Books on the topic 'Process Physics'

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1

Griskey, Richard G. Polymer Process Engineering. Dordrecht: Springer Netherlands, 1995.

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2

Werner, Nakel, ed. The elementary process of Bremsstrahlung. River Edge, NJ: World Scientific, 2004.

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3

Green, Herbert S. Information Theory and Quantum Physics: Physical Foundations for Understanding the Conscious Process. Berlin, Heidelberg: Springer Berlin Heidelberg, 2000.

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4

Oliemans, R. V. A. Computational Fluid Dynamics for the Petrochemical Process Industry. Dordrecht: Springer Netherlands, 1991.

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5

Desmet, Ronny. Intuition in Mathematics & Physics: A Whiteheadian approach. Claremont, Calif: Process Century Press, 2016.

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6

Scholz-Reiter, Bernd. Business Process Modelling. Berlin, Heidelberg: Springer Berlin Heidelberg, 1996.

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7

Ohtsu, Motoichi. Optical and Electronic Process of Nano-Matters. Dordrecht: Springer Netherlands, 2001.

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8

Ben-Shaul, Israel. A Paradigm for Decentralized Process Modeling. Boston, MA: Springer US, 1995.

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9

Pietrzyk, Maciej. Thermal-Mechanical Modelling of the Flat Rolling Process. Berlin, Heidelberg: Springer Berlin Heidelberg, 1991.

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10

1939-, Griffin David Ray, and Claremont Center for Process Studies., eds. Physics and the ultimate significance of time: Bohm Prigogine, and process philosophy. Albany: State University of New York Press, 1986.

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11

Symposium on Process Physics and Modeling in Semiconductor Technology (1986 San Diego, Calif.). Proceedings of the Symposium on Process Physics and Modeling in Semiconductor Technology. Pennington, NJ (10 S. Main St., Pennington 08534-2896): Electrochemical Society, 1988.

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12

Elzinga, D. Jack. Business Process Engineering: Advancing the State of the Art. Boston, MA: Springer US, 1999.

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13

International Conference Materials and Process characterization for VLSI (1988 Shanghai, China). Materials and process characterization for VLSI, 1988 (ICMPC '88). Edited by Zong X-F, Wang Y-Y, and Chen J. Singapore: World Scientific, 1988.

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14

R, Srinivasan G., Taniguchi Kenji, Murthy C. S, and Electrochemical Society Electronics Division, eds. Proceedings of the Third International Symposium on Process Physics and Modeling in Semiconductor Technology. Pennington, NJ: Electrochemical Society, 1993.

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15

International Symposium on Process Physics and Modeling in Semiconductor Technology (2nd 1990 Montréal, Québec). Proceedings of the Second International Symposium on Process Physics and Modeling in Semiconductor Technology. Pennington, NJ (10 S. Main St., Pennington 08534-2896): Electrochemical Society, 1991.

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16

R, Srinivasan G., Murthy C. S, and Dunham S. T, eds. Proceedings of the Fourth International Symposium of Process Physics and Modeling in Semiconductor Technology. Pennington, NJ: Electrochemical Society, 1996.

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17

S, Murthy C., Srinivasan G. R, Dunham S. T, Electrochemical Society Electronics Division, and Electrochemical Society Meeting, eds. Proceedings of the Fifth International Symposium of Process Physics and Modeling in Semiconductor Technology. Pennington, New Jersey: Electrochemical Society, 1999.

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18

1927-, Morita M., and Yamada Kagaku Shinkō Zaidan, eds. Nuclear weak process and nuclear structure: Osaka, Japan, June 12-15, 1989 : Yamada Conference XXIII. Singapore: World Scientific, 1989.

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19

Yong, Liu. Power Electronic Packaging: Design, Assembly Process, Reliability and Modeling. Boston, MA: Springer US, 2012.

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20

M, Moguerza Javier, Redchuk Andrés, and SpringerLink (Online service), eds. Six Sigma with R: Statistical Engineering for Process Improvement. New York, NY: Springer New York, 2012.

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21

Cai liao xiang bian guo cheng wei guan zu zhi mo ni: Simulation for the materials microstructure evolution in phase transformation process. Beijing Shi: Guo fang gong ye chu ban she, 2010.

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22

Wasa, Kiyotaka. Handbook of sputter deposition technology: Principles, technology, and applications. Park Ridge, N.J., U.S.A: Noyes Publications, 1992.

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23

Quantum processes: A Whiteheadian interpretation of quantum field theory. Münster: Agenda Verlag, 2004.

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24

Proceedings, of the First Argonne/MSU/JINA/INT RIA Workshop; National Institute for Nuclear Theory University of Washington USA 8. 10 January 2004. The r-Process: The Astrophysical Origin of the Heavy Elements and Related Rare Isotope Accelerator Physics / Yong-Zhong Qian ...(et. al.). Singapore: World Scientific Publishing, 2004.

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25

River's way: The process science of the dreambody : information and channels in dream and bodywork, psychology and physics, Taoism and alchemy. London: Routledge & Kegan Paul, 1985.

