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02 December 2019 | Story Leonie Bolleurs | Photo Leonie Bolleurs
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Prof Koos Albertyn handing over a donation of eleven microscopes to Anzell Spelding, a teacher at Luckhoff Combined School.

With a donation of microscopes, the Department of Microbial, Biochemical and Food Biotechnology at the University of the Free State (UFS) recently contributed to better quality education for a group of 60 learners in the Life Sciences class at the Luckhoff Combined School.

Anzell Spelding, a teacher at the school – with a newly built science laboratory but little equipment – contacted the department a while ago to enquire whether they have any microscopes available to donate. As the department recently acquired a new set of microscopes for undergraduate teaching in the field of Microbiology, ten fully functional microscopes and two other microscopes (for parts) were donated to motivate the learners to choose science as a career.

“This donation puts scientific instruments in the hands of children at an early age, opening their eyes to the possibility of careers in science. Exposing learners to science at an early age can spark enthusiasm and a love of learning that might otherwise never appear,” said Koos Albertyn, Professor in the UFS Department of Microbial, Biochemical and Food Biotechnology.

“These microscopes will enable learners to look at specimens at a microscopic level and therefore access the wonders of natural science at the tiniest and most fascinating level,” he added. 

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Mathematical problem-solving solutions found in African indigenous games
2015-04-02

A recent study by Dr Tshele Moloi, a Mathematics Education lecturer at the Qwaqwa Campus, revealed that games such as Diketo or Morabaraba enhance the understanding of abstract mathematical concepts in children.  Diketo is a children’s game where 10 small stones or marbles and 1 ghoen or big stone are made available to each player. A small hole about 5cm deep is dug in which the small stones are placed for the players.

During this game of Diketo, learners can identify the variables involved – both dependent and independent.  In round one of the game, it was found that the stones scooped out of the hole can be described by the pattern: f(n)= -n/2   +  21/2 , (where n denotes the throwing of the ghoen). Stones placed in the hole can be illustrated by the pattern:  f(m)= -m/2   +  10, (where m denotes the throwing of the ghoen). There are many patterns that can be obtained when the players are in round two.

The patterns which emanate from rounds one, two, and three can be put on the Cartesian Plane, which can then demonstrate the linear functions.

Read more about this study into mathematical solutions based on African indigenous games here.

For more information or enquiries contact news@ufs.ac.za

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