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VLSI-SoC: Design and Engineering of Electronics Systems Based on New Computing Paradigms - 26th IFIP WG 10.5/IEEE International Conference on Very Large Scale Integration, VLSI-SoC 2018, Verona, Italy, October 8-10, 2018, Revised and Extended Selected Papers (Paperback, 1st ed. 2019)
Nicola Bombieri, Graziano Pravadelli, Masahiro Fujita, Todd Austin, Ricardo Reis
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R1,558
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This book contains extended and revised versions of the best papers
presented at the 26th IFIP WG 10.5/IEEE International Conference on
Very Large Scale Integration, VLSI-SoC 2018, held in Verona, Italy,
in October 2018. The 13 full papers included in this volume were
carefully reviewed and selected from the 27 papers (out of 106
submissions) presented at the conference. The papers discuss the
latest academic and industrial results and developments as well as
future trends in the field of System-on-Chip (SoC) design,
considering the challenges of nano-scale, state-of-the-art and
emerging manufacturing technologies. In particular they address
cutting-edge research fields like heterogeneous, neuromorphic and
brain-inspired, biologically-inspired, approximate computing
systems.
Structured Computer Organization, specifically written for
undergraduate students, is a best-selling guide that provides an
accessible introduction to computer hardware and architecture. This
text will also serve as a useful resource for all computer
professionals and engineers who need an overview or introduction to
computer architecture. This book takes a modern structured, layered
approach to understanding computer systems. It's highly accessible
- and it's been thoroughly updated to reflect today's most critical
new technologies and the latest developments in computer
organization and architecture. Tanenbaum's renowned writing style
and painstaking research make this one of the most accessible and
accurate books available, maintaining the author's popular method
of presenting a computer as a series of layers, each one built upon
the ones below it, and understandable as a separate entity.
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