20 multiple-sequence-alignment PhD positions at Cranfield University in United Kingdom
Sort by
Refine Your Search
-
leader in hydrogen-powered aviation technologies. Hydrogen-based aviation offers a revolutionary opportunity to significantly reduce aviation’s carbon footprint, aligning with global commitments to reach
-
Engineering which has considerable expertise and facilities in the area of propulsion system aerodynamics. The industrial sponsor, Rolls-Royce, is committed to net zero aviation by 2050 and this project aligns
-
expertise and facilities in the area of propulsion system aerodynamics. The industrial sponsor, Rolls-Royce, is committed to net zero aviation by 2050 and this project aligns with the strategic interests in
-
pioneering hydrogen propulsion systems through their Hydrogen Demonstrator program. This partnership provides a unique industrial environment, ensuring that research outcomes directly align with future
-
increasingly important. The aim of the project is to explore the collaborative dynamics of agents within eCPS, with a specific focus on aligning their behaviours towards achieving sustainability goals. Cranfield
-
reusable launchers, autonomous robotics, and advanced materials could redefine how we design space structures. The ability to remotely assemble orbital systems from multiple launcher payloads would allow
-
—remains a critical challenge. This project will focus on designing AI-driven cognitive navigation solutions that can adaptively fuse multiple sensor sources under uncertainty, enabling safe and efficient
-
relevant to multiple applications, including small aircraft, drones, turbines, and other systems reliant on efficient fluid flow around foils. The project offers a unique opportunity to gain experience in
-
that can be validated with experiments and bottom-up models at multiple scales in order to predict the macroscopic response. Hence, this research will investigate the degradation of metallic materials under
-
Multiple self-funded PhD positions are available in Modelling and Simulation (M&S). The project will aim to mature software repositories describing the biomechanics of the human brain. The M&S tools