The role of information technology in the future of 3D biofabrication

2017 ◽  
Vol 1 (1) ◽  
pp. 63-74 ◽  
Author(s):  
Janaina de Andréa Dernowsek ◽  
Rodrigo Alvarenga Rezende ◽  
Jorge Vicente Lopes da Silva
2019 ◽  
Vol 8 (4) ◽  
pp. 8736-8742

The objective of this study is to identify the role of information technology in companies. The use of IT should create a synergy between business strategies, business processes and technologies to achieve the vision, mission and objectives of the company, and to offer excellence in the future. For this reason, the study uses the EA framework, where there are artifacts that are stored digitally in the repository. This study uses the EA implementation method when the main points of the EA development steps are implemented. The results achieved are the integration of new applications that are expected to be properly implemented so that companies can read their strategies to deal with competitors. The conclusion is that the proposed application can help the company achieve its vision, mission and objectives. And all business processes can be managed effectively and efficiently so that the company can compete with its competitors today and in the future.


Author(s):  
Peter Keenan

This chapter looks at the concepts and theories underlying the application of GIS in business. It discusses the role of information technology in business generally and how GIS is related to other business systems. Different views of GIS use are introduced and the chapter suggests that decision support applications of GIS are more relevant to most businesses than purely operational applications. Porter’s value chain approach is used to assess the potential of GIS to contribute to management. GIS is seen as an emerging technology that will increase importance in business in the future.


2019 ◽  
Vol 7 (1) ◽  
pp. 62-72
Author(s):  
Shatha Abbas Hassan ◽  
Noor Ali Aljorani

The increasing importance of the information revolution and terms such as ‘speed’, ‘disorientation’, and ‘changing the concept of distance’, has provided us with tools that had not been previously available. Technological developments are moving toward Fluidity, which was previously unknown and cannot be understood through modern tools. With acceleration of the rhythm in the age we live in and the clarity of the role of information technology in our lives, as also the ease of access to information, has helped us to overcome many difficulties. Technology in all its forms has had a clear impact on all areas of daily life, and it has a clear impact on human thought in general, and the architectural space in particular, where the architecture moves from narrow spaces and is limited to new spaces known as the ‘breadth’, and forms of unlimited and stability to spaces characterized with fluidity. The research problem (the lack of clarity of knowledge about the impact of vast information flow associated with the technology of the age in the occurrence of liquidity in contemporary architectural space) is presented here. The research aims at defining fluidity and clarifying the effect of information technology on the changing characteristics of architectural space from solidity to fluidity. The research follows the analytical approach in tracking the concept of fluidity in physics and sociology to define this concept and then to explain the effect of Information Technology (IT) to achieve the fluidity of contemporary architectural space, leading to an analysis of the Skidmore, Owings and Merrill (SOM) architectural model. The research concludes that information technology achieves fluidity through various tools (communication systems, computers, automation, and artificial intelligence). It has changed the characteristics of contemporary architectural space and made it behave like an organism, through using smart material.


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