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22 July 2020 | Story Nonsindiso Qwabe | Photo Supplied
Tau Tladi.

In times of great difficulty, a tale of hope goes a long way in encouraging one to persevere. Tau Tladi, a second-year LLB extended-programme student who was diagnosed with ataxia – a degenerative disease of the nervous system – at a young age, has conquered many adversities. He is living his life to the fullest, pursuing his dream of becoming a lawyer one day. Because of a brain injury during birth, Tladi struggles to speak, write, or walk. On campus, he makes use of a scribe and reader to write his tests and exams. 

Learning from others key to success

“Living with ataxia means I have improper speech, I struggle to walk properly, my hands can’t grab things properly, and I can’t even write with them.   Seeing other people living with disabilities and still pursuing their dreams has inspired me a lot; it made me realise that I too have the ability to achieve my dreams,” he said. 
While this disability presented him with many hindrances in life, it has never held him back. “Growing up was challenging because I was not able to develop like other children. As I got older, I could not experience some of the things that other kids could do, such as playing and running around,” he said.

Triumph in the face of adversity
 
Despite all the challenges, Tau completed his matric in 2016 and was even named as one of the top 100 achievers in the Free State. He describes his admission to the LLB programme as a dream come true. “I have always wanted to study an LLB degree. It is the best feeling ever to be at university and studying something that I always wanted to do. I would love to become an attorney.”

Tladi hopes to finish his degree in 2021. He is also an avid sportsman, having participated in the Free State paracycling team and winning first place at the national competition. 

“Living with disability has never been easy for me, so I have learned to be grateful and use every opportunity that I come across and work very hard to fulfil my dreams.”

Hanlie Grobler, Senior Officer in the Faculty of Law, described Tladi as a remarkable young man who always wears a smile on his face. “If you are feeling a bit blue today, cheated by COVID-19, that life is unfair to you – remember this young man who is an excellent example of determination, and do what you have to do, to the best of your ability, and be thankful for what you have.”

News Archive

New world-class Chemistry facilities at UFS
2011-11-22

 

A world-class research centre was introduced on Friday 18 November 2011 when the new Chemistry building on the Bloemfontein Campus of the University of the Free State (UFS) was officially opened.
The upgrading of the building, which has taken place over a period of five years, is the UFS’s largest single financial investment in a long time. The building itself has been renovated at a cost of R60 million and, together with the new equipment acquired, the total investment exceeds R110 million. The university has provided the major part of this, with valuable contributions from Sasol and the South African Research Foundation (NRF), which each contributed more than R20 million for different facets and projects.
The senior management of Sasol, NECSA (The South African Nuclear Energy Corporation), PETLabs Pharmaceuticals, and visitors from Sweden attended the opening.

Prof. Andreas Roodt, Head of the Department of Chemistry, states the department’s specialist research areas includes X-ray crystallography, electrochemistry, synthesis of new molecules, the development of new methods to determine rare elements, water purification, as well as the measurement of energy and temperatures responsible for phase changes in molecules, the development of agents to detect cancer and other defects in the body, and many more.

“We have top expertise in various fields, with some of the best equipment and currently competing with the best laboratories in the world. We have collaborative agreements with more than twenty national and international chemistry research groups of note.

“Currently we are providing inputs about technical aspects of the acid mine water in Johannesburg and vicinity, as well as the fracking in the Karoo in order to release shale gas.”

New equipment installed during the upgrading action comprises:

  • X-ray diffractometers (R5 million) for crystal research. Crystals with unknown compounds are researched on an X-ray diffractometer, which determines the distances in angstroms (1 angstrom is a ten-billionth of a metre) and corners between atoms, as well as the arrangement of the atoms in the crystal, and the precise composition of the molecules in the crystal.
  • Differential scanning calorimeter (DSC) for thermographic analyses (R4 million). Heat transfer and the accompanying changes, as in volcanoes, and catalytic reactions for new motor petrol are researched. Temperature changes, coupled with the phase switchover of fluid crystals (liquid crystals -watches, TV screens) of solid matter to fluids, are measured.
  • Nuclear-magnetic resonance (NMR: Bruker 600 MHz; R12 million, one of the most advanced systems in Africa). A NMR apparatus is closely linked with the apparatus for magnetic resonance imaging, which is commonly used in hospitals. NMR is also used to determine the structure of unknown compounds, as well as the purity of the sample. Important structural characteristics of molecules can also be identified, which is extremely important if this molecule is to be used as medication, as well as to predict any possible side effects of it.
  • High-performance Computing Centre (HPC, R5 million). The UFS’ HPC consists of approximately 900 computer cores (equal to 900 ordinary personal computers) encapsulated in one compact system handling calculations at a billion-datapoint level It is used to calculate the geometry and spatial arrangements, energy and characteristics of molecules. The bigger the molecule that is worked with, the more powerful the computers must be doing the calculations. Computing chemistry is particularly useful to calculate molecular characteristics in the absence of X-ray crystallographic or other structural information. Some reactions are so quick that the intermediary products cannot be characterised and computing chemistry is of invaluable value in that case.
  • Catalytic and high-pressure equipment (R6 million; some of the most advanced equipment in the world). The pressures reached (in comparison with those in car tyres) are in gases (100 times bigger) and in fluids (1 500 times) in order to study very special reactions. The research is undertaken, some of which are in collaboration with Sasol, to develop new petrol and petrol additives and add value to local chemicals.
  • Reaction speed equipment (Kinetics: R5 million; some of the most advanced equipment in the world). The tempo and reactions can be studied in the ultraviolet, visible and infrared area at millisecond level; if combined with the NMR, up to a microsecond level (one millionth of a second.

Typical reactions are, for example, the human respiratory system, the absorption of agents in the brain, decomposition of nanomaterials and protein, acid and basis polymerisation reactions (shaping of water-bottle plastic) and many more.

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