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02 April 2021 | Story Ruan Bruwer | Photo Varsity Cup
Rewan Kruger, new captain of the Shimlas.

With a new coach, new captain, and not having played a competitive match in more than a year, there will be many eyes on the Shimlas when they take to the field on 5 April.

The popular Varsity Cup is back, having been cut short by the COVID-19 pandemic in 2020.
The 2021 edition will be played in a secure bio-bubble at the University of Pretoria from 4 April to 24 May. The Shimlas will start with a clash against the University of the Western Cape. Matches will be played at the Tuks Stadium and Loftus Versfeld on Mondays, Thursdays, Sundays, and public holidays. 

There are high hopes after the return of Pote Human as head coach. He was previously in charge of the Shimlas from 2000 to 2004. Human knows what it takes to win the Varsity Cup, having done so with Tuks in 2017 before going on to coach the Bulls. 

Rewan Kruger, who is participating in his fourth campaign, will lead the team. 
The scrum half, who is studying BCom Accounting, said he felt humbled to lead the team.

“Hopefully I can lead in a way that takes this team forward. As a team, we strive to make a difference and the only way we can do that is if we play good rugby."
Kruger represented the Springbok U20 team at two Junior World Cups and captained the Free State U21 team in the past.

Human believes there is no shortage of talent in the squad. “I’m really excited to see what they can do. With most of the games being televised, they can make a name for themselves.”
“The guys have worked really hard during pre-season and are hungry to play rugby again. The set piece was a concern last year, but we have worked extremely hard on that.”

News Archive

Prof Tredoux turns theories regarding the formation of metals on its head
2013-09-17

 

Prof Marian Tredoux
17 September 2013

The latest research conducted by Prof Marian Tredoux of the Department of Geology, in collaboration with her research assistant Bianca Kennedy and their colleagues in Germany, placed established theories regarding how minerals of the platinum-group of elements are formed, under close scrutiny.

The article on this research of which Prof Tredoux is a co-author – ‘Noble metal nanoclusters and nanoparticles precede mineral formation in magmatic sulphide melts’ – was published in Nature Communications on 6 September 2013. It is an online journal for research of the highest quality in the fields of biological, physical and chemical sciences.

This study found that atoms of platinum and arsenic create nanoclusters, long before the mineral sperrylite can crystallise. Thus, the platinum does not occur as a primary sulphur compound. The research was conducted at the Steinmann Institute of the University of Bonn, Germany, as well as here in Bloemfontein.

Monetary support from Inkaba yeAfrica – a German-South African multidisciplinary and intercultural Earth Science collaborative of the National Research Foundation (NRF) – made this research possible. Studies are now also being conducted on other metals in the precious metal group, specifically palladium, rhodium and ruthenium.

The discovery of the nanoclusters and the combination with arsenic can have far-reaching consequences for the platinum mine industry, if it can be utilised to recover a greater amount of platinum ore and therefore less wastage ending up in mine dumps. This will signify optimal mining of a scarce and valuable metal, one of South Africa’s most important export products.

For Prof Tredoux, the research results also prove thoughts she already had some twenty years ago around the forming of platinum minerals. “Researchers laughed in my face, but the evidence had to wait for the development of technology to prove it.” Young researchers were very excited at recent congresses about the findings, since the new models can bring new insights.

“Chemistry researchers have been talking about platinum element clusters in watery environments for quite a while, but it was thought that these would not appear in magmas (molten rock) due to the high temperatures (>1 000 degrees celsius).”

Prof Tredoux has already delivered lectures at congresses in Scotland, Hungary, Sweden and Italy on this research.

Read the article at: http://www.nature.com/ncomms/2013/130906/ncomms3405/full/ncomms3405.html

 

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