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Master's Thesis: Design and Characterization of Virtual Microfluidic Channels Using UKP Laser Processing for Organ-on-a-Chip Systems(m/w/x)
Designing virtual microfluidic channels using UKP laser processing for organ-on-a-chip systems. Interest in laser material processing and biomedicine required. Flexible working hours, creative interdisciplinary environment.
Requirements
- Study in mechanical engineering, material science, medical engineering, physics, or comparable field
- Interest in laser material processing and biomedicine in application-oriented research
- Independent, organized, and structured work approach
- Prior laboratory and laser experience is beneficial, but not required
Tasks
- Conceptualize and design microfluidic structures
- Create virtual channels in organ-on-chip systems
- Plan and conduct experiments for mold production
- Use UKP laser structuring for mold fabrication
- Fabricate microfluidic chips from laser-processed molds
- Characterize hydrophobic and hydrophilic regions
- Document and discuss experimental results
Education
- Currently in higher education
Languages
- English – Business Fluent
Benefits
Flexible Working
- Flexible working hours
Informal Culture
- Creative, interdisciplinary environment
- Motivated team
- Flat hierarchies
- Informal culture
Modern Equipment
- Excellent range of machines and equipment
Modern Office
- First-class office facilities
Other Benefits
- Practice-oriented thesis
- Diversity promotion
Startup Environment
- Innovative applied research environment
Parking & Commuter Benefits
- Good transport connections
- Parking spaces
- E-charging station
- Parking garage
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- Fraunhofer-GesellschaftFull-timeTemporary contractOn-siteNot specifiedAachen
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Master's Thesis: Design and Characterization of Virtual Microfluidic Channels Using UKP Laser Processing for Organ-on-a-Chip Systems(m/w/x)
Designing virtual microfluidic channels using UKP laser processing for organ-on-a-chip systems. Interest in laser material processing and biomedicine required. Flexible working hours, creative interdisciplinary environment.
Requirements
- Study in mechanical engineering, material science, medical engineering, physics, or comparable field
- Interest in laser material processing and biomedicine in application-oriented research
- Independent, organized, and structured work approach
- Prior laboratory and laser experience is beneficial, but not required
Tasks
- Conceptualize and design microfluidic structures
- Create virtual channels in organ-on-chip systems
- Plan and conduct experiments for mold production
- Use UKP laser structuring for mold fabrication
- Fabricate microfluidic chips from laser-processed molds
- Characterize hydrophobic and hydrophilic regions
- Document and discuss experimental results
Education
- Currently in higher education
Languages
- English – Business Fluent
Benefits
Flexible Working
- Flexible working hours
Informal Culture
- Creative, interdisciplinary environment
- Motivated team
- Flat hierarchies
- Informal culture
Modern Equipment
- Excellent range of machines and equipment
Modern Office
- First-class office facilities
Other Benefits
- Practice-oriented thesis
- Diversity promotion
Startup Environment
- Innovative applied research environment
Parking & Commuter Benefits
- Good transport connections
- Parking spaces
- E-charging station
- Parking garage
Like this job?
BetaYour Career Agent finds similar jobs for you every day.
About the Company
Fraunhofer-Gesellschaft
Industry
Research
Description
Das Unternehmen ist eine der führenden Organisationen für anwendungsorientierte Forschung mit 76 Instituten in Deutschland.
Not a perfect match?
- Fraunhofer-Gesellschaft
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