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Since register transfer level (RTL) design is less about being a
bright engineer, and more about knowing the downstream implications
of your work, this book explains the impact of design decisions
taken that may give rise later in the product lifecycle to issues
related to testability, data synchronization across clock domains,
synthesizability, power consumption, routability, etc., all which
are a function of the way the RTL was originally written. Readers
will benefit from a highly practical approach to the fundamentals
of these topics, and will be given clear guidance regarding
necessary safeguards to observe during RTL design.
This volume gives the latest developments in on the mechanisms of
cancer cell resistance to apoptotic stimuli, which eventually
result in cancer progression and metastasis. One of the main
challenges in cancer research is to develop new therapies to combat
resistant tumors. The development of new effective therapies will
be dependent on delineating the biochemical, molecular, and genetic
mechanisms that regulate tumor cell resistance to cytotoxic
drug-induced apoptosis. These mechanisms should reveal gene
products that directly regulate resistance in order to develop new
drugs that target these resistance factors and such new drugs may
either be selective or common to various cancers. If successful,
new drugs may not be toxic and may be used effectively in
combination with subtoxic conventional drugs to achieve synergy and
to reverse tumor cell resistance. The research developments
presented in this book can be translated to produce better clinical
responses to resistant tumors.
Just like electricity, Machine Learning will revolutionize our life
in many ways - some of which are not even conceivable today. This
book provides a thorough conceptual understanding of Machine
Learning techniques and algorithms. Many of the mathematical
concepts are explained in an intuitive manner. The book starts with
an overview of machine learning and the underlying Mathematical and
Statistical concepts before moving onto machine learning topics. It
gradually builds up the depth, covering many of the present day
machine learning algorithms, ending in Deep Learning and
Reinforcement Learning algorithms. The book also covers some of the
popular Machine Learning applications. The material in this book is
agnostic to any specific programming language or hardware so that
readers can try these concepts on whichever platforms they are
already familiar with. Offers a comprehensive introduction to
Machine Learning, while not assuming any prior knowledge of the
topic; Provides a complete overview of available techniques and
algorithms in conceptual terms, covering various application
domains of machine learning; Not tied to any specific software
language or hardware implementation.
This book helps readers to implement their designs on Xilinx (R)
FPGAs. The authors demonstrate how to get the greatest impact from
using the Vivado (R) Design Suite, which delivers a SoC-strength,
IP-centric and system-centric, next generation development
environment that has been built from the ground up to address the
productivity bottlenecks in system-level integration and
implementation. This book is a hands-on guide for both users who
are new to FPGA designs, as well as those currently using the
legacy Xilinx tool set (ISE) but are now moving to Vivado.
Throughout the presentation, the authors focus on key concepts,
major mechanisms for design entry, and methods to realize the most
efficient implementation of the target design, with the least
number of iterations.
This book serves as a hands-on guide to timing constraints in
integrated circuit design. Readers will learn to maximize
performance of their IC designs, by specifying timing requirements
correctly. Coverage includes key aspects of the design flow
impacted by timing constraints, including synthesis, static timing
analysis and placement and routing. Concepts needed for specifying
timing requirements are explained in detail and then applied to
specific stages in the design flow, all within the context of
Synopsys Design Constraints (SDC), the industry-leading format for
specifying constraints.
This book helps readers to implement their designs on Xilinx (R)
FPGAs. The authors demonstrate how to get the greatest impact from
using the Vivado (R) Design Suite, which delivers a SoC-strength,
IP-centric and system-centric, next generation development
environment that has been built from the ground up to address the
productivity bottlenecks in system-level integration and
implementation. This book is a hands-on guide for both users who
are new to FPGA designs, as well as those currently using the
legacy Xilinx tool set (ISE) but are now moving to Vivado.
Throughout the presentation, the authors focus on key concepts,
major mechanisms for design entry, and methods to realize the most
efficient implementation of the target design, with the least
number of iterations.
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