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26 April 2019 | Story Opinion article by Dr Chitja Twala | Photo Sonia Small
Dr Chitja Twala
Dr Chitja Twala is the Vice-Dean of the Faculty of the Humanities at the University of the Free State.

This opinion piece is to reflect on the sacrifices and roles played by the Twelve Disciples in the Liberation Struggle in honour of #Freedom Day.

To the majority of South Africans, the struggle for liberation centres around high-profiled political leaders such as Nelson Mandela, Walter Sisulu, Govan Mbeki, Robert Sobukwe, Steve Biko, and others. Less known is the experience of a generation of young men who left South Africa clandestinely to build the ANC and spread its liberation message in places abroad. These young men became known as the Twelve Disciples of Mandela. Like many other youngsters who became political activists elsewhere in the country, this group received its political conscientisation at school at the then Bantu High School (later known as Sehunelo High School).

This group of youngsters came from the Mangaung township in Bloemfontein, although it is not clear why they were referred to as the Twelve Disciples of Mandela. When they left Bloemfontein, they were destined to join MK in exile. The formation of MK was announced on 16 December 1961. At the same time, MK began a sabotage campaign against strategic installations throughout South Africa. In a leaflet issued on 16 December 1961, the MK high command made its political allegiance quite clear by stating: “Umkhonto we Sizwe will carry on the struggle for freedom and democracy by methods which are necessary to complement the actions of the established national liberation organisations. Umkhonto we Sizwe fully supports the national liberation movement and calls on members, jointly and individually, to place themselves under the overall political guidance of the movement”. During the initial stages of its formation, MK avoided openly mentioning the ANC for tactical reasons. MK sought to protect the leadership of the ANC from reprisals by the South African government, in particular those who had nothing to do with the decision to take the route of armed struggle.

It is clear from interviews conducted with the surviving members of this group that nobody knew exactly why they were called the Twelve Disciples, except that there was a plan conceived by Mandela, called the M-Plan, calling for the total restructuring of the ANC to enable it to operate underground should it get banned. However, although several authors such as Edward Feit, Karis and Carter, Nelson Mandela, and Bruno Mtolo and a number of court records provide information on the M-Plan, details are sketchy.

The group of young men from Bloemfontein were Billy ‘Marakas’ Mokhonoana (left the country earlier than the others and allegedly died in London); Selebano ‘Tlhaps’ Matlhape (left for Tanganyika and later studied in Yugoslavia and East Germany); Theodore ‘Max’ Motobi (left for Tanganyika and underwent military training in Cuba); Moses ‘Dups’ Modupe (left for Tanganyika and later studied Economics in Yugoslavia); Benjamin ‘Lee’ Leinaeng (left for Tanganyika and later studied journalism in East Germany); Joseph Shuping ‘Coaps’ Coapoge (left for Tanganyika and later attended Lincoln and Temple Universities in the US); Elias Pule Matjoa (worked in the Ministry of Communications in Tanzania and underwent military training in Cuba. He later studied dentistry there); Percy Mokonopi (received military training in Cuba and later served on the Helsinki World Peace Council); Mochubela ‘Wesi’ Seekoie (left for Tanganyika and underwent military training in Cuba. He later studied Chemistry in the USSR); Matthew Olehile ‘Beans’ Mokgele (left for Tanganyika and became a professional boxer in exile. Following an injury, he went to East Africa and joined the MK); Bethuel Setai (left for Tanganyika and later obtained a PhD in Economics from Colombia University. He taught at the University of California Santa Cruz, and Lincoln University in the USA) ; and Peter Swartz (was an active member of the ANC from the coloured community in Bloemfontein. He met with the group in Dar es Salaam, following his arrest on his way to Tanzania. He attended Kivukoni College and later went to the UK where he attended the London School of Economics. He went missing in London in 1965, never to be seen again).

In honour of many of these unsung heroes, the history of the Twelve Disciples needs to be told to reflect what one could refer to as a ‘bottom up’ kind of history. Without doubt, this kind of history will add value to the country’s historiography about the liberation struggle and demystify the one-sided narrative that the (Orange) Free State played little if no role at all in the struggle for liberation.



News Archive

State-of-the-art physics equipment and investment in students result in academic success
2017-09-26

Description: State-of-the-art physics equipment 1 Tags: State-of-the-art physics equipment 1 

At the recent nanotechnology facility tour at the UFS,
were, from the left, Dr Mthuthuzeli Zamxaka, SAASTA;
Prof Hendrik Swart, Sarchi Chair in the Department of Physics;
and Xolani Makhoba, Department of Science and Technology.
Photo: Leonie Bolleurs

Nanoscience, which is revealing new properties of very small arrangements of atoms, called nanoparticles, is opening a new world of possibilities. The Department of Physics at the University of the Free State is undertaking fundamental research with potential commercial applications. Its equipment and expertise is giving solid state physics research the edge in South Africa.

The UFS team of researchers and students are passionate about studying planets and atoms, all under one roof. Recently, the department, in collaboration with the South African Agency for Science and Technology Advancement (SAASTA), hosted a nanotechnology facility tour to give the public, learners and the media the opportunity to familiarise themselves with the science of nanotechnology, its origins, potential applications and risks.

Successes of the department
According to Prof Hendrik Swart, Senior Professor in the Department of Physics, the increase in resources since 2008 is playing a big role in the success rate of its research outputs. The Sarchi Chair awarded to Prof Swart in 2012 (bringing with it funding for equipment and bursaries) also contributed to the successes in the department.

The UFS Directorate Research Development also availed funding that was used for bursaries. These bursaries made it possible for the department to appoint 10 post-doctoral fellows, not one of them originally from South Africa.

The investment in people and equipment resulted in researchers and students publishing some 80 articles in 2016. Their work was also cited more than 900 times by other researchers in that year.

Another highlight in terms of the department’s growth in the past 10 years is the new wing of the Physics Building. Physics at the UFS is the only place in sub-Saharan Africa where state-of-the art equipment is found under one roof.

Description: State-of-the-art physics equipment 2  Tags: State-of-the-art physics equipment 2  

Antonie Fourie, Junior Lecturer in the UFS Department of
Physics, explained to a group of delegates and
members of the media the workings of an electron beam
evaporation system.
Photo: Leonie Bolleurs

Application of research
The department is a unique research facility with equipment that includes the X-ray Photoelectron Spectrometer (for the study of atoms), the Scanning Auger Microscope, as well as the Ion Time-of-Flight Secondary Ion Mass Spectrometer (revealing the chemical bonds in a sample, and drawing maps of the positions of atoms).

One of the areas on which the department is focusing its research, is phosphors. Researchers are exploring light emitting diodes (LEDs) which use less energy, are brighter and provide a wider viewing field. They are also looking into LED displays (LCDs) which are used in flat screens – the phosphors create the different colours and backlighting.

The research on solar cells reveals that phosphors can increase their efficiency by increasing the range of light frequencies which can be converted into electricity. Glow-in-the-dark coatings absorb light in the day and emit it later so cells can charge at night. As glow-in-the-dark phosphors become cheaper and more effective, they can be used as a lighting substitute on the walls of houses, street numbers and stop signs.

Video production of the Department of Physics research and equipment

 

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