Francqui 2025 Chair - Explainable Software Engineering
English versionIn the context of an international Chaire Francqui 2024-2025, the Faculty of Computer Science (UNamur) has the honor to receive Professor Arie Van Deursen (TU Delft, Netherlands ) from the 24th to the 27st of March, for a series of lectures on the theme of: “ Explainable Software Engineering ”.The inaugural lecture, entitled “Explainable Software Engineering in the Public Sector”, will be held on the 25th of March 2025, at 6pm at PA02 (Sentier Thomas, 5000 – Namur).French versionAs part of an international Francqui Chair 2024-2025, the Faculty of Computer Science (UNamur) will have the pleasure of welcoming Professor Arie Van Deursen (TU Delft, Netherlands) from March 24 to 27, 2025, for a series of lessons on the theme: "Explainable Software Engineering".The inaugural lesson, entitled "Explainable Software Engineering in the Public Sector", will take place on Tuesday March 25, 2025 at 6:00 pm at PA02 (Sentier Thomas, 5000 - Namur).
Explainable Software Engineering in the Public Sector
The field of software engineering seeks to devise theories, methods, tools, and techniques that support the development, operation, and evolution of the digital infrastructure modern society relies on. While the software engineering capabilities have advanced substantially over the past decades, it remains challenging to deliver high quality systems in a timely and cost-effective manner. Government system in particular have a weak reputation in this respect.To better understand why, we analyze 125 complex software projects in the public sector in The Netherlands. The projects are described in public reports published by the Advisory Council on IT Assessments (AcICT), which advises the Dutch parliament and cabinet on riks and chances of success in complex Information Technology (IT) projects. The projects span a time period of 10 years, represent a total budget of over 14 billion Euros, and cover such areas as tax collection, social security, pensions, health, traffic control, defense, or water management.We study these reports through the lens of "explainability", focusing on supporting decision making. Furthermore, we reflect on current advances in software engineering, including modern software testing and large language models, in addressing current software engineering challenges.
Program
INAUGURAL LECTURE: Explainable Software Engineering in the Public Sector - Tuesday 25/03 - 18:00-19:00 - PA02 SESSION 1: Architectural decision making in software engineering - Monday 24/03 - 10:30-12:30 - I33SESSION 2 : Tests as executable explanations - Tuesday 25/03 - 14:00-16:00 - I33SESSION 3: Technical debt, test smells, legacy systems - Wednesday 26/03 - 14:00-16:00 - I33SESSION 4: Artificial Intelligence for Software Engineering - Thursday 27/03 - 10:30-12:30 - I33
About the speaker
Arie van Deursen is a professor at Delft University of Technology, where he leads the Software Engineering Research Group. His research interests include software testing, language models for code, trustworthy artificial intelligence, and human aspects of software engineering. He presently serves as chair of the Steering Commmittee of the ACM/IEEE International Conference on Software Engineering (ICSE).He is a member of the Dutch Advisory Council on IT Assessments (AcICT), as well as a member of the Advisory Board of ING Bank The Netherlands. In 2023, he was elected fellow of the Netherlands Academy of Engineering (NAE).
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Francqui 2025 Chair - Explainable Software Engineering
English versionIn the context of an international Chaire Francqui 2024-2025, the Faculty of Computer Science (UNamur) has the honor to receive Professor Arie Van Deursen (TU Delft, Netherlands ) from the 24th to the 27st of March, for a series of lectures on the theme of: “ Explainable Software Engineering ”.The inaugural lecture, entitled “Explainable Software Engineering in the Public Sector”, will be held on the 25th of March 2025, at 6pm at PA02 (Sentier Thomas, 5000 – Namur).French versionAs part of an international Francqui Chair 2024-2025, the Faculty of Computer Science (UNamur) will have the pleasure of welcoming Professor Arie Van Deursen (TU Delft, Netherlands) from March 24 to 27, 2025, for a series of lessons on the theme: "Explainable Software Engineering".The inaugural lesson, entitled "Explainable Software Engineering in the Public Sector", will take place on Tuesday March 25, 2025 at 6:00 pm at PA02 (Sentier Thomas, 5000 - Namur).
Explainable Software Engineering in the Public Sector
The field of software engineering seeks to devise theories, methods, tools, and techniques that support the development, operation, and evolution of the digital infrastructure modern society relies on. While the software engineering capabilities have advanced substantially over the past decades, it remains challenging to deliver high quality systems in a timely and cost-effective manner. Government system in particular have a weak reputation in this respect.To better understand why, we analyze 125 complex software projects in the public sector in The Netherlands. The projects are described in public reports published by the Advisory Council on IT Assessments (AcICT), which advises the Dutch parliament and cabinet on riks and chances of success in complex Information Technology (IT) projects. The projects span a time period of 10 years, represent a total budget of over 14 billion Euros, and cover such areas as tax collection, social security, pensions, health, traffic control, defense, or water management.We study these reports through the lens of "explainability", focusing on supporting decision making. Furthermore, we reflect on current advances in software engineering, including modern software testing and large language models, in addressing current software engineering challenges.
