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Some of the material in is restricted to members of the community. By logging in, you may be able to gain additional access to certain collections or items. If you have questions about access or logging in, please use the form on the Contact Page.
A robust and computationally efficient Monte-Carlo based technique is developed to analyze the magnetic aftereffect and noise passage phenomena in magnetic hysteretic systems by using phenomenological models of hysteresis. The technique...
In this dissertation, we investigate the possibility to use scanning microscopy such as scanning capacitance microscopy (SCM) and scanning spreading resistance microscopy (SSRM) for the "atomistic" dopant profiling of semiconductor...
A robust and computationally efficient technique is developed for the design of fluctuation resistant structures (fault-tolerant) semiconductor devices. This technique can be applied to the computation of the doping profiles that...
Understanding of the transport phenomena in Li-air batteries is crucial for improving the performance and design of Li-air batteries. In this dissertation, the basic transport equations that govern the operation of Li-air batteries are...
A central problem in the power semiconductor industry is to design semiconductor devices with high breakdown voltage and low on-state resistance. This problem is usually addressed computationally by developing a physics-based model for...
A numerical technique is developed for the design and optimization of the microstructure of proton exchange membrane fuel cells. The technique is based on evaluating the sensitivity functions of the different variables that need to by...
There has been a growing interest in electrochemical storage devices such as batteries, fuel cells and supercapacitors in recent years. This interest is due to our increasing dependence on portable electronic devices and on the high...
Some of the material in is restricted to members of the community. By logging in, you may be able to gain additional access to certain collections or items. If you have questions about access or logging in, please use the form on the Contact Page.