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Knowledge of the up-to-date physical (i.e., layer-2) topology of an Ethernet network is crucial to a number of critical network management tasks, including reactive and proactive resource managemen

This paper reviews the physical, chemical and kinetic factors during sintering of ceramics.

Connected devices are exponentially invading our real world environment, making it smart (smart home / building / city / etc) and forming the Internet of Things (IoT).

We are witnessing the evolution of optical networks toward highly heterogeneous, flexible networks with a widening area of application.

Full- duplex communication enables simultaneous transmission from both ends of a communication link, thereby promising significant performance gains.

Physically based models of the demand for electricity of industrial customers provide insight into what types of production schedules are feasible and how rescheduling will change the load shape.

Two efficient, physically based models for the real-time simulation of molecular device characteristics of single molecules are developed.

To facilitate enhancing the design the heated micro-ring resonators (MRR), a thermo-electrical model that incorporates a physically realistic etching step has been developed.

This is a book chapter for "Heterojunctions: Band Discontinuities and Device Applications" edited by G. Margaritondo and F. Capasso.

This article reviews recent advances in our current level of understanding of the physics underlying transport and optical properties of Ge(x)Si(1-x)/Si strained layer heterostructures.

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