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02 July 2019 | Story Eloise Calitz | Photo Keagan Nkwaira
Entrepreneurship Intravarsity
Audience members listening attentively to the presentations at the Entrepreneurship Inter-varsity on the Bloemfontein Campus.

The UFS continuously creates opportunities for students to develop and explore platforms where they can showcase their talents and share their innovative concepts. In the light of this, it is important for the institution to become a preferred academic knowledge partner that can conceptualise, develop, and successfully commercialise research activities, and through this foster an innovative and entrepreneurial culture that aligns to its Integrated Transformation Plan.

This is why opportunities such as the Entrepreneurship Intervarsity Competition are so important, since it encourages students to demonstrate their entrepreneurial talent, and through this connect with investors and industry leaders to start up a business.

The competition

Student entrepreneurs across the 26 public universities in South Africa were invited to submit their innovative ideas as part of a competition supported by Entrepreneurship Development in Higher Education (EDHE), in collaboration with the Allan Gray Orbis Foundation. The opportunities created through this initiative are twofold:

     1. For student entrepreneurs to present their innovative ideas and businesses. 
     2. For universities to demonstrate their entrepreneurial talent and the ways in which              they support and grow the next generation of business leaders.

The competition takes place in five stages. The process started with each student submitting their short videos and applications on the official competition site. Each institution also had the opportunity to select student entrepreneurs to take part in the competition. Fifteen students pitched their ideas during internal rounds at the UFS on 30 May 2019. Of these students, four were selected to represent the UFS at the regional rounds of the Entrepreneurship Intervarsity, where the finalists will be chosen. 

The students were judged in four categories:

Category 1: Innovative Ideas
Category 2: Tech Businesses (existing businesses, formal or informal, undergrad or postgrad)
Category 3: Social Impact Businesses (existing businesses, formal or informal, undergrad or postgrad)
Category 4: General (existing businesses, formal or informal, undergrad or postgrad)

The following UFS entrants were selected to take part in the regional finals: 
Christopher Rothman for his liquid yeast culture that can be used in the fermentation of beer. 
Driaan-Lou Kemp for his patented water-saving device. 
Grace Mthembu for her electricity-saving system.
Martin Clarke for his idea to use drone technology for the mining industry


News Archive

Dr Abdon Atangana cements his research globally by solving fractional calculus problem
2014-12-03

 

Dr Abdon Atangana

To publish 29 papers in respected international journals – and all of that in one year – is no mean feat. Postdoctoral researcher Abdon Atangana at the Institute for Groundwater Studies at the University of the Free State (UFS) reached this mark by October 2014, shortly before his 29th birthday.

His latest paper, ‘Modelling the Advancement of the Impurities and the Melted Oxygen concentration within the Scope of Fractional Calculus’, has been accepted for publication by the International Journal of Non-Linear Mechanics.

In previously-published research he solved a problem in the field of fractional calculus by introducing a fractional derivative called ‘Beta-derivative’ and its anti-derivative called ‘Atangana-Beta integral’, thereby cementing his research in this field.

Dr Atangana, originally from Cameroon, received his PhD in Geohydrology at the UFS in 2013. His research interests include:
• the theory of fractional calculus;
• modelling real world problems with fractional order derivatives;
• applications of fractional calculus;
• analytical methods for partial differential equations;
• analytical methods for ordinary differential equations;
• numerical methods for partial and ordinary differential equations; and
• iterative methods and uncertainties modelling.

Dr Atangana says that, “Applied mathematics can be regarded as the bridge between theory and practice. The use of mathematical tools for solving real world problems is as old as creation itself. As written in the book Genesis ‘And God saw the light, that it was good; and divided the light from the darkness’, the word division appears here as the well-known method of separation of variables, this method is usually employed to solve a class of linear partial differential equations”.

“A mathematical model is a depiction of a system using mathematical concepts and language. The procedure of developing a mathematical model is termed mathematical modelling. Mathematical models are used not only in natural sciences, but also in social sciences such as economics, psychology, sociology and political sciences. These models help to explain systems and to study the effects of different components, and to make predictions about behaviours.”

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