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Job Description This industry funded project aims to develop safe Li-ion battery technology for high power applications. Project will make use of high-power Li-ion cell technologies using phosphate
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Job Description This industry funded project aims to develop safe Li-ion battery technology for high power applications. Project will make use of high-power Li-ion cell technologies using phosphate
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. Conducting high impact research in (1) nanoscale engineering of 3D graphene foam and its supercapacitor application under extreme working conditions which battery cannot cover. New applications in extreme
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flow chemistry to electro-synthesize redox active materials in flow systems which can be used for aqueous organic flow batteries-based long-duration energy storage or carbon capture. Qualifications
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flow chemistry to electro-synthesize redox active materials in flow systems which can be used for aqueous organic flow batteries-based long-duration energy storage or carbon capture. Qualifications
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candidates will be conducting their high impact research in - 1. Nanoscale engineering of 3D graphene foam and its supercapacitor application under extreme working conditions which battery cannot cover. New
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Job Description ● Contribute to the design and development of efficient thermal management solutions for electric vehicle batteries ● Assist in CFD simulations to optimize the fin structures
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, Control and Automation, Power and Energy, Applied Mathematics, or other related fields. o Solid modeling, programming, and good communication skills are required o A good research record in battery
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Job Description The candidate will focus on the modeling and optimization of energy storage, especially Lithium-ion batteries. The target of the project is to smoothly integrate energy storage
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Job Description ● Design and develop efficient thermal management solution for electric vehicles batteries ● Conduct CFD simulations to optimize the fin structures to enhance the thermal