles, and helicopter rotary plates which are moved in the air, there are two phenomena discussed as follows “Divergence” and “Flutter”. In the present work, we concentrate on the analytical and experimental analysis of wing flutter using wind tunnel testing in addition to flutter suppression using

Research Project
Advanced Meta Material with Different Poisson’s Ratio
Objective/Contributions: Finite element analysis using Ansys or MATLAB with different Meta Material structures. Apply additive manufacturing techniques to produce the newly designed material. Apply manufactured material in real-life applications like Robotic arm materials.