E-technology and the emergent e-environment: Implications for organizational form and function

2007 ◽  
Vol 18 (1) ◽  
pp. 15-30 ◽  
Author(s):  
Rana Tassabehji ◽  
James Wallace ◽  
Nelarine Cornelius
2021 ◽  
pp. 016224392110556
Author(s):  
Rachel Faulkner-Gurstein ◽  
David Wyatt

The platform is emerging as a key organizational form and operational logic of contemporary capitalism, intimately tied to financialization and assetization. However, discussions to date have focused on platforms and platformization in the context of the private, corporate, and technology sectors. In this paper, we develop an analysis of how platformization operates in the context of public policy. Using the UK’s National Health Service as a case study, we explore how platformization is altering the form and function of the state. The platformization of the NHS has its roots in the UK government’s strategic interest in the development of the bioeconomy. This led to the creation of a research infrastructure within the health service. Subsequently, the NHS has leveraged various assets into a range of data- and technology-focused initiatives. We argue that platformization has been a major form of neoliberalization within the NHS. The paper concludes with a discussion of what an analysis of public platformization can teach us about ongoing transformations of the state.


2007 ◽  
Vol 14 (9) ◽  
pp. 1143-1147
Author(s):  
Richard B. Gunderman

Author(s):  
Patricia G. Arscott ◽  
Gil Lee ◽  
Victor A. Bloomfield ◽  
D. Fennell Evans

STM is one of the most promising techniques available for visualizing the fine details of biomolecular structure. It has been used to map the surface topography of inorganic materials in atomic dimensions, and thus has the resolving power not only to determine the conformation of small molecules but to distinguish site-specific features within a molecule. That level of detail is of critical importance in understanding the relationship between form and function in biological systems. The size, shape, and accessibility of molecular structures can be determined much more accurately by STM than by electron microscopy since no staining, shadowing or labeling with heavy metals is required, and there is no exposure to damaging radiation by electrons. Crystallography and most other physical techniques do not give information about individual molecules.We have obtained striking images of DNA and RNA, using calf thymus DNA and two synthetic polynucleotides, poly(dG-me5dC)·poly(dG-me5dC) and poly(rA)·poly(rU).


2011 ◽  
Author(s):  
Scott Fluke ◽  
Russell J. Webster ◽  
Donald A. Saucier

2013 ◽  
Author(s):  
Joshua Wilt ◽  
William Revelle

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