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34 PhD Degree-Fully Funded at ETH Zurich, Switzerland

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ETH Zurich, Switzerland invites online Application for number of  Fully Funded PhD Degree at various Departments. We are providing a list of Fully Funded PhD Programs available at ETH Zurich, Switzerland.

Eligible candidate may Apply as soon as possible.

 

(01) PhD Degree – Fully Funded

PhD position summary/title: PhD Students in Quantum Computing with Superconducting Circuits

You will become part of our young team setting up large-scale quantum computing systems in a brand-new lab. Like the rest of the team, you will be working closely with the Quantum Device Lab – a well-established research group – and be able to both benefit from the expertise developed there and contribute to its progress. You will perform collaborative research towards the realization of quantum computing technologies. You will get to contribute to diverse aspects of the experimental effort, both technical (design of electronics and mechanical components, building of microwave setups) and conceptual (design of experiments, planning of future research strategies). In the lab, you will pursue the development of fault-tolerant quantum computation by implementing error correction on modular logical qubits.

Deadline : Open until filled

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(02) PhD Degree – Fully Funded

PhD position summary/title: Doctoral position on measuring innovation and technological development

We are integrated into the international scientific community, with access to a global network of leading scholars in both management and economics. We perform interdisciplinary research that cuts across social and natural sciences. Within the group, we are open to both qualitative and quantitative methodologies. While this project is quantitative, we expect you to learn how to collaborate with people who rely on different methods, and possibly expand their methodological skillset over time.

Deadline : Open until filled

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(03) PhD Degree – Fully Funded

PhD position summary/title: PhD Candidate for research in wearable sensing technology for sleep monitoring

Do you have a background or experience in biomedical/electrical engineering, signal processing, data science, or related discipline? Do you have experience in health monitoring, wearable technology, or bio-signal processing (e.g. EEG, ECG, EMG)? Are you interested in being part of a clinical study and in developing technology to improve the quality of sleep?During your doctoral studies, you will process a variety of bio-signals collected remotely using wearables from individuals with traumatic brain injury. Such data will allow you to design novel approaches to precisely assess the quality of sleep and evaluate the efficacy of a therapeutic intervention. You will also design an app to assist delivering such intervention and to evaluate its impact. Your PhD research is expected to yield top-quality outcomes and generate technology with potential for commercialization.

Deadline : Open until filled

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(04) PhD Degree – Fully Funded

PhD position summary/title: PhD Position on “Radio Frequency (RF) and Mm-Wave Integrated Circuits and Systems”

You will be responsible for the architecting, designing, prototyping, and testing of novel RF/mm-Wave/THz integrated circuits and/or systems using advanced IC technologies. You will be responsible for performing packaging and building measurement setups. Also, you will be responsible for the project meetings, reporting, scientific publications, conference/seminar presentations, and involving in proposal writing. Further, you will be expected to facilitate the teaching and occasionally deliver lectures in English at ETH Zurich.

Deadline : Open until filled

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(05) PhD Degree – Fully Funded

PhD position summary/title:  PhD Position on “Integrated Circuit and System Design for Bioelectronics and Biosensors”

You will be responsible for designing, prototyping, and testing novel analog/mixed-signal integrated circuits and/or systems using advanced IC technologies. You will be collaborating with colleagues from the post-processing/fabrication side to decide the top-level system architecture and implementation details. You will be responsible for performing packaging and building measurement setups. Also, you will be responsible for the project meetings, reporting, scientific publications, conference/seminar presentations, and involving in proposal writing. Further, you will be expected to facilitate the teaching and occasionally deliver lectures in English at ETH Zurich.

Deadline : Open until filled

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(06) PhD Degree – Fully Funded

PhD position summary/title: PhD Position on “Integrated Photonics, Electronic-Photonic Co-Design/Integration”

You will be responsible for the architecting, designing, prototyping, and testing of novel electronic/photonic integrated circuits and/or systems using advanced IC technologies. You will be responsible for performing packaging and building measurement setups. Also, you will be responsible for the project meetings, reporting, scientific publications, conference/seminar presentations, and involving in proposal writing. Further, you will be expected to facilitate the teaching and occasionally deliver lectures in English at ETH Zurich.

