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1

1930-, LeGrand Donald G., and Bendler John T, eds. Handbook of polycarbonate science and technology. New York: Marcel Dekker, 2000.

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2

Park, Amy H. Biaxial orientation of polycarbonate by compression deformation. Ottawa: National Library of Canada, 1994.

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3

Zia, Shahzad. Polymer blends of polycarbonate and poly(ether imide). Birmingham: University of Birmingham, 1997.

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4

Fukuoka, Shinsuke. Non-phosgene polycarbonate from CO₂-industrialization of green chemical process. Hauppauge, N.Y: Nova Science Publishers, 2011.

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5

Tervoort, Theodorus Anthonius. Constitutive modelling of polymer glasses: Finite, nonlinear viscoelastic behaviour of polycarbonate. Eindhoven: Eindhoven University of Technology, 1996.

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6

Fitzer, Erich. Reinforcing of thermoplastic polycarbonate and polysulfone with carbon fibers: Production and characteristics of ud-compound objects. Washington, DC: National Aeronautics and Space Administration, 1988.

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7

Machmud, Nizar. Multilayer structures of immiscible polycarbonate/ABS blends and their performances under impact: Report abroad collaboration and international publication research grant. Banda Aceh]: University of Syiah Kuala, 2011.

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8

Brunelle, Daniel J., and Michael R. Korn, eds. Advances in Polycarbonates. Washington, DC: American Chemical Society, 2005. http://dx.doi.org/10.1021/bk-2005-0898.

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9

J, Brunelle Daniel, Korn Michael R. 1961-, American Chemical Society. Division of Polymer Chemistry, and American Chemical Society Meeting, eds. Advances in polycarbonates. Washington, DC: American Chemical Society, 2005.

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10

Center, Goddard Space Flight, ed. Thermomechanical properties of polymeric materials and related stresses. Greenbelt, Md: National Aeronautics and Space Administration, Goddard Space Flight Center, 1990.

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11

Jansen, J. C. Side-chain liquid crystal polycarbonates: Synthesis, mesomorphic properties and dielectric and mechanical analysis = Zijketen vloeibaar-kristallijne polycarbonaten : synthese, mesomorfe eigenschappen en diëlektrische en mechanische analyse. Delft: Delft University Press, 1996.

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12

S, Anders, ed. Engineering thermoplastics: Polycarbonates polyacetals polyesters cellulose esters. Munich: Hanser Publishers, 1996.

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13

Ludwig, Bottenbruch, ed. Polycarbonates, polyacetals, polyesters, cellulose esters: Engineering thermoplastics. Munich: Hanser, 1996.

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14

United States. Environmental Protection Agency. Office of Air Quality Planning and Standards. and United States. Environmental Protection Agency. Emission Standards Division., eds. National emission standards for hazardous air pollutants (NESHAP): Generic MACT background information for acetal resins, acrylic and modacrylic fiber, hydrogen fluoride, and polycarbonate production final rule : summary of public comments and responses. Research Triangle Park, N.C: Emission Standards Division, U.S. Environmental Protection Agency, Office of Air and Radiation, Office of Air Quality Planning and Standards, 1999.

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15

Markschläger, Patrick. Reaktive Abscheidung von Metalloxiden auf Polycarbonat zur Erzeugung transparenter Verschleißschutzschichten. Berlin, Heidelberg: Springer Berlin Heidelberg, 1998. http://dx.doi.org/10.1007/978-3-642-47967-0.

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16

Nowak, Marian. Właściwości zmęczeniowe poliwęglanu wzmocnionego włóknem szklanym. Wrocław: Wydawn. Politechniki Wrocławskiej, 1989.

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17

C, Hopper L., and Langley Research Center, eds. Development of a heterogeneous laminating resin system. Anaheim, CA: Narmco Materials, Inc., 1985.

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18

Greg, Lynn, Prestinenza Puglisi Luigi 1956-, and Ammar Eloueini Digit-all Studio, eds. CoReFab. San Rafael, Calif: ORO Editions, 2005.

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19

Mechanical Properties of Polycarbonate. Elsevier, 2019. http://dx.doi.org/10.1016/c2019-0-02488-0.

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20

Bendler, John T., ed. Handbook of Polycarbonate Science and Technology. CRC Press, 1999. http://dx.doi.org/10.1201/9781482273694.

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21

Bendler, John T., and Donald G. LeGrand. Handbook of Polycarbonate Science and Technology. Taylor & Francis Group, 1999.

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22

Bendler, John T. Handbook of Polycarbonate Science and Technology. Taylor & Francis Group, 1999.

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23

Bendler, John T. Handbook of Polycarbonate Science and Technology. Taylor & Francis Group, 1999.

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24

Polycarbonate-Workshop Amsterdam, September 1985 (Blood Purification,). S. Karger AG (Switzerland), 1986.

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25

Presenz, Ulrich. Azogruppenhaltige Polycarbonate als polymere Initiatoren für Pfropfungs -und Vernetzungsreaktionen. 1987.

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26

Parker, Philip M. The 2007-2012 World Outlook for Polycarbonate Sports Bottles. ICON Group International, Inc., 2006.

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27

Robinson, Alexander Mark. Blends of poly(ethylene terephthalate) with bisphenol-A polycarbonate. 1991.

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28

Plastics in architecture: A guide to acrylic and polycarbonate. New York: M. Dekker, 1985.

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29

Legrand. Handbook of Polycarbonate Science and Technology (Plastics Engineering (Marcel Dekker, Inc.), 56.). CRC, 1999.

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30

Parker, Philip M. The 2007-2012 Outlook for Polycarbonate Sports Bottles in Japan. ICON Group International, Inc., 2006.

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31

Parker, Philip M. The 2007-2012 Outlook for Polycarbonate Sports Bottles in India. ICON Group International, Inc., 2006.

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32

Evaluation findings of the All Sign Products, Inc., polycarbonate stop sign. Reston, Va: American Society of Civil Engineers, 1998.

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33

Parker, Philip M. The 2007-2012 Outlook for Polycarbonate Sports Bottles in Greater China. ICON Group International, Inc., 2006.

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34

Zhang, Weihong, and Yingjie Xu. Mechanical Properties of Polycarbonate: Experiment and Modeling for Aeronautical and Aerospace Applications. ISTE Press Limited - Elsevier Incorporated, 2019.

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35

Zhang, Weihong, and Yingjie Xu. Mechanical Properties of Polycarbonate: Experiment and Modeling for Aeronautical and Aerospace Applications. ISTE Press Limited - Elsevier Incorporated, 2019.

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36

Parker, Philip M. The 2007-2012 Outlook for Polycarbonate Sports Bottles in the United States. ICON Group International, Inc., 2006.

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37

Reaktive Abscheidung von Metalloxiden auf Polycarbonat zur Erzeugung transparenter Verschleißschutzschichten. Berlin, Heidelberg: Springer Berlin Heidelberg, 1998.

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38

Tang, Yi-wen. Effect of microdomain structures on the enzyme induced hydrolytic degradation of polycarbonate-urethanes. 2000.

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39

Lee, John W. S. Extrusion processing for manufacture of low-density microcellular polycarbonate foams uing carbon dioxide. 2004.

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40

Kuhn, Laura Ruth. Strained polycarbonate-polyurethanes with linear and branched diisocyanates: An in vitro biodegradation study. 2005.

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41

Surface energy changes produced by ultraviolet-ozone irradiation of poly(methylmethacrylate), polycarbonate and polytetrafluoroethylene. [Washington, DC]: National Aeronautics and Space Administration, 1994.

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42

Ernsting, Mark John. Generation of antioxidant and cell-signaling polycarbonate polyurethane surfaces with bioactive fluorinated surface modifiers. 2005.

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43

Amri, Abed M. Rheological and thermal properties of polycarbonate and polystyrene blends with poly(2,2'-dimethyl-4,4'-biphenylene phenylterephathalate) liquid crystal polyester. 1995.

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44

Brunelle, Daniel J., and Michael Korn. Advances in Polycarbonates (Acs Symposium Series). An American Chemical Society Publication, 2005.

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45

Kuhn, Karl Josef. Synthese und Untersuchung von thermolabilen Polycarbonaten. [s.l.], 1986.

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46

Guillaume, Sophie M. Handbook of Telechelic Polyesters, Polycarbonates, and Polyethers. Jenny Stanford Publishing, 2017.

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47

Guillaume, Sophie M. Handbook of Telechelic Polyesters, Polycarbonates, and Polyethers. Jenny Stanford Publishing, 2017.

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48

Handbook of Telechelic Polyesters, Polycarbonates, and Polyethers . Taylor & Francis Group, 2017.

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49

(Editor), Ludwig Bottenbruch, and S. Anders (Editor), eds. Engineering Thermoplastics: Polycarbonates, Polyacetals, Polyesters, Cellulose Esters. Hanser Gardner Publications, 1996.

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50

Stockem, Kornelia. Hochauflösende Brillouinspektroskopie an Polycarbonat im nicht-linearen Deformationsbereich. 1989.

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