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21 June 2018 Photo Oteng Mpete
Education researcher tackles realities of Fourth Industrial Revolution
Dr Makeresemese Qhosola recently engaged audiences in New York at the American Educational Research Association’s Annual Conference.

The current research of Dr Makeresemese Qhosola, from the University of the Free State’s (UFS), Faculty of Education focused on a broad theme of accounting and its alignment to the Fourth Industrial Revolution. She is passionate about it because the role of accounting has evolved over the years in response to ever-changing market demands. It evolved from the First Industrial Revolution, which focused on the size of a factory, machinery and the labour force, and now it is concerned with the looming era of artificial intelligence and the internet of things.

Tackling the present for future solutions  
Dr Qhosola’s research is important because it interrogates the past to find solutions for the future. “The curriculum of South Africa is still challenged by the imperatives of the Third Industrial Revolution which saw the automation of the accounting process and other business processes in isolation from each other. This challenge is born of historical factors that are still inherent in the contemporary, like poverty in most South African communities, and a lack of infrastructure and resources that supported this industry and demanded learners be taught automated accounting like Pastel.
 
“Even though learners are mostly exposed to the basic knowledge and skill of accounting from schools, many of them seem to be dysfunctional when they join the world of work, due to a lack of knowledge and experience of the computerised systems,” purported Dr Qhosola.
 
Her research methodology is the Participatory Action Research (PAR) approach and is supported with the use of the Critical Accounting Research (CAR). “I use it as my lens of choice for framing my project, because its purpose is to ensure the use of accounting does not represent a certain interest at the expense of others, especially marginalised groups,” said Dr Qhosola.
 
Future of accounting looks good
“The question remains: ‘How do we better prepare ourselves for this revolution that seems capable of rendering many accounting jobs redundant?’ We must thoroughly prepare our students for the job market after the completion of their studies.” 
 
Dr Qhosola owes her recent success to Prof Loyiso Jita, Dean of the UFS Faculty of Education. “He initiated a mentorship programme for black women in 2017 and it has created a platform for me to go out and learn more,” she said. She also holds former UFS Dean of Education, Prof Sechaba Mahlomaholo close to her heart, because of his continued mentorship and support through the world of academia. 

International recognition and achievement 

Dr Qhosola was recently invited to the American Educational Research Association (AERA), in New York. The AERA strives to advance knowledge about education, to encourage scholarly inquiry related to education, and to promote the use of research to improve education and serve the public good.
 
The conference provides an opportunity to learn about new developments and current issues that require the attention of researchers. It is also a good platform to meet educational proponents and theorists from across the globe. “We read and use their work almost every day and never get an opportunity to meet them and really interact with them,” said Dr Qhosola.
 
A proposal acceptance from AERA is a recognised disciplinary achievement. The AERA conference is a highly competitive peer review process because there are 12 000 to 14 000 proposals a year that compete for a slot on the conference programme. These numbers include both experienced and beginner researchers. 

News Archive

UFS to host one of three world summits on crystallography
2014-04-15

 
Prof André Roodt from the Department of Chemistry at the University of the Free State (UFS), co-unveiled a special plaque in Poznan, Poland, as president of the European Crystallographic Association, with prof Gautam Desiraju, president of the IUCr (front right) and others to commemorate the Nobel prize winner Max von Laue. (Photo's: Milosz Ruszkowski, Grzegorz Dutkiewicz)

Prof André Roodt from the Department of Chemistry at the University of the Free State (UFS), co-unveiled a special plaque in Poznan, Poland, as president of the European Crystallographic Association, to commemorate the Nobel prize winner Max von Laue at a special Laue Symposium organised by prof Mariusz Jaskolski from the A. Mickiewicz University in Poznan.

Max von Laue, who spent his early childhood in Poznan, was the first scientist to diffract X-rays with a crystal.

2014 has been declared by the United Nations as the International Year of Crystallography, and it was recently officially opened at the UNESCO headquarters in Paris, France, by the Secretary-General of the UN, Ban Ki-moon. The International Year of Crystallography celebrates the centennial of the work of Max von Laue and the father and son, William Henry and William Laurence Bragg.

As part of the celebrations, Prof Roodt, president of the European Crystallographic Association, one of the three regional affiliates (Americas, Europe and Africa; Asia and Australasia) of the International Union of Crystallography (IUCr), was invited by the president of the IUCr, Prof Gautam Desiraju, to host one of the three world summits, wherein crystallography is to showcase its achievements and strategise for the future.

The summit and conference will take place on the Bloemfontein Campus of the UFS from 12 to 17 October 2014 and is titled: 'Crystallography as vehicle to promote science in Africa and beyond.' It is an ambitious meeting wherein it is anticipated to bring the French-, English- and Arab-speaking nations of Africa together to strategise how science can be expanded, and to offer possibilities for this as nestled in crystallography. Young and established scientists, and politicians associated with science and science management, are the target audience to be brought together in Bloemfontein.

Dr Thomas Auf der Heyde, acting Director General of the South African Department of Science and Technology (DST), has committed some R500 000 for this effort, while the International Union of Crystallography provided R170 000.

“Crystals and crystallography form an integrated part of our daily lives, form bones and teeth, to medicines and viruses, new catalysts, jewellery, colour pigments, chocolates, electronics, batteries, metal blades in airplane turbines, panels for solar energy and many more. In spite of this, unfortunately, not many people know much about X-ray crystallography, although it is probably one of the greatest innovations of the twentieth century. Determining the structure of the DNA was one of the most significant scientific events of the 20th century. It has helped understand how genetic messages are being passed on between cells inside our body – everything from the way instructions are sent to proteins to fight infections, to how life is reproduced.

“At the UFS, crystallography finds application in Chemistry, Physics, Biology, Mathematics, Geology, Engineering and the Medical fields. Crystallography is used by the Curiosity Rover, analysing the substances and minerals on Mars!

“The UFS’s Departments of Chemistry and Physics, in particular, have advanced instruments and important research thrusts wherein X-ray crystallography has formed a central part for more than 40 years.

“Crystallography has produced some 28 Nobel prize winners over the past 100 years and continues to provide the means for fundamental and applied research,” said Prof Roodt.

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