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for synchronization. Given the inherently nonlinear nature of real-world systems and the presence of unpredictable events such as component failures, communication link disruptions, and adversarial attacks, achieving
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Metal organic frameworks (MOFs) have recently been printed using reactive inkjet printing. This PhD builds on that work aiming to expand the range of MOFs that can be printed and uncovering the advantages
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approaches such as target factor analysis and s-systems in which chemical reaction networks can be inferred requiring only the input of measured species concentrations. The result will be the generation
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allow more accurate simulations to be carried out without the limitation of the amount of deposits being the prohibitive factor for such simulations. By removing such limitation, a wide range of
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carbon compounds doped with a variety of elements (for example nitrogen, sulphur, selenium). This project will involve the use of the Gaussian 09 program to perform detailed electronic structure modelling
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undertaken; this will involve the manufacture and testing of different PEMFC designs, along with the manufacture and testing of novel non-metal based catalysts to replace the use of Platinum, a major cost
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at a fundamental level how the chain drive and lubricant interact and how this affects frictional resistance and component wear. Support will be provided by chain and lubricant manufacturers. Objectives
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plants. It converts highly toxic hydrogen sulphide gas into harmless elemental sulphur to achieve gas cleaning. This project investigates an advanced oxygen enrichment technology to enhance
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: Applications accepted all year round Details Ammonium Nitrate based emulsions are a basic component of many materials deliberately manufactured as explosives, and also of many other industrial chemicals
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oscillation may occur, which may even damage the hardware component to cause high losses. In this project the interaction of flame and acoustic wave will be investigated in a laboratory burner using advanced