THERE. TEACHING OF MATHEMATICS 1 AND 2 WITH LABORATORY 2
Module MATHEMATICS TEACHING LABORATORY 1

Academic Year 2026/2027 - Teacher: GIUSEPPA RITA CIRMI

Expected Learning Outcomes

The course aims to provide hands-on examples related to topics in Euclidean geometry and geometric transformations.

Exercises, cooperative activities, and simulations will be offered to deepen mathematical understanding and strengthen communication skills. Specifically, the following objectives will be pursued:

a. Knowledge and comprehension: knowledge of elements of Euclidean geometry and the properties of geometric figures; knowledge of isometries and dynamic environments for teaching.

b. Applying knowledge and understanding: designing instructional pathways related to geometry topics for elementary school, as well as hands-on activities in collaborative and cooperative settings.

c. Making judgments: analyzing instructional proposals—including those designed by others—and evaluating their appropriateness and effectiveness.

d. Communication skills: communicating mathematical content in a simple manner within cooperative and collaborative contexts.

e. Learning skills: being able to work both in groups and independently; enhancing creative abilities; learning to design instructional activities by adapting the subject matter to the most appropriate instructional approach; acquiring professional competencies related to the teaching profession.

Course Structure

Classes will be held in person and will feature guided activities in small groups, as well as discussions and exchanges of ideas.

Required Prerequisites


Basic Knowledge of Euclidean Geometry for Elementary and Preschool.

Attendance of Lessons

Attendance is mandatory

Detailed Course Content


The workshop offers a practical and methodological program divided into three main areas: analog activities (using pen and paper, and possibly origami), digital exploration (using GeoGebra software), and, where appropriate, multidisciplinary integration (Gallery Walk on STEM topics).

Textbook Information

D’Amore B., Sbaragli S. (2023) Principi di base di didattica della matematica. Bonomo Editore

Sabena C. Ferri F. Martignone F. Robotti E. (2019) Insegnare e apprendere Matematica nella scuola primaria e dell’infanzia. Mondadori Education

Matematica per il cittadino 2001. Unione Matematica Italiana.

Course Planning

 SubjectsText References
1Review of Euclidean geometry and geometric transformations
2Hands-on activities and games involving Euclidean geometry and geometric transformations
3Activities using digital environments for dynamic geometry
4Gallery walk on STEAM topics

Learning Assessment

Learning Assessment Procedures


Oral exam involving a discussion of a product covered in the lab.

At the end of the course an End-of-Course Lab Test (PLFC) will take place during regular class hours. The test consists of designing a workshop-style teaching activity in small groups.

·       Participation in the PLFC is optional, but strongly recommended.

·       Students who pass the PLFC will receive lab credit and acquire the necessary CFU credits toward their final grade.

Students who do not take or do not pass the PLFC will complete the same assessment (designing and presenting a group or individual lab activity on course topics) directly during the official exam sessions.

The exam evaluation will be graded on a 30-point scale and will give particular consideration to the following criteria:

·       The ability to present, argue, and synthesize the topics covered using clear, appropriate language with reference to specific theoretical constructs;

·       Completeness of the acquired theoretical content;

·       Commitment to independent study and in-depth exploration.

The objective of the exam is to verify the level of achievement of the aforementioned educational objectives:

·       18–23: Sufficient — Understanding and knowledge of the exam topics, language proficiency, clarity of presentation, and critical thinking skills are acceptable.

·       24–26: Fair — Understanding and knowledge of the exam topics, language proficiency, clarity of presentation, and critical thinking skills are more than sufficient.

·       27–28: Good — Understanding and knowledge of the exam topics, language proficiency, clarity of presentation, and critical thinking skills are satisfactory.

·       29–30: Excellent — Understanding and knowledge of the exam topics, language proficiency, clarity of presentation, and critical thinking skills are fully satisfactory.

·       30 cum laude (Outstanding) — Understanding and knowledge of the exam topics, language proficiency, clarity of presentation, and critical thinking skills are excellent.

 

 

Learning assessment may also be carried outon-line, shouldthe conditions require it. To ensure equal opportunities and in compliance with current laws, interested students may request a personal interview in order to plan any compensatory and/or dispensatory measures based on educational objectives and specific needs. Students can also contact the CInAP (Centro per l’integrazione Attiva e Partecipa ta — Servizi per le Disabilità e/o i DSA) referring teacher within their department (https://www.cinap.unict.it/content/referenti)

Examples of frequently asked questions and / or exercises

Given the product presented, what guiding questions could you identify to kick off the discussion? What challenges might the students face?