25 Fully Funded PhD Programs at University of Cambridge, England

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Are you holding Master’s degree and looking for PhD positions – Fully Funded PhD Programs in Europe? University of Cambridge, England inviting application for funded PhD Programs or fully funded PhD Scholarship. University of Cambridge is one of the largest university in the world with thousands of employees, students, and research scientists are involved in the innovation of science and technology daily.

University of Cambridge has huge a campus in England and widely known as for its contribution in top notch education and research. The contribution of University of Cambridge is not only limited to natural sciences and engineering but it also offers high quality research as well as higher education in bio-medical sciences, social sciences, humanities, psychology, education, architecture etc.

1. Fully-Funded (Home Rate) PhD Studentship

Summary of Doctoral Project:

Looking for a battery related career that contributes to creating a sustainable future? Keen to join a dynamic community of pioneering battery researchers seeking to find solutions to support a fully electric future? The project will involve investigation of two-dimensional metallic transition metal dichalcogenides as catalytically active cathodes for Li-S batteries. It will involve synthesis of the materials, their structural and electrochemical characterisation, and fabrication and testing of Li-S batteries. The project will also involve operando characterisation of the devices.

Last Application Date: 31 May 2022

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2. Independent Research Fellowships

Summary of Doctoral Project:

The Department provides enthusiastic support for early career scientists who wish to establish their own research programmes and labs through fellowships such as Wellcome Career Development Awards or UKRI Future Leaders Fellowships. The Department has more than 30 research groups (bioc.cam.ac.uk/research) with interests that fall broadly into the following areas: Chemical biology and drug design, Disease biology, DNA and chromatin biology, Molecular microbiology, Plant biochemistry and bioenergy, RNA biology, Signalling and trafficking, Systems biology. The Department and School of Biological Sciences offer a dynamic environment where our research programmes benefit from state of the art facilities.

Last Application Date: 29 April 2022

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3. EPSRC ICASE Studentship – Digital twins of physical optical networking infrastructure

Summary of Doctoral Project:

Applications are invited for a joint Microsoft Research UK / EPSRC ICASE funded PhD project in the area of optical fibre communication systems. In core networks there is a huge quantity of metrology available ranging from SNR and BER measured by the transceivers through to the input and output powers of optical amplifiers and switches. The aim of this PhD project would be to use machine learning applied to metrology information, combined with the underpinning physics to create a digital twin of the physical optical network infrastructure. Not only would the digital twin be updated in real-time, but it would also incorporate the uncertainty into the model allowing for real-time margin allocation to improve the operation of the optical network.

Last Application Date: 31 May 2022

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4. EPSRC ICASE Studentship – Creating a photonic networking layer

Summary of Doctoral Project:

Applications are invited for a joint BT EPSRC ICASE funded PhD project in the area of optical fibre communication systems. Currently optical networking is driven by the networking layer with the Internet Protocol (IP), treating the physical photonic layer as static pipes with no intelligence. However, this is currently changing with the emergence of machine learning and the availability of high-speed pluggable transceivers such as 400G-OpenZR+ that could be integrated into routers. This creates a compelling the case for converging IP layer routing and with the WDM photonic layer, in which the WDM photonic layer will offer space and wavelength multiplexing and switching. This in turn has the potential to create a significant shift in the design and operation of the network architecture by co-designing the network layer switching with the physically layer for create a photonic networking layer, able to easily implement concepts such as segment-based routing. It is anticipated moving to a converged photonic networking layer will allow for the network architecture to scale as data rates continue to grow exponentially.

Last Application Date: 31 May 2022

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5. PhD studentship with National Highways: Sensor development for autonomous large-area monitoring and fault detection in expressways.

Summary of Doctoral Project:

This is a four-year (1+3 MRes/PhD) studentship funded through the Cambridge EPSRC Centre for Doctoral Training in Future Infrastructure and Built Environment: Resilience in a Changing World (FIBE2 CDT). The FIBE2 CDT aims to develop the next generation of infrastructure professionals who can create, shape and deliver the national vision for UK infrastructure, who will be equipped with a versatile and cross-disciplinary skill set to meet the most complex emerging challenges and contribute effectively to better infrastructure decision-making in the UK. Further details can be found at https://www.fibe-cdt.eng.cam.ac.uk/ The project is funded in collaboration with National Highways, a government-owned company charged with setting highways standards, operating, maintaining and improving motorways and major A roads in England.

