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1

Hester, Edward. Fuses & circuit breakers. Cleveland, Ohio: Freedonia Group, 1999.

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2

Edward, Hester, Petina David A, Murphy Michael 1976-, and Freedonia Group, eds. Fuses & circuit breakers. Cleveland: Freedonia Group, 2001.

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3

D, Garzon R., IEEE Power Engineering Society. Switchgear Committee., and Institute of Electrical and Electronics Engineers. Power Engineering Education Committee., eds. Application of power circuit breakers. [New York]: Institute of Electrical and Electronics Engineers, 1993.

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4

Ananthakrishnan, S. Transient recovery voltage and circuit breakers. New Delhi: Tata McGraw-Hill Pub. Co., 1999.

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5

Institute of Electrical and Electronics Engineers., ed. Circuit breakers, switchgear, substations and fuses. New York: Institute of Electrical and Electronics Engineers, Inc., 1993.

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6

1922-, Nakanishi Kunio, ed. Switching phenomena in high-voltage circuit breakers. New York: M. Dekker, 1991.

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7

Garzon, R. D. High voltage circuit breakers: Design and applications. New York: Marcel Dekker, 1997.

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8

Garzon, R. D. High voltage circuit breakers: Design and applications. 2nd ed. New York: Marcel Dekker, 2002.

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9

The theory and practice of overcurrent protection. Jackson, Mich: Mechanical Products, 1987.

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10

Ryan, H. M. SF₆ switchgear. London, U.K: P. Peregrinus on behalf of the Institution of Electrical Engineers, 1989.

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11

IEEE Power Engineering Society. Switchgear Committee., Institute of Electrical and Electronics Engineers., and IEEE-SA Standards Board, eds. IEEE standard test procedure for AC high-voltage circuit breakers rated on a symmetrical current basis. New York, N.Y., USA: Institute of Electrical and Electronics Engineers, 2000.

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12

IEEE Power Engineering Society. Switchgear Committee. and American National Standards Institute, eds. IEEE loading guide for AC high-voltage air switches under emergency conditions: Supplement to IEEE loading guide for AC high-voltage air switches (in excess of 1000 volts). New York: The Insitute of Electrical and Electronics Engineers, Inc., 1993.

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13

IEEE Power Engineering Society. Switchgear Committee., Institute of Electrical and Electronics Engineers., and IEEE-SA Standards Board, eds. IEEE standard rating structure for AC high-voltage circuit breakers. New York, N.Y., USA: Institute of Electrical and Electronics Engineers, 1999.

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14

Pechrach, Kesorn. Arc Control in Circuit Breakers: Low Contact Velocity. Saarbrücken: VDM Verlag Dr. Müller, 2009.

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15

IEEE Power Engineering Society. Switchgear Committee., Institute of Electrical and Electronics Engineers., and IEEE Standards Board, eds. IEEE guide for diagnostics and failure investigation of power circuit breakers. New York, N.Y., USA: Institute of Electrical and Electronics Engineers, 1996.

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16

IEEE Power Engineering Society. Switchgear Committee., ed. Supplement to IEEE guide for synthetic fault testing of AC high-voltage circuit breakers rated on a symmetrical current basis: 8.3.2, recovery voltage for terminal faults, asymmetrical short-circuit current. New York: IEEE, 1998.

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17

Association, National Electrical Manufacturers, and American National Standards Institute, eds. Conformance test procedures for indoor alternating current medium-voltage circuit breakers applied as removable elements in metal-enclosed switchgear. Rosslyn, Va: National Electrical Manufacturers Association, 1997.

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18

IEEE Power Engineering Society. Switchgear Committee. and IEEE Standards Board, eds. IEEE standard requirements for overhead, pad-mounted, dry-vault, and submersible automatic line sectionalizers for AC systems. New York, NY: Institute of Electrical and Electronics Engineers, 1997.

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19

IEEE Power Engineering Society. Switchgear Committee., Institute of Electrical and Electronics Engineers., and IEEE-SA Standards Board, eds. IEEE application guide for AC high-voltage circuit breakers rated on a symmetrical current basis. New York, N.Y., USA: Institute of Electrical and Electronics Engineers, 2000.

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20

IEEE Power Engineering Society. Switchgear Committee. and IEEE Standards Board, eds. IEEE standard for AC high-voltage generator circuit breakers rated on a symmetrical current. New York, N.Y: The Institute of Electrical and Electronics Engineers, 1997.

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21

IEEE Power Engineering Society. Switchgear Committee., ed. IEEE loading guide for AC high-voltage air switches (in excess of 1000 V). New York, NY: Institute of Electrical and Electronics Engineers, 1996.

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22

IEEE Power Engineering Society. Switchgear Committee., Institute of Electrical and Electronics Engineers., and IEEE-SA Standards Board, eds. IEEE standard for low-voltage dc power circuit breakers used in enclosures. New York, N.Y., USA: Institute of Electrical and Electronics Engineers, 1999.

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23

IEEE Power Engineering Society. Switchgear Committee. and Institute of Electrical and Electronics Engineers., eds. IEEE standard for low-voltage dc power circuit breakers used in enclosures. New York: Institute of Electrical and Electronics Engineers, 1993.

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24

IEEE Power Engineering Society. Switchgear Committee. and IEEE Standards Board, eds. IEEE standard for AC high-voltage generator circuit breakers rated on a symmetrical current basis. New York, N.Y., USA: The Institute of Electrical and Electronics Engineers, 1989.

