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1

Proft, Kurt De. Timber structures and engineering. Southampton: WIT Press, 2018.

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2

Mettem, C. J. Resin repairs to timber structures. High Wycombe: TRADA Technology Ltd., 2000.

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3

Radford, D. W. Composite repair of timber structures. Fort Collins, Colo: Dept. of Mechanical Engineering, Colorado State University, 2000.

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4

Wheeler, Andrea S. Resin repairs to timber structures. Oxford: Oxford Brookes Universit, 1998.

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5

Ross, Peter. Appraisal and repair of timber structures. London: Thomas Telford, 2002.

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6

Aicher, Simon, H. W. Reinhardt, and Harald Garrecht, eds. Materials and Joints in Timber Structures. Dordrecht: Springer Netherlands, 2014. http://dx.doi.org/10.1007/978-94-007-7811-5.

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7

Timber in the city: Design and construction in mass timber. Seattle: ORO Editions, 2015.

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8

Branco, Jorge, Philipp Dietsch, and Thomas Tannert, eds. Reinforcement of Timber Elements in Existing Structures. Cham: Springer International Publishing, 2021. http://dx.doi.org/10.1007/978-3-030-67794-7.

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9

Weinand, Yves. Design of Integrally-Attached Timber Plate Structures. London: Routledge, 2021. http://dx.doi.org/10.1201/9781003139713.

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10

1964-, Foliente Greg C., and Forest Products Society Meeting, eds. Earthquake performance and safety of timber structures. Madison, WI: Forest Products Society, 1997.

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11

White, Robert H. Reporting of fire incidents in heavy timber structures. Madison, WI: U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 1985.

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12

Nils, Marstein, ed. Conservation of historic timber structures: An ecological approach. Oxford [England]: Butterworth-Heinemann, 2000.

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13

Vahik, Enjily, ed. Practical design of timber structures to Eurocode 5. London, UK: Thomas Telford, 2009.

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14

American Society of Civil Engineers. Task Committee on Fasteners., ed. Mechanical connections in wood structures. New York, N.Y: American Society of Civil Engineers, 1996.

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15

Timber structures from antiquity to the present: Proceeedings of the international symposium on timber structures, 25-27 June 2009, Istanbul, Turkey. İstanbul: T.C. Haliç Üniversitesi, 2010.

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16

Timber Research and Development Association., ed. Improving the thermal performance of existing timber frame structures. High Wycombe: Timber Research and Development Association, 1987.

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17

Switzerland), LIGNUM (Association :., and Deutsche Gesellschaft für Holzforschung, eds. Systems in timber engineering: Loadbearing structures and component layers. Basel: Birkhäuser, 2008.

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18

1942-, Moody R. C., Falk Robert H, and Forest Products Laboratory (U.S.), eds. Fiber stress values for design of glulam timber utility structures. Madison, WI: U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 1995.

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19

Harris, R. J. L. Manual for the design of timber building structures to Eurocode 5. London: The Institution of Structural Engineers, 2007.

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20

Pierre, Morlier, and RILEM Technical Committee 112-TSC., eds. Creep in timber structures: Report of RILEM Technical Committee 112-TSC. London: Spon, 1994.

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21

Ranasinghe, K. Manual for the design of timber building structures to Eurocode 5. London: The Institution of Structural Engineers and BM TRADA, 2020.

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22

J, Wipf Terry, Forest Products Laboratory (U.S.), and United States. Federal Highway Administration., eds. Development of a six-year research needs assessment for timber transportation structures. Madison, WI (One Gifford Pinchot Drive, Madison, WI 53705-2398): U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 1993.

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23

J, Wipf Terry, Forest Products Laboratory (U.S.), and United States. Federal Highway Administration, eds. Development of a six-year research needs assessment for timber transportation structures. Madison, WI (One Gifford Pinchot Drive, Madison, WI 53705-2398): U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 1993.

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24

J, Wipf Terry, Forest Products Laboratory (U.S.), and United States. Dept. of Transportation., eds. Development of a six-year research needs assessment for timber transportation structures. Madison, WI (One Gifford Pinchot Drive, Madison, WI 53705-2398): U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 1993.

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25

J, Wipf Terry, Forest Products Laboratory (U.S.), and United States. Federal Highway Administration, eds. Development of a six-year research needs assessment for timber transportation structures. Madison, WI (One Gifford Pinchot Drive, Madison, WI 53705-2398): U.S. Dept. of Agriculture, Forest Service, Forest Products Laboratory, 1993.

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26

Morris, Miranda. An architecture of the depression: Vertical timber buildings in Launceston. [Launceston]: Jointly funded by the Australian Heritage Commission and the Queen Victoria Museum of the Launceston City Council, 1989.

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27

Institution, British Standards, ed. Eurocode 5: Design of timber structures (together with United Kingdom National Application Document. London: British Standards Institution, 1994.

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28

Alling, Joseph. Timber vs. composite/plastic pile fender systems in Pearl Harbor maintenance cost comparison. Springfield, Va: Available from National Technical Information Service, 1996.

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29

1948-, Chen Bochao, ed. Shenyang gu gong mu zuo ying zao ji shu: Research on timber construction in the imperial palace of the Qing Dynasty in Shenyang. Nanjing Shi: Dong nan da xue chu ban she, 2010.

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30

International Council on Monuments and Sites. Deutsches Nationalkomitee and Landesamt für Denkmalpflege Hessen, eds. Reparaturen und statische Sicherungen an historischen Holzkonstruktionen: Internationales Symposium des Deutschen Nationalkomitees von ICOMOS und des Landesamtes für Denkmalpflege Hessen = Repair and structural reinforcement of historic timber structures. Stuttgart: Theiss, 2003.

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31

Chu, Yue Pun. Structural timber joints. Kuala Lumpur, Malaysia: Forest Research Institute Malaysia, 1987.

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32

Kuipers, J., and H. J. Larsen. Timber Structures. European Communities / Union (EUR-OP/OOPEC/OPOCE), 1989.

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33

Weinand, Yves, ed. Advanced Timber Structures. Birkhäuser, 2017. http://dx.doi.org/10.1515/9783035604900.

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34

Piazza, Maurizio. Structural Health Assessment of Timber Structures. Trans Tech Publications, Limited, 2013.

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35

Piazza, Maurizio, and Mariapaola Riggio. Structural Health Assessment of Timber Structures. Trans Tech Publications, Limited, 2013.

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36

Creep in Timber Structures. Routledge, 2004. http://dx.doi.org/10.4324/9780203626573.

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37

Reliability of Timber Structures. Verlag der Fachvereine Hochschulverlag AG an der ETH Zurich, 2007.

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38

Morlier, P. Creep in Timber Structures. Taylor & Francis Group, 1994.

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39

Morlier, P. Creep in Timber Structures. Taylor & Francis Group, 1994.

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40

Schoof, Jakob. Engineering Nature: Timber Structures. Detail Business Information GmbH, The, 2021.

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41

Morlier, P. Creep in Timber Structures. Taylor & Francis Group, 2019.

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42

Engineering Nature: Timber Structures. Detail Business Information GmbH, The, 2021.

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43

Morlier, P. Creep in Timber Structures. Taylor & Francis Group, 1994.

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44

Springer. Materials and Joints in Timber Structures. Springer London, Limited, 2013.

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45

The Repair of Historic Timber Structures. Thomas Telford, Ltd, 2003.

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46

Talania, Frank. Seismic Design of Timber Building Structures. Burdick & Landreth Company, 2000.

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47

Weinand, Yves. Design of Integrally-Attached Timber Plate Structures. CRC Press LLC, 2021.

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48

Jeska, Simone, Rainer Hascher, and Khaled Saleh Pascha. Emergent Timber Technologies: Materials, Structures, Engineering, Projects. de Gruyter GmbH, Walter, 2014.

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49

Hofmeister, Sandra, ed. Holzbauten in Vorarlberg / Timber Structures in Vorarlberg. DETAIL, 2017. http://dx.doi.org/10.11129/9783955533823.

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50

Hofmeister, Sandra. Holzbauten in Vorarlberg / Timber Structures in Vorarlberg. Detail Business Information GmbH, The, 2018.

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