Deadline : Open until filled

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(07) PhD Degree – Fully Funded

PhD position summary/title: PhD position in Systems or Hardware Security

As a new member of the group, you are supposed to contribute to research activities in the group and gradually build your own independent research profile according to your interests. You are expected to work towards a doctoral degree, and participate in the teaching activities of the group. The research group aims to increase the number of women in scientific positions. Female candidates are therefore encouraged to apply.

Deadline : Open until filled

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(08) PhD Degree – Fully Funded

PhD position summary/title: PhD Position in Digital Identities for Regenerative Materials

The PhD position is focused on leveraging digitalization for circular strategies in construction. The selected candidate will be involved in developing and testing tools for the identification and tracking of building materials, operating at the intersection of construction informatics, engineering, and logistical aspects.

Deadline : Open until filled

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(09) PhD Degree – Fully Funded

PhD position summary/title: PhD position in Matchmaking for Circular Construction

Your responsibilities will include the development of both theoretical concepts and practical tools for matchmaking of reused elements in the construction sector. Additionally, you are responsible for the development of theoretical concepts and algorithms for matchmaking for circular construction, together with industry and research consortium partners in Switzerland. The exploration of implementation possibilities for automated workflows and matchmaking tools in existing construction projects, and validation and testing of proposed and developed solutions in pilot projects are also part of your expertise. As well as the engagement and collaboration with stakeholders such as construction companies, standardization bodies, consultants, and other industry partners to promote the adoption of the developed data template and tools. Furthermore, the active participation in research activities, including publishing scientific papers and presenting findings at conferences and workshops, and the supervision of Master, and/or Bachelor students are your responsibility.

Deadline : Open until filled

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(10) PhD Degree – Fully Funded

PhD position summary/title: PhD position on the thermoacoustic dynamics of can-annular hydrogen combustors

This work will be performed through theoretical modelling and experiments, and possibly numerical simulations. The modelling tasks will deal with coupled stochastic differential equations, which will be derived to describe the complex nonlinear thermoacoustic interactions in compact can-annular combustors. Lab-scale experiments will be setup to reproduce the main features of the thermoacoustic dynamics of practical can-annular system. Experimental techniques for acoustics, combustion and fluid mechanics will be used to characterize the collective flame dynamics and the coupling between adjacent cans. The research outcomes are expected to be published in major specialized and broad-audience journals.

Deadline :November 30th 2023

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(11) PhD Degree – Fully Funded

PhD position summary/title: Doctoral Students in Environmental Politics – Urban Air Pollution Policy in Lower Income Countries

The International Political Economy and Environmental Politics group is based both at the Center for Comparative and International Studies (CIS) and the Institute of Science, Technology and Policy (ISTP). Its research and teaching focuses primarily on the role of governments, civil society, industry, citizens, and consumers in providing solutions to environmental problems. The two new doctoral students will contribute to a project, funded by the Swiss National Science Foundation, that focuses on identifying, characterizing, and explaining urban air quality monitoring activities throughout the Global South, and on studying public support for urban air pollution policies in lower income contexts more broadly.

Deadline : Open until filled

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(12) PhD Degree – Fully Funded

PhD position summary/title: Two PhD positions: Cross-scale plant-pollinator network dynamics

Both PhD positions require field and laboratory research in plant-pollinator interactions, genetics, and spatial resource mapping using satellite and drone imagery. Several months of field work will be undertaken in India over the course of three years. We expect the appointed PhD students to work with, and coordinate when necessary, a team of research assistants and Masters students from India and Switzerland. The field research will be in partnership with the College of Forestry in Kodagu District, and will be undertaken in coffee agroforests in this landscape. The students will engage with coffee farmers in the region to source information about their management systems, and thus excellent skills in communictaion and outreach will be expected. The students will work together to secure the required data, and will need to coordinate their research activities. Finally, we expect good statistical modelling skills, and fluency in spoken and written English.

Deadline : 24 November 2023

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(13) PhD Degree – Fully Funded

PhD position summary/title: Doctoral Student in Environmental Politics – Swiss Environmental Panel

The International Political Economy and Environmental Politics group is based both at the Center for Comparative and International Studies (CIS) and the Institute of Science, Technology and Policy (ISTP). Its research and teaching focuses primarily on the role of governments, civil society, industry, citizens, and consumers in providing solutions to environmental problems. The new doctoral student will contribute to the Swiss Environmental Panel, a long-term survey project that measures and explains environmental attitudes and behavior within Switzerland.

