Ci-dessous, les différences entre deux révisions de la page.
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ue4ti_version_anglaise [2013/07/12 09:37] zamprogno créée |
ue4ti_version_anglaise [2020/10/21 11:27] (Version actuelle) |
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- | ====Bio-Engineering==== | + | [[UE4ti|{{ : |
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+ | ====TU3 Bio-Engineering==== | ||
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- | **73H** | + | **50H** |
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- | The UE Biological Engineering consists of three parts: | + | The TU Biological Engineering consists of two parts: |
- | * Methodology, | + | * [[Bio-synthetic material|Synthetic biology]] |
- | * Bio-synthetic material | + | * [[Bio-computing|Bioinformatics]] |
- | * Bio-computing | + | |
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- | The class of Methodology, | + | The class of synthetic Biology leans on methodologies |
+ | In the practical part, the students model at first simple electronic systems (logical doors, passive components) then equivalent elementary biobricks, then work on the stream of conception and the tools CAD partners, to adapt in particular logical synthesizers to the constraints of the biology. \\ | ||
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- | The objective | + | The class of Bioinformatics |
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- | The class of synthetic Biology leans on methodologies and electronic analogy - biology described in the previous part. The objective here is to put into practice the languages of modelling multi-levels and multi-disciplines. | + | **OR** \\ |
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+ | TU [[business_creation|Business creation]] | ||
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- | In the practical part, the students model at first simple electronic systems (logical doors, passive components) then equivalent elementary biobricks, then work on the stream of conception and the tools CAD partners, to adapt in particular logical synthesizers to the constraints of the biology. \\ | ||
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- | The class of Bio-computing is interested in the knowledge of a set of algorithms and of fundamental software in biocomputing allowing the analysis of genome and the analysis of transcriptome. | + | [[TI Version anglaise|Back to TI course]] |