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Bücher zum Thema „Light gas gun“

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1

Nappert, L. Circular waveguide couplers for the DREV two-stage light-gas gun. Valcartier, Quebec: Defence Research Establishment, 1993.

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2

Gottlieb, J. J. Numerical model for prediction of two-stage light-gas gun performance. [S.l.]: [s.n.], 1989.

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3

Lesage, Francois. Optimization of light-gas gun operation using a numerical simulation code. Valcartier, Quebec: Defence Research Establishment Valcartier, 1990.

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4

Patin, R. M. A one-dimensional simulation model for a two stage light gas gun with deformable piston. New York: AIAA, 1986.

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5

Nappert, L. A numerical model for the prediction of two-stage light-gas gun performance: theory and validation. Valcartier, Quebec: Department of National Defence, Defence Research Establishment, 1990.

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6

Groth, Clinton P. T. Ideal-viscoplastic extrusion model with application to deforming pistons in light-gas guns. [Downsview, Ont.]: Institute for Aerospace Studies, 1987.

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7

Groth, Clinton P. T. Numerical study of two-stage light-gas hypervelocity projectile launchers. [Downsview, Ont.]: Institute for Aerospace Studies, 1988.

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8

Nakamura, Shuji. The blue laser diode: GaN based light emitters and lasers. Berlin: Springer, 1997.

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9

Liyun, Hu, Hrsg. Kai fang xi tong liang zi tui xiang gan de jiu chan tai biao xiang lun. Shanghai Shi: Shanghai jiao tong da xue chu ban she, 2010.

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10

Liyun, Hu, Hrsg. Kai fang xi tong liang zi tui xiang gan de jiu chan tai biao xiang lun. Shanghai Shi: Shanghai jiao tong da xue chu ban she, 2010.

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11

Center, Ames Research, Hrsg. Optimization study of the Ames 0.5" two-stage light gas gun. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1996.

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12

David, Cooper, und George C. Marshall Research Foundation., Hrsg. Repeatability and uncertainty analyses of NASA/MSFC light gas gun test data: Final report. [Marshall Space Flight Center, Ala.]: National Aeronautics and Space Administration, George C. Marshall Space Flight Center, 1993.

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13

J, Miller R., United States. National Aeronautics and Space Administration. und Ames Research Center, Hrsg. New higher-order Godunov code for modelling performance of two-stage light gas guns. Moffett Field, Calif: National Aeronautics and Space Administration, Ames Research Center, 1995.

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14

1950-, Pan Suiming, Hrsg. Qing jing yu gan wu: Xi nan Zhongguo san ge hong deng qu tan suo = Situation and inspiration : study on three red light districts in Southwest China. Gaoxiong Shi: Wan you chu ban she, 2005.

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15

1933-, Yang Yunzhong, und Cai Yongjun, Hrsg. Yin ru gui dao jie yun xi tong: Gai shan cheng shi jiao tong de ke xing xuan ze = Introducing light rapid transit system : a possible solution towards improvement of city's traffic. Aomen: Aomen da xue Aomen yan jiu zhong xin, 2006.

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16

Pool, Robert. Beyond Engineering. Oxford University Press, 1997. http://dx.doi.org/10.1093/oso/9780195107722.001.0001.

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We have long recognized technology as a driving force behind much historical and cultural change. The invention of the printing press initiated the Reformation. The development of the compass ushered in the Age of Exploration and the discovery of the New World. The cotton gin created the conditions that led to the Civil War. Now, in Beyond Engineering, science writer Robert Pool turns the question around to examine how society shapes technology. Drawing on such disparate fields as history, economics, risk analysis, management science, sociology, and psychology, Pool illuminates the complex, often fascinating interplay between machines and society, in a book that will revolutionize how we think about technology. We tend to think that reason guides technological development, that engineering expertise alone determines the final form an invention takes. But if you look closely enough at the history of any invention, says Pool, you will find that factors unrelated to engineering seem to have an almost equal impact. In his wide-ranging volume, he traces developments in nuclear energy, automobiles, light bulbs, commercial electricity, and personal computers, to reveal that the ultimate shape of a technology often has as much to do with outside and unforeseen forces. For instance, Pool explores the reasons why steam-powered cars lost out to internal combustion engines. He shows that the Stanley Steamer was in many ways superior to the Model T--it set a land speed record in 1906 of more than 127 miles per hour, it had no transmission (and no transmission headaches), and it was simpler (one Stanley engine had only twenty-two moving parts) and quieter than a gas engine--but the steamers were killed off by factors that had little or nothing to do with their engineering merits, including the Stanley twins' lack of business acumen and an outbreak of hoof-and-mouth disease. Pool illuminates other aspects of technology as well. He traces how seemingly minor decisions made early along the path of development can have profound consequences further down the road, and perhaps most important, he argues that with the increasing complexity of our technological advances--from nuclear reactors to genetic engineering--the number of things that can go wrong multiplies, making it increasingly difficult to engineer risk out of the equation. Citing such catastrophes as Bhopal, Three Mile Island, the Exxon Valdez, the Challenger, and Chernobyl, he argues that is it time to rethink our approach to technology. The days are gone when machines were solely a product of larger-than-life inventors and hard-working engineers. Increasingly, technology will be a joint effort, with its design shaped not only by engineers and executives but also psychologists, political scientists, management theorists, risk specialists, regulators and courts, and the general public. Whether discussing bovine growth hormone, molten-salt reactors, or baboon-to-human transplants, Beyond Engineering is an engaging look at modern technology and an illuminating account of how technology and the modern world shape each other.
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