I am a motivated and detail-oriented software engineer with a degree in Computer Science and hands-on experience in development, engineering, and analysis. Proficient in various programming languages, I excel at designing, developing, and testing applications. Committed to continuous learning, I am always eager to take on new challenges and grow personally and professionally. Outside of work, I enjoy outdoor activities, playing sports, and traveling to explore new places, cultures, and cuisines. I am just a bit of everything
Creating immersive VR enviroment using Blender for 3D modeling and animation, integrating complex models into VR simulation. Developed and implemented scripts for model animation, and conducted through testing to ensure accuracy and performance of the VR model.
Collaborated with the professor to simplify learning material. Held one-on-one sessions to assist with security concepts. Graded assignments and exams, with providing feedback to students.
responded promptly to data-related inquies from colleagues and management. Contributed to improve data entry procedures for greater efficiency. Assisted students with disabilities during exams to ensure accessibilities and support.
specializing in creating custom websites and web applications, offering flexible, client-focused solutions.
This budget tracking app prototype allows users to customize expense entries with a name, category icon, and color. It features a static bar chart for spending analysis and a card displaying the user's name, total balance, and breakdown of income and expenses, helping users stay organized and manage their finances effectively.
Flappy Bird is a simple, addictive mobile game where you control a bird that must fly through gaps in pipes. Tapping the screen makes the bird flap upward, and the goal is to avoid hitting the pipes. The game gets progressively harder, with pipes appearing more frequently and the bird falling faster.
This smart parking system uses red and green LED lights to indicate available parking spots. It utilizes magnetometer, infrared, ultrasonic, and radar sensors to detect car movements and monitor spot occupancy, making parking more efficient and convenient.