Deadline : Open until filled

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(14) PhD Degree – Fully Funded

PhD position summary/title: 2 Doctoral Fellowships in Architecture and Technology (2024)

We are looking for excellent people whose work demonstrates productive synergies between architecture and technology. We welcome architects with a solid technical, engineering or scientific background or interests and engineers/scientists whose work relates to architecture. We advise the applicants to thoroughly consult the ITA professorships’ websites before applying to ensure their research interests are compatible.

Deadline : January 31, 2024

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(15) PhD Degree – Fully Funded

PhD position summary/title: 1 PhD Position in Cell Deformability-Based Diagnosis of Hematological Diseases

The early diagnosis of cancer is now accepted to be a key determinant of patient outcome. Since cancer cells exhibit alterations in their mechanical properties (when compared to their benign counterparts), cell mechano-phenotype is an emerging hallmark of cancer, with the potential to dramatically improve both detection and subsequent classification. Accordingly, mechanical phenotyping through the measurement of cell deformability represents a potentially powerful diagnostic tool. Indeed, since cells undergo physical and biological changes during cancer progression, a complete understanding of such changes offers much in developing new diagnosis and treatment methods. Unfortunately, the application of single-cell deformability measurements is far from widespread, due to a lack of standardized metrics and difficulties associated with performing high-throughput measurements on complex biological samples. With this project, we aim to make single-cell deformability measurements suitable for routine diagnostic analysis in clinics, opening a new approach in cell-based diagnostics. Specifically, we bring together an actively collaborating cohort of scientists and clinicians with the aim of dramatically improving the potency of deformability-based diagnosis for hematological diseases, such as anemia, lymphoma and leukemia.

Deadline : Open until filled

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(16) PhD Degree – Fully Funded

PhD position summary/title: Doctorate in Geology/Geochronology

You will apply a range of cutting-edge analytical methods to study the development of large magmatic systems, with a particular focus on nested caldera complexes. The project will involve extensive field work in the Alps, geochemical characterisation, and high-precision geochronology on a range of volcanic and plutonic rocks, to arrive at an integrated model for the temporal and spatial development of the magmatism at a range of scales (regional to caldera complex-scale). The geochronology effort will be additionally applied to the results of stratigraphic and paleontological surveys led by our project partners to place their findings in an absolute time framework. This will allow correlation to other records worldwide and a better understanding of the period of climate change associated with the decline of the Late Palaeozoic Ice Age. You will be part of the Mineral Resource Systems group of Prof. Cyril Chelle-Michou, with ample opportunities to exchange with a range of experts within the Department of Earth Sciences representing fields ranging from cosmochemistry to climate geology. 

Deadline :13 November 2023.

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(17) PhD Degree – Fully Funded

PhD position summary/title: PhD Position in Self-assembled Colloidal Micromachines

Artificial intelligence enables robotic machines to autonomously adapt to their surroundings and perform complex tasks. Unlike large machines, micro- and nanomachines cannot host bulky computational units to generate intelligence. The intelligence of small-scale machines, including sensing, control and adaptation, can only stem from their physical bodies through various responsive mechanisms. Despite growing efforts in this field, encoding diverse types of intelligence into micromachines is still essentially unexplored.

Deadline : Open until filled

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(18) PhD Degree – Fully Funded

PhD position summary/title: PhD position in soft aerial robotics

Within the broad scope of the upcoming European project SPEAR, the PhD candidate will contribute to the domains ofdesign, manufacturing, propulsion and control of soft aerial robots.

Deadline : Open until filled

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(19) PhD Degree – Fully Funded

PhD position summary/title: PhD position in Electrochemical Energy Storage and Conversion

This full-time position offers students an excellent opportunity to delve into energy science and gain deep fundamental knowledge of electrochemical processes. You will join an inclusive, non-discriminating, and supportive working environment that praises scientific curiosity and creativity. The tentative starting date is 01.01.2024 or later. Applications are accepted until the position is filled.

