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Wireless Sensor Networks (WSNs). The problem of localisation (finding the coordinates) of a moving object has been intensively studied during the last decades. This problem arises in many applications: e
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of the catalyst and the slow reaction rate. The main objective of this project is to optimise the structure of the cathode electrode to substantially increase its utilisation. Modelling tools will be used
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/battery systems for distributed power generation. The balance of economics and performance of the system will be the main objective of the research. Computer modeling techniques will be employed in order to
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of performance loss in PEM fuel cells and this is due to low utilisation of the catalyst and the slow reaction rate. The main objective of this project is nanoscale image the normally-used cathode electrodes using
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Aspen packages to achieve the project objectives, with input data and other parameters being acquired from the literature review conducted. Funding Notes 1st or 2:1 degree in Engineering, Materials
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of the main objectives of this project is to theoretically and experimentally optimise the parameters that affect the contact between the electrode and the current collector in PEM fuel cells, most importantly
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objective of this project is to enhance the efficiency and the cost-effectiveness of the air-breathing fuel cells through employing new designs and/or materials. The project could involve building a prototype
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of the modelled fuel cell relies on a large number of input parameters such as the gas permeability, the electrical conductivity, the diffusivity and the contact angle. The main objective of this project is to
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. Applicants would need to find their own funding. View DetailsEmail EnquiryApply Online
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Deadline: Applications accepted all year round Details Hydrogen-tunnelling is key to many reactions involving biomolecules. However, hydrogen tunnelling is not easily detected directly at room temperature