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03 October 2018 | Story UFS | Photo Stephen Collett
Using ethnomathematics to enhance understanding maths
An ethnomathematical approach helps to create a connection between mathematics in the classroom and the real world, said Prof Mogege Mosimege during his inaugural lecture.

The integration of ethnomathematical approaches and studies in the teaching and learning of mathematics is almost certainly bound to change how learners view and understand mathematics. It is the opinion of Prof Mogege Mosimege of the School of Natural Sciences and Technology Education in the Faculty of Education at the University of The Free State (UFS), where Prof Mosimege delivered his inaugural lecture.

His research interests include sociocultural contexts in mathematics education (ethnomathematics), mathematical modelling; indigenous knowledge systems and mathematics teacher education.

Classroom maths must connect real world 

He says an ethnomathematical approach does not only serve as a sound basis for a deeper conceptual understanding, but it also helps to create a connection between mathematics in the classroom and the real world.

Prof Mosimege says the foundation phase of the South African school mathematics curriculum indicates, amongst others, that there must be a critical awareness of how mathematical relationships are used in social, environmental, cultural and economic relations, and that there must be a deep conceptual understanding in order to make sense of mathematics.

"I want to argue the current curriculum does not give enough space for that," he says. "The minute you say deep conceptual understanding you must do things differently and not just teach formulae, but also teach why things work the way they do."

Prof Mosimege says the classroom activities teachers engage in must be able to push learners to that deep understanding phase.

He says even at the Further Education and Training Phase real-life problems should be incorporated into all mathematical sections whenever appropriate.

Teachers need to make maths real


"Contextual problems should include issues relating to health, social, economic, cultural, scientific, political and environmental issues whenever possible."

 If done this way teachers will make mathematics to become real. "It will perhaps not be as abstract as it is perceived, and will help our learners and students to understand why it is important to relate what they do to real life."

Prof Mosimege says his future work would be to look past the phase of focusing strictly on procedural aspects of mathematics and look further at an ethnomathematics bridge to mathematical modelling, which is his next area of research. He says the definitions of ethnomathematics suggest that mathematical concepts and processes would be more comfortable and better understood by the learner when they are related to sociocultural contexts as well as real-life situations.

"How can we use ethnomathematics to do problem-solving?" he asks. 

News Archive

School of Medicine boasts with a new unit
2013-02-22

 

New Clinical Skills Simulation unit is one of its kind.
Photo: Supplied
22 February 2013


The Faculty of Health Sciences at the University of the Free State (UFS) can now boasts with a new Medical Clinical Skills Simulation unit (MCSU) at the School of Medicine.

This newly established Clinical Simulation Unit is the first dedicated clinical simulation unit of its kind in South Africa. It was opened on Thursday 21 February 2013.

This facility is equipped with an operating theatre, Intensive Care Unit, two simulation and three private rooms.

In addition, the Unit has control rooms with cameras for recording purposes and debriefing facilities, the latter with video equipment for playback of recorded scenarios.

The Simulation Unit at the UFS’ School of Medicine is based on accredited units in the USA and the UK.

Dr Mathys Labuschagne, Head of the Simulation Unit, says the concept for this kind of unit is still new, but is already a very important part of clinical skills training in the health professions.

“We are the only university in South Africa with a unit dedicated to clinical skills simulation only and not a combination of clinical skills training which includes some simulation.”

The primary goal of the MCSU is to provide educational opportunities to undergraduate and postgraduate medical students, as well as opportunities for other healthcare students in the Faculty of Health Sciences, to be exposed to inter-professional skills training. The MCSU will play a role in quality assurance of training and assessment, as well as research.

The aim of the Clinical Simulation Unit is to provide a facility where medical and other healthcare students or professionals can be exposed to:

  • Training in a safe environment.
  • Training without harm to the patient.
  • Scenario-based learning.
  • Debriefing.

The facility will also be utilised for post-qualification refresher and training courses.

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