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Bits to Bitcoin: How Our Digital Stuff Works (Out of print)

AUTHOR Jennings, C. A.; Day, Mark Stuart
PUBLISHER MIT Press (08/28/2018)
PRODUCT TYPE Hardcover (Hardcover)

Description
An accessible guide to our digital infrastructure, explaining the basics of operating systems, networks, security, and other topics for the general reader.

Most of us feel at home in front of a computer; we own smartphones, tablets, and laptops; we look things up online and check social media to see what our friends are doing. But we may be a bit fuzzy about how any of this really works. In Bits to Bitcoin, Mark Stuart Day offers an accessible guide to our digital infrastructure, explaining the basics of operating systems, networks, security, and related topics for the general reader. He takes the reader from a single process to multiple processes that interact with each other; he explores processes that fail and processes that overcome failures; and he examines processes that attack each other or defend themselves against attacks.

Day tells us that steps are digital but ramps are analog; that computation is about "doing something with stuff" and that both the "stuff" and the "doing" can be digital. He explains timesharing, deadlock, and thrashing; virtual memory and virtual machines; packets and networks; resources and servers; secret keys and public keys; Moore's law and Thompson's hack. He describes how building in redundancy guards against failure and how endpoints communicate across the Internet. He explains why programs crash or have other bugs, why they are attacked by viruses, and why those problems are hard to fix. Finally, after examining secrets, trust, and cheating, he explains the mechanisms that allow the Bitcoin system to record money transfers accurately while fending off attacks.

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Product Format
Product Details
ISBN-13: 9780262037938
ISBN-10: 0262037939
Binding: Hardback or Cased Book (Sewn)
Content Language: English
More Product Details
Page Count: 368
Carton Quantity: 12
Product Dimensions: 6.30 x 1.20 x 9.10 inches
Weight: 1.50 pound(s)
Feature Codes: Index, Price on Product, Illustrated
Country of Origin: US
Subject Information
BISAC Categories
Computers | Computer Science
Computers | General
Computers | Operating Systems - General
Grade Level: College Freshman and up
Dewey Decimal: 004
Library of Congress Control Number: 2017046504
Descriptions, Reviews, Etc.
publisher marketing
An accessible guide to our digital infrastructure, explaining the basics of operating systems, networks, security, and other topics for the general reader.

Most of us feel at home in front of a computer; we own smartphones, tablets, and laptops; we look things up online and check social media to see what our friends are doing. But we may be a bit fuzzy about how any of this really works. In Bits to Bitcoin, Mark Stuart Day offers an accessible guide to our digital infrastructure, explaining the basics of operating systems, networks, security, and related topics for the general reader. He takes the reader from a single process to multiple processes that interact with each other; he explores processes that fail and processes that overcome failures; and he examines processes that attack each other or defend themselves against attacks.

Day tells us that steps are digital but ramps are analog; that computation is about "doing something with stuff" and that both the "stuff" and the "doing" can be digital. He explains timesharing, deadlock, and thrashing; virtual memory and virtual machines; packets and networks; resources and servers; secret keys and public keys; Moore's law and Thompson's hack. He describes how building in redundancy guards against failure and how endpoints communicate across the Internet. He explains why programs crash or have other bugs, why they are attacked by viruses, and why those problems are hard to fix. Finally, after examining secrets, trust, and cheating, he explains the mechanisms that allow the Bitcoin system to record money transfers accurately while fending off attacks.

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List Price $29.95
Your Price  $26.66
Hardcover