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13 August 2018 Photo Anja Aucamp
Data analytics as key to student success
Knowing who our students are and what their needs are is crucial information that forms the foundation of how institutions could help students succeed to cross the hurdles of student life.

Knowing how to help students succeed through higher education is one of the most pressing challenges currently confronting the system. Despite a significant change in the student population over the past few decades, we are only now beginning to understand who our students are and what their needs are. This crucial information forms the foundation of how institutions could help students succeed. Through two national-level projects funded by the Kresge Foundation, the University of the Free State (UFS) is contributing to the understanding of students and the development of data analytics. 

Siyaphumelela
  

The first project’s goal is to improve the institutional capacity of five higher education institutions to develop institutional research, with a specific focus on data analytics. The UFS was selected to be part of the Siyaphumelela Programme (meaning ‘we succeed’ in isiXhosa) that is sponsored by the Kresge Foundation, and supported by the NGO, the South African Institute for Distance Education (Saide). The project has enabled the UFS to strengthen capacity, collaboration, and to promote a culture of evidence. 

The project has also enabled the UFS to move from data reporting to a more analytical approach. This approach has enabled it to assess the impact of larger student success efforts and continuously improve the quality of these efforts. A focus on data analytics has helped the institution to reflect on its infrastructure and data management procedures. The development of dashboards has also allowed information to be shared with faculties. The UFS therefore sees a data analytical focus as critical to improving its effectiveness and efficiency.

The UFS is also playing a leading role nationally to develop academic advising that helps students align their studies, career, and life goals. Academic advising at the UFS includes the first-year experience module UFS101, online advising portals, and individual consulting sessions for students which focus on curriculum planning and success coaching. We have also proved a significant relationship between academic advice, student engagement and success.(Read Creating pathways for student success and Understanding students: A key to systemic success).


Student engagement

The second national project is focused on student engagement and has been run by the Centre for Teaching and Learning at the UFS for 10 years. To date, 20 universities have participated in at least one survey and the project also plays an important role in supporting the Siyaphumelela project goals. 

Engagement data has helped us to better align teaching and learning, and design environments that put student success and quality at the centre of institutional thinking. 

The culmination of findings from student engagement data in 2017 led to the publication of the book: Engaging students: Using evidence to promote student success, edited by Prof Francois Strydom, George Kuh, and Dr Sonja Loots, with contributions from various international and national experts in the higher education environment. This is the first comprehensive publication contextualising student engagement findings in the South African context for the benefit of advancing student success.

Both these projects are contributing to significant developments in the field of higher education and arguably more importantly, to help students succeed.  

News Archive

Nobel Prize-winner presents first lecture at Vice-Chancellor’s prestige lecture series
2017-11-17


 Description: Prof Levitt visit Tags: Prof Levitt visit

At the first lecture in the UFS Vice Chancellor’s Prestige Lecture series,
were from the left: Prof Jeanette Conradie, UFS Department of Chemistry;
Prof Michael Levitt, Nobel Prize-winner in Chemistry, biophysicist and
professor in structural biology at Stanford University; Prof Francis Petersen,
UFS Vice-Chancellor and Rector; and Prof Corli Witthuhn,
UFS Vice-Rector: Research. 
Photo: Johan Roux

South African born biophysicist and Nobel Prize-winner in Chemistry, Prof Michael Levitt, paid a visit to the University of the Free Sate (UFS) as part of the Academy of Science of South Africa’s (ASSAf) Distinguished Visiting Scholars’ Programme. 

Early this week the professor in structural biology at Stanford University in the US presented a captivating lecture on the Bloemfontein Campus on his lifetime’s work that earned him the Nobel Prize in 2013. His lecture launched the UFS Vice-Chancellor’s Prestige Lecture series, aimed at knowledge sharing within, and beyond our university boundaries. 

Prof Levitt was one of the first researchers to conduct molecular dynamics simulations of DNA and proteins and developed the first software for this purpose. He received the prize for Chemistry, together with Martin Karplus and Arieh Warshel, “for the development of multiscale models for complex chemical systems”.

Attending the lecture were members of UFS management, academic staff from a range of faculties and other universities as well as young researchers. “Multiscale modelling is very much based on something that makes common sense,” Prof Levitt explained. “And that is to makes things as simple as possible, but not simpler. Everything needs to have the right level of simplicity, that is not too simple, but not too complicated.”  

An incredible mind
Prof Levitt enrolled for applied mathematics at the University of Pretoria at the age of 15. He visited his uncle and aunt in London after his first-year exams, and decided to stay on because they had a television, he claims. A series on molecular biology broadcast on BBC, sparked an interest that would lead Prof Levitt via Israel, and Cambridge, to the Nobel Prize stage – all of which turned out to be vital building blocks for his research career. 

Technology to the rescue
The first small protein model that Prof Levitt built was the size of a room. But that exercise led to the birth of multiscale modelling of macromolecules. For the man on the street, that translates to computerised models used to simulate protein action, and reaction. With some adaptations, the effect of medication can be simulated on human protein in a virtual world. 

“I was lucky to stand on the shoulder of giants,” he says about his accomplishments, and urges the young to be good and kind. “Be passionate about what you do, be persistent, and be original,” he advised.  

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