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. The studentship is funded by the Leverhulme Trust through the Connected Waters Leverhulme Doctoral Programme, which is supporting new research on human-environment interactions in freshwater ecosystems. There is an
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reliability. Embedded Redundancy and Self-Healing: Design systems with built-in redundancy and self-healing capabilities that allow for automatic recovery from faults without human intervention. Cranfield
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on human-environment interactions in freshwater ecosystems. The studentship covers fees and stipend for a home (UK) student. There is an urgent need for novel freshwater quality monitoring solutions to help
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such as graph-based approaches and network analytics to predict how blue network dynamics, fragmentation and surrounding land use interact to shape ecosystem functioning and human wellbeing outcomes
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researchers in Cranfield Environment Centre and the Connected Waters Leverhulme Doctoral Programme, which focuses on human-environment interactions in freshwater systems. They will benefit from a lively and
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degree or equivalent in a related discipline. Ideal for a geographer, environmental scientist or social scientist interested in how humans perceive, interact and influence the natural environment. Should
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functioning and human wellbeing outcomes. These insights will directly inform future nature-positive urban design. If you are passionate about ecological systems, urban sustainability or applying advanced
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across industrial sectors represents one of today's most critical technological frontiers. As industries face mounting pressure to improve efficiency, reduce downtime, and minimize environmental impact
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-scale, high-fidelity CFD simulations, providing detailed insights into transferred arc energy distribution, molten pool behaviour, and their relationship with process parameters. The key research
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The research in this doctoral opportunity will investigate the relationship between material elastic and thermal properties by using high resolution digital imaging under dynamic loads. Digital