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A Methodological Shift in Building Design through Development of Collaborative Design Platforms
Schumacher, Jonatan,Naugle, Matthew Council on Tall Building and Urban Habitat Korea 2014 International journal of high-rise buildings Vol.3 No.4
This paper introduces two platforms created by the development team at CORE studio, Thornton Tomasetti's global innovation studio. Collaborative platforms change the way that parties communicate and develop projects. Wikipedia is one of many great examples for a platform that supports collaborative development of a product - the world's largest encyclopedia. In the AEC industry, no such platform exists that can be used for collaborative development of a building project, and hence, information exchange between the parties involved, and modeling programs used in a project is slow and opaque. The platforms introduced in this paper allow for much greater transparency at all stages of the building design process, and hence improve the flow of information between parties involved in the process, both firm-internal and external. While traditionally, the use of a large number of different modeling and analysis platforms is hard to manage by a project team; this paper introduces methods that strengthen the design process by using a multitude of programs needed in the different building design phases.
ANOMALOUS HALL EFFECT IN AMORPHOUS Fe0.33Zr0.67 ALLOY
K. Rhie,D. G. Naugle 한국자기학회 1995 韓國磁氣學會誌 Vol.5 No.6
It is well known that the side-jump effect, originated from the spin-orbit scatterring of the transport electrons at the site of spin-orbit scatterers, is the reason for the anomalous Hall resistivity which is proportional to the magnetization. Our recent magnetization study implied that abundant ferromagnetic Fe clusters made of for Fe ions dominate the temperature and field dependence of magnetization at high field and low temperature regime for a paramagnetic Fe_(0.33)Zr_(0.67) alloy. We measured the Hall resistivity of this alloy and observed that the Hall resistivity followed the M-H curve at low temperature, and the Hall coefficients at moderate temperatures were proportional to the magnetic susceptibility. We explain the behavior of Hall resistivity with the change of field and temperature in terms of side-jump effect.