Latest News Archive

Please select Category, Year, and then Month to display items
Previous Archive
02 August 2019 | Story Valentino Ndaba
Red Square Upgrade artist impression
Eco-friendly measures will ensure better water management at the University of the Free State.

The first phase of an exciting environmentally focused project to upgrade Red Square between the Johannes Brill Building and the H van der Merwe Scholtz Hall on the Bloemfontein Campus is currently underway.

The project forms part of the water-wise and grey-water initiative of the University of the Free State (UFS) implemented in 2018 in response to climate change and drought conditions in the Free State, and to save water in alignment with global standards of environmental efficiency.

Out with the old, in with the new

Modern architecture will be used at Red Square to project the image of a campus that cares for the environment and believes in sustainable solutions. Phases 1, 2, and 4 of the upgrade will be dealt with during the current project. This will take approximately three months to complete, with the remaining phases to follow. 

The initiative also entails the upgrading of areas with crucial focal points that have a visible impact, such as the traffic circles at the George du Toit and Francois Retief buildings. Vegetation such as artificial grass, stones and drought-resistant plants will be the new signature look for these and other areas. 

Going green 
 

More than 100 indigenous trees will be planted as part of the initiative. This will ensure that all available water sources are used for consumption and for maintaining a healthy ecological footprint.
 
Red Square

News Archive

Death may come in adorable little packages
2015-03-23

The main host of the Lassa virus is the Natal Mulimammate mouse.

Photo: Supplied

Postdoctoral researcher, Abdon Atangana, of the Institute for Groundwater Studies at the university recently published an article online about the Lassa Haemorrhagic fever in the Natural Computing Applications Forum. In addition to the terminal transmissible sickness recognised as Ebola haemorrhagic fever, there is another strain called Lassa haemorrhagic fever.

The disease is classified under the arenaviridae virus family. The first outbreaks of the disease were observed in Nigeria, Liberia, Sierra Leone, and the Central African Republic. However, it was first described in 1969 in the town of Lassa, in Borno State, Nigeria.

The main host of the Lassa virus is the Natal Mulimammate mouse, an animal indigenous to most of Sub-Saharan Africa. The contamination in humans characteristically takes place through exposure to animal excrement through the respiratory or gastrointestinal tracts.

Mouthfuls of air containing tiny particle of infective material are understood to be the most noteworthy way of exposure. It is also possible to acquire the infection through broken skin or mucous membranes that are directly exposed to the infective material.

“The aim of my research was to propose a novel mathematical equation used to describe the spread of the illness amongst pregnant women in West Africa. To achieve this, I used my newly-proposed derivative with fractional order called beta-derivative. Since none of the commonly used integral transform could be used to derive the solution of the proposed model, I proposed a new integral transform called Atangana-Transform, and used it, together with some iterative technique, to derive the solution of the model.

“My numerical simulations show that the disease is as deadly amongst pregnant women as Ebola,” Abdon said.

Abdon’s research was submitted to one of Springer’s top-tier journals with an impact factor 1.78. The paper was accepted and published February 2015.

Read more about Abdon’s research.

We use cookies to make interactions with our websites and services easy and meaningful. To better understand how they are used, read more about the UFS cookie policy. By continuing to use this site you are giving us your consent to do this.

Accept