ORCID Profile
0000-0002-9807-1602
Current Organisation
The University of Sydney Library
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Publisher: Institute of Electrical and Electronics Engineers (IEEE)
Date: 2023
Publisher: IEEE
Date: 08-2016
Publisher: IGI Global
Date: 2014
DOI: 10.4018/978-1-4666-4789-3.CH002
Abstract: Cybercriminals continue to target online users of banks. They are improving their techniques and using high levels of skill in their attacks. Their continued search for different methods to commit crime makes the existing protection system less effective. They have developed crime toolkits which have become more accessible and simpler to use, and this has attracted more cybercriminals to cybercrime. In this chapter, the authors study the methods that are used in crime toolkits. They present the development and current trend of crime toolkits and reveal the methods that have been used to commit cybercrime successfully.
Publisher: Wiley
Date: 03-11-2010
Publisher: IEEE
Date: 08-2019
Publisher: IEEE
Date: 11-2014
DOI: 10.1109/CTC.2014.14
Publisher: Institute of Electrical and Electronics Engineers (IEEE)
Date: 2020
Publisher: The Royal Society
Date: 18-05-2007
Abstract: Coupled surface–atmosphere models are being used with increased frequency to make predictions of tropospheric chemistry on a ‘future’ earth characterized by a warmer climate and elevated atmospheric CO 2 concentration. One of the key inputs to these models is the emission of isoprene from forest ecosystems. Most models in current use rely on a scheme by which global change is coupled to changes in terrestrial net primary productivity (NPP) which, in turn, is coupled to changes in the magnitude of isoprene emissions. In this study, we conducted measurements of isoprene emissions at three prominent global change experiments in the United States. Our results showed that growth in an atmosphere of elevated CO 2 inhibited the emission of isoprene at levels that completely compensate for possible increases in emission due to increases in aboveground NPP. Exposure to a prolonged drought caused leaves to increase their isoprene emissions despite reductions in photosynthesis, and presumably NPP. Thus, the current generation of models intended to predict the response of isoprene emission to future global change probably contain large errors. A framework is offered as a foundation for constructing new isoprene emission models based on the responses of leaf biochemistry to future climate change and elevated atmospheric CO 2 concentrations.
Publisher: Institute of Electrical and Electronics Engineers (IEEE)
Date: 2020
Publisher: IEEE
Date: 11-2013
DOI: 10.1109/CTC.2013.11
Publisher: IEEE
Date: 11-2015
DOI: 10.1109/CTC.2014.11
No related grants have been discovered for Ahmad Azab.