Deadline : Open until filled

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(20) PhD Degree – Fully Funded

PhD position summary/title: PhD position in Differentiable Simulation and Machine Learning for Musculoskeletal Robotics

This doctoral position will focus mainly on the simulation and computational aspects, while most hardware components are fabricated and built by colleagues in the Soft Robotics Laboratory. Simulation to reality validation needs to be performed through experimental setups that the candidate should be able to design and use. A strong interest in working hands-on with robotic systems and validating simulations in the real world on robots is desirable. As a PhD student, you will develop and publish on new software frameworks and their physical validation. You will regularly present your work at international robotics and machine learning conferences. Your responsibilities will also include supervising bachelor and master students in their thesis works, supporting the Soft Robotics Laboratory in teaching its graduate classes, and in preparing grant proposals.

Deadline : Open until filled

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(21) PhD Degree – Fully Funded

PhD position summary/title: PhD position in Machine Learning for Mesh-based Representations of Robots and Deformable Objects

As a PhD student, you will develop and publish new software frameworks and their real-world validation. You will regularly present your work at international robotics and machine learning conferences. Your responsibilities will also include supervising bachelor and master students in their thesis works, supporting the Soft Robotics Laboratory in teaching its graduate classes and preparing grant proposals.

Deadline : Open until filled

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(22) PhD Degree – Fully Funded

PhD position summary/title: PhD position – Advanced detection and analysis of micro/nanoplastics in the environment

In Project 1 you will grow single crystals of perovskite and pyrochlore oxides, characterize them using x-ray and neutron diffraction on large-scale synchrotron and spallation sources, analyze their diffuse scattering and model their average and local structure, measure their magnetic and transport properties and identify the relation between disordered structure and observed properties. Project 2 will also involve experiments at large facilities but is mostly computational. You will develop code for processing and analyzing single crystal diffuse scattering data, and model crystal electronic structure using Density Functional Theory (DFT), and coarse-grain DFT to run large-scale atomic simulations of the real structure of disordered solids.

Deadline : Open until filled

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(23) PhD Degree – Fully Funded

PhD position summary/title: Doctoral position on the mechanics of straw-based architected materials

This doctoral project combines theory and experiments to study the mechanical behavior of a novel class of architected materials incorporating multistable members inspired by “bendy straws”. The first phase of the project will generalize an existing planar model of straws to 3D, formulate the latter as a finite element scheme (FE) and complete the implementation within an open-source FE framework. This model will be extended to consider complex asymmetric segments as well as structures embedded with incompressible and compressible fluids. The developed model will be experimentally validated on straw-based structures manufactured in the lab. The validation will involve 1D, 2D, and 3D experimental characterization of straws and straw-based structures under multiaxial imposed displacements. Structures are produced in-house through, among others, methods of additive manufacturing. Experimental characterization will employ image tracking and data analysis techniques and adjust those to the problems at hand. Finally, based on the validated model we will utilize machine learning-based inverse design to create structures with as-designed nonlinear mechanical performance as well as programmed reconfiguration. This project will collaborate closely with another team that studies intertwined structures, in order to extend the model and consider the effect of contact and to combine intertwined with straw-based structures towards a novel class of multifunctional architected materials.

Deadline : Open until filled

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(24) PhD Degree – Fully Funded

PhD position summary/title:  Doctoral position on the mechanics of intertwined architected materials

The focus of this doctoral project is primarily computational, while also involving interactions with fabrication and experimental experts within the group. You will develop robust and efficient numerical algorithms for exploring the design space and simulating the mechanical behavior of intertwined lattices. You will also have the unique opportunity to interact with multi-scale modeling experts within our group, and to collaborate with fabrication and experimental experts to 3D-print polymeric intertwined materials, and subject them to monotonic and cyclic loading. Data generated from the experiments will be used to calibrate the computational models. Overall, this research will result in novel optimal designs of intertwined materials, whose properties will be demonstrated in both simulations and experiments.

Deadline : Open until filled

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(25) PhD Degree – Fully Funded

PhD position summary/title: PhD position in Supply Chain Management

You will be responsible for your own doctoral research, supporting research projects, supervising master’s theses, and assisting in teaching. You will also be expected to participate in community outreach and educational programs. You should be willing and interested in writing research-oriented papers for scholarly journals, academic proceedings, and practitioner journals.

Deadline : Open until filled

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(26) PhD Degree – Fully Funded

PhD position summary/title:  PhD Position on Metrics for Circular Construction

The work will be carried out in an interdisciplinary team at the Ecological Systems Design Group and the Circular Engineering for Architecture (CEA) Group. The main goal of the doctoral project is develop metrics for circular and sustainable construction. To evaluate the directionality and validity of your metrics, you will conduct material flow analysis and life cycle assessment of building construction projects. You will develop a tool for quantifying circularity metrics in construction projects. Throughout the project you collaborate with stakeholder groups composed of industry and governmental representatives to discuss your research outcomes and next steps. An integral part of your work is publishing your results in peer-reviewed journals and presenting them at international conferences.

