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, and this methodology is used in many fields such as cutting tools, polymer metallization, the medical sector, or optics. However, adding such a material to a surface, even if the thickness remains small
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modifications (hardware and software) to enable these novel processes. • Design and fabrication of microfluidic chips in silicon, glass and polymers. • Design and construction of new experimental setups in
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fabrication of microfluidic chips in silicon, glass and polymers. • Design and construction of new experimental setups in which the chips can be tested. • Design, conduct, analyse and report experiments
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modifications (hardware and software) to enable these novel processes. • Design and fabrication of microfluidic chips in silicon, glass and polymers. • Design and construction of new experimental setups in