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1

Erickson, Mary Ann. An ecological model of residential mobility in later life. Pathways to Life Quality, 2000.

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2

1961-, Keady John, and Watts Sue 1957-, eds. Mental health and later life: Delivering an holistic model for practice. Routledge, 2010.

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3

Heinbockel, J. H. Comparison of laser models. Mathematical Sciences Dept., College of Sciences, Old Dominion University, 1989.

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4

Heinbockel, J. H. Comparison of laser models. Old Dominion University Research Foundation, Dept. of Mathematics, College of Sciences, Old Dominion University, 1992.

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5

Heinbockel, J. H. Comparison of laser models. Old Dominion University Research Foundation, Dept. of Mathematics, College of Sciences, Old Dominion University, 1992.

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6

Yilbas, Bekir Sami. Laser Surface Processing and Model Studies. Springer Berlin Heidelberg, 2013.

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7

Yilbas, Bekir Sami, and Shahzada Zaman Shuja. Laser Surface Processing and Model Studies. Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-36629-1.

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8

S, Parasnis S., and Indian Institute of Tropical Meteorology., eds. One dimension model of atmospheric boundary layer. [Indian Institute of Tropical Meteorology], 1999.

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9

Erneux, Thomas. Laser dynamics. Cambridge University Press, 2010.

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10

Erneux, Thomas. Laser dynamics. Cambridge University Press, 2010.

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11

United States. National Aeronautics and Space Administration., ed. Laser doppler velocimeter measurements and laser sheet imaging in an annular combustor model. National Aeronautics and Space Administration, 1995.

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12

N, Samokhin V., ed. Mathematical models in boundary layer theory. Chapman & Hall, 1999.

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13

Hone, David M. Time and space resolution and mixed layer model accuracy. Naval Postgraduate School, 1997.

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14

B, Fomby Thomas, and Hill R. Carter, eds. Maximum likelihood estimation of misspecified models: Twenty years later. Elsevier/JAI, 2003.

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15

Jarża, Alicja. Struktura i model turbulencji warstwy przyściennej z powierzchniową wymianą masy. Wydawn. Politechniki Częstochowskiej, 1990.

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16

United States. National Aeronautics and Space Administration., ed. Performance of renormalization group algebraic turbulence model on boundary layer transition simulation. National Aeronautics and Space Administration, 1994.

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17

H, Chen Hsun, Cebeci Tuncer, and United States. National Aeronautics and Space Administration., eds. A turbulence model for iced airfoils and its validation. National Aeronautics and Space Administration, 1992.

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18

Sommer, T. P. A near-wall four-equation turbulence model for compressible boundary layers. National Aeronautics and Space Administration, Scientific and Technical Information Program, 1992.

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19

Sommer, T. P. A near-wall four-equation turbulence model for compressible boundary layers. National Aeronautics and Space Administration, Scientific and Technical Information Program, 1992.

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20

Sommer, T. P. A near-wall four-equation turbulence model for compressible boundary layers. Langley Research Center, 1992.

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21

Das, Madhusmita. Frequency dependent opacity of aluminum plasma using average atom model. Bhabha Atomic Research Centre, 2011.

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22

1940-, Shih Tsan-Hsing, and United States. National Aeronautics and Space Administration., eds. A new time scale based [kappa-epsilon] model for near wall turbulence. National Aeronautics and Space Administration, 1992.

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23

B, Gusi͡a︡tnikov P., and Novikov A. P, eds. Matematicheskie modeli kontaktnoĭ gidrodinamiki. "Nauka," Glav. red. fiziko-matematicheskoĭ lit-ry, 1985.

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24

G, Le Prestre Philippe, Reid John D. 1945-, and Morehouse E. Thomas, eds. Protecting the ozone layer: Lessons, models, and prospects. Kluwer, 1998.

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25

Coleman, N. J. An evaluation of the Polaroid helios model 810 laser imager. Department of Health, Medical Devices Agency, 1995.

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26

Gordon, Robert J. The Boskin Commission report: A retrospective one decade later. National Bureau of Economic Research, 2006.

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27

J, Georgiadis Nicholas, NASA Glenn Research Center, and United States. National Aeronautics and Space Administration., eds. Implementation and validation of the Chien k-[epsilon] turbulence model in the Wind Navier-Stokes code. National Aeronautics and Space Administration, Glenn Research Center, 1999.

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28

Leland, Robert Patton, ed. Stochastic Models for Laser Propagation in Atmospheric Turbulence. Springer-Verlag, 1989. http://dx.doi.org/10.1007/bfb0007067.

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29

Leland, R. P. Stochastic models for laser propagation in atmospheric turbulence. Springer-Verlag, 1989.

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30

Leland, Robert Patton. Stochastic Models for Laser Propagation in Atmospheric Turbulence. Springer Berlin Heidelberg, 1989.

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31

Quoc, Ngo Nam, ed. Ultra-fast fiber lasers: Principles and applications with MATLAB models. CRC Press, 2010.

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32

United States. National Aeronautics and Space Administration. Scientific and Technical Information Program., ed. Relationship between transition and modes of instability in supersonic boundary layers. National Aeronautics and Space Administration, Scientific and Technical Information Program, 1993.

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33

Kengyelics, S. M. A Technical evaluation of the Polaroid Helios model 1417 laser imager. Department of Health, Medical Devices Agency, 1997.

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34

J, Swettits J., Buonchristiani A. M, and United States. National Aeronautics and Space Administration., eds. Temporal model of an optically pumped co-doped solid state laser. National Aeronautics and Space Administration, 1993.

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35

J, Shamroth S., Langley Research Center, and Scientific Research Associates, eds. On the application of a hairpin vortex model of wall turbulence to trailing edge noise prediction. National Aeronautics and Space Administration, Langley Research Center, 1985.

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36

Jackson, Thomas L. Inviscid spatial stability of a compressible mixing layer. Part II. The flame sheet model. ICASE, 1989.

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37

L, Althoff Susan, Sailey Richard H, and Langley Research Center, eds. Inflow measurement made with a laser velocimeter on a helicopter model in forward flight. National Aeronautics and Space Administration, Langley Research Center, 1988.

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38

Kim, Sang-Wook. Computation of turbulent boundary layers flows with an algbraic stress turbulence model. National Aeronautics and Space Administration, 1986.

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39

Many-body boson systems: Half a century later. Springer, 2011.

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40

Garland, Elizabeth D. Particle contact on flat plates in flow: A model for initial larval contact. Woods Hole Oceanographic Institution, 1992.

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41

Mark, Holmes. Models of the relationship between students' achievements in school and later success. Ministry of Education, 1986.

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42

Gordov, E. P. Atmosferno-opticheskie prot︠s︡essy: Prostye nelineĭnye modeli. Izd-vo ins-ta optiki atmosfery SO RAN, 2002.

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43

Ridha, Abid, Speziale C. G. 1948-, and Langley Research Center, eds. Application of a new K-[tau] model to near wall turbulent flows. National Aeronautics and Space Administration, Langley Research Center, 1991.

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44

Ridha, Abid, Speziale C. G. 1948-, and Langley Research Center, eds. Application of a new K-[tau] model to near wall turbulent flows. National Aeronautics and Space Administration, Langley Research Center, 1991.

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45

Khalid, M. Turbulent boundary layer solution for two-dimensional compressible flow using mixing length and K-e turbulence models. National Research Council Canada, Institute for Aerospace Research, 1990.

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46

Althoff, Susan L. Inflow measurement made with a laser velocimeter on a helicopter model in forward flight. National Aeronautics and Space Administration, Langley Research Center, 1988.

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47

United States. National Aeronautics and Space Administration. and Atmospheric and Environmental Research, inc., eds. Final report on continued development and validation of the AER two-dimensional interactive model. Atmospheric and Environmental Research, Inc., 1995.

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48

Ott, Walter. Later Descartes. Oxford University Press, 2017. http://dx.doi.org/10.1093/oso/9780198791713.003.0005.

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Abstract:
Descartes’s third model of perception is stated in the sixth Replies. This chapter explores the three ‘grades of sensory perception’ and argues that, for the first and only time in his career, Descartes here claims that we must use our awareness of color to judge the common sensibles. Descartes’s final model abandons this claim. Instead, his later works posit a purely causal explanation for the occurrence of sensations and ideas. It is still up to the mind to ‘refer’ these things to objects in the subject’s environment. This chapter concludes with an argument from Nicolas Malebranche that makes all four stages problematic. According to this ‘selection argument,’ there is no way for the mind to know which of its ideas or sensations it should summon (stage one), nor is there any way to know which object should be paired with which idea or sensation (stages two, three, and four).
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49

Keady, John, and Sue Watts. Mental Health and Later Life: Delivering an Holistic Model for Practice. Taylor & Francis Group, 2010.

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50

Mental Health and Later Life: Delivering an Holistic Model for Practice. Routledge, 2010.

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