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16 July 2020 | Story Leonie Bolleurs | Photo Supplied
The teaching project of Drs Matthew Huber and Martin Clark on utilising aerial photography and 3D models increased student engagement in Geology field studies.

The goal of an educator, as seen by Dr Matthew Huber and Dr Martin Clark, is to try and improve the understanding of students. They believe that by combining technological and geological elements within the framework of games, students not only learn but also enjoy the process.

Dr Huber and Dr Clark are from the Department of Geology at the University of the Free State (UFS).

By bringing innovative methods into their teaching processes, they have successfully enhanced student engagement and learning in Geology field studies.

Limited innovation equals limited engagement

As part of the third-year Economic Geology and Exploration Geology courses, students were taken on a field trip to the Vredefort impact structure and an active gold mine. At the Vredefort structure, they were able to view the rock types mined for gold – which are exposed on the surface – to prepare them to identify the rocks when going underground. They also visited an open-pit quarry that was mined for granite dimension stone in the 1950s.  

Fot the visit to the quarry, the students were given ‘traditional’ assignments in advance to make measurements, sketch relevant features, and write down observations. 

“We found that they were not particularly engaged in what they were doing; it was simply an assignment that was separated from any deeper meaning in their minds,” explains Dr Huber.

The status quo of student engagement was about to change. Dr Huber and Dr Clark put their heads together and had a long discussion on how they could improve the exercise. 

Innovative methods equal increase in engagement

“We realised that we could change the focus of the exercise entirely by framing it as a game. When the exercise started, the students were divided into ‘companies’, and then told that they had to pick blocks with particular features to extract from the quarry. They were given parameters concerning how much various aspects of the activity would cost and were then told to make as much money as possible. We did not give them any particular measurements but provided them with all the tools they needed.”

“This had a transformative effect on the students – instead of being bored with the quarry exercise, they were begging for more time to look at the rocks, coming up with innovative solutions on their own,” says Dr Huber.

He believes this is what student engagement means. “Even though we did not assign any particular measurements for the students to do, most of them were diligently making measurements and even arguing with one another about the best way to pick out blocks,” he adds.

To evaluate the students, Dr Clark brought in a technological aspect to the exercise. He made a 3D model of the quarry while the game was in progress, which was used at the end of the task. 

“The students showed us the blocks that they had picked out on the digital 3D model, which we could rapidly evaluate. In addition, they had an opportunity to look at the problem from a different perspective, resulting in ‘last minute’ innovative solutions. The exposure to this type of digital interaction on a traditional geological excursion has increased the ‘cool’ factor for the students and subjected them to new ways of problem-solving – similar to what they can expect later in their careers,” explains Dr Clark.


Innovative methods equal more possibilities

Both Drs Clark and Huber agree that the feedback they received from the students was amazing. “They did not want the assignment to end, and unanimously petitioned us for more time in the quarry, driven by their desire to make the best decisions for their groups. This level of passion from students has never been experienced by either instructor on any other field course,” adds Dr Huber. 

Although games are not a new concept in education, the two academics say they are not aware of any other institution that has attempted to digitally recreate a site for students in real time with this type of game. Drs Clark and Huber also wrote an academic article that is currently in revision for the Journal of Geoscience Education, titled, ‘Using gamification and fourth industrial revolution components to enhance student engagement in traditional field exercises for economic geology students’.

“The other wonderful aspect of this type of exercise is that we now have a digital archive of the site, and we can use that in both student training and our research. In times like now, where it is difficult to travel to the field, this type of model of geological exposures is invaluable,” says Dr Clark. 

They both believe the attitude and philosophy of the educators are very important in terms of student training. Regardless of whether face-to-face or online teaching is offered, there can be a good response to games used in the classroom.

“The more learning scenarios we can expose students to in fun, enjoyable, and innovative ways, the more likely we will spark lifelong passions that they can take with them through their careers. Our goal is not only to create good students but give them the tools to become thought leaders for the next generation of learners,” says Dr Clark.

News Archive

UFS appoints Dr Khotso Mokhele as Chancellor
2010-06-04

Dr Khotso Mokhele as Chancellor, University of the Free State
  Dr Khotso Mokhele
The Council of the University of the Free State (UFS) appointed Dr Khotso Mokhele as Chancellor during its quarterly meeting held on the Main Campus in Bloemfontein today.

“It is an honour for the Council to appoint someone of this stature as Chancellor of the UFS. With his solid academic background and high profile in the business world, Dr Mokhele is a great asset to the UFS,” said Judge Ian van der Merwe, Chairperson of the UFS Council.

Dr Mokhele is a graduate of the University of Fort Hare and did his postgraduate studies at the University of California in the USA. He is also a graduate of the Graduate School of Business at Stanford University in the USA. Dr Mokhele has eight honorary doctorate degrees from South African tertiary institutions – among others the UFS – as well as an honorary doctorate degree from Rutgers University in the USA. He holds post doctoral fellowships from the Johns Hopkins University School of Medicine and the University of Pennsylvania’s School of Medicine, both in the USA.

Dr Mokhele was founder president and chief executive officer of the National Research Foundation (NRF), as well as founder president of the Academy of Science of South Africa (ASSAf).

He holds non-executive positions on the boards of several national companies, among others as the Chairman of Impala Platinum Holdings Ltd, non-executive chairman of Adcock Ingram Holdings Ltd and non-executive director of both African Oxygen Ltd and Tiger Brands Ltd.

He is currently Chairperson of the selection committee of the Rhodes Scholarships for Botswana, Malawi, Namibia, Lesotho and Swaziland, member of the Committee on Developing and Transition Economy Countries of the International Social Sciences Council (ISSC) and member of the Review Committee assessing VW Foundation research funding in Sub-Saharan Africa and the former Soviet Central Asian/Caucasus Republics.

Dr Mokhele received the Lifetime Achievement Technology Top 100 award in 2009 for his vision and major contribution in securing the Southern African Large Telescope (SALT), constructed outside Sutherland in the Northern Cape.

Dr Mokhele’s succeeds Dr Franklin Sonn, who retired as Chancellor of the UFS at the end of 2009.

Media Release
Issued by: Lacea Loader
Director: Strategic Communication (actg)
Tel: 051 401 2584
Cell: 083 645 2454
E-mail: loaderl@ufs.ac.za  
4 June 2010

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