58460 - Physics Education

Academic Year 2026/2027

  • Moduli: Olivia Levrini (Modulo 1) (Modulo 2)
  • Teaching Mode: In-person learning (entirely or partially) (Modulo 1); In-person learning (entirely or partially) (Modulo 2)
  • Campus: Bologna
  • Corso: Second cycle degree programme (LM) in Mathematics (cod. 6730)

    Also valid for Second cycle degree programme (LM) in Physics (cod. 6695)

Learning outcomes

At the end of the course, the student will know: - the main results obtained by Physics Education Research regarding the conceptual, epistemological, linguistic and educational knots related to the teaching and learning of upper secondary school physics topics (e.g. thermodynamics, electromagnetism, relativity, quantum physics); - teaching tools and methodologies developed by Physics Education Research and within the History of Physics, also with respect to the role of the teacher and the teaching choices that can be made; - methods for monitoring and analysing the processes of teaching/learning physics. The student will be able to: - analyse research materials (questionnaires and transcripts of audio- and video- recording) concerning emblematic moments of learning; - use various texts and materials for designing teaching/learning experiences (textbooks, original papers, historical and epistemological texts, research papers in physics education research, popular science books, web-sites, and so on); - analyse innovative proposals for teaching physics at the secondary school level; - apply instructional methodologies and technologies to design teaching paths and experiences in relation to physics topics foreseen by the Italian syllabus for secondary schools.

The course is in Italian and Italian language is needed for examination. 

Course contents

The course will cover the following topics:

  • Current research in Physics Education: inter-, multi-, and transdisciplinarity to align disciplinary education with social challenges; pluralism in science and epistemic emotions; futures-oriented physics education.
  • Teaching Special Relativity: students’ learning difficulties reported in the literature; comparison between Einstein’s and Minkowski’s approaches as a case study to analyze the role of pluralism in scientific debate and the role of physics in times of profound change.
  • Teaching Thermodynamics: students’ learning difficulties reported in the literature concerning the concepts of temperature, heat, internal energy, and entropy; comparison between macroscopic and microscopic approaches from an educational perspective; thermodynamics as an example for designing inclusive learning environments; the construct of appropriation and strategies for classroom orchestration; openness toward complex systems and new visions of the future.
  • Teaching Quantum Physics: from old quantum physics to the second quantum revolution; the role of language and metaphors in the teaching and learning of quantum physics; the relationship between science, technology, and society.

During the course, students will analyze various types of texts (textbook chapters, research articles, and historical-epistemological essays) to become familiar with the different levels on which discourse in physics education develops: conceptual/disciplinary, cognitive, epistemological, and pedagogical/didactic.

The course will also address the following socially relevant topics:

  • gender issues in the teaching and learning of physics;
  • the relationship between science and society.

The following transversal skills will be developed:

  • critical thinking;
  • teamwork skills;
  • communication skills.
The course will be taught in Italian and italian language is needed for the exam.

Readings/Bibliography

Teaching materials will be uploaded on a shared folder and made available on the Moodle platform of the course.

The materials include slides and presentations, research articles and other materials for study (e.g.: tutorials, guides for group activities, research tools, students' protocols, etc.).

The following text is suggested for deeper study of the course topics:

Besson U. (2015), Didattica della fisica, Carocci.

Teaching methods

The course is designed to illustrate a large variety of teaching methods aimed to promote active learning.

Students will experience on themselves: socratic/dialogical lessons (vs. academic lectures), co-construction of arguments, peer-to-peer problem analysis, and group work using various facilitation tools, such as tutorials.

Since interactive teaching methods will be implemented, attendance at lessons is strongly recommended.

Students with Specific Learning Disabilities (SLD) or temporary/permanent disabilities are advised to contact the University Office responsible in a timely manner (https://site.unibo.it/studenti-con-disabilita-e-dsa/en ). The office will be responsible for proposing any necessary accommodations to the students concerned. These accommodations must be submitted to the instructor for approval at least 15 days in advance, and will be evaluated in light of the learning objectives of the course.


Assessment methods

The exam consists of an oral task divided into two parts.

Part I

- Presentation and discussion of a research article in Physics Education, selected from a list made available. The presentation of the analysis must contain a critical reflection on: i) the research problem addressed; ii) the research method used; iii) results; iv) implications for teaching.


Part II
- Discussion about concepts or topics addressed in the course both from a disciplinary and an educational point of view.

The first part of the exam will assess student's ability to:

1) understand the approach, contents and results of the article (up to 10 points);
2) understand the structure and methodological aspects (up to 10 points);
3) elaborate and reflect critically on the implications of the article (up to 10 points).

The second part of the exam will evaluate:

1) the level of comprehension of a concept or topic addressed during the course;

2) the ability to analyze such a concept or topic from an educational perspective, that is the ability to recognize what aspects of the concept/topics are problematic for understanding;

3) the ability to situate the discussion of this theme or concept within a wider cultural and educational perspective and/or within a teaching path.

The final mark will be the average between the points obtained in the first and in the second part of the exam.

For attending students, there will be ongoing activities of formative assessment, aimed to prepare to the sommative assessment and to develop "feedback literacy" skills.

Students with Specific Learning Disabilities (SLD) or temporary/permanent disabilities are advised to contact the University Office responsible in a timely manner (https://site.unibo.it/studenti-con-disabilita-e-dsa/en ). The office will be responsible for proposing any necessary accommodations to the evaluation forms.

Power-point presentations, educational movies, tools embedded in Virtuale (e.g wooclap or forum).

 

Teaching tools

Power-point presentations, educational movies, tools embedded in Virtuale (e.g wooclap or forum).

Office hours

See the website of Olivia Levrini

See the website of

SDGs

Quality education Gender equality

This teaching activity contributes to the achievement of the Sustainable Development Goals of the UN 2030 Agenda.