Deadline : Open until filled

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(27) PhD Degree – Fully Funded

PhD position summary/title: PhD and Scientific Assistant positions in Digital Product Passports and Digital Tools for Circular Construction

The selected candidates will be involved in developing data templates, Building Information Modelling (BIM) workflows and other tools for automated generation of DPPs and building components inventory, as well as a digital and physical tracking and tracing system. The project operates at the intersection of civil engineering, architecture and computer science.

Deadline : Open until filled

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(28) PhD Degree – Fully Funded

PhD position summary/title:  PhD Position in Mechanical Rock Preconditioning

You will develop a new methodology for the mechanical preconditioning of rock for underground energy storage and recovery applications. You will be working in the Rock Physics and Mechanics Lab within the Department of Earth Sciences to design and develop a mechanical rock pre-conditioning method. Using the new method, you will conduct laboratory pre-conditioning experiments under in-situ stress and temperature conditions relevant to applications such as Enhanced Geothermal Systems.

Deadline :December 4, 2023.

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(29) PhD Degree – Fully Funded

PhD position summary/title:  PhD candidate for modelling & optimising highly efficient drive systems for E-vehicles based on GaN devices

We are looking for outstanding, highly motivated people interested in pursuing PhD research on highly efficient drive systems for electric vehicles. For achieving high efficiency in a wide operating range, different 3-level inverter topologies and modulation schemes for drive systems should be modelled and optimised in this research project. Considering a wide operating range is important as the inverter is directly connected to the battery, which has a wide voltage range depending on the state of charge. Furthermore, the drive system is operated in many use cases only at a relatively low power level compared to nominal power, so that also partial load operation is also important to consider in the design phase. The efficiency increase should be achieved by using optimised 3-level inverter topologies, which also allow for to reduction of the losses in the electrical machine due to lower ripple currents. Furthermore, new wide band gap depletion mode GaN HEMT devices in a direct-driven cascade configuration should be investigated, which allows reducing conduction as well as switching losses thus enabling a wider range of switching frequency at high-efficiency levels. A disadvantage of 3L inverters is the higher number of switches, which results in higher costs and which require more space. To still benefit from the 3L topology, a design trade-off between the inverter and the motor losses, which results in overall minimal losses, and an optimised PCB power module layout are necessary. The optimal design should be identified based on comprehensive models and an optimisation procedure considering the Worldwide Harmonised Light Vehicle Test Procedure (WLTP). In the optimisation, different 3L topologies, modulation schemes, a wide switching frequency range, and different motor types as well as basic control strategies should be considered, for identifying the best topology and the optimal operating parameters for the different operating points. In the final step, you should validate the optimised design with a prototype system.

Deadline : Open until filled

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(30) PhD Degree – Fully Funded

PhD position summary/title:  PhD positions in computational quantum many-body physics, machine learning, quantum computing, quantum machine learning

In this role, you will be at the forefront of addressing several fundamental questions including: How can we best simulate strongly correlated quantum systems and harness the power of both classical and quantum computing resources? How can we exploit or take inspiration from quantum physics to develop cutting-edge machine learning? Your work will encompass a diverse array of concepts at the intersection of artificial intelligence, condensed matter physics, and quantum computing. You will dive deep into the realms of theoretical and computational physics with a focus on the development of algorithms and large-scale numerical simulations. Your expertise will extend to various areas, including quantum Monte Carlo, machine learning, quantum computing, quantum machine learning, and tensor networks. These and other techniques will allow us to confront challenges within the domains of equilibrium and out-of-equilibrium properties of quantum many-body systems, quantum computing, and machine learning, where you’ll have the opportunity to contribute to the advancement of our understanding and capabilities in these groundbreaking fields.

