

Aspiring Software Engineer with a Bachelor's of Technology in Data Science, driven to contribute to innovative and fast-paced organizations. Skilled in problem-solving, cloud technologies, and AI-driven solutions, with a strong commitment and Bussines oriented Mindset to continuous learning and delivering impactful, high-quality results. Highly motivated to apply technical expertise, adaptability, and a strong work ethic to real-world projects that create meaningful impact.
During my Salesforce AI Developer internship, I worked on integrating Einstein AI to enhance predictions and automate CRM workflows. I developed Apex classes and Lightning Web Components to build intelligent features for the platform. I prepared and analyzed Salesforce data using SOQL to support AI model training and validation. I also built and tested API integrations to connect external AI models with Salesforce for smarter business operations.
Skilled in developing applications using Java, Python, and SQL
College Tour 360 Degree -
Designed and developed an immersive 360° virtual campus tour using Unity, integrating 360° media, smooth navigation controls, and interactive elements. Implemented Unity scripting to enhance user engagement and create a realistic, intuitive virtual exploration experience for students and visitors. This project showcases strong skills in immersive media, spatial design, and interactive environment development.
COVID Game -
Implemented character,Injection,Virus attacking controls components, Adding Assets,obstacle generation, scoring systems, and physics-based mechanics to create smooth and dynamic gameplay. Deliver a highly engaging and interactive experience.
Developed a Python-based Event Budget Planner that automates cost calculation, category-wise expense tracking, and budget optimization. Implemented accurate financial computation logic and a clean user interface to enhance usability. Ensured efficient data handling and real-time updates to support precise and reliable event budget management.
Quantum Fourier Transform (QFT), describing it as a powerful tool in quantum computing for efficiently performing discrete Fourier transforms on quantum states. It highlights that the QFT and its inverse are fundamental to many quantum algorithms designed to solve problems related to periodicity or number theory.