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12 April 2019 | Story Rulanzen Martin | Photo Rulanzen Martin
The Wolves
The Wolves is a play which does not conform to mainstream female stereotypes.

It is the perfect father and daughter team - Gerben Kamper, well-known actor and former drama lecturer at the University of the Free State (UFS), and his daughter Marijda Kamper, a current Drama and Theatre Arts staff member at UFS who have taken on the task of directing and producing the play, The Wolves by Sarah DeLappe.

It was a finalist for the Pulitzer Prize for Drama in 2017. “The text is regarded very highly, most drama texts do not normally get such recognition,” said Marijda.  

The play will be performed at the Scaena on the Bloemfontein Campus from Wednesday 10 April 2019.

“This play provides an excellent acting opportunity for our students. It is also nice to get a play which accommodates so many female actors,” said Marijda. Because this play digs deep within the daily struggles of being a girl, it is a sort of homage to the current #MeToo movement. It is a play about the coming-of-age for nine girls and centres in a non-stereotypical manner on the experiences, attitudes, anxiety and the adolescent hormonal changes of girls in the contemporary world. 

“It is very exciting to be back at the department. Especially with this play. It is very different from the usual plays we get. As it is set on an indoor soccer field, it is quite a different ballgame. This play provides the opportunity to focus on all the facets of acting,” said Gerben. 

The play has six scenes and takes place just before the start of a soccer match. “So the girls are busy with warm-up exercises just minutes before the whistle,” said Marijda. “The soccer unit at KovsieSport helped us a lot. They arranged a real soccer coach to assist us, and for two weeks she trained our girls like real soccer players.”



News Archive

Researcher works on finding practical solutions to plant diseases for farmers
2017-10-03

 Description: Lisa read more Tags: Plant disease, Lisa Ann Rothman, Department of Plant Sciences, 3 Minute Thesis,  

Lisa Ann Rothman, researcher in the Department of
Plant Sciences.
Photo: Supplied

 


Plant disease epidemics have wreaked havoc for many centuries. Notable examples are the devastating Great Famine in Ireland and the Witches of Salem. 

Plant diseases form, due to a reaction to suitable environments, when a susceptible host and viable disease causal organism are present. If the interactions between these three factors are monitored over space and time the outcome has the ability to form a “simplification of reality”. This is more formally known as a plant disease model. Lisa Ann Rothman, a researcher in the Department of Plant Sciences at the University of the Free State (UFS) participated in the Three Minute Thesis competition in which she presented on Using mathematical models to predict plant disease. 

Forecast models provide promise fighting plant diseases
The aim of Lisa’s study is to identify weather and other driving variables that interact with critical host growth stages and pathogens to favour disease incidence and severity, for future development of risk forecasting models. Lisa used the disease, sorghum grain mold, caused by colonisation of Fusarium graminearum, and concomitant mycotoxin production to illustrate the modelling process. 

She said: “Internationally, forecasting models for many plant diseases exist and are applied commercially for important agricultural crops. The application of these models in a South African context has been limited, but provides promise for effective disease intervention technologies.

Contributing to the betterment of society
“My BSc Agric (Plant Pathology) undergraduate degree was completed in combination with Agrometeorology, agricultural weather science. I knew that I wanted to combine my love for weather science with my primary interest, Plant Pathology. 
“My research is built on the statement of Lord Kelvin: ‘To measure is to know and if you cannot measure it, you cannot improve it’. Measuring the changes in plant disease epidemics allows for these models to be developed and ultimately provide practical solutions for our farmers. Plant disease prediction models have the potential ability to reduce the risk for famers, allowing the timing of fungicide applications to be optimised, thus protecting their yields and ultimately their livelihoods. I am continuing my studies in agriculture in the hope of contributing to the betterment of society.” 

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