Responsible for developing cutting-edge technology, my project aims to unveil a deeper understanding of spectral signatures in various materials, revolutionizing how we perceive and analyze data across multiple wavelengths. Through this work, we're poised to unlock new possibilities for industries ranging from environmental protection to medicine.
Responsible for managing, supervising, and overseeing operating processes and creating various projects based on hyperspectral imaging engineering including cancer application and counterfeit hologram detection. Was also responsible for preparing, coordinating, and monitoring hyperspectral imaging and color reproduction projects, from the initial conception to the schedule and final completion.
Responsible for managing and leading research and development activities by identifying and solving complex design and technical problems related to the various processes in an automatic production line. Contributions to all aspects of product development activities including creation, documentation, ideation, prototyping, designing, development, verification testing, and design validation to improve the working efficiency of the production floor.
Responsible for contributing to the university’s R&D efforts by providing subject-matter expertise, collaborating with faculty members on academic initiatives, and offering guidance on advanced research projects which involves occasional on-site visits to engage in strategic discussions, foster interdisciplinary collaboration, and support the institution’s mission to advance scientific innovation.
Collaborated on the creation of comprehensive course materials tailored to the evolving demands of the semiconductor industry by appling meticulous attention to detail, effective organizational skills, and adherence to industry standards, resulting in the production and delivery of high-impact, well-structured academic content. Integrated current industry practices and emerging trends into course design, enhancing the relevance and quality of educational programs.
An LED headlight radiator with a combination of aluminum alloy and a thermally conductive polymer was designed and developed to increase the efficiency of heat dissipation generated by the LED junction
The ballistic performance of the solid rocket motor of Solid Fuel Ducted Ramjet was evaluated using a hollow cylindrical propellant and varying the combustion chamber pressure with respect to time at different burn rates.
Worked directly with a discovery program lead and a technical advisor and gain critical knowledge of the core techniques used for basic working principles and techniques of biosensors to detect different types of cancers.
The thermal matrix used in the air storage tank for an experimental intermittent blow-down wind tunnel was calculated, designed, and analyzed.
During the training different computer-aided design (CAD) and 3D analysis software including CATIA, Solidworks, Ansys, and Hypermesh were used to design and analyze various aerodynamic properties of NACA airfoils.
During the training different training classes including Java, Core Java, J2EE, Data warehousing, Software Testing, Dotnet was conducted