Last Application Date: 30 April 2022

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6. PhD studentship with National Highways: Data-Driven Robotic Maintenance & Repair

Summary of Doctoral Project:

This is a four-year (1+3 MRes/PhD) studentship funded through the Cambridge EPSRC Centre for Doctoral Training in Future Infrastructure and Built Environment: Resilience in a Changing World (FIBE2 CDT). The FIBE2 CDT aims to develop the next generation of infrastructure professionals who can create, shape and deliver the national vision for UK infrastructure, who will be equipped with a versatile and cross-disciplinary skill set to meet the most complex emerging challenges and contribute effectively to better infrastructure decision-making in the UK. Further details can be found at https://www.fibe-cdt.eng.cam.ac.uk/ The project is funded in collaboration with National Highways, a government-owned company charged with setting highways standards, operating, maintaining and improving motorways and major A roads in England.

Last Application Date: 30 April 2022

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7. PhD studentship with MTC: Design for Manufacturing: retrofit all UK homes in 28 years

Summary of Doctoral Project:

All of the UK’s 28 million homes must be retrofitted to the highest levels of energy performance in the 28 years remaining to deliver the UK’s legal commitment to zero emissions. A small number of expensive and slow one-off projects have demonstrated that this can be done, with Victorian buildings retrofitted to performance near to that of new Passiv Houses. However the costs of these projects has been very high and they have taken a long time. Converting from expensive one-off delivery to mass market coverage requires that we deploy the design and production skills and technologies of contemporary manufacturing to the practices of one-off small-scale construction.

Last Application Date: 15 May 2022

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8. PhD studentship with MTC (Fixed Term)

Summary of Doctoral Project:

This is a four-year (1+3 MRes/PhD) studentship funded through the Cambridge EPSRC Centre for Doctoral Training in Future Infrastructure and Built Environment: Resilience in a Changing World (FIBE2 CDT). The FIBE2 CDT aims to develop the next generation of infrastructure professionals who can create, shape and deliver the national vision for UK infrastructure, who will be equipped with a versatile and cross-disciplinary skill set to meet the most complex emerging challenges and contribute effectively to better infrastructure decision-making in the UK. Further details can be found at https://www.fibe-cdt.eng.cam.ac.uk/

Last Application Date: 15 May 2022

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9. 7 x PhD Studentships with the Cambridge Centre for AI in Medicine (Fixed Term)

Summary of Doctoral Project:

The Cambridge Centre for AI in Medicine (CCAIM) is a multi-disciplinary centre established by the University of Cambridge in 2020 to develop pioneering AI machine learning (ML) technologies that will transform biomedical science, medicine and healthcare. As an elite group nested in a world-class university, CCAIM presents an extraordinary opportunity for PhD students to make a big impact in a cutting-edge field. If you fit our criteria, we encourage you to apply – wherever you are in the world. With seven fully-funded PhD studentships available, this is our call to the best and brightest minds to join us in pushing back the frontiers of healthcare-focused ML and bioscience. Please read this advert carefully and note the stages of the process before taking any action.

Last Application Date: 16 May 2022

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10. W.D. Armstrong Studentship – Investigating the Molecular Signatures of Glioblastoma Invasion using 3D Spheroids

Summary of Doctoral Project:

Glioblastoma (GB) is a lethal brain cancer with an average survival of 14.6 months. GB is highly invasive and located within important brain structures thus limiting the extent to which surgery and radiotherapy can be utilised. The project will investigate 3D GB invasion in vitro using patient-derived low passage GB cells. The project will focus on: Characterisation of patterns of invasion with changes to the tumor microenvironment (e.g. hypoxia, nutrient deprivation, pH) using 3D cultures such as GB spheroids. Time-lapse confocal microscopy will be used to reconstruct 3D images and subsequently track individual cells and characterise their migratory phenotypes during invasion.

Last Application Date: 1 June 2022

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11. Understanding carbon sequestration in porous media: sustainable CO2 storage

Summary of Doctoral Project:

The aims of this project will be to use the non-invasive technique of magnetic resonance imaging (MRI) to study the behaviour of SC-CO2 in a variety of model porous systems under realistic conditions. Magnetic resonance provides incredibly rich and diverse data that delivers unparalleled information for both physical and chemical processes via non-invasive, chemically specific measurements of mass transport and molecular properties.

Last Application Date: 15 May 2022

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12. Studentship in Binary Translation for Reliable Microprocessors (Fixed Term)

Summary of Doctoral Project:

Applications are invited for a PhD student to work on binary translators for improving reliability in general-purpose computer architectures. Our research group has developed a number of approaches for increasing the reliability of applications through a novel use of parallelisation. Building on the success of the ParaMedic and ParaDox hardware schemes, we seek to use binary translation to exploit program parallelism to enhance the reliability of future microprocessors. We wish to modify applications on-the-fly to provide reliable execution in the presence of errors in commodity systems, such as those using Arm’s DynamIQ technology.

Last Application Date: 30 April 2022

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13. PhD Studentship in Task-Based Parallelism

Summary of Doctoral Project:

Applications are invited for a PhD student to work on hardware or software for exploiting task-based program parallelism in novel computer architectures. Our research group has developed a number of approaches for increasing the performance of applications through parallelisation. Building on the success of the HELIX automatic parallelising compiler, our Selective Replay Vectorisation technique and our Janus binary paralleliser, we seek to develop architectures and compiler optimisations that can exploit fine-grained task-level parallelism for future microprocessors. We wish to identify opportunities for task-level parallelism, extracting parallelism when beneficial, and dealing with cross-task data dependences via speculation or synchronisation.

Last Application Date: 30 April 2022

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14. PhD Studentship in Physics – DSTL / EPSRC iCASE (Fixed Term)

Summary of Doctoral Project:

Resonant Acoustic Mixing (RAM) of ingredients, as a processing method for preparing energetic material formulations, is a new and disruptive technology that has many potential benefits; in terms of the degree of blend homogeneity, the ability to work with high solid loadings, and the ability to mix in situ. One observation, attributed to the greater intimacy that is achieved during mixing compared to conventional methods, is that the cure times for some chemical reactions, such as polymerization, are not the same. Consequently, it is highly likely that the thermal and the mechanical properties of the resulting RAM mixed materials are different from their conventionally mixed counterparts.

Last Application Date: 16 May 2022

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15. PhD Studentship in Physics – AWE / EPSRC iCASE (Fixed Term)

Summary of Doctoral Project:

AWE undertake a range of small-scale safety tests on energetic materials. Data and results generated from tests are used in wide ranging applications, including material down selection, characterisation, qualification, evidence for safety cases and assessments, provision of parameters for model calibration and validation. Underlying physics of the current tests are poorly understood. Due to concerns about read-across with legacy data, tests have not kept pace with developments in diagnostic capabilities. When new results do not correspond to historic trends or expectation, existing testing capabilities are not particularly well suited to investigate causes of discrepancies. Preliminary investigations conducted at the University of Cambridge have demonstrated impact experiments instrumented to measure force-histories, direct measurement of (mechanical) energy absorbed leading up to reaction, various spectroscopies to interrogate chemical reactions that occur and their local environment.

Last Application Date: 16 May 2022

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16. PhD Studentship – Sodium-Ion Batteries

Summary of Doctoral Project:

A 4-year PhD studentship funded by the Faraday Institution is available in the research groups of Professors Dominic Wright and Clare Grey to develop new sodium electrolyte salts for next-generation sodium-ion batteries. New salts of the type NaX will be synthesised which contain a range of main group-centred anions (X; boron-, phosphorus- and silico- based). Changing the steric bulk and chain length of the organic substituents in the anions will allow us to alter the thermochemical radius of the anion and the overall physical properties of the salts themselves. In turn, this will provide the means for increased ionic conductivity and electrochemical and chemical stability, and for the formation of ionic-liquid electrolytes.

Last Application Date: 13 May 2022

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17. PhD Studentship – Lithium-Ion Batteries

Summary of Doctoral Project:

The safety and the possibility of fast charging of lithium-ion batteries are mainly limited by lithium plating on the graphite anode. A 4-year PhD studentship funded by the Faraday Institution is available in the research groups of Professors Clare Grey and Stuart Clarke to understand the impact of electrode-electrolyte interface processes on lithium plating. Specifically, the project aims to understand how graphite surface groups interact with the electrolyte molecules and facilitate the non-desired electrodeposition of lithium, and will develop new methods for the prediction and prevention of dendrite formation. The goal is to identify metal plating signatures on graphite and use the insights to improve battery safety and enable fast charging.

Last Application Date: 13 May 2022

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18. PhD studentship – Decarbonisation of Heating (Fixed Term)

Summary of Doctoral Project:

The project will explore some of the challenges associated with the decarbonisation of heating through use of a combination of approaches of energy efficiency and use of renewable heat generation systems, with particular reference to challenging buildings such as in Cambridge Colleges, and with a view to establishing some general principles through modelling and data collection and analysis.

Last Application Date: 16 May 2022

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19. Next generation NMR techniques for decoupling flow & diffusion in porous media

Summary of Doctoral Project:

Understanding fluid flow in porous media at a hierarchy of different length scales is of fundamental importance in many areas of materials science and industrial process technology. A common measurement problem associated with understanding many of these processes is the decoupling of advective flow and diffusive motion. For example, there is a desire to acquire experimental measurements that separate diffusive and advective flow in, for example, Fischer-Tropsch synthesis which has the potential to produce carbon neutral synthetic fuels when made from green hydrogen. Our recent work1 on FT synthesis can be applied to many areas of heterogenous catalysis to better understand diffusion and mass transfer phenomena that occur within the reactor at the catalyst pellet scale. The information from magnetic resonance studies provides reaction engineers with quantitative information to optimise both reactor design and conditions.

Last Application Date: 15 May 2022

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