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career development and informs evidence-based approaches to supporting PhD researchers' career pathways. The Research Assistant will assist with the planning, coordination and delivery of research
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understanding of chloride transport mechanisms and establish the suitability of thermodynamic modelling as a tool for durability assessment. Ultimately, the study will contribute to the development of more
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-time power amplifier linearization using Field Programmable Gate Array (FPGA) platforms. The research will focus on the development of intelligent Digital Predistortion (DPD) algorithms capable
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for their future career. A Personal Career Development Plan for the student will be prepared. The PhD candidate will: Design and develop transfer-printable tunable narrow-linewidth lasers at 760 nm and
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within CAPPA, in the area of integrated lasers and optical coherence tomography (OCT). The research will concern the development and application of new techniques for OCT using high-speed, compact akinetic
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applying existing methods Research Areas The project may include methodological development in: Target trial emulation Dynamic treatment regimes Semiparametric and nonparametric estimation Doubly robust and
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5.0 priorities, supporting the development of intelligent, connected, and human-centric manufacturing systems. Potential application areas include smart factories, warehouse automation, logistics
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knowledge and impact. The Teagasc Walsh Scholars Programme provides a structured four-year training and development framework designed to support both academic excellence and long-term career readiness