Sort by
Refine Your Search
-
Listed
-
Category
-
Country
-
Program
-
Field
-
measurements. The role is embedded within the £18.8M EPSRC MetaHub, which brings together leading UK institutions to pioneer 3D metamaterials across ICT, energy and sensing. The role will suit an experimental
-
The scientific objective of this position is to develop a new quantum sensing platform based on Rydberg atoms for probing the near field of terahertz (THz) metamaterials and imaging electromagnetic fields in
-
the use of conventional acoustic treatments. This project, funded by the UK Metamaterials Network, will explore a novel aeroacoustic metamaterial liner concept that combines thin, lightweight acoustic
-
simulations aimed at analyzing wave propagation, identifying attenuation bandgaps, and investigating nonlinear dynamic effects. 3. Optimization of the geometric and mechanical configurations of the metamaterial
-
Join us! Are you a curiosity-driven scientist with a background in physics, engineering, or a related discipline, who wants to lead work at the intersection of robotics and metamaterials? Join us
-
architecture (meta)materials for medical soft robotics applications. Furthermore, the morphology, microstructure, and mechanical behaviour of the metamaterials for soft robotics applications will be
-
and Technical Acoustics is looking for a postdoc for the Swedish Research Council-funded SMILE project (Soundscape engineering with Metamaterial Innovation and LEarning). SMILE develops acoustic design
-
Prof Jeremy Baumberg's NanoPhotonics Centre in the Physics department (http://www.np.phy.cam.ac.uk/ ), as well as the wider EPSRC MetaHub community (https://www.exeter.ac.uk/research/metamaterials
-
Post-Doctoral Associate in the Division of Engineering (Mechanical Engineering) - Dr. Mohammed Daqaq
and experimental, in the broad field of nonlinear mechanics. Preference will be given to applicants with expertise in machine learning, wave propagation, metamaterials, and/or fluid–structure
-
dynamic, collaborative environment which consists of the groups of Daniela Kraft (colloidal model systems and microrobotics), Martin van Hecke (mechanical metamaterials and in-materia computing), Alexandre