8 research outputs found

    Institutionalized norms of conducting research and social realities: A research synthesis of empirical works from 1983 to 2002

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    The effects of governments on management and organization

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    We review and integrate existing research from organization theory, strategy, organizational behavior, economics, sociology and political science on the effects of governments on organization and management, with a focus on how governing ideology and government capability influence independent organizations’ forms, strategies, and their participants’ behavior. When brought together these works suggest significant research opportunities in the fields of management and organization, as well as new perspectives on public policy challenges. Several avenues of potentially profitable empirical research include more attention to the influence of government on corporate strategies, more research on the strategies of pursuing corruption and government capture for competitive advantage, the role of government in fostering innovation and the growth of entrepreneurial organizations, and extra‐organizational contextual effects on managerial and employee organizational behavior. Possible public policy implications are illustrated with an application to the role of organizations in national wealth generation and dispersion

    11 The Effects of Governments on Management and Organization

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    Introduction: Economics meets sociology in strategic management

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    2 How Actors Change Institutions: Towards a Theory of Institutional Entrepreneurship

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    Multi-messenger Observations of a Binary Neutron Star Merger

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    International audienceOn 2017 August 17 a binary neutron star coalescence candidate (later designated GW170817) with merger time 12:41:04 UTC was observed through gravitational waves by the Advanced LIGO and Advanced Virgo detectors. The Fermi Gamma-ray Burst Monitor independently detected a gamma-ray burst (GRB 170817A) with a time delay of ∌1.7 s\sim 1.7\,{\rm{s}} with respect to the merger time. From the gravitational-wave signal, the source was initially localized to a sky region of 31 deg(2) at a luminosity distance of 40−8+8{40}_{-8}^{+8} Mpc and with component masses consistent with neutron stars. The component masses were later measured to be in the range 0.86 to 2.26  M⊙\,{M}_{\odot }. An extensive observing campaign was launched across the electromagnetic spectrum leading to the discovery of a bright optical transient (SSS17a, now with the IAU identification of AT 2017gfo) in NGC 4993 (at ∌40 Mpc\sim 40\,{\rm{Mpc}}) less than 11 hours after the merger by the One-Meter, Two Hemisphere (1M2H) team using the 1 m Swope Telescope. The optical transient was independently detected by multiple teams within an hour. Subsequent observations targeted the object and its environment. Early ultraviolet observations revealed a blue transient that faded within 48 hours. Optical and infrared observations showed a redward evolution over ∌10 days. Following early non-detections, X-ray and radio emission were discovered at the transient’s position ∌9\sim 9 and ∌16\sim 16 days, respectively, after the merger. Both the X-ray and radio emission likely arise from a physical process that is distinct from the one that generates the UV/optical/near-infrared emission. No ultra-high-energy gamma-rays and no neutrino candidates consistent with the source were found in follow-up searches. These observations support the hypothesis that GW170817 was produced by the merger of two neutron stars in NGC 4993 followed by a short gamma-ray burst (GRB 170817A) and a kilonova/macronova powered by the radioactive decay of r-process nuclei synthesized in the ejecta

    Bibliography

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