22 research outputs found

    Physical Processes in Star Formation

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    © 2020 Springer-Verlag. The final publication is available at Springer via https://doi.org/10.1007/s11214-020-00693-8.Star formation is a complex multi-scale phenomenon that is of significant importance for astrophysics in general. Stars and star formation are key pillars in observational astronomy from local star forming regions in the Milky Way up to high-redshift galaxies. From a theoretical perspective, star formation and feedback processes (radiation, winds, and supernovae) play a pivotal role in advancing our understanding of the physical processes at work, both individually and of their interactions. In this review we will give an overview of the main processes that are important for the understanding of star formation. We start with an observationally motivated view on star formation from a global perspective and outline the general paradigm of the life-cycle of molecular clouds, in which star formation is the key process to close the cycle. After that we focus on the thermal and chemical aspects in star forming regions, discuss turbulence and magnetic fields as well as gravitational forces. Finally, we review the most important stellar feedback mechanisms.Peer reviewedFinal Accepted Versio

    Modelling Jets, Tori and Flares in Pulsar Wind Nebulae

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    In this contribution we review the recent progress in the modelling of Pulsar Wind Nebulae (PWN). We start with a brief overview of the relevant physical processes in the magnetosphere, the wind-zone and the inflated nebula bubble. Radiative signatures and particle transport processes obtained from 3D simulations of PWN are discussed in the context of optical and X-ray observations. We then proceed to consider particle acceleration in PWN and elaborate on what can be learned about the particle acceleration from the dynamical structures called GwispsG observed in the Crab nebula. We also discuss recent observational and theoretical results of gamma-ray flares and the inner knot of the Crab nebula, which had been proposed as the emission site of the flares. We extend the discussion to GeV flares from binary systems in which the pulsar wind interacts with the stellar wind from a companion star. The chapter concludes with a discussion of solved and unsolved problems posed by PWN

    Cytokine expression profiles of bovine lymph nodes: effects of Mycobacterium bovis infection and bacille Calmette--Guérin vaccination

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    Social influence by artefacts

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    A review of the paradigms of social influence – suggestion, imitation, normalization, conformity, compliance, conversion – leads me to diagnose a triple malaise: the shrinkage of paradigms to cognitive dual-processing theories of information; the dominant methodology of laboratory experiments falls short of the reality of (mass) communication; and the focus of social influence on inter-subjectivity is only half of the story. I will suggest two extensions of social influence theory to include mass media communication and the inter-objectivity of artefacts. We need to be able to conceptualize the modalities of why, how and to what effect somebody might put up a wall to influence neighbours instead of contenting themselves with putting up a public note ‘Do not trespass!’. Social influence by fait accompli needs to be within the remit of social psychology, otherwise it loses its relevance in a technological society where artefacts mediate most inter-personal relations
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