Latest News Archive

Please select Category, Year, and then Month to display items
Previous Archive
11 January 2018 Photo Charl Devenish
UFS researcher publishes the highest-cited Maths paper in the world in 2017
An article by Prof Abdon Atangana from the University of the Free State’s Institute for Groundwater Studies received New Hot Paper status from Clarivate Analytics.

An article on Applied Mathematics, published by Prof Abdon Atangana from the University of the Free State’s Institute for Groundwater Studies in 2017, was recently named New Hot Paper by Clarivate Analytics.

Hot paper status
Essential Science Indicators (ESI) is a unique and comprehensive compilation of science performance statistics and science trends. Data is based on journal article publication counts and citation data from Clarivate Analytics that enables researchers to conduct ongoing, quantitative analyses of research performance and track trends in science. Covering a multidisciplinary selection of 1 2000+ journals from around the world, this in-depth analytical tool offers data for ranking papers, scientists, institutions, countries, and journals. 

ESI from Clarivate Analytics is updated every two months. The New Hot Papers, which are papers published in the past two years, are in the top one-tenth of one percent (0.1%) for their field and publication period. Prof Atangana’s paper had the highest cite count in the field of Mathematics. 

His article that received the New Hot Paper status is titled: “The new fractional derivative and application to nonlinear Fisher’s reaction-diffusion equation”.

The concept of fractional differential operators with non-singular kernel has captured the minds of several researchers in the past year due to their wider applicability in almost all fields of science, engineering and technology. The new fractional differential operators have opened new windows to model complex real-world problems that could not be modelled using the Newtonian and the well-known Riemann-Liouville fractional differential operators. 

“These operators are the way forward in modelling real-world problems in all disciplines, as they are able to include into mathematical formulation the effect of memory,” Prof Atangana said.

The Atangana-Baleanu fractional derivative
The professor developed a new fractional differential operator, called the Atangana-Baleanu fractional derivative. This derivative is able to describe real-world problems with different scales or problems that change their properties during time and space, for instance, the spread of cancer; the flow of water within heterogeneous aquifers, movement of pollution within fractured aquifers and many others.”

News Archive

Six from Physics receive doctorates at UFS Winter Graduation
2015-07-08

From the left are: Prof Koos Terblans, Dr Shaun Cronje, Dr Hendrik van Heerden, Dr Pieter Barnard and Prof Pieter Meintjes.
Photo: Stephen Collett

The Department of Physics at the University of the Free State (UFS) is extremely proud of six graduands who received doctorates at this year’s Winter Graduation which took place from on the Bloemfontein Campus from 1-2 July 2015. Three of the graduands are personnel in this department.

According to Prof Koos Terblans from the Department of Physics, it seems to be the most PhDs awarded at the university during one graduation ceremony.

The following people received doctorates:
1) Dr Shaun Cronje (UFS)
He investigated the loss of surface atoms during segregation of Sb from Cu using a computational model and experimental measurements.

2) Dr George Tshabalala (UFS)
He synthesised and characterised down-conversion nanophosphors.

3) Dr Hendrik van Heerden (UFS)
He searched for pulsed high-energy non-thermal emission from the nova-like variable system AE Aquarii.

4) Dr Pieter Barnard (SASOL)
He investigated the surface segregation of S in Fe and Fe-Cr alloys using computational models and experimental methods.
5) Dr Luyanda Noto
He investigated the luminescence mechanisms of tantalite phosphors.

6) Dr Alida Odendaal (UFS)
She investigated the multi-wavelength properties of a sample of Magellanic cloud and Galactic supersoft X-ray Binaries.

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