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25

J, Briggs Steve, Khosla Naresh, and Construction Engineering Research Laboratories (U.S.), eds. A test of circuit breakers under harmonic loading conditions. Champaign, Ill: US Army Corps of Engineers, Construction Engineering Research Laboratories, 1995.

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26

Lloyd's Register of Shipping (Firm : 1914- ), ed. Lloyd's Register's list of approved type tested circuit breakers. 2nd ed. London: Lloyd's Register of Shipping, 1987.

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27

National Register of Foreign Collaborations (India) and India. Dept. of Scientific & Industrial Research., eds. Technology in Indian SF-6 circuit breaker industry: A status report prepared under the National Register of Foreign Collaborations. New Delhi: Govt. of India, Dept. of Scientific & Industrial Research, Ministry of Science & Technology, 1990.

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28

IEEE Power Engineering Society. Switchgear Committee., ed. IEEE standard for low-voltage AC power circuit breakers used in enclosures. New York, NY, USA: Institute of Electrical and Electronics Engineers, 1991.

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29

Liu, Zhiyuan, Jianhua Wang, Yingsan Geng, and Zhenxing Wang. Switching Arc Phenomena in Transmission Voltage Level Vacuum Circuit Breakers. Singapore: Springer Singapore, 2021. http://dx.doi.org/10.1007/978-981-16-1398-2.

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30

Greenwald, Bruce C. N. Transactional risk, market crashes, and the role of circuit breakers. Cambridge, Mass: Sloan School of Management, Massachusetts Institute of Technology, 1990.

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31

Vsesoi͡uznoe nauchno-tekhnicheskoe soveshchanie "Perspektivy razvitii͡a vysokovolʹtnykh apparatov" (1990 Leningrad, R.S.F.S.R.). Tezisy dokladov Vsesoi͡uznogo nauchno-tekhnicheskogo soveshchanii͡a "Perspektivy razvitii͡a vysokovolʹtnykh apparatov," Leningrad, dekabrʹ 1990. Leningrad: [s.n.], 1990.

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32

Group, Intertec Electrical, ed. Practical guide to ground fault protection. Overland Park, KS: Intertec Electrical Group, 1995.

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33

2009, Li Xingwen active, ed. Di ya duan lu qi de xu ni yang ji ji shu. Beijing Shi: Ji xie gong ye chu ban she, 2009.

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34

Jones, G. R. High pressure arcs in industrial devices: Diagnostic and monitoring techniques. Cambridge [England]: Cambridge University Press, 1988.

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35

U.S. Consumer Product Safety Commission, ed. GFCIs. [Washington, DC: U.S. Consumer Product Safety Commission, 1996.

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36

The vacuum interrupter: Theory, design, and application. Boca Raton: Taylor & Francis, 2008.

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37

United States. Mine Safety and Health Administration., ed. Guidelines for the installation of MSHA accepted ground wire monitors. [Washington, D.C.?]: Mine Safety and Health Administration, U.S. Dept. of Labor, 1996.

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38

Massey, Arlie B. Guidelines for the installation of MSHA accepted ground wire monitors. [Washington, D.C.?]: Mine Safety and Health Administration, U.S. Dept. of Labor, 1996.

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39

S, Dean R., Hennick A, and U.S. Nuclear Regulatory Commission. Office of Nuclear Reactor Regulation. Division of Operational Events Assessment., eds. Closeout of IE bulletin 85-02: Undervoltage trip attachments of Westinghouse DB-50 type reactor trip breakers. Washington, DC: Division of Operational Events Assessment, Office of Nuclear Reactor Regulation, U.S. Nuclear Regulatory Commission, 1988.

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40

Foley, W. J. Closeout of IE bulletin 83-01: Failure of reactor trip breakers (Westinghouse DB-50) to open on automatric trip signal. Washington, DC: Division of Emergency Preparedness and Engineering Reponse, Office of Inspection and Enforcement, U.S. Nuclear Regulatory Commission, 1987.

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41

Filatov, A. A. Perekli͡u︡chenii͡a︡ v ėlektro-ustanovkakh 0,4-10 kV raspredelitelʹnykh seteĭ. Moskva: Ėnergoatomizdat, 1991.

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42

C, Kunkel, Shteyngart S, Brookhaven National Laboratory, and U.S. Nuclear Regulatory Commission. Office of Nuclear Regulatory Research. Division of Engineering., eds. Relay test program, series II tests: Integral testing of relays and circuit breakers. Washington, DC: Division of Engineering, Office of Nuclear Regulatory Research, U.S. Nuclear Regulatory Commission, 1994.

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43

1938-, Jones G. R., ed. SF6 switchgear. Stevenage, Herts: Peregrinus, 1988.

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44

Institute, American National Standards. Molded-Case Circuit-Breakers and Circuit Breaker Enclosures, UL 489. Underwriters Laboratories, 1991.

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45

High Voltage Circuit Breakers. New York: Marcel Dekker, Inc., 2003.

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46

R, White James. Circuit Breakers: A Technician?s Guide to Low- and Medium-Voltage Circuit Breakers. American Technical Publishers, Incorporated, 2013.

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47

Albert, Richardson, and D. J. A. Williams. Users' Guide to LV Circuit Breakers. Era Technology, 1992.

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48

NCCER. 26210-17 Circuit Breakers and Fuses Trainee Guide. Pearson Education, Limited, 2017.

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49

NCCER. 26210-14 Circuit Breakers and Fuses Trainee Guide. Pearson Education, Limited, 2014.

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50

Garzon, Ruben D. High Voltage Circuit Breakers: Design and Applications. Taylor & Francis Group, 2002.

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