Contributed to the development of a platform for managing 3D data, similar to Google Earth, using React and Next.js.
Designed and implemented intuitive and visually appealing user interface components.
Technologies used: React, Next.js, WebGL, LuciadRIA
Designed and developed user interfaces for analytical internal tools used by insurance companies.
Implemented versatile and reusable UI components, optimizing code efficiency and enhancing user experience.
Technologies used: React, Node.js, Python, Angular, Flask, Docker, OpenShift
Developed decentralized applications (DApps) and cross-platform/native mobile apps, including wallets.
Ensured seamless integration and functionality by implementing an interface to a Dutch Exchange on the Ethereum blockchain.
Technologies used: React Native, Redux, GraphQL, Web3, Solidity
Built custom dashboards with high-frequency real-time updates from ROS topics.
Developed web interfaces for designing, scheduling, remote controlling, and monitoring drones and their missions.
Prototyped machine learning classification strategies, automating previously manual and costly tasks.
Technologies used: React, Web Sockets, Image Classification
Developed gamified web contests for physical marketing campaigns.
Maintained homegrown APIs and services used by hundreds of thousands of users, ensuring seamless operation with full test coverage and continuous integration/continuous deployment (CI/CD).
Technologies used: Angular 1.4, Python, MySQL, Docker, AWS
Developed a .NET/C# library for implementing advanced financial trading strategies.
Provided technology and innovation consulting services, including the development of websites, web services, and mobile apps.
Technologies used: .NET/C#, LEAN/QuantConnect, React, React Native, Node.js, Python, Java, Swift, Objective C, REST API, Containerized Applications, Google Cloud Platform, CI/CD
Developed a generator of piezoresistive circuits automating its design in custom-shaped 3D printed elastic devices and wearables.
Produced prototypes of elastic, bendable, and stretchable devices while researching desired properties of various silicon and 3D printing materials.
Built and programmed a computer vision-based validation setup to serve as ground truth for elastic device transformation predictions, utilizing circuit resistance shifts as a feature set.
Designed and produced prototypes of walking robots, validating the auto-generated gears dictated by custom-designed limb movements.
Technologies used: Matlab, C++, R, C
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