Kieli: Englanti

  • Defining and discussing accessibility in society

    This module gives you an opportunity to reflect accessibility in society and how accessibility is visible in your daily life. Course contents The thematic module introduces the definition of accessibility and discussion in society, but also the role of disability legislation. People with disabilities are often excluded from the mainstream of society. Disabilities affect people’s

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  • Fundamentals of accessibility

    The course provides basic understanding of what accessibility is and who benefits from it, why accessibility is important, how to encounter a person with a disability, and how different laws and directives affect accessibility. Course contents The course gives an overview of how accessibility can be taken into account in everyday communication and digital services.

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  • Basic course on communications engineering

    The course introduces the basic concepts and operating principles for understanding the current and future communications systems. During the course, you will learn how digital data is transferred efficiently from a transmitter to a receiver, and how the properties of transmission medium affect the achievable data transfer rate. In addition, the course describes how single

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  • Computer networking I

    On this course, the student will learn to design, develop, configure and maintain a small home or office network. Furthermore, the student will understand the basic concepts of networking applications design and development. Course contents Learning outcomes During this course the student will: Course material Lecture recordings and other materials are available on the course

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  • Tietoverkkotekniikat I

    Opintojakson suoritettuaan opiskelija Kurssin sisältö Kurssimateriaali Luentomateriaali ja täydentävät materiaalit. Kurssimateriaalit (videot, luentomoniste yms.) ovat saatavilla kurssialustalla. Opetus Kurssi perustuu pääasiassa omatoimiseen opiskeluun. Suoritustapa Kotitehtävät sekä tentti tai kirjallinen työ. FITech-opiskelijoille tarjotaan mahdollisuuksien mukaan joustavia suoritustapoja. Lisätietoja Tampereen yliopiston opinto-oppaassa. Tämän kurssin suorituksesta on mahdollista saada digitaalinen suoritusmerkki.

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  • Introduction to product management

    Product management is one of the most crucial competencies for startups and scale-ups. Combining customer needs and realities of production during fast growth calls for a strong vision and ability to coordinate the requirements of customer needs, software development, and business development. While designers, developers, and business functions are specifically working on each of these

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  • Renewable energy

    Course deals with the renewable energy production methods (e.g. wind, solar, P2X, biomass, hydrogen), their environmental impacts and utilisation of side streams for energy production. Course contents Renewable energy production methods and technologies Water and wind power Solar energy Biofuels Biomass conversion Side streams utilisation Power-to-X technologies Emissions and environmental aspects Learning outcomes After the

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  • Energy transition and climate neutrality

    The global transition to climate neutrality and a more sustainable energy supply means that net emissions of greenhouse gases will be gradually reduced. The demand to be able to estimate carbon footprints for energy carriers, processes, products and companies has therefore increased. The aim of the course is to become more familiar with both scientific

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  • Game development project

    The objective for this course is for students to learn how to use their software engineering knowledge in an entertainment software engineering context. With the selected game development tools, student is capable to independently design and develop a small game program on some modern game engine platform, or work as a part of a team

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  • Heat transfer

    Max amount of FITech students: 10 Basic heat transfer phenomena will be covered on this course. In addition to understanding the basic physical phenomena, the student will learn to solve theoretical heat transfer problems as well as numerical heat transfer problems using the Matlab software. Course contents Learning outcomes After the course the student Course

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