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We have 16 Physical Chemistry (control systems) PhD Projects, Programmes & Scholarships

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Physical Chemistry (control systems) PhD Projects, Programmes & Scholarships

We have 16 Physical Chemistry (control systems) PhD Projects, Programmes & Scholarships

Crystallisation in Structured Ternary Fluids for Enhanced Control

In crystallisation from solution, a ubiquitous process in both industry and the natural world, nucleation is usually the rate-determining step, followed by much faster crystal growth. Read more

How do RNA-binding proteins control splice site selection? A multi-disciplinary approach

Almost every protein-coding gene in vertebrates can and does express multiple proteins. This is achieved primarily by RNA splicing, which is an essential step in gene expression in mammals and generates incredible diversity. Read more

Multiple PhD Positions at the International Max Planck Research School (IMPRS) for Quantum Dynamics and Control (QDC) in Dresden, Germany

We are looking for highly talented and motivated students from all around the world. The standard. entrance qualification is a master's degree (or an equivalent university degree, e.g., German “Diplom”). Read more

Design and control of nanoparticle structuring and self-organisation

Nature forms many materials which possess intricate structures on length scales from nanometres to many microns, which are important in applications ranging from biological systems to porous materials for energy storage. Read more
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Enzyme Cascades controlled in the Electrochemical Leaf for Discovery in Antimicrobial Strategy

Antibiotic discovery is usually aimed at single entities, for example a bacterial enzyme or efflux protein. This also means that antimicrobial resistance (AMR) mechanisms are considered in terms of the individual response, for example, mutations in a single target enzyme, affording resistance to the drug. Read more

Understanding structure and dynamics at complex liquid-solid interfaces

A basic aim in chemistry is to understand and control the structure of materials at the atomic scale. We now have many tools at our disposal to characterise and manipulate atomic structure under "clean" conditions e.g., under vacuum. Read more

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