Deadline : Open until filled

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(31) PhD Degree – Fully Funded

PhD position summary/title:  Doctoral researcher position in the SNSF Research Project “Digital Construction Archive”

Two doctoral dissertations will elaborate strategies for the convservation of the material heritage of digitally fabricated architecture by analysing the maintainability and repairability of the constructions realised within the framework of the NCCR Digital Fabrication. The objects studied are divided between two dissertations. They each focus on a different pool of objects based on the nature of the materials and the underlying digital processes. Through an iterative process the doctoral researchers will formulate case studies to gain insights into the fabrication process and assess the repairability of such constructions. These case studies also facilitate the planning of repairs for building elements and entire structures, thereby contributing to the authentic preservation of the material heritage of digitally fabricated constructions. 

Deadline : December 15th 2023

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(32) PhD Degree – Fully Funded

PhD position summary/title:  PhD position in Influence of suspended particles on cavity inception and dynamics

The close vicinity of rigid or mobile surfaces leads to asymmetric cavity collapse with intense shear and pressure hammer, which can be harnessed for achieving desired particle or droplet breakage. However, that requires thorough and quantitative understanding of inception and dynamics of collapsing cavities in presence of suspended particles or drops. This open challenge will be addressed by understanding the physical mechanisms behind cavitation in particle-laden fluids. The PhD project will reveal their effects on cavitation inception and dynamics through idealised experiments and computational models. The key objectives are: 1) Design experiments for 10m fps visualisation and acoustic analysis of cavitation inception and dynamics; 2) Synthesise and test particles to assess their effect on cavitation nucleation (single particle vs. clusters; 3) Develop an empirically-based predictive tool for nucleation onset in particle-laden fluids; 4) Perform systematic experiments on cavity-particle interactions at cavity cloud level. The key expected results are:  1) Experimental technique and new data to characterise cavitation nucleation; 2) Physical model which couples single-particle nucleation to a particle-laden fluid cavitation; 3) Characterisation of cavitation inception for different types of particles.

Deadline :  5th January 2024.

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(33) PhD Degree – Fully Funded

PhD position summary/title:  PhD Position in Numerical Modelling of Debris Flows

You will develop a new coupled solid/ fluid mechanics-based numerical model to simulate the motion of debris flows. You will incorporate novel field data currently being collected at numerous locations around the world to validate the new numerical model. You will combine the numerical model results with field data to further our understanding of the motion of debris flows

Deadline :  December 12, 2023.

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(34) PhD Degree – Fully Funded

PhD position summary/title:  PhD position “Near-net shape spark plasma sintering of self-healing ceramic sealings for hydrogen compressors”

In the first step, you will conduct sintering experiments to i) study the compaction behavior of the starting ceramic material, ii) determine optimal processing parameters to produce fully dense, crack-free samples and iii) characterize the mechanical and thermal properties of these samples. Through a coupled modelling and experimental approach, you will then determine the optimal die geometry for near-net shape SPS. Finally, multi-material prototypes with local additions of dry-lubricant and self-healing agents near friction-prone surfaces will be manufactured and characterized, in close collaboration with the industrial partner of the project. Besides research activities, the PhD candidate will also be actively involved in teaching and lab duties.

Deadline : Open until filled

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About ETH Zurich, Switzerland- Official Website

ETH Zürich is a public research university in the city of Zürich, Switzerland. Founded by the Swiss Federal Government in 1854 with the stated mission to educate engineers and scientists, the school focuses exclusively on science, technology, engineering and mathematics. Like its sister institution EPFL, it is part of the Swiss Federal Institutes of Technology Domain, part of the Swiss Federal Department of Economic Affairs, Education and Research.

In the 2021 edition of QS World University Rankings, ETH Zurich was ranked 6th in the world, placing it as the second-best European university after the University of Oxford. In the 2020 QS World University Rankings by subject, it ranked 4th in the world for engineering and technology (2nd in Europe) and 1st for earth & marine science. Also, ETH was rated 8th in the world in the Times Higher Education World University Rankings of 2020.

The university is an attractive destination for international students thanks to low tuition fees of 809 CHF per semester, PhD and graduate salaries that are amongst the world’s highest, and a world-class reputation in academia and industry. There are currently 22,200 students from over 120 countries, of which 4,180 are pursuing doctoral degrees.

As of November 2019, 21 Nobel laureates, 2 Fields Medalists, 2 Pritzker Prize winners, and 1 Turing Award winner have been affiliated with the Institute, including Albert Einstein. Other notable alumni include John von Neumann and Santiago Calatrava. It is a founding member of the IDEA League and the International Alliance of Research Universities (IARU) and a member of the CESAER network.

 

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