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Graduate DeFi Algorithmic Trader

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Wintermute

Wintermute helps you trade digital assets by providing algorithmic liquidity across exchanges and OTC markets.

Milton Gate, 60 Chiswell Street, London, EC1Y 4AG, United Kingdom
About Wintermute

Wintermute helps traders and institutions access digital asset liquidity through algorithmic market making and OTC services. Users can trade various tokens, access derivatives markets, and execute large orders without market impact. Wintermute provides deep liquidity across centralized and decentralized platforms.

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Skills

About the Role

You will design and implement on-chain trading strategies and maintain the backend microservices that power the trading engine. You will build and maintain systems for on-chain searching, work across multiple codebases and languages, and solve programmatic trading problems. You will collaborate closely with experienced traders and developers, learn from them, and investigate new protocol and market design domains.

Requirements

  • Proficiency in programming with at least one of Python Rust or Go
  • Comfortable working on Linux environments and Git version control
  • Experience with programmatic statistical analysis and quantitative analytic skills
  • High level understanding of high-frequency market making strategies
  • Understanding of blockchain fundamentals and mechanics of the EVM
  • Familiarity with smart contract development and the Foundry toolkit
  • A passion for learning about protocol microstructure and design mechanisms
  • For Singapore candidates the company can sponsor an Employment Pass for exceptional candidates and prefers applicants to have Singapore PR

Responsibilities

  • Design and implement trading strategies
  • Build and maintain systems that drive on-chain searching
  • Develop and maintain backend microservices for the trading engine
  • Work across multiple codebases and programming languages
  • Collaborate with traders and developers and learn from feedback
  • Investigate new protocol microstructure and design mechanisms