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14 October 2020 | Story Nonsindiso Qwabe | Photo Flickr Creative Commons
Former Chief Justice Dikgang Moseneke

With a legal career spanning several decades, former Deputy Justice Dikgang Moseneke painted a picture of the country's legal and political landscape pre- and post-1994 during a webinar session hosted by the Faculty of Law on 7 October 2020. The webinar discussed his new book, All Rise: A Judicial Memoir. The event attracted staff, students, and members of the public who were keen to hear Moseneke – a member of the team that drafted the country’s interim constitution. 

This is his second book, covering his years on the bench, with particular focus on his 15-year term as a judge in South Africa's Constitutional Court, where he rose to the position of Deputy Chief Justice.

Justice Moseneke said his book talks about the political and legal revolution that took place in 1994 when the country moved from a common law jurisdiction to a constitutional jurisdiction. 

"When the constitution came, it made many remarkable changes, and the first of those was to superimpose the constitution on the law that existed at the time. By making the constitution supreme, the message was clear that everything else would have to fall in line with the values of the constitution, and those values were global values around freedom, democracy, equal worth of people," he said. 

He said his multi-layered book is an account of the country's political and legal transition for young people in South Africa and the rest of the continent. 

An ethical framework for the judicial function

"The first of these is just a historical account. What happened, particularly from 1994 to now. The second thing was to say what kind of transition was necessary from the common law jurisdiction to a constitutional jurisdiction, and what was the tensions that emerged, the competing claims for legitimacy; I make it quite clear that the constitution is the most important source of law that we have set in place since 1994. The third layer is telling tales of how the high courts are working, how magistrates’ courts work, how judges are appointed, how they end their service, what they are permitted to do and not to do, and therefore the ethical framework for the judicial function both at magistracy level and at the level of the high courts."

Justice Moseneke donated copies of the book to the faculty as prizes for academic excellence to senior LLB and LLM students. 

" I hope that having read and studied the themes, many people will accept that it is time for all of our excellent people to rise, to find their voice, to find their entitlement, for instance, to demand accountability, openness, good governance, democratic practice, hard work, honesty, and all those wonderful values which go together with our liberation struggle," he said. 

Listen to the webinar podcast here

News Archive

Einstein's gravitational waves as creative as Bach's music, says UFS physicist
2016-02-19

Description: Gravitational waves  Tags: Gravitational waves

Profile of the gravitational waves of the colliding black holes.

Prof Pieter Meintjes, Affiliated Researcher in the Department of Physics at the University of the Free State, welcomed the work done by the Laser Interferometer Gravitational-Wave Observatory (LIGO) science team.
 
For the first time, researchers from two of the American Ligo centres, in Washington and Louisiana respectively, observed gravitational waves directly, 100 years after Albert Einstein said they existed. "My study field in astrophysics involves relativistic systems. Therefore, Einstein's view of gravity is crucial to me. I consider the theory as the highest form of human creativity - just like the music of JS Bach. Over the past 100 years, the theory has been tested through various experiments and in different ways.
 
“The discovery of gravitational waves was the last hurdle to overcome in making this absolutely unfaltering. I am therefore thrilled by the discovery. It is absolutely astounding to imagine that the equations used to make the predictions about the gravitational-wave emissions when two gravitational whirlpools collide - as discovered on 14 September 2015 by LIGO - are basically Einstein's original equations that were published way back in 1916 - in other words, 100 years ago.
 
“The LIGO detectors have been operational since the early 1990s, but they had to undergo several stages of upgrades before being sensitive enough to make detections. LIGO is currently in its final stage, and is expected to function at optimal sensitivity only within a year or two. To be able to conduct the measurements at this stage is therefore a fantastic achievement, since much more funding will certainly be deposited in the project,” Prof Meintjes says.

Description: Prof Pieter Meintjes Tags: Prof Pieter Meintjes

Prof Pieter Meintjes
Photo: Charl Devenish

The search for gravitational waves by means of the Square Kilometre Array (SKA) is one of the focus points in research by both Prof Meintjes and PhD student, Jacques Maritz. This involves the study of radio signals from pulsars that might show signs of effects by gravitational waves. They are looking for signs of gravitational waves. The gravitational waves discovered and studied in this manner would naturally vary much more slowly than the signal discovered from the two colliding gravitational waves.
 
The discovery will definitely provide renewed impetus to the Square Kilometre Array (SKA) Project to use the dispersion of pulsar signals, and to search for the impact of gravitational waves on signals as they travel through the universe. According to Prof Meintjes, the SKA will definitely contribute fundamentally to the Frontier research, which will provide a good deal of publicity for the UFS and South Africa, if significant contributions are made by local researchers in this field.

Video clip explaining gravitational waves

 

  • The Department of Physics will present a general, non-technical talk concerning the recent detection of gravitational waves by the 2 Laser Interferometer Gravitational Wave Observatories (LIGO):

Wednesday 24 February 2016
11:00-12:00
New lecture auditorium, Department of Physics

 

 

 

 

 

 

 

 

 

 

 

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