Program
INAUGURAL LECTURE: Explainable Software Engineering in the Public Sector - Tuesday 25/03 - 18:00-19:00 - PA02 SESSION 1: Architectural decision making in software engineering - Monday 24/03 - 10:30-12:30 - I33SESSION 2 : Tests as executable explanations - Tuesday 25/03 - 14:00-16:00 - I33SESSION 3: Technical debt, test smells, legacy systems - Wednesday 26/03 - 14:00-16:00 - I33SESSION 4: Artificial Intelligence for Software Engineering - Thursday 27/03 - 10:30-12:30 - I33
About the speaker
Arie van Deursen is a professor at Delft University of Technology, where he leads the Software Engineering Research Group. His research interests include software testing, language models for code, trustworthy artificial intelligence, and human aspects of software engineering. He presently serves as chair of the Steering Commmittee of the ACM/IEEE International Conference on Software Engineering (ICSE).He is a member of the Dutch Advisory Council on IT Assessments (AcICT), as well as a member of the Advisory Board of ING Bank The Netherlands. In 2023, he was elected fellow of the Netherlands Academy of Engineering (NAE).
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Register for the event
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Francqui 2025 Chair - Explainable Software Engineering
English versionIn the context of an international Chaire Francqui 2024-2025, the Faculty of Computer Science (UNamur) has the honor to receive Professor Arie Van Deursen (TU Delft, Netherlands ) from the 24th to the 27st of March, for a series of lectures on the theme of: “ Explainable Software Engineering ”.The inaugural lecture, entitled “Explainable Software Engineering in the Public Sector”, will be held on the 25th of March 2025, at 6pm at PA02 (Sentier Thomas, 5000 – Namur).French versionAs part of an international Francqui Chair 2024-2025, the Faculty of Computer Science (UNamur) will have the pleasure of welcoming Professor Arie Van Deursen (TU Delft, Netherlands) from March 24 to 27, 2025, for a series of lessons on the theme: "Explainable Software Engineering".The inaugural lesson, entitled "Explainable Software Engineering in the Public Sector", will take place on Tuesday March 25, 2025 at 6:00 pm at PA02 (Sentier Thomas, 5000 - Namur).
Explainable Software Engineering in the Public Sector
The field of software engineering seeks to devise theories, methods, tools, and techniques that support the development, operation, and evolution of the digital infrastructure modern society relies on. While the software engineering capabilities have advanced substantially over the past decades, it remains challenging to deliver high quality systems in a timely and cost-effective manner. Government system in particular have a weak reputation in this respect.To better understand why, we analyze 125 complex software projects in the public sector in The Netherlands. The projects are described in public reports published by the Advisory Council on IT Assessments (AcICT), which advises the Dutch parliament and cabinet on riks and chances of success in complex Information Technology (IT) projects. The projects span a time period of 10 years, represent a total budget of over 14 billion Euros, and cover such areas as tax collection, social security, pensions, health, traffic control, defense, or water management.We study these reports through the lens of "explainability", focusing on supporting decision making. Furthermore, we reflect on current advances in software engineering, including modern software testing and large language models, in addressing current software engineering challenges.
Program
INAUGURAL LECTURE: Explainable Software Engineering in the Public Sector - Tuesday 25/03 - 18:00-19:00 - PA02 SESSION 1: Architectural decision making in software engineering - Monday 24/03 - 10:30-12:30 - I33SESSION 2 : Tests as executable explanations - Tuesday 25/03 - 14:00-16:00 - I33SESSION 3: Technical debt, test smells, legacy systems - Wednesday 26/03 - 14:00-16:00 - I33SESSION 4: Artificial Intelligence for Software Engineering - Thursday 27/03 - 10:30-12:30 - I33
About the speaker
Arie van Deursen is a professor at Delft University of Technology, where he leads the Software Engineering Research Group. His research interests include software testing, language models for code, trustworthy artificial intelligence, and human aspects of software engineering. He presently serves as chair of the Steering Commmittee of the ACM/IEEE International Conference on Software Engineering (ICSE).He is a member of the Dutch Advisory Council on IT Assessments (AcICT), as well as a member of the Advisory Board of ING Bank The Netherlands. In 2023, he was elected fellow of the Netherlands Academy of Engineering (NAE).
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The Summer School in Molecular Bacteriology: an innovative international experience to open up to research thanks to BIP
The Blended Intensive Programme (BIP) is an innovative course format promoted and financed by Erasmus+ funds to promote international mobility and pedagogical innovation. This type of program, combining a virtual component with short-term physical mobility (minimum 5 days), enables teachers and students to explore new teaching and learning methods while gaining international experience. At the University of Namur, the Summer School in Molecular Microbiology, organized from July 1 to 5, 2024, in the form of a BIP, is a successful example.
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Flood prevention: an innovative teaching activity for geography students
How does a river work? How do river overflows occur? What can be done to protect our territories from these risks? At UNamur, geography students followed an innovative teaching activity, using a 3D augmented reality sandbox, to learn about this issue. What are the aims of this tool? Simulate and analyze natural phenomena. A unique and immersive experience to better understand environmental dynamics and climate risks, carried out in collaboration with the non-profit organization Contrat de Rivière Ourthe.
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Benevol 2024: UNamur at the heart of software engineering, maintenance and evolution
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"Green Lab" initiative: towards more sustainable laboratories
For several years now, researchers have been striving to make their laboratories "greener". A series of actions have been implemented, funded by the CaNDLE 2023 call for projects have been supported by the Department of Biology at the initiative of Alison Forrester and Frédéric Silvestre, the project leaders, as well as by Campus Infrastructure Management Services (SIGeC) and Prevention Services (SerP). In March 2025, a Green Day was held to provide information on the project's progress, and to motivate people to join the initiative.
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Quantum chemistry at the University of Sfax thanks to the ERASMUS+ program
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ILEE-NISM (lunch) seminar
High-Sensitivity Birefringence Mapping Using Near-Circularly Polarized Light
I will describe several techniques for mapping a two-dimensional birefringence distribution, which can be classified according to the optical schemes and principles of work:Illumination geometry (transmitted light/reflected light)Image acquisition (sequential acquisition/simultaneous acquisition)Polarization control (electrically controlled variable retardance/mechanical rotation).This classification facilitates a comparative analysis of the capabilities and limitations in these methods for birefringence characterization. Polychromatic polarizing microscopy (PPM) provides unique capabilities to alternative methods. It leverages vector interference to generate vivid, full-spectrum colors at extremely low retardances, down to < 10 nm. PPM is a significant departure from conventional polarizing microscopes that rely on Newton interference, which requires retardances above 400 nm for color formation. Furthermore, PPM's color output directly reflects the orientation of the birefringent material, a feature absent in conventional microscopy where color is solely determined by retardance.Joint seminar of ILEE & NISM!The seminar is open to external people too, no need to register.
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Public defense of doctoral thesis in Physical Sciences - Andrea Scarmelotto
Abstract
Radiotherapy is a cornerstone of cancer treatment and is currently administered to approximately half of all cancer patients. However, the cytotoxic effects of ionizing radiation on normal tissues represent a major limitation, as they restrict the dose that can be safely delivered to patients and, consequently, reduce the likelihood of effective tumor control. In this context, delivering radiation at ultra-high dose rates (UHDR, > 40 Gy/s) is gaining increasing attention due to its potential to spare healthy tissues surrounding the tumor and to prevent radiation-induced side effects, as compared to conventional dose rates (CONV, on the order of Gy/min).The mechanism underlying this protective effect-termed the FLASH effect-remains elusive, driving intensive research to elucidate the biological processes triggered by this type of irradiation.In vitro models offer a valuable tool to support this research, allowing for the efficient screening of various beam parameters and biological responses in a time- and cost-effective manner. In this study, multicellular tumor spheroids and normal cells were exposed to proton irradiation at UHDR to evaluate its efficacy in controlling tumor growth and its cytotoxic impact on healthy tissues, respectively.We report that UHDR and CONV irradiation induced a comparable growth delay in 3D tumor spheroids, suggesting similar efficacy in tumor control. In normal cells, both dose rates induced similar levels of senescence; however, UHDR irradiation led to lower apoptosis induction at clinically relevant doses and early time points post-irradiation.Taken together, these findings further highlight the potential of UHDR irradiation to modulate the response of normal tissues while maintaining comparable tumor control.JuryProf. Thomas BALLIGAND (UNamur), PresidentProf. Stéphane LUCAS (UNamur), SecretaryProf. Carine MICHIELS (UNamur)Dr Sébastien PENNINCKX (Hôpital Universitaire de Bruxelles)Prof. Cristian FERNANDEZ (University of Bern)Dr Rudi LABARBE (IBA)
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An incredible view of the Universe from the city: UNamur's Astronomical Observatory acquires an exceptional telescope
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A first in Belgium: UNamur researcher reveals forgotten history of Walloon wolves thanks to ancient DNA
From 2020 to 2025, as part of her doctoral thesis in history, researcher Julie Duchêne conducted a ground-breaking investigation blending history and biology to trace the cohabitation between humans and wolves in Wallonia and Luxembourg, from the 18th to the early 20th century. Thanks to an innovative interdisciplinary approach, including DNA analysis of naturalized 19th-century specimens, her work sheds light on the mechanisms that led to the local extinction of the species. This research was made possible thanks to the support of numerous scientific and cultural partners.
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