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Bachelor’s degree programme ( credits) In the first three semesters, basic theoretical knowledge of mechanical engineering is acquired in compulsory subjects. From the fourth semester onwards, students attend electives in their main areas of interest. In the fifth semester, they select an area of focus or a . Master Mechanical Engineering. Main content. The Master’s degree programme integrates in-depth knowledge from core areas of mechanical engineering – such as mechanics, thermodynamics, fluid dynamics, materials and manufacturing science, control systems, and product development – with mathematics, computer science, physics, chemistry and. 29/07/ · Jochen Mueller, former doctoral student in Professor Kristina Shea’s Engineering De-sign and Computing Laboratory at the Department of Mechanical and Process Engi-neering of ETH Zurich, has been appointed Tenure-Track Assistant Professor in Civil and Systems Engineering at Johns Hopkins University, Baltimore, USA. A variety of engineering areas are considered including structures, mechanical systems, mechatronics and robotics that are relevant for a wide range of industries including automotive, aerospace, consumer products, manufacturing and buildings. The group carries out both basic scientific research and applied research in collaboration with industry.

A sound technological basis and a wide horizon provide the basis for the work of mechanical engineers at the interfaces where electronics, computer science, mechanics, thermo-dynamics and chemistry meet and where products, systems and processes are developed, calculated and planned. Mechanical engineers develop many varied products, ranging from tiny microsensors for medical technology and highly efficient energy plants to applications for automotive and aviation engineering.

They use computers to design new machine tools or construct wheelchairs that can climb stairs. In the process engineering field, for example, they control industrial, biotechnical or chemical processes. They also assume management tasks in companies, work as quality or risk assessment experts in the service industry evaluating fire and explosion hazards, for example , draw up production forecasts, and work in the field of strategic consultancy.

Their professional environment is internationally oriented. In the first three semesters, basic theoretical knowledge of mechanical engineering is acquired in compulsory subjects. From the fourth semester onwards, students attend electives in their main areas of interest. In the fifth semester, they select an area of focus or a focus project. General basic courses : Mathematics, Computer Science, Chemistry, Physics Basic courses in engineering : Product Development, Control Engineering, Thermodynamics, etc.

For detailed information go to the pages in German Maschineningenieurwissenschaften. Follow this link for all consecutive and specialised Master’s degree programmes. Press Enter to activate screen reader mode.

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Lukas Spiekermann is joining the EPSE Group as PhD Student. Our contributions to the 31 st European Symposium on Computer-Aided Process Engineering ESCAPE have just been published in the conference proceedings by Elsevier in Computer-Aided Chemical Engineering EPSE will contribute with a poster to the 9th International Conference Fuel Science – From Production to Propulsion.

On 31 May, the successful kick-off of the PATHFNDR project took place. PATHFNDR is one of four consortia selected in the first call „Integration of renewables“ and funded by the SFOE under the funding programme SWiss Energy research for the Energy Transition SWEET. Besides the leading house ETH Zurich, teams from Empa, PSI, ZHAW, HSLU, UniGE, EPFL, and also 25 industry partners will investigate how the Swiss energy system has to be transformed to absorb a much higher share of renewable energy sources.

Christiane Reinert is joining the EPSE Group as a guest. We are excited to present our research at the 31st European Symposium on Computer-Aided Process Engineering ESCAPE For their repeated constructive feedback in our new course „Introduction to Modeling and Optimization of Sustainable Energy Systems“. Virtual EPSE Seminar Series.

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The phase-field approach to fracture is characterized by a strong mathematical background and a remarkable flexibility for the numerical computation of complex fracture phenomena. We develop models and simulation frameworks for different additive manufacturing technologies used for the fabrication of metallic and polymeric components. We recently started exploring its potential for computational solid mechanics.

Some of our completed projects focused on contact mechanics, isogeometric discretization techniques and modeling and imaging of complex materials. We propose a new approach for data-driven automated discovery of isotropic hyperelastic constitutive laws. The approach is unsupervised, i. The problem of unsupervised discovery is solved by enforcing equilibrium constraints in the bulk and at the loaded boundary of the domain.

The ensuing fully automated algorithm leverages physics-based constraints for the automatic determination of the penalty parameter in the regularization term. Using numerically generated data including artificial noise, we demonstrate the ability of the approach to accurately discover five hyperelastic models of different complexity. Phase-field models of brittle fracture can be regarded as gradient damage models including an intrinsic internal length.

This length determines the stability threshold of solutions with homogeneous damage and thus the strength of the material, and is often tuned to retrieve the experimental strength in uniaxial tensile tests. In this paper, we focus on multiaxial stress states and show that the available energy decompositions, introduced to avoid crack interpenetration and to allow for unsymmetric fracture behavior in tension and compression, lead to multiaxial strength surfaces of different but fixed shapes.

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The Swiss Data Science Center SDSC is a national center between EPFL and ETH Zurich, whose mission is to accelerate the use of data science and machine learning techniques broadly within academic disciplines of the ETH Domain, the Swiss academic community at large, and the industrial sector. We are looking for a creative engineer to join our ranks. In this role, you will help build the devops, infrastructure and application backbone of the Renku project.

Your contributions will enable new features and ensure smooth access to instances of Renku for hundreds of researchers, analysts and students from around the world in fields as varied as astronomy, ecology, and personalized medicine. In addition, you will work closely with the rest of the Renku team to enable uninterrupted platform development by providing rock-solid internal infrastructure. You are an engineer with a minimum of a BSc in Computer Science or a related discipline and feel capable of working with our technology stack:.

Please note that we do not expect successful candidates to have deep knowledge in all the above technologies and frameworks. Ideally, you will have experience with some and be eager to learn more along the way. Our engineering and operations team loosely follows an agile methodology. We work with a very flat hierarchy which gives individual engineers a high degree of autonomy and responsibility, and we encourage all of our team members to contribute their unique viewpoints to the overall decision making.

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Bridging continuum and atomistic models to describe and predict nanomaterials behavior in macroscopic devices. Tommaso presented our recent progress in controlling the exciton transition dipole moment in quantum dot solids for overcoming the LED light outcoupling efficiency. Liuba’s project about the development of scalable and reliable graphene sensors is funded by the Netherlands Organisation for Scientific Research NWO.

Tian’s proposal in the field of machine-learning-assisted design of 2D material catalysts has been approved to receive the fellowship. On 28th of August all group members hiked to Pilatus in Luzern. Jakub Jagielski defended his PhD thesis entitled „Two-Dimensional Colloidal Quantum Wells for Future Photonic Sources“. The Neue Zürcher Zeitung NZZ highlighted our Nat.

Collaborative work with Dr. Yinyin Bao at the Leroux group. New mechanism enabling color-tunable fluorescent polymers. We demonstrate a solid-state reaction approach to make electroluminescent full-visible-spectrum perovskite QDs at room temperature. The invited account reviews recent literature in blue-emitting perovskites.

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The Master’s degree programme integrates in-depth knowledge from core areas of mechanical engineering — such as mechanics, thermodynamics, fluid dynamics, materials and manufacturing science, control systems, and product development — with mathematics, computer science, physics, chemistry and biology. This integration is essential for multidisciplinary areas, for example, robotics, micro and nanotechnologies, production systems, and energy systems.

Products and systems created by engineers have the potential to significantly affect society. The social context in which mechanical engineering is practised and its broad interdependencies are reflected in complementary courses in economics, organisation and management, political science, and humanities. MSc Mechanical Engineering PDF, KB.

Press Enter to activate screen reader mode. Homepage Navigation Search Content Footer Contact Sitemap. Master Mechanical Engineering Main content. Language of instruction English. Credits duration 90 ECTS 1. Academic title Master of Science ETH in Mechanical Engineering.

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Below you will find a list of companies employing materials scientists and materials engineers who are Materials Alumni. Take a look at the companies and sectors in which we work. We would be happy to try and arrange personal contacts with members in the respective companies. Press Enter to activate screen reader mode. Homepage Navigation Search Content Footer Contact Sitemap. You are here Homepage Affiliate organisations Engineering Sciences Materials Alumni List of companies.

List of companies Main content. Company Sector Description 3A Composites Transport Airex Composite Structures is a leader in the development and manufacture of lightweight constructions for passenger transportation. ABB Energy, automation ABB is a leader in energy and automation technology for supply and industrial firms. Abbott Medical engineering Abbott AG is a global healthcare operator.

It is involved in the research, development, manufacture and marketing of pharmaceutical products, medical products and diagnostics. Alu Menziken Metalworking Alu Menziken is am expert partner for innovative, application-specific aluminium semi-finished products and components in selected industrial sectors.

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Arch T. Colwell-Medal: Society of Automotive Engineers, USA Additional information Konstantinos Boulouchos has served as Founding Director of the Energy Science Center of ETH Zürich () and is the Head of the SCCER “Efficient Mobility” since Mixed-criticality systems, which are commonly deployed in the automotive, aerospace and avionic domains, integrate functionalities of different safety and/or time criticality into a common platform in order to reduce size, weight, power and cost of hardware.

The Engineering Design and Computing Laboratory investigates cutting-edge computational models, methods and tools to automate design and fabrication processes, explore large design spaces and develop more innovative and complex engineered systems and products. The research is interdisciplinary combining engineering, design and computing and considers early conceptual design phases through to the fabrication of novel solutions.

Current research topics include model-based systems engineering, computational design synthesis and optimization and computational design-to-fabrication, the latter of which aims to capitalize on new additive manufacturing capabilities in design. A variety of engineering areas are considered including structures, mechanical systems, mechatronics and robotics that are relevant for a wide range of industries including automotive, aerospace, consumer products, manufacturing and buildings.

The group carries out both basic scientific research and applied research in collaboration with industry. Visit website. Press Enter to activate screen reader mode. Homepage Navigation Search Content Footer Contact Sitemap. You are here Homepage The Institute Engineering Design and Computing Laboratory. Engineering Design and Computing Laboratory Main content.

Technical Drawing and CAD: from 3D printout to assembled toy cars.

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