This project, available through the Centre for Doctoral Training in Applied Quantum Technologies, seeks to develop versatile and widely deployable quantum sensors based on electronic spins in luminescent molecules. Read more
Antimicrobial resistance (AMR) is a critical global health challenge, leading to prolonged hospital stays, increased healthcare costs, and higher mortality rates due to resistant bacterial infections [1]. Read more
This project is one of a number that are in competition for funding from the University of Bath URSA competition, for entry in September 2025. Read more
Join the School of Physics and Astronomy at the University of Birmingham for groundbreaking PhD research that aims to improve non-destructive testing technology! Terahertz (THz) is a rapidly expanding field across a myriad of disciplines such as physics, engineering, chemistry and biology. Read more
The MRC Protein Phosphorylation and Ubiquitylation Unit is a world-famous centre for the study of cell signaling and how disruption to signaling pathways causes human disease. Read more
Extracellular vesicles are a group of lipid particles secreted by cells as a means to regulate the behaviour of the tissue. Their importance is being increasingly appreciated in many different contexts including tissue regeneration, developmental processes, inflammation and cancer progression. Read more
This project is devoted to an AI-based prediction of bacteria growth and its control by antibiotics. In synthetic biology, an improved understanding of bacterial regulatory circuits is required to develop complex biological systems with functionalities beyond existing in nature [1, 2]. Read more
*Bovine digital dermatitis (DD) is a severe, infectious, foot skin disease affecting cattle worldwide. This disease causes severe pain resulting in ruminant lameness and impacts animal welfare. Read more
Prostate cancer is one of the leading causes of male cancer deaths. It arises when individual cells escape their normal growth control mechanisms and proliferate in an uncontrolled fashion. Read more
The overarching goal of our research is to identify and characterise the protein kinase signalling pathways that control stem cell pluripotency and differentiation and determine how protein kinase signalling is disrupted to cause human developmental disorders. Read more
The overarching aim of this project is to define transcriptional patterns and identify new genetic elements essential for the correct development of the human brain. Read more
*Offer only available for the duration of your active subscription, and subject to change. You MUST claim your prize within 72 hours, if not we will redraw.
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