Study university: Tampere University
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
Communication theory
This course focuses on the most fundamental elements, processing methods and laws and boundaries stemming from the nature that are encountered in all electrical and electromagnetic communication systems (Internet, mobile radio networks, WLANs/WiFi, etc.). These include the concepts of filtering and modulation and phenomena like noise, distortion and interference. Also fundamental information theoretic bounds applicable
Basic course on wireless communications
In this course, the focus is on the basic techniques of the radio interface in all wireless systems and networks, on top of which, e.g., the Internet network protocols are built. Upon completing the course, the student can explain and compare the structures, principles, and possible applications of different wireless communication systems. Course contents Learning
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
Advanced course on wireless communications
This course focuses on creating an understanding on the evolution of the mobile radio networks from 2G to 4G and beyond. The course covers operation and functionalities of Layer 1 and Layer 2 protocols. Course contents Evolution of mobile radio networks: LTE radio interface: LTE network is used as a reference system, but the studied
5G mobile communications
This course focuses on the requirements, enabling technologies, use cases and applications of future fifth generation (5G) mobile communication networks. Course contents 3GPP standard development 5G core enabling technologies 5G new radio (5G-NR) radio interface 5G requirements and use cases Learning outcomes After passing this course, the students have a good understanding on the potential,
Introduction to sustainable digital life
The Introduction to sustainable digital life MOOC is a part of the master’s programme in Sustainable Digital Life. The course introduces the main themes of the Sustainable Digital Life programme. The course consists of topical online lectures, reading materials and written assignments. The course consists of the following themes: Learning outcomes After completing the Introduction
Functional programming
Course contents Learning outcomes After completing the course, the student knows the basic programming structures for functional programming and is able to write programs in a functional programming language. is aware of the benefits of functional programming style and can solve problems in the functional programming way. Teaching schedule Self-study. Possibility to consult the teacher
Vectors and matrices
Course content: In this course, the student learns the basic theory and methods of linear algebra and matrix analysis. The student learns how to prove theorems and solve problems using mathematical methods and to present solutions orally and in written form. More information in Tampere University’s study guide. You can get a digital badge after
Jäähdytystekniikka
Kurssilla käydään läpi perusteet jäähdytyslaitteistojen ja -laitosten sekä lämpöpumppujen suunnittelusta ja mitoituksesta. Kurssin sisältö Osaamistavoitteet Opiskelija ymmärtää tärkeimpien jäähdytysprosessien toiminnan, osaa määrittää prosessin toiminta-arvot tilapiirroksesta ja taulukoista, ymmärtää pääkomponenttien toiminnan, osaa valita pääkomponentit käsin arvioiden, tuntee tärkeimmät kylmäaineet ja niiden ominaisuudet, ymmärtää kostean ilman käyttäytymisen. Opetuksen aikataulu Lähiopetus keskiviikkoisin klo 12-16. Suoritustapa Osallistuminen lähiopetukseen ja