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26

Trauth, Martin. MATLAB® and Design Recipes for Earth Sciences: How to Collect, Process and Present Geoscientific Information. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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27

Zhang, Ke. Observer-Based Fault Estimation and Accomodation for Dynamic Systems. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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28

Sergio, Albeverio, Blanchard Philippe, Streit Ludwig 1938-, and Bielefeld-Bochum Research Center Stochastics, eds. Stochastic processes, mathematics and physics: Proceedings of the 1st BiBos-Symposium, held in Bielefeld, West Germany, September 10-15, 1984. Berlin: Springer-Verlag, 1986.

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29

IUTAM Symposium on Mesoscopic Dynamics of Fracture Process and Materials Strength (2003 Osaka, Japan). IUTAM Symposium on Mesoscopic Dynamics of Fracture Process and Materials Strength: Proceedings of the IUTAM symposium held in Osaka, Japan, 6-11 July, 2003. New York: Kluwer Academic Publishers, 2004.

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30

Hilton, Keith. Process & pattern in physical geography. 2nd ed. London: CollinsEducational, 1985.

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31

Hilton, Keith. Process & pattern in physical geography. 2nd ed. London: Collins Educational Press, 1995.

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32

Hilton, Keith. Process & pattern in physical geography. 2nd ed. Slough: University Tutorial Press, 1985.

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33

IUTAM Symposium on Mesoscopic Dynamics of Fracture Process and Materials Strength (2003 Osaka, Japan). IUTAM Symposium on Mesoscopic Dynamics of Fracture Process and Materials Strength: Proceedings of the IUTAM symposium held in Osaka, Japan, 6-11 July, 2003 : volume in celebration of Professor Kitagawa's retirement. Dordrecht: Kluwer Academic Publishers, 2004.

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34

Yu, Wen, and Jian Tang. Industrial Process Modelling with Mechanical Frequency Spectrum Data. Cambridge Scholars Publisher, 2020.

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35

Information Theory and Quantum Physics: Physical Foundations for Understanding the Conscious Process. Springer, 2011.

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36

Murphy, Gloria S. Process Physics Modeling in Semi Conductor Technology (Proceedings). Electrochemical Society, Incorporated, 1999.

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37

Milne, Glenn Antony. Refining models of the glacial isostatic adjustment process. 1998.

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38

Green, Herbert S. Information Theory and Quantum Physics: Physical Foundations for Understanding the Conscious Process (Texts and Monographs in Physics). Springer, 2000.

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39

(Editor), Valerie V. Dvoeglazov, ed. Process Physics: From Information Theory To Quantum Space And Matter (Contemporary Fundamental Physics). Nova Science Publishers, 2005.

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40

Straley, Joseph W., and Kozier. Clinical Companion: Fundamentals of Nursing; Concepts, Process, and Practice Value Pack. Prentice Hall Health, 1999.

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41

Straley, Joseph W., and Kozier. Clinical Companion: Fundamentals of Nursing; Concepts, Process, and Practice Value Pack. 6th ed. Prentice Hall Health, 1999.

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42

1944-, Gottstein G., ed. Integral materials modeling: Towards physics-based through-process models. Weinheim, DE: Wiley-VCH, 2007.

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43

Integral Materials Modeling: Towards Physics-Based Through-Process Models. Wiley-VCH, 2007.

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44

Integral materials modeling: Towards physics-based through-process models. Weinheim, DE: Wiley-VCH, 2005.

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45

Nelson, Jeffrey S., and Scott T. Dunham. Semiconductor Process and Device Performance Modelling: Volume 490. University of Cambridge ESOL Examinations, 2014.

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46

Seth, Suman. Quantum Physics. Edited by Jed Z. Buchwald and Robert Fox. Oxford University Press, 2017. http://dx.doi.org/10.1093/oxfordhb/9780199696253.013.28.

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This article discusses the history of quantum physics, beginning with an analysis of the process through which a community of quantum theorists and experimentalists came into being. In particular, it traces the roots and fruits of Max Planck’s papers in irreversible processes in nature. It proceeds by exploring the origin and subsequent development of Niels Bohr’s so-called ‘planetary model’ of the atom, focusing on the extension of the model by Arnold Sommerfeld and members of his school as well to Bohr’s use of his principles of correspondence and adiabatic invariance. It also considers the post-war years, as the problems of atomic spectroscopy sparked the development of new methodological approaches to quantum theory. Finally, it offers a history of the two distinct new forms of quantum mechanics put forward in the mid-1920s: Werner Heisenberg, Max Born, and Pascual Jordan’s matrix mechanics, and Erwin Schrödinger’s wave mechanics.
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47

Ohtsu, Motoichi. Optical and Electronic Process of Nano-Matters. Springer, 2014.

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48

Srinivasan. Process Physics and Modeling in Semiconductor Technology a 1986 Symposium. Electrochemical Society, 1988.

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49

(Editor), Timothy E. Eastman, and Hank Keeton (Editor), eds. Physics and Whitehead: Quantum, Process, and Experience (Constructive Postmodern Thought). State University of New York Press, 2003.

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50

Demichev, A., and M. Chaichian. Path Integrals in Physics Volume 1: Stochastic Process & Quantum Mechanics. Taylor & Francis, 2001.

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