Candidate Details
About Me
Camelia is a registered fresh graduate under the Board of Engineers Malaysia (BEM) with a Bachelor of Communications and Computer Systems Engineering with Honours at Universiti Putra Malaysia and has taken an extra course in Radio Frequency Mobile Network Engineering at Telecommunication Engineering College (TEC). I am looking for an entry-level engineer position and built career opportunities within 5G-related telecommunication technologies thus developing skills using design tools effectively to get the job done correctly within the project timelines.
Education
Radio Frequency Mobile Network Engineering
Telecommunication Engineering College (TEC) - November 2024.
Bachelor Of Computer & Communication System Engineering
Universiti Putra Malaysia - 5 December 2024.
Matriculation Programme Examination (PSPM)
Negeri Sembilan Matriculation College - June 2019.
Module II (Computer Science, Physics, Chemistry, Math)
Core Skills
I have strong adaptability skills, as seen by my capability to work in a tough workplace during my internship.
Attention to detail has always been applied in any work within my experience as an exco member of the faculty club.
I am a fast learner with a work routine and handling types of equipment with visual learning.
Internship & Work Experience
EON BERHAD (INTERNSHIP) | Jul 2023 - Sept 2023
Trainee
- Assist with the management of database using SAP systems for the sales record.
- Attended multiple seminar during the internship programme such as cyber security, safety management, and environmental study.
- Refined tagging in ABAP (Advanced Business Application Programming) and updated several renewed SOPs on the EON intranet website for enhanced accessibility and clarity.
Projects & Award
FINAL YEAR PROJECT | Oct 2023 - Aug 2024
Detection of Microplastics via Optical Response using Tapered Optical Fiber
A detailed study investigates the absorption behavior of small-sized microplastics in varying acetone concentrations, providing insights into their environmental interaction dynamics. The project analyzes how these microplastics absorb acetone at different concentration levels, which could shed light on the broader implications of microplastic pollution in aquatic environments. By normalizing and comparing the absorption rates across concentrations, the study reveals concentration-dependent trends, indicating varied interaction and saturation effects. This research is essential for understanding how microplastics interact with solvents like acetone, offering a foundation for future environmental strategies. The study uses controlled lab setups and data normalization techniques to draw precise insights into microplastic behavior in different solvent concentrations.
INDUSTRIAL DESIGN PROJECT | Mar 2024 - Jul 2024
Develop a smartwatch with step-counting and heart rate monitoring features using Arduino.
Developed an IoT-based monitoring system to strengthen biodiversity conservation by tracking and protecting plant and animal species within forest ecosystems. This system promotes ecological balance using real-time image processing, which supports the continuous monitoring of environmental factors like air quality, temperature, and humidity. Additionally, it safeguards forest integrity by detecting and preventing illegal activities such as logging and poaching, contributing to the preservation of natural resources and supporting the resilience of these ecosystems for sustainable, long-term environmental health.
1st Runner-up