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29 October 2019 | Story Xolisa Mnukwa
Exam read more
Once you have done all your exam preparation, it is imperative to make sure that you curb your stress levels as much as possible on the day that you have to write. The calmer you are, the better the outcome!

Final exam season has arrived at the University of the Free State (UFS), and we would like to share a few quick and easy tips you can follow to ensure that you make it through successfully!
Here’s how you can beat exams: 

Step 1: Make sure that you prepare well beforehand to give yourself enough time to study. Prepare a study schedule that fits your way of studying, and do not leave anything for the last minute. It is probably easier to thrive on last-minute studying, but often this way of partial study is not the best approach for exam prep. Prioritise your studying based on how many exams you have, how many pages you have to learn, and the days you have left to study. 

Step 2: Study and practise your work using previous exam papers. This will help you see and understand the format and formulation of possible questions, and can aid you in knowing what to expect, and help you practise and estimate how much time you should spend on answering each question.

Step 3: Eat healthy and use your study/friend groups as a stimulant. Make sure to stock up and energise yourself with a lot of water and nutritional study snacks to extend your concentration and commitment to studying. Avoid overeating and consuming rich, fatty foods that will make you feel tired and sleepy. Likewise, studying in groups can also help you get the answers you need and finish tasks faster. You may have questions that your friends have the answers to, as long as you effectively plan how much time you spend deliberating on a question.

Last but not least, make sure that you give yourself regulated study breaks between various chapters or topics, and let your brain take it all in!

Please find the official end-of-year exam timetable here.

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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