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9781447126355: A Science of Operations: Machines, Logic and the Invention of Programming

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Today, computers fulfil a dazzling array of roles, a flexibility resulting from the great range of programs that can be run on them.

A Science of Operations examines the history of what we now call programming, defined not simply as computer programming, but more broadly as the definition of the steps involved in computations and other information-processing activities. This unique perspective highlights how the history of programming is distinct from the history of the computer, despite the close relationship between the two in the 20th century. The book also discusses how the development of programming languages is related to disparate fields which attempted to give a mechanical account of language on the one hand, and a linguistic account of machines on the other.

Topics and features: Covers the early development of automatic computing, including Babbage’s “mechanical calculating engines” and the applications of punched-card technology, examines the theoretical work of mathematical logicians such as Kleene, Church, Post and Turing, and the machines built by Zuse and Aiken in the 1930s and 1940s, discusses the role that logic played in the development of the stored program computer, describes the “standard model” of machine-code programming popularised by Maurice Wilkes, presents the complete table for the universal Turing machine in the Appendices, investigates the rise of the initiatives aimed at developing higher-level programming nota

tions, and how these came to be thought of as ‘languages’ that could be studied independently of a machine, examines the importance of the Algol 60 language, and the framework it provided for studying the design of programming languages and the process of software development and explores the early development of object-oriented languages, with a focus on the Smalltalk project.

This fascinating text offers a new viewpoint for historians of science and technology, as well as for the general reader. The historical narrative builds the story in a clear and logical fashion, roughly following chronological order.

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<p>Today, computers fulfil a dazzling array of roles, a flexibility resulting from the great range of programs<i> </i>that can be run on them.</p><p></p><p><i>A Science of Operations</i> examines the history of what we now call programming, defined not simply as <i>computer </i>programming, but more broadly as the definition of the steps involved in computations and other information-processing activities.  This unique perspective highlights how the history of programming is distinct from the history of the computer, despite the close relationship between the two in the 20<sup>th</sup> century.  The book also discusses how the development of programming languages is related to disparate fields which attempted to give a mechanical account of language on the one hand, and a linguistic account of machines on the other.</p><p><b></b></p><p><b>Topics and features:</b></p><p></p><ul><li>Covers the early development of automatic computing, including Babbage’s “mechanical calculating engines” and the applications of punched-card technology</li><li>Examines the theoretical work of mathematical logicians such as Kleene, Church, Post and Turing, and the machines built by Zuse and Aiken in the 1930s and 1940s</li><li>Discusses the role that logic played in the development of the stored program computer</li><li>Describes the “standard model” of machine-code programming popularised by Maurice Wilkes</li><li>Presents the complete table for the universal Turing machine in the Appendices</li></ul><li>Investigates the rise of the initiatives aimed at developing higher-level programming notations, and how these came to be thought of as ‘languages’ that could be studied independently of a machine</li><li>Examines the importance of the Algol 60 language, and the framework it provided for studying the design of programming languages and the process of software development</li><li>Explores the early development of object-oriented languages, with a focus on the Smalltalk project</li><p>This fascinating text offers a new viewpoint for historians of science and technology, as well as for the general reader.  The historical narrative builds the story in a clear and logical fashion, roughly following chronological order.</p>

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9781848825543: A Science of Operations: Machines, Logic and the Invention of Programming

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Taschenbuch. Condizione: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -Today, computers fulfil a dazzling array of roles, a flexibility resulting from the great range of programs that can be run on them.A Science of Operations examines the history of what we now call programming, defined not simply as computer programming, but more broadly as the definition of the steps involved in computations and other information-processing activities. This unique perspective highlights how the history of programming is distinct from the history of the computer, despite the close relationship between the two in the 20th century. The book also discusses how the development of programming languages is related to disparate fields which attempted to give a mechanical account of language on the one hand, and a linguistic account of machines on the other.Topics and features: Covers the early development of automatic computing, including Babbage's 'mechanical calculating engines' and the applications of punched-card technology, examines the theoretical work of mathematical logicians such as Kleene, Church, Post and Turing, and the machines built by Zuse and Aiken in the 1930s and 1940s, discusses the role that logic played in the development of the stored program computer, describes the 'standard model' of machine-code programming popularised by Maurice Wilkes, presents the complete table for the universal Turing machine in the Appendices, investigates the rise of the initiatives aimed at developing higher-level programming notations, and how these came to be thought of as 'languages' that could be studied independently of a machine, examines the importance of the Algol 60 language, and the framework it provided for studying the design of programming languages and the process of software development and explores the early development of object-oriented languages, with a focus on the Smalltalk project.This fascinating text offers a new viewpoint for historians of science and technology, as well as for the general reader. The historical narrative builds the story in a clear and logical fashion, roughly following chronological order. 352 pp. Englisch. Codice articolo 9781447126355

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Paperback. Condizione: new. Paperback. Today, computers fulfil a dazzling array of roles, a flexibility resulting from the great range of programs that can be run on them.A Science of Operations examines the history of what we now call programming, defined not simply as computer programming, but more broadly as the definition of the steps involved in computations and other information-processing activities. This unique perspective highlights how the history of programming is distinct from the history of the computer, despite the close relationship between the two in the 20th century. The book also discusses how the development of programming languages is related to disparate fields which attempted to give a mechanical account of language on the one hand, and a linguistic account of machines on the other.Topics and features: Covers the early development of automatic computing, including Babbages mechanical calculating engines and the applications of punched-card technology, examines the theoretical work of mathematical logicians such as Kleene, Church, Post and Turing, and the machines built by Zuse and Aiken in the 1930s and 1940s, discusses the role that logic played in the development of the stored program computer, describes the standard model of machine-code programming popularised by Maurice Wilkes, presents the complete table for the universal Turing machine in the Appendices, investigates the rise of the initiatives aimed at developing higher-level programming notations, and how these came to be thought of as languages that could be studied independently of a machine, examines the importance of the Algol 60 language, and the framework it provided for studying the design of programming languages and the process of software development and explores the early development of object-oriented languages, with a focus on the Smalltalk project.This fascinating text offers a new viewpoint for historians of science and technology, as well as for the general reader. The historical narrative builds the story in a clear and logical fashion, roughly following chronological order. Today, computers fulfil a dazzling array of roles, a flexibility resulting from the great range of programs that can be run on them.A Science of Operations examines the history of what we now call programming, defined not simply as computer programming, but more broadly as the definition of the steps involved in computations and other information-processing activities. This unique perspective highlights how the history of programming is distinct from the history of the computer, despite the close relationship between the two in the 20th century. The book also discusses how the development of programming languages is related to disparate fields which attempted to give a mechanical account of language on the one hand, and a linguistic account of machines on the other.Topics and features: Covers the early development of automatic computing, including Babbage's "mechanical calculating engines" and the applications of punched-card technology, examines the theoretical work of mathematical logicians such as Kleene, Church, Post and Turing, and the machines built by Zuse and Aiken in the 1930s and 1940s, discusses the role that logic played in the development of the stored program computer, describes the "standard model" of machine-code programming popularised by Maurice Wilkes, presents the complete table for the universal Turing machine in the Appendices, investigates the rise of the initiatives aimed at developing higher-level programming notations, and how these came to be thought of as 'languages' that co Shipping may be from multiple locations in the US or from the UK, depending on stock availability. Codice articolo 9781447126355

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