Evaluating Teaching Excellence from a Disciplinary Perspective

Author(s):  
Charlotte Foreman ◽  
Ali Musawi

Associate Professor Margaret Plunkett, Federation University, Australia, has over 30 years' experience in education. She currently coordinates and lectures in a range of courses and programs in both secondary and primary education, related to gifted education and professional experience. Margaret has won a number of awards for teaching excellence including the Monash Vice Chancellors Teaching Excellence Award (Special Commendation, 2010); the Pearson/ATEA Teacher Educator of the Year Award (2012); and a National Office of Learning of Learning and Teaching (OLT) Citation in 2014.


Author(s):  
Mehdi Dastani ◽  
Paolo Torroni ◽  
Neil Yorke-Smith

AbstractThe concept of anormis found widely across fields including artificial intelligence, biology, computer security, cultural studies, economics, law, organizational behaviour and psychology. The concept is studied with different terminology and perspectives, including individual, social, legal and philosophical. If a norm is an expected behaviour in a social setting, then this article considers how it can be determined whether an individual is adhering to this expected behaviour. We call this processmonitoring, and again it is a concept known with different terminology in different fields. Monitoring of norms is foundational for processes of accountability, enforcement, regulation and sanctioning. Starting with a broad focus and narrowing to the multi-agent systems literature, this survey addresses four key questions: what is monitoring, what is monitored, who does the monitoring and how the monitoring is accomplished.


2021 ◽  
Vol 40 (2) ◽  
pp. 72-80
Author(s):  
Xavier Ferrer ◽  
Tom van Nuenen ◽  
Jose M. Such ◽  
Mark Cote ◽  
Natalia Criado

1998 ◽  
Vol 4 (S2) ◽  
pp. 154-155
Author(s):  
H. Ade

In Near Edge X-ray Absorption Fine Structure (NEXAFS) microscopy, excitations of core electrons into unoccupied molecular orbitals or electronic states provide sensitivity to a wide variety of chemical functionalities in molecules and solids. This sensitivity complements infrared (IR) spectroscopy, although the NEXAFS spectra are not quite as specific and “rich” as IR spectra. The sensitivity of NEXAFS to distinguish chemical bonds and electronic structures covers a wide variety of samples: from metals to inorganics and organics. (There is a tendency in the community to use the term NEXAFS for soft x-ray spectroscopy of organic materials, while for inorganic materials or at higher energies X-ray Absorption Near Edge Spectroscopy (XANES) is utilized, even though the fundamental physics is the same.) The sensitivity of NEXAFS is particularly high to distinguish saturated from unsaturated bonds. NEXAFS can also detect conjugation in a molecule, as well as chemical shifts due to heteroatoms.


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