11,948 research outputs found

    Transitional Justice: Key Concepts, Processes and Challenges

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    This briefing paper focuses on transitional justice as one of the key steps in peacebuilding that needs to be taken to secure a stable democratic future. It provides key stakeholders with an overview of transitional justice and its different components, while examining key challenges faced by those working in this area. The paper focuses on key concepts of transitional justice before addressing its traditional components: justice, reparation, truth and institutional reform. The paper concludes with some remarks that challenge the traditional concept of transitional justice and its processes in order to initiate important debate on where future work in this field is needed

    Barotropic FRW cosmologies with a Dirac-like parameter

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    Using the known connection between Schroedinger-like equations and Dirac-like equations in the supersymmetric context, we discuss an extension of FRW barotropic cosmologies in which a Dirac mass-like parameter is introduced. New Hubble cosmological parameters H_K(eta) depending on the Dirac-like parameter are plotted and compared with the standard Hubble case H_0(eta). The new H_K(eta) are complex quantities. The imaginary part is a supersymmetric way of introducing dissipation and instabilities in the barotropic FRW hydrodynamicsComment: 7 pages, 4 figures, accepted at MPL

    Riccati nonhermiticity with application to the Morse potential

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    A supersymmetric one-dimensional matrix procedure similar to relationships of the same type between Dirac and Schrodinger equations in particle physics is described at the general level. By this means we are able to introduce a nonhermitic Hamiltonian having the imaginary part proportional to the solution of a Riccati equation of the Witten type. The procedure is applied to the exactly solvable Morse potential introducing in this way the corresponding nonhermitic Morse problem. A possible application is to molecular diffraction in evanescent waves over nanostructured surfacesComment: 8 pages, 4 figure

    Classical harmonic oscillator with Dirac-like parameters and possible applications

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    We obtain a class of parametric oscillation modes that we call K-modes with damping and absorption that are connected to the classical harmonic oscillator modes through the "supersymmetric" one-dimensional matrix procedure similar to relationships of the same type between Dirac and Schroedinger equations in particle physics. When a single coupling parameter, denoted by K, is used, it characterizes both the damping and the dissipative features of these modes. Generalizations to several K parameters are also possible and lead to analytical results. If the problem is passed to the physical optics (and/or acoustics) context by switching from the oscillator equation to the corresponding Helmholtz equation, one may hope to detect the K-modes as waveguide modes of specially designed waveguides and/or cavitiesComment: 14 pages, 9 figures, revised, accepted at J. Phys.

    Guidance Note of the Secretary General - Reparations for Conflict Related Sexual Violence

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    Transitional justice and social change

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    Th is article questions whether transitional justice can deliver social change. Th e author discusses the importance of re-assessing expectations so that transitional justice processes and the legal framework that drives them, including international human rights law, are used to achieve what they are able to deliver. By classifying social change in three categories, namely: ordinary changes, structural changes and fundamental changes, the author argues that a fundamental social change happens when social struggle is able to put forward a new dominant ideology inspired by radically different values to those that allowed the repression or the conflict to take place. While it is not realistic to expect transitional justice to deliver development, democracy, rule of law or peace, the author argues, transitional justice, when properly conducted, can indeed contribute to deliver fundamental change but it cannot deliver it on its own

    Relationship Amongst Technology Use, Work Overload, and Psychological Detachment from Work

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    Permanent connection to the work world as a result of new technologies raises the possibility of workday extensions and excessive workloads. The present study addresses the relationship between technology and psychological detachment from work resulting from work overload. Participants were 313 professionals from the health sector who responded to three instruments used in similar studies. Through PLS-SEM, regression and dependence analyses were developed, and through the bootstrapping method, significance of factor loadings, path coefficients and variances were examined. Results of the study corroborate a negative effect of technology use on psychological detachment from work and a positive correlation between technology and work overload. Additionally, there is a significant indirect effect of technology on psychological detachment from work as a result of work overload. Findings extend the literature related to the stressor-detachment model, and support the idea that workers who are often connected to their jobs by technological tools are less likely to reach adequate psychological detachment levels. Implications for the academic community and practitioners are discusse
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