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electrolytes (polymeric, composite, ionic liquids) to be used in energy storage devices. Use of functionalized ceramic additives to increase the ionic conductivity and mechanical characteristics
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the study of the sustainability of junction and assembly processes of multi-material products, including the perspective of energy saving and material recovery over the entire product life cycle. The analysis
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the study of the sustainability of junction and assembly processes of multi-material products, including the perspective of energy saving and material recovery over the entire product life cycle. The analysis
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deposition and characterization of ceramics, oxide and non-oxide glasses, innovative glass-ceramics and their composites with metallic or ceramic reinforcement for energy conversion devices (electrochemical
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financial cost of the system elements, latency, dynamic reconfigurability, and energy consumption gain progressively more importance for the new generation of access and metro networks. The objective pursued
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financial cost of the system elements, latency, dynamic reconfigurability, and energy consumption gain progressively more importance for the new generation of access and metro networks. The objective pursued