About Me
/>Writing maintainable and scalable code
Full-stack web development expertise
Smart devices and sensor integration
Competitive programming expertise
I am a Computer Science and Engineering undergraduate at Khulna University of Engineering & Technology (KUET), currently building a strong foundation in algorithms, software engineering, database, machine learning, web development, and system design.
I enjoy working close to the core of systems using C and C++, while also exploring modern web development with JavaScript, TypeScript, React.js, Node.js, and Laravel. In parallel, I am developing an interest in data science and machine learning, using Python to understand and solve data-driven problems.
What excites me most is designing scalable systems and creating clean, intuitive user interfaces that solve real-world problems efficiently. Beyond academics, I regularly work on personal and academic projects and take part in competitive programming contests, which help sharpen my logical thinking and problem-solving skills.
I am motivated by continuous learning and enjoy turning ideas into reliable, well-structured software solutions.
Education
/>Khulna University of Engineering & Technology (KUET)
St. Joseph Higher Secondary School
Mirpur Cantonment Public School & College
Skills
/>My Projects
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Interactive physics-based 2D projectile motion simulator with real-time visualization. Experiment with velocity, angle, and mass parameters to observe dynamic trajectory changes and understand fundamental physics principles through engaging visual demonstrations.
Feature-rich Android book reading application with comprehensive library management capabilities. Offers intuitive navigation, progress tracking, customizable reading settings, and seamless organization for managing and enjoying your digital book collection on mobile devices.
Comprehensive console-based police management system developed using object-oriented C++ principles. Features efficient record handling, case management, personnel tracking, and administrative operations with robust data validation and integrity controls.
A comprehensive movie and television database web application built with Laravel and modern web technologies. Cinema Paradiso provides users with an extensive platform to discover, track, and discuss movies and TV shows while connecting with a community of film enthusiasts.
Advanced numerical computation project implementing multiple mathematical algorithms in C++. Includes Newton-Raphson, Simpson's rule, Runge-Kutta methods, and more. Emphasizes computational precision, algorithmic optimization, and efficient solving of complex analytical problems.
A movie database management system with real-time SQL query monitoring. Built with PHP, MySQL, and JavaScript. Implements all SQL operation coverage including advanced concepts, views, set operations, and complex queries. Features an intuitive web interface for seamless interaction and monitoring.
Achievements
/>Contest Finals
3
IUPC
Peak Rating
1429
Codeforces (Specialist)
Competitions Won
2
Innovation Competitions
AUST IUPC 2025
Finalist • Inter University
KUET IUPC 2025
Finalist • Inter University
NWU IUPC 2025
Finalist • Inter University
Codeforces
1190
Current Rating
Awarded First Place for innovative project development and technical excellence at the HACK Competition. Led a team that designed and developed a Smart Helmet System using Arduino Uno, integrating an alcohol detection sensor and relay-based engine control mechanism. The system prevents the vehicle engine from starting if the rider is not wearing the helmet or if alcohol consumption is detected, enhancing road safety through embedded hardware and real-time sensing.
Secured Second Position in a prestigious international competition for showcasing interdisciplinary innovation. Developed an interactive Physics Projectile Motion Simulator capable of accurately calculating and visualizing projectile trajectories with and without air resistance. The simulator allows full customization of initial velocity, mass, gravitational acceleration, and type of throw, and presents real-time results through dynamic graphical plots and a user-friendly, intuitive interface, enhancing conceptual understanding of classical mechanics.
Organized by ILM AI Ltd. and City, St George's, University of London
Contact
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