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‘DU bist Radio’ (DBR) is an award winning [DBR has been awarded with the “Catholic Media Award of the German Bishops Conference, Prädikat WERTvoll” (2011), the Suisse “Media Prize Aargau/Solothurn” (2010), the German “Alternative Media Award” (2009) and was nominated for the “Prix Europa” (2009)] monthly radio format that goes on air on three Swiss radio stations. The purpose of this program which was first broadcast in 2009 is the development of a new media format which—without applying any journalistic (or other) filter and influence—conveys authenticity of expression amongst society’s most vulnerable fellow citizens such as patients, clients and the socially deprived. So-called marginal groups are encouraged to speak for themselves, as a possible paradigm case for encouraging the inclusion of patients’ and relatives’ “unfiltered” voices in general and in clinical ethics as well. Before handing over the microphone to the groups in focus, a team of journalists, educated in medical ethics, over a period of 4 days, teaches them on-site radio skills and craft. Once this task is completed and the actual production of the broadcast begins, the media crew does not exert any influence whatsoever on the content of the 1-h program. Thus, the final product is solely created and accounted for by the media-inexperienced participants, leading to unforeseen and often surprising results. It is discussed that the DBR approach of fostering authenticity of expression can serve as an enhancement to today’s respect and autonomy oriented field of medical ethics.
‘DU bist Radio’ (DBR) is an award winning [DBR has been awarded with the “Catholic Media Award of the German Bishops Conference, Prädikat WERTvoll” (2011), the Suisse “Media Prize Aargau/Solothurn” (2010), the German “Alternative Media Award” (2009) and was nominated for the “Prix Europa” (2009)] monthly radio format that goes on air on three Swiss radio stations. The purpose of this program which was first broadcast in 2009 is the development of a new media format which—without applying any journalistic (or other) filter and influence—conveys authenticity of expression amongst society’s most vulnerable fellow citizens such as patients, clients and the socially deprived. So-called marginal groups are encouraged to speak for themselves, as a possible paradigm case for encouraging the inclusion of patients’ and relatives’ “unfiltered” voices in general and in clinical ethics as well. Before handing over the microphone to the groups in focus, a team of journalists, educated in medical ethics, over a period of 4 days, teaches them on-site radio skills and craft. Once this task is completed and the actual production of the broadcast begins, the media crew does not exert any influence whatsoever on the content of the 1-h program. Thus, the final product is solely created and accounted for by the media-inexperienced participants, leading to unforeseen and often surprising results. It is discussed that the DBR approach of fostering authenticity of expression can serve as an enhancement to today’s respect and autonomy oriented field of medical ethics.
Ernst Haeckel and Emil du Bois-Reymond were the most prominent champions of Darwin in Germany. This essay compares their contributions to popularizing the theory of evolution, drawing special attention to the neglected figure of du Bois-Reymond as a spokesman for a world devoid of natural purpose. It suggests that the historiography of the German reception of Darwin's theory needs to be reassessed in the light of du Bois-Reymond's Lucretian outlook.
Algorithmic information theory in conjunction with Landauer’s principle can quantify the cost of maintaining a reversible real-world computational system distant from equilibrium. As computational bits are conserved in an isolated reversible system, bit flows can be used to track the way a highly improbable configuration trends toward a highly probable equilibrium configuration. In an isolated reversible system, all microstates within a thermodynamic macrostate have the same algorithmic entropy. However, from a thermodynamic perspective, when these bits primarily specify stored energy states, corresponding to a fluctuation from the most probable set of states, they represent “potential entropy”. However, these bits become “realised entropy” when, under the second law of thermodynamics, they become bits specifying the momentum degrees of freedom. The distance of a fluctuation from equilibrium is identified as the number of computational bits that move from stored energy states to momentum states to define a highly probable or typical equilibrium state. When reversibility applies, from Landauer’s principle, it costs k B l n 2 T Joules to move a bit within the system from stored energy states to the momentum states.
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