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29 May 2019 | Story Ruan Bruwer | Photo Reg Caldecott
Khanyisa Chawane
Khanyisa Chawane is one of 12 members of the national netball team to the World Cup in July. Other team members include former students of the University of the Free State, Maryka Holtzhausen and Karla Pretorius.

Exactly one quarter of the South African netball team to the World Cup tournament in England in July will consist of current and former students from the University of the Free State (UFS).

Less than a year after making her Protea debut, Khanyisa Chawane was selected for the team alongside former UFS students, Maryka Holtzhausen and Karla Pretorius.

Chawane is a fifth-year BSc Geography and Statistics student who made her Kovsie debut in 2015. 

“The selection means so much to me. It’s such an honour and privilege to represent my country at this high level of netball. I’m super excited about it, because any team can win it this year,” Chawane, a centre court player, said.

Both Chawane (2018) and Pretorius (2014 and 2015) were previously named as die best student netball player in the country.

Pretorius, with 80 caps behind her name and widely regarded as the best goal defender in the world, represented and captained the UFS team from 2009 to 2015. She is the Protea vice-captain.

Holtzhausen, a goal attack and only the second player to reach 100 tests for the Proteas (106 in total), played for and captained the UFS between 2007 and 2014. She played her netball in England over the past couple of months. When she returns from the World Cup, she will again take up her part-time job as a sports manager at KovsieSport.

Burta de Kock, who has coached all three players at the UFS, said they serve as a motivation and example for the current group of players from the UFS.

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Discovery in Scorpius constellation may signify clean energy for Earth
2017-01-23

 Description: Discovery in Scorpius constellation may signify clean energy for Earth Tags: Discovery in Scorpius constellation may signify clean energy for Earth

Earlier this year, a group of international astronomers
announced the discovery of an exotic binary star system,
AR Scorpii. The system is in the Scorpius constellation.
Photos: Supplied

See article on Nature’s website 

In future, stargazers and astronomers will look at the Scorpius constellation near the Milky Way with new eyes. Earlier this year, a group of international astronomers announced the discovery of an exotic binary star system, AR Scorpii. The system is in the Scorpius constellation.

Prof Pieter Meintjes, researcher in the Department of Physics at the University of the Free State (UFS), worked with four colleagues on what he describes as a “wonderful discovery”. This sensational discovery, which could lead to the production of cleaner energy on Earth, will be published in the research journal, Nature, early in 2017.

Model developed to interpret new set of measurements
The exotic binary star which was discovered consists of a red dwarf and a white dwarf revolving around each other every 3,5 hours. The binary system showed very prominent pulsations of 117 and 118 seconds respectively. The pulsations can be explained by a bundle radiation produced by the white dwarf star.

“These new observations have shown that the radiation is strongly polarised, a sign that we are dealing with synchrotron radiation here. Synchrotron radiation is produced by electrons accelerated to extremely high energy levels in the magnetic field of the white dwarf star,” says Prof Meintjes.

He developed a theoretical model to interpret a new set of measurements that was taken by the 1,9 m telescope and the 10 m SALT telescope at the South African Astronomical Observatory (SAA0).

Totally unique phenomenon could contribute to energy production on Earth
“I further indicated that the interaction between the magnetic fields of the white dwarf star and the red dwarf star induces secondary processes that specifically describe the behaviour of the radiation in the radio band and infrared band accurately. AR Sco is the first white-red dwarf binary system of which all the pulsated radiation could be explained by the synchrotron process, which is totally unique,” says Prof Meintjes.

According to Prof Meintjes, the value of the model lies in the fact that the processes which produce the radiation in AR Sco, can also be applied to produce energy on Earth.

 

Plasma reactors are based on roughly the same processes which apply in AR Sco, and with refining, it could be utilised to generate electricity in future. This will be much cleaner than nuclear energy.

 

The model developed by Prof Meintjes explains all the radiation in the system – from radio waves to X-rays – in terms of electrons accelerated to extremely high energy levels by electric fields in the system, which then produce synchrotron radiation over a very wide band of the electromagnetic spectrum.

Prof Meintjes is currently working on a follow-up article examining the evolution of the AR Sco, in other words, the origin of such a unique system and the final state towards which it is evolving. “My vision for the immediate future is therefore to develop a model for the evolution of the source concerned,” he says.

 

 

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