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07 February 2018 Photo Adri Louw
KovsieFM programme manager joins SuperSport as field reporter
Sam Ludidi.

Sam Ludidi is no unfamiliar face on campus. He is currently busy with his second year of a BA Communication Science degree but started off as a BSocSc student five years ago. This KovsieFM programme manager recently joined the SuperSport team as a field reporter. He was selected from 70 candidates and recalls the phone call he received as the best he ever got. We checked in with him to see how he was enjoying the limelight.

It is difficult to choose between television and radio ... I think I prefer television. Then again, there’s a certain skill you need for radio because people don’t see you – that challenge intrigues me. But since I’m an expressive person, television allows me to express myself in full view of the audience.

Sport is my true passion, without a shadow of a doubt. I was born and raised in a sports-crazy house and always loved it – even watching the Proteas’ unfortunate loss to Australia in the Cricket World Cup when I was four. I’ve always loved cricket, but I just cannot keep myself away from rugby. Between the two sports, I’d probably lean towards rugby from an off-the-field perspective, and cricket if I’m on the field.

“You only have one chance
to make it work.”
—Sam Ludidi
Supersport Field Reporter

The best and worst thing about being a television presenter is that it is live. You only have one chance to make it work. When I get it right, I feel great, but on a difficult day, I am hard on myself. I’m still somewhat new to television, but the trick is to find out what makes me different from the rest. My character and charisma make me stand out.

I still can’t believe ... that I am doing my dream job, and it almost came out of nowhere. My incredible support structure from since before my TV presenter job still sticks with me. I learnt from my mother to glorify God with the work that I do, I know that He’s opened many doors which led to this and I cannot express just how blessed I am.

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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