"A fascinating compendium of information about writing systems–both for words and numbers."
–Publishers Weekly

"A truly enlightening and fascinating study for the mathematically oriented reader."
–Booklist

"Well researched. . . . This book is a rich resource for those involved in researching the history of computers."
–The Mathematics Teacher

In this brilliant follow-up to his landmark international bestseller, The Universal History of Numbers, Georges Ifrah traces the development of computing from the invention of the abacus to the creation of the binary system three centuries ago to the incredible conceptual, scientific, and technical achievements that made the first modern computers possible. Ifrah takes us along as he visits mathematicians, visionaries, philosophers, and scholars from every corner of the world and every period of history. We learn about the births of the pocket calculator, the adding machine, the cash register, and even automata. We find out how the origins of the computer can be found in the European Renaissance, along with how World War II influenced the development of analytical calculation. And we explore such hot topics as numerical codes and the recent discovery of new kinds of number systems, such as "surreal" numbers.

Adventurous and enthralling, The Universal History of Computing is an astonishing achievement that not only unravels the epic tale of computing, but also tells the compelling story of human intelligence–and how much further we still have to go.

From the I Ching to AI, tremendous human brainpower has been devoted to devising easier means of counting and thinking. Former math teacher Georges Ifrah has devoted his life to tracking down traces of our early calculating tools and reporting on them with charm and verve. The Universal History of Computing: From the Abacus to Quantum Computing gives a grand title to a grand subject, and Ifrah makes good on his promise of universality by leaping far back in time and spanning all of the inhabited continents. If his scope is vast, his stories and details are still engrossing. Readers will hang on to the stories of 19th-century inventors who converged on multiplication machines and other, more general "engines," and better understand the roots of biological and quantum computation. Ifrah has great respect for our ancestors and their work, and he transmits this feeling to his readers with humor and humility. His timelines, diagrams, and concordance help the reader who might be unfamiliar with foreign concepts of numbers and computation keep up with his narrative. By the end, his slight bias against strong artificial intelligence comes through, but he is careful to acknowledge the future's unforeseeable nature and suggest that we keep our minds open. How can we resist? --Rob Lightner

The Universal History of Computing: From the Abacus to the Quantum Computer
The Universal History of Computing: From the Abacus to the Quantum Computer
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