MSE Master of Science in Engineering

The Swiss engineering master's degree


Ogni modulo equivale a 3 crediti ECTS. È possibile scegliere un totale di 10 moduli/30 ECTS nelle seguenti categorie: 

  • 12-15 crediti ECTS in moduli tecnico-scientifici (TSM)
    I moduli TSM trasmettono competenze tecniche specifiche del profilo e si integrano ai moduli di approfondimento decentralizzati.
  • 9-12 crediti ECTS in basi teoriche ampliate (FTP)
    I moduli FTP trattano principalmente basi teoriche come la matematica, la fisica, la teoria dell’informazione, la chimica ecc. I moduli ampliano la competenza scientifica dello studente e contribuiscono a creare un importante sinergia tra i concetti astratti e l’applicazione fondamentale per l’innovazione 
  • 6-9 crediti ECTS in moduli di contesto (CM)
    I moduli CM trasmettono competenze supplementari in settori quali gestione delle tecnologie, economia aziendale, comunicazione, gestione dei progetti, diritto dei brevetti, diritto contrattuale ecc.

La descrizione del modulo (scarica il pdf) riporta le informazioni linguistiche per ogni modulo, suddivise nelle seguenti categorie:

  • Insegnamento
  • Documentazione
  • Esame

Modules: 11

Advanced Project Management (CM_AdvProjMgmt, 2024-2025)

The goals of an organization can be efficiently pursued only through proper project management, as a means able to consistently tackle their needs. Thus the role of the Project Manager becomes essential, as responsible to achieve the objectives, respecting the constraints determined by the project context. Modern Project Managers must have in-depth technical and management knowledge.
The course provides the students…

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Quality and Risk Management (CM_QRM, 2024-2025)

The CM_QRM addresses the most relevant basics in integrated quality and risk management. Theory is applied and specified by examples and case studies. The module concentrates on current standards and best practices on quality and risk management and introduces the most established approaches.

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Sustainable Development (CM_SustDev, 2024-2025)

Sustainable development is essential for many parts of modern society. This module provides an overview of the history of sustainable development, of established concepts, as well as of relevant initiatives and organisations globally and in Switzerland. Further, methodologies and tools are introduced for engineers to contribute to sustainable development on a technical level. Students learn the fields of application…

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Digital Image Processing (FTP_DigImPro, 2024-2025)

The goal of this module is to teach the fundamentals of image processing, while putting emphasis on their mathematical and algorithmic principles. In addition, specific 2D and 3D industrial and biomedical applications will be treated.

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Multiphysics (FTP_Multiphy, 2024-2025)

The module gives students insight into the modeling and simulation of coupled effects (multiphysics). The module provides an overview on the different application fields of multiphysics modeling and simulation in industry. Students learn the methodical procedures that are necessary for successfully solving modeling and simulation problems in the different areas of engineering and physics. The consolidation and…

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Physique des matériaux et des dispositifs électroniques (FTP_Physics, 2024-2025)

Les étudiants-e-s comprennent et savent appliquer les principes de base des composants électroniques et des dispositifs techniques importants, en faisant appel aux propriétés des matériaux et en appliquant des concepts microscopiques. Ces concepts comprennent les électrons et les trous dans les solides, les bandes d'énergie des métaux et semi-conducteurs, le mécanisme de polarisation dans les matériaux…

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Intelligent and Hyperconnected Machine (FTP_SmartMach, 2024-2025)

Students learn and experience an advanced approach for designing an autonomous real-time process monitoring system (cyber-physical system)

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New Design Methodologies for Microengineering Products (TSM_MTProdDes, 2024-2025)

By the end of this course, students will have acquired the skills to analyse, understand and identify the design process environment for microengineering devices. The course includes concepts specific to design processes in microengineering, such as the specificities due to the size of devices and microfabrication tools.

Students will be trained to understand the customer's need, formalise the problem, establish the…

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Micromachining and Fabrication Processes in Microengineering (TSM_MicroFab, 2024-2025)

The goal of the module is to give an overview on the existing micromachining and micromanufacturing processes commonly used in microengineering. The module covers the working principles and technical aspects of modern industrial micromachining equipment as well as photolithography-, engraving- and etching-based microfabrication techniques.

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Quality Control (TSM_QCheck, 2024-2025)

Introduction:

  • Introduction to Quality Control
  • Statistics refresher: Probability distributions, sampling distributions, inference
  • Overview of the most commonly used problem-solving tools: histogram, plots, Pareto chart 

Problem-solving methodology:

  • Quality management approaches: QRQC, A3, 8D, DMAIC, etc.
  • Statistical analysis: t-tests, confidence intervals

Introduction to Statistical Process Control :

  • Customer and supplier…

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Smart Sensing (TSM_SmartSens, 2024-2025)

Sensors can be defined as smart sensors in three different manners: (a) the use of a smart design to obtain immunity from various parameters of influences in the targeted application, (b) the integration or embedding of a readout circuit and possibly also of a microcontroler in the same package or on the same substrate, (c) smart regarding its configuration and data analysis method allowing the observation of complex…

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