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Field
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environment for all staff and students, as well as promoting personal and career development. Your role: You will work on designing and building synthetic gene circuits to program temporal tasks in E. coli
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: - Engineer biosensors and therapeutic circuits in E. coli Nissle and other probiotic strains. - Contribute to the assembly and physicochemical characterization of SPS-coated biohybrids. - Perform 2D/3D tumor
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from these cellular elements. The cells used in this experimental system will be genetically modified such that their genotypes mimic genetic variants associated with BD. We will study these circuits by
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doctoral- and master students or similar. Strong experience in III-V device and circuit RF characterization. Documented skills in circuit design. Experience in device characterization at millimeter wave
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or equivalent Skills/Qualifications Minimum education and/or experience required: PhD obtained less than 3 years before date of hire in Electronic Engineering Essential skills, knowledge and experience: Design
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analyses of circuit development, and cutting-edge direct RNA sequencing. The successful applicant will work closely with the group leader and other team members, including a research assistant and a PhD
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from these cellular elements. The cells used in this experimental system will be genetically modified such that their genotypes mimic genetic variants associated with BD. We will study these circuits by
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. Documented skills in circuit design. Experience in device characterization at millimeter wave frequences. Interest in circuit-device co-design strategies. Assessment criteria This is a career development
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Integrated photonics is maturing and integration density increases. This means the design methods and testing strategies need to keep up. Are you interested in exploring compact models and novel
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projects aimed at normalizing circuit activity in BD with small molecule compounds or gene therapy. The post holder will contribute to the plan to deliver technical innovation and lead specified work