

Microsoft Office Package: Competent in all main programs included in the office package for different purposes; can write and create professional academic level documents and presentations, can organize, classify and represent sophisticated data Can also develop complicated algebraical spreadsheets for data development
SolidworksCAD (Education Edition 2025 SP220): Competent in solid modelling, assembly and blueprint developing Have developed multiple 3d models which have been adapted and upgraded based on testing simulations or lab testing after 3d print Can create multiple models and assemble them based on tailored request In my second year of university I have also obtained a SOLIDWORKS Design Associate award (CSWA) from Dassault Systems due to me scoring highest possible mark (100%) on a SOLIDWORKS based exam which involved accurate modelling and assembly(Certificate ID: C-KU8BGF9JNC)
Ansys(Workbench 2025 R2)(25200): Competent in solid modeling and 3D testing Able to create simulations required to replicate real-life circumstances Mainly worked with fluid simulations and force simulations
Wave by Realis: Competent in engine design and engine simulation Have worked with multiple sophisticated engine designs and multiple different fuel types for simulation
Python for Finance (IDLE shell 3130): Self-taught competent Python system designer and machine learning trainer and tester Fully solo developed hybrid adaptive systems for data science and classification
Matlab (R2025a): Competent in Matlab for data representation and advanced physics equation coding Have worked mainly on dynamics data representation and automatic physics problem solving
NI Labview (2025): Competent in circuit and system development based on required functions and allocated hardware inputs/outputs
Final Year Dissertation Project. (10/2026-07/2026) An adaptive hybrid feedback loop controller with review queue: Fraud detection system:
Developed a hybrid control system inspired decision framework integrating rule-based logic, machine learning, human-in-the-loop supervision, and adaptive feedback mechanisms. Applied closed-loop control and fault-detection principles analogous to those used in aerospace health-monitoring systems, aircraft supervisory control, and industrial process automation. Implemented in Python using Logistic Regression, confidence-based decision control, and performance-driven adaptation.
University group project: Each group was assigned a preexisting robotic arm; the task was to find a potential industrial use to the arm and modify and re-code the arm for that purpose.
My group decided to adapt the arm to an automatic stamping function in a simulated factory.
Estensive contribution to this project:
-Solo developed, simulated, 3D printed and adapted new gripper models for perfect tailored stamp grip based on stamp dimension
-Created multiple risk assessment charts for full professional product development and selling simulation
-Helped organise and coordinate group communication for better engagement and synchronised group work
University group project: Develop a fully functioning EV comfort system through hardware and software(NI Labview).
Project involved creating 4 subsystems and integrating them in a single circuit.
Individual Contribution:
-Fully developed hardware electronic layouts for sensors and scanner systems
-Fully developed software circuits and layouts and for coordinated and integrated hardware function
-Organised group communication and work distribution for fair and equal individual contribution
CSWA SOLIDWORKS Design Associate Award by Dassault Systemes