scholarly journals Corporate Governance and the Financing of Investment for Structural Change

Author(s):  
Martin Hellwig
1983 ◽  
Vol 25 (3) ◽  
pp. 88-106 ◽  
Author(s):  
R. Edward Freeman ◽  
David L. Reed

The purpose of this article is to show how the concept of stakeholders in an organization can be used to understand the tasks of the board of directors. The authors argue that a volunteeristic approach to questions of corporate governance which focuses on effective director behavior is preferable to structural change via legislation.


2007 ◽  
Vol 6 (S1) ◽  
pp. S89-S113 ◽  
Author(s):  
Asli M Colpan ◽  
Toru Yoshikawa ◽  
Takashi Hikino ◽  
Hiroaki Miyoshi

Author(s):  
Antonio Corvino

Over the last months, the COVID-19 pandemic represented a disruptive phenomenon, in terms of health and socio-economic implications. Organizations and human capital are thereon tackling effects ascribable to a real structural change. In particular, each effect (i.e., smart working, the ways of knowledge accumulation and sharing, etc.) is significantly conditioning their life cycle. Therefore, the enterprise is facing new challenges, such as the refreshing of the corporate governance path, the rethinking of the business model (Caputo, Pizzi, Pellegrini, & Dabić, 2020; Pizzi, Corbo, & Caputo, 2020; Rosato, Caputo, Valente, & Pizzi, 2021) and so on, which are described by some papers published in the present issue.


Author(s):  
J. M. Galbraith ◽  
L. E. Murr ◽  
A. L. Stevens

Uniaxial compression tests and hydrostatic tests at pressures up to 27 kbars have been performed to determine operating slip systems in single crystal and polycrystal1ine beryllium. A recent study has been made of wave propagation in single crystal beryllium by shock loading to selectively activate various slip systems, and this has been followed by a study of wave propagation and spallation in textured, polycrystal1ine beryllium. An alteration in the X-ray diffraction pattern has been noted after shock loading, but this alteration has not yet been correlated with any structural change occurring during shock loading of polycrystal1ine beryllium.This study is being conducted in an effort to characterize the effects of shock loading on textured, polycrystal1ine beryllium. Samples were fabricated from a billet of Kawecki-Berylco hot pressed HP-10 beryllium.


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