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10 June 2019 | Story Ruan Bruwer | Photo Gerda Steyn Twitter
Gerda Steyn
Gerda Steyn, a former student at the University of the Free State, won her first Comrades race on Sunday, setting a new course record.

Winning the Comrades ultra-marathon is the greatest honour of her life and still feels unreal, said Gerda Steyn a day after winning the race in a record time.
 
The former Kovsie student had an incredible race on Sunday, completing the 86,83 km’s in a time of 05:58:54, which is a new record for women in the up run. It is more than 10 minutes faster than the previous record of 06:09:23 set in 2006.
 
It was also the fourth fastest Comrades time ever by a female in the 94-year history of the race.
 
Greatest honour of my life

 
“Being the Comrades winner is the greatest honour of my life. Thank you to an entire nation for carrying me to the line. It feels like a dream,” Steyn said.
 
The 29-year-old Steyn became the first woman in 30 years to win both the Comrades and Two Oceans in the same year. She also won the Two Oceans in 2018 and came second in the Comrades last year.
 
Steyn, who studied Quantity Surveying and Construction Management at the University of the Free State (UFS) between 2009 and 2012, said the record time was discussed beforehand.
 
I went for it
 
“We felt it was possible, but it wasn’t my main goal right from the start of the race. At the halfway mark, I saw it was possible and I went for it.”
 
According to Steyn, the media attention since her win is quite intense. “But I don’t complain. It is such an honour, so I do it with a smile.”
 
At the Two Oceans ultra-marathon in April, she missed out on the 30-year record time by just 53 seconds.
 
Prof Francis Petersen, UFS Rector and Vice-Chancellor, said Steyn was a proud ambassador of the university. “It is always important for me to see how our former students perform. I would like to congratulate her. Well done. She is carrying the Kovsie name with pride,” Prof Petersen said.
 

News Archive

Student excels at international level with research in Inorganic Chemistry
2015-09-21


Carla Pretorius is currently conducting research in
Inorganic Chemistry at the St Petersburg University,
Russia.

Photo:Supplied

Carla Pretorius completed her PhD in Inorganic Chemistry recently, with a thesis entitled “Structural and Reactivity Study of Rhodium(I) Carbonyl Complexes as Model Nano Assemblies”, and has just received her results. The assessors were very impressed, and she will graduate at the next UFS Summer Graduation in December 2015.

She is currently conducting research in St Petersburg, Russia, by invitation. She is working in the group of Prof Vadim Kukushkin of the St Petersburg University, under a bilateral collaboration agreement between the groups of Prof Kukuskin (SPBU) and Prof André Roodt (Head of the Department of Chemistry at the UFS).

Her research involves the intermetallic rhodium-rhodium interactions for the formation of nano-wires and -plates, with applications in the micro-electronics industry, and potentially for harvesting sun energy. She was one of only three young South African scientists invited to attend the workshop “Hot Topics in Contemporary Crystallography” in Split in Croatia during 2014. More recently, she received the prize for best student poster presentation at the international symposium, Indaba 8 in Skukuza in the Kruger National Park, which was judged by an international panel.

Carla was also one of the few international PhD students invited to present a lecture at the 29th European Crystallographic Meeting (ECM29) in Rovinj, Croatia (23-28 August 2015; more than 1 000 delegates from 51 countries). As a result of this lecture, she has just received an invitation to start a collaborative project with a Polish research group at the European Synchrotron Research Facility (ESRF) in Grenoble, France.

According to Prof Roodt, the ESRF ID09B beam line is the only one of its kind in Europe designed for time-resolved Laue diffraction experiments. It has a time-resolution of up to one tenth of a nanosecond, after activation by a laser pulse 100 times shorter (one tenth of a nanosecond when compared to one second is the equivalent of one second compared to 300 years). The results from these experiments will broaden the knowledge on light-induced transformations of very short processes; for example, as in photochemical reactions associated with sun energy harvesting, and will assist in the development of better materials to capture these.

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