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07 PhD Degree-Fully Funded at Brunel University, London, England

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Brunel University, London, England invites online Application for number of  Fully Funded PhD Degree at various Departments. We are providing a list of Fully Funded PhD Programs available at Brunel University, London, England.

Eligible candidate may Apply as soon as possible.

 

(01) PhD Degree – Fully Funded

PhD position summary/title: British Heart Foundation (BHF)-funded non-clinical PhD Studentship: Promoting inflammation resolution as a therapeutic strategy for cardiovascular pathologies

This PhD studentship offers an exciting opportunity to explore how Formyl-Peptide-Receptor 2 (FPR2)-agonism drives thromboinflammation resolution after acute infection. The student will work with cutting-edge in-vivo imaging and advanced in-vitro microfluidic techniques to advance the pre-clinical development of novel anti-inflammatory therapeutic strategies for the treatment of CVD.

Deadline : 01/11/2024

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(02) PhD Degree – Fully Funded

PhD position summary/title: Understanding the response of freshwater microorganisms to environmental change through the lens of energy allocation

To survive and reproduce, living organisms need to maintain an efficient balance between energy intake and energy expenditure. When the environment changes, a previously efficient energy allocation strategy may become inefficient in the new environment, and organisms are required to adapt to the new environment by changing their morphology, physiology, and behaviour. However, how changes in multiple characteristics of the environment (e.g. temperature, resources and pollutant levels) interact to determine phenotypic traits and energy allocation is poorly understood.

This PhD project will address this knowledge gap through controlled laboratory experiments, exposing a range of freshwater Protozoa to different environmental conditions (e.g. temperature and antibiotic levels) and measuring key traits (population growth, metabolic rate, cell size, and movement speed) over both short (within a few generations) and long (multiple generations) timescales.

Deadline : 31/10/2024

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(03) PhD Degree – Fully Funded

PhD position summary/title: Simulation and experimental research of two different bending processes: free-form (3D) bending and roll stretch (2D) bending

Typically, steel has often been used as the primary material in structural automotive components. However, there is a need to reduce vehicle emissions which demands car manufacturers to focus on next-generation electric vehicle (EV) production. This can be achieved by designing and manufacturing lightweight vehicles by replacing steel components with extruded aluminum alloys due to their high mechanical properties and low density. Constellium UK, and its extrusion development of high-strength and high-crash alloys, play an important role in enclosure structure designs for EVs.

There are applications where the bending of extrusions is a necessary cold forming step included in the process route to produce automotive components such as enclosure structures. The free-form bending technology, often known as 3D bending is a novel bending process that opens new and unique opportunities concerning the complexity of geometrical shapes (extrusions) and innovative designs, reducing production process times, assembly efforts and consequently costs. This is a process that opens new and unique scenarios concerning the complexity of geometrical shapes (extrusions) and innovative designs, reducing production process times, assembly efforts and consequently costs.

Deadline : 31/10/2024

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(04) PhD Degree – Fully Funded

PhD position summary/title: Part Funded PhD Studentship in Creative Leadership in Healthcare

In recent years, we have seen powerful changes in politics, society, global concerns, communities and within these domains the pressures on healthcare to perform more effectively. The NHS is a dynamic and changing site for exploring the potentiality of creative leadership, changes in healthcare and what the future of leadership could look like. Leadership can be redefined according to the ways in which we understand the transversal relationships between healthcare staff, infrastructures, physical environment, politics, culture and society. We are particularly interested in theoretical discourse and creative mixed research methods that are developed in the context of recent theories regarding leadership and the more-than-human.

We are interested in applications that explore questions and issues within the theory and practice of leadership within the context of healthcare. Potential areas of enquiry could look at models for healthcare leadership including coaching leadership styles, place-based roles and power relations; the role of the creative leader within the development of inclusive healthcare models; the relationship between cultural groups, creative leadership and healthcare; and the role of co-creation, leadership and heritage in partnership healthcare making. These are only some of the lines of enquiry and responses that are welcomed to inform the development of future creative leadership models in healthcare.

Deadline : 30/10/2024

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(05) PhD Degree – Fully Funded

PhD position summary/title: Casting manufacturing for the engines designed for zero-carbon emission using green fuels

The manufacturing of castings are key controlling factors for the engine manufacturing and application. With the growing need for performance improvement of lightweight structures, improving strength and ductility of light alloys such as aluminium (Al) alloys has become of paramount importance in industries. Generated during manufacturing processes, casting defects are the key factors affecting detrimentally the mechanical performance of components such as strength and ductility and the life of engines designed for zero-carbon emission using green fuels. To manufacture sound castings, several factors need to be optimised, these are (1) appropriate design of the gating system of the casting mould to satisfy the solidification requirements, (2) correctly chosen cores and mould materials to offer the required cooling rates, and (3) appropriate microstructural stabilization via recrystallization and inhibition of subsequent grain growth. The industrial use of these elements has historically been limited due to highly complex structures and limited variables in processing. Therefore, it is demanded to widely study and develop the techniques from manufacture processing to materials for the improvement of performance in the final products. This PhD project is funded by an industrial partner, aiming to understand the mechanism underlying defect formation and to develop effective approaches to eliminating the defects in the cast components. The project scope includes: (1) the insights in defect formation and elimination approaches for industrial applications; (2) effect of minor elemental additions and compositional optimization of the Al alloys to make high integrity casting components; and (3) the mechanical properties of the Al alloys at room temperature and elevated temperatures in the manufactured components.

Deadline : 25/10/2024

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(06) PhD Degree – Fully Funded

PhD position summary/title: Abnormal Combustion of Hydrogen in Prosperous Net-Zero Engine

New energy technologies are vital in decarbonising heavy goods vehicles. Hydrogen is a carbon free fuel that helps with net-zero transition but hydrogen faces several challenges in the field of combustion due to its auto-ignition characteristics. This project aims at developing mechanisms to understand hydrogen combustion that will account explicitly for the chemical and residual gas effects under a wide range of pressures and temperatures. Software such as CHEMKIN, CONVERGE, FOAM and in-house developed MATLAB codes will be used in this research to understand Hydrogen combustion in Heavy Duty Engines.

Deadline : 30/09/2024

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(07) PhD Degree – Fully Funded

PhD position summary/title: Sustainable management of community sport organisations

The PhD studentship will involve systematically reviewing relevant literature and practices in the field, working with a local community football club and developing an innovative model of sustainability management of community football clubs.

This model is concerned with understanding and shaping the interactions between complex adaptive natural systems and sports organisations at individual, organisational and societal levels.

A key feature that distinguishes sustainability sport management from its current mainstream understanding and practices as a business is its explicit prioritisation of all types of sports participants as citizens as opposed to treating them as consumers.

The successful candidate will be supervised by an expert interdisciplinary team of researchers who will provide full training for the research.

Deadline :30/09/2024

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About Brunel University, London, England- Official Website

Brunel University London (BUL, and often known simply as Brunel) is a public research university located in the Uxbridge area of London, England. It was founded in 1966 and named after Isambard Kingdom Brunel, the Victorian engineer and pioneer of the Industrial Revolution. In June 1966, Brunel College of Advanced Technology was awarded a royal charter and became Brunel University; in 2014 the university formally adopted the name Brunel University London (BUL). The university is considered a British plate glass university.

Brunel is organised into three colleges, a structure adopted in August 2014. Brunel’s three constituent Academic Colleges include the College of Business, Arts and Social Sciences; the College of Engineering, Design and Physical Sciences; and the College of Health, Medicine and Life Sciences.

Brunel has over 16,150 students and 2,500 staff, and an annual income of £271.3 million (2021–22), of which £22.4 million was from research grants and contracts, with an expenditure of £311.9 million. The university won the Queen’s Anniversary Prize in 2011. BUL is a member of the Association of Commonwealth Universities, the European University Association, and Universities UK.

 

 

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