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1

FEDERAL AVIATION ADMINISTRATION. Flight Management System (FMS) instrument procedures development. [Washington, D.C.?]: U.S. Dept. of Transportation, Federal Aviation Administration, 1996.

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2

Brown, Russell H. Inertial instrument system for aerial surveying. Washington, [D.C.]: G.P.O., 1987.

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3

W. F. J. Mörzer Bruyns. The cross-staff: History and development of a navigational instrument. Amsterdam: Vereeniging Nederlandsch Historisch Scheepvaart Museum, 1994.

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4

Shetty, Sundar. Navigational and surveying instruments. Washington, DC: Office of Industries, U.S. International Trade Commission, 1994.

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5

Shetty, Sundar. Navigational and surveying instruments. Washington, DC: Office of Industries, U.S. International Trade Commission, 1994.

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6

Lilley, Robert W. Loran-C performance assurance assessment program: Final report. [Washington, DC: National Aeronautics and Space Administration, 1992.

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7

Lilley, Robert W. Loran-C performance assurance assessment program: Final report. [Washington, DC: National Aeronautics and Space Administration, 1992.

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8

Lilley, Robert W. Loran-C performance assurance assessment program: Final report. [Washington, DC: National Aeronautics and Space Administration, 1992.

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9

Gelin, Chrystel. A High-Rate Virtual Instrument of Marine Vehicle Motions for Underwater Navigation and Ocean Remote Sensing. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013.

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10

Gelin, Chrystel. A High-Rate Virtual Instrument of Marine Vehicle Motions for Underwater Navigation and Ocean Remote Sensing. Berlin, Heidelberg: Springer Berlin Heidelberg, 2013. http://dx.doi.org/10.1007/978-3-642-32015-6.

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11

Aspley, John. Speculum nauticum: A looking-glass for sea-men : wherein they may behold, how by a small instrument, called the plain-scale, all nautical questions, and astronomical propositions, are very easily and demonstratively performed. London: Printed by W. Godbid for George Hurlock, and are to be sold at his shop ..., 1985.

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12

Terrell, Christopher. The evolution of the sea chart: From its origins in the Mediterranean to its development by European seamen into their principal instrument of navigation. Nicosia: The Bank of Cyprus Cultural Foundation, 1999.

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13

Navigation through the ages. Dobbs Ferry, NY: Sheridan House, 2009.

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14

Janićijević, Slobodan. Vazduhoplovni instrumenti, visinska i letačka oprema. Beograd: Vojnoizdavački zavod, 2006.

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15

The divided circle: A history of instruments for astronomy, navigation, and surveying. Oxford: Phaidon, Christie's, 1987.

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16

Library, John Carter Brown, ed. Arte of navigation. Delmar, N.Y: Published for the John Carter Brown Library by Scholars' Facsimiles & Reprints, 1992.

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17

Tomasz, Neumann, ed. Methods and algorithms in navigation: Marine navigation and safety of sea transportation. Boca Raton: CRC Press, 2011.

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18

W. F. J. Mörzer Bruyns. Tussen hemel en horