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13 May 2025 | Story Dr Francois Smith | Photo Supplied
Francois Smith
Dr Francois Smith, Head of Department: Afrikaans and Dutch; German and French, University of the Free State.

Opinion article by Dr Francois Smith, Head of Department: Afrikaans and Dutch; German and French, University of the Free State 




On 8 May 1925, the writer CJ Langenhoven introduced a bill in the parliament of the then Union of South Africa that led to Afrikaans being recognised as one of the country’s official languages, alongside English. It is this historic moment that marks the centenary being celebrated today. However, the language itself predates its official status by centuries. The roots of Afrikaans can be traced back to the 1500s, during the first interactions between European sailors and the indigenous Khoi-Khoi people. What makes the origin of Afrikaans particularly significant is that it developed on African soil, shaped by the contact and exchange between European colonists, enslaved people brought from Africa and Asia, and the local Khoi population. Afrikaans is, therefore, a uniquely South African creation – a rich tapestry of diverse influences. It is this diversity, this cultural and linguistic fusion, that is truly worth celebrating.

It is evident that Afrikaans did not begin as a fully developed written language. Some of the earliest recorded instances of written Afrikaans date back to the 1830s, when Muslim imams used Arabic script to communicate with their pupils in Afrikaans in religious schools. A more formal effort to establish Afrikaans as a written language emerged in 1875 with the founding of the Genootskap van Regte Afrikaners (Society for Real Afrikaners), which played a pivotal role in standardising and promoting written Afrikaans.

 

The Dutch language

During the Anglo-Boer War (1899-1902), the two Boer republics – the Zuid-Afrikaansche Republiek and the Orange Free State – were defeated by the British Empire. In the aftermath of this conflict, efforts were made to unite the two British colonies, the Cape Colony and Natal, with the former Boer republics into a single political entity. This led to the National Convention, where representatives negotiated the constitution for what would become the Union of South Africa. Given the dominant position of Britain, the prevailing influence of English-speaking authorities in the Cape and Natal, and the Anglophile stance of many British leaders, it would have been reasonable to expect the new Union to adopt English as its sole official language. However, due to the tireless advocacy of figures such as former President MT Steyn and General JBM Hertzog, the resulting South Africa Act of 1909 – passed by the British Parliament – stipulated that ‘the Dutch language’ would share official status with English in the Union. This was a significant victory for the preservation of Dutch (and later, Afrikaans) in the political and administrative life of the country.

The ‘Dutch’ used in South Africa at the time, particularly among ordinary people, was far from uniform and bore little resemblance to the Standard Dutch of the Netherlands. Very few South Africans were proficient in writing formal Dutch. Meanwhile, Afrikaans had only just begun the process of standardisation in the years following the formation of the Union. In many cases – especially in written contexts – the language appeared as a hybrid of spoken Afrikaans and formal Dutch, or what was loosely referred to as ‘Hollands’. Recognising this linguistic shift, figures such as CJ Langenhoven began advocating for Afrikaans to be recognised as a full-fledged language, particularly as a standardised orthography began to take shape. Langenhoven and his contemporaries likely understood that the continued use of Standard Dutch in South Africa was untenable. Thanks to their dedication, a joint session of the Volksraad and the Senate was held on 8 May 1925, during which Act No. 8 of 1925 was passed. This legislation clarified that the term ‘Hollands’, as used in South African legal and governmental contexts, also encompassed Afrikaans – marking a pivotal moment in the formal recognition of the language.

A necessary consequence of the 1925 legislation was that Afrikaans, now recognised as an official language, had to rapidly develop in areas such as orthography, terminology, and grammatical consistency. Subsequent constitutions – specifically those of 1961 and 1983 – further entrenched the status of Afrikaans by extending the use of both official languages to the provincial level. Because Afrikaans was now required to operate on equal footing with a global language such as English across all spheres of government, the development of a standardised variety became essential. This standard form enabled the state not only to fulfil its constitutional obligations but also to communicate effectively with a significant portion of the population.

 

Most South Africans not first-language English speakers

Today, South Africa officially recognises twelve languages, following the recent addition of South African Sign Language. While earlier constitutions explicitly outlined the functions and domains of the official languages, the 1996 Constitution is notably more open-ended. It mandates that the state must take "practical and effective measures" to elevate the status and promote the use of all official languages, and that they must be treated equitably and enjoy equal status. However, these provisions are vague and lack clear implementation guidelines or enforceable obligations. Unlike earlier frameworks that prescribed specific uses and provided mechanisms for accountability, the current constitutional language leaves much to interpretation. As a result, and in the absence of meaningful incentives or enforcement, English has become the de facto sole language of government, undermining the ideal of multilingualism and linguistic fairness envisioned in the Constitution.

The reality that most South Africans are not first-language English speakers means that a significant portion of the population has limited access to essential information, which in turn restricts their ability to fully participate in the country’s economic, educational, and social opportunities. This linguistic barrier perpetuates inequality and undermines the goals of inclusive development. One of the pressing challenges facing the current government is, therefore, strikingly similar to that which confronted the Union government a century ago with respect to Afrikaans: the need to actively develop all of South Africa’s official languages. Only through dedicated investment in their growth and functional application can these languages truly operate as instruments of democracy, equality, and social justice.

The development of human potential and the advancement of science and technology are among the foremost priorities of the current South African government. However, these goals are unattainable without language – spoken or written – as the foundation for communication. More specifically, the absence of well-developed scientific languages renders scientific and technical communication ineffective. This reality places increasing demands on South Africa’s official languages, requiring the creation and maintenance of robust, multilingual terminology across a wide range of disciplines. Ensuring that all languages are equipped to handle specialised knowledge is essential for equitable access to education, innovation, and national development.

Due to the dominance of English, South Africa’s other official languages face significant challenges in developing technical vocabulary and keeping pace with the demands of a rapidly evolving modern world. One notable achievement in Afrikaans is the Woordeboek van die Afrikaanse Taal (WAT), a comprehensive dictionary project that began in 1926 and, despite minimal state support, continues to progress toward its final volume, expected in 2028. This kind of initiative should serve as a model for all of South Africa’s official languages. Scientific and technological knowledge must be made accessible in every language, ensuring they are equipped to function effectively across all levels of society. When a language loses functional domains, its practical value diminishes, its cultural sphere contracts, and its speakers are more likely to shift towards a language perceived as more useful.

News Archive

UFS boasts with most advanced chemical research apparatus in Africa
2005-11-23

Celebrating the inauguration of the NMR were from the left Prof Frederick Fourie (Rector and Vice-Chancellor of the UFS),  Dr Detlef Müller (Development Scientist and Manager:  Africa and Asia of Bruker in Germany, the supplier of the NMR), Prof Jannie Swarts (head of the head of the Division Physical Chemistry at the UFS) and Prof Herman van Schalkwyk (Dean:  Faculty of Natural and Agricultural Sciences at the UFS). Photo: Lacea Loader

UFS boasts with most advanced chemical research apparatus in Africa 

The University of the Free State’s (UFS) Department of Chemistry now boasts with some of the most advanced chemical research apparatus in Africa after the latest addition, a nuclear magnetic resonance (NMR) spectrometer, was inaugurated today by the Rector and Vice-Chancellor, Prof Frederick Fourie.  The NMR is used to analyse molecular structures. 

Last month the Department of Chemistry celebrated the installation of the most advanced single crystal X-ray diffractometer in Africa.  The diffractometer provides an indispensable technique to investigate among others the solid state of compounds for medicinal application.

“Three years ago the UFS executive management realised that, if we want to build a university of excellence, we should invest in research.  We started to think strategically about chemistry and decided to bring the apparatus at the Department of Chemistry on a more competitive standard.  Strategic partnerships were therefore secured with companies like Sasol,” said Prof Fourie during the inauguration ceremony.

“The installation of the NMR symbolises the ability of the UFS to turn academic areas around.  I hope that this is the beginning of a decade of excellence for chemistry at the UFS,” said Prof Fourie.

”The catalogue value of the Bruker 600 MHz NMR is approximately R11 million.  With such an advanced apparatus we are now able to train much more post-graduate students,“ said Prof Jannie Swarts, head of the Division Physical Chemistry at the UFS.

”The NMR is the flagship apparatus of the UFS Department of Chemistry that enables chemists to look at compounds more easily at a molecular level.  Research in chemistry is critically dependent on NMR, which is a technique that can determine the composition of reactants and products in complicated chemical reactions, with direct application is most focus areas in chemistry,“ said Prof Swarts.

”Parts of the spectrometer consists of non-commercial items that were specifically designed for the UFS Department of Chemistry to allow the study of unique interactions in e.g. rhodium and platinum compounds,” said Prof Swarts.

According to Prof Swarts the NMR enables chemists to conduct investigations on the following:

To evaluate for example the complex behaviour of DNA in proteins as well as the analysis of illegal drugs sometimes used by athletes. 
It provides an indispensable technique to investigate compounds for medicinal application for example in breast, prostate and related bone cancer identification and therapy, which are currently synthesised in the Department of Chemistry.  
It can also be applied to the area of homogeneous catalysis where new and improved compounds for industrial application are synthesized and characterised, whereby Sasol and even the international petrochemical industry could benefit. This analytical capacity is highly rated, especially in the current climate of increased oil prices.
The NMR can detect and identify small concentrations of impurities in feed streams in the petrochemical industry, e.g. at Sasol and also the international petrochemical industry.  These minute amounts of impurities can result in metal catalyst deactivation or decomposition and can cause million of rands worth in product losses.
It is indispensable for studying the complexity of samples that is non-crystalline. These materials represent the vast majority of chemical compounds such as solvents, gasoline, cooking oil, cleaning agents and colorants as examples. 

According to Prof Swarts the general medical technique of MRI (magnetic resonance imaging) in use at larger hospitals, is based on NMR technology.

”The NMR apparatus enabled the Department of Chemistry to characterise complex molecules that were synthesised for the multi-national company, FARMOFS-PAREXEL, and to negotiate research agreements with overseas universities,” said Prof Swarts. 

Media release
Issued by: Lacea Loader
Media Representative
Tel:  (051) 401-2584
Cell:  083 645 2454
E-mail:  loaderl.stg@mail.uovs.ac.za
22 November 2005
 

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