Acquire hands on experience on different material characterization techniques for APIs and excipients used to manufacture medicinal products (particle sizing, XRPD, rheological properties, flow properties, moisture sorption analysis and thermal analysis)
Hands-on experience on equipment trouble-shooting and characterization method development (where required)
Support collaborations with industry partners to understand problem statements and contribute to solution development
Assist in project scoping by gathering technical inputs and identifying relevant capabilities within the ecosystem (IHLs, research centres, industry partners)
Participate in industry meetings, discussions, and project engagements
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Develop scalable software, APIs, and automation workflows that improve performance, reliability, usability, and engineering productivity.
Design and integrate AI-assisted solutions, including machine learning and generative AI technologies, to automate engineering workflows, improve model extraction accuracy, and accelerate device modeling.
Collaborate with device modeling engineers and cross-functional teams to deliver innovative software solutions that meet customer and business requirements.
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System Design & Development: Design, build, and maintain robust, scalable, and modular systems. While this is a research-focused role, a strong understanding of software engineering principles is crucial for creating practical applications from your research.
End-to-End Delivery: Oversee and actively participate in the entire software development lifecycle, from ideation and consulting to deployment and maintenance of the research-driven solutions.
Agile & Collaborative Work: Collaborate with a variety of teammates (designers, product owners, other researchers) to build features, design concepts, and interactive prototypes. Use and advocate for agile practices to consistently deliver high-quality software and bring value to collaborators.
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Ensure mechanical designs are compatible with robotic arms, mobile platforms, sensors, and mechatronic systems, considering payload, reachability, safety, manufacturability, and maintainability.
Build, assemble, and commission mechanical prototypes and experimental robotic systems.
Conduct laboratory and field testing, analyse results, troubleshoot issues, and implement design improvements through iterative development.
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Support collaborations with industry and healthcare partners to understand workflow pain points, user needs, business requirements and implementation constraints, and contribute to practical solution development.
Assist in project scoping by gathering workflow, design, business and implementation inputs, and by identifying relevant capabilities within the ecosystem (IHLs, research centres, industry partners).
Participate in industry meetings, discussions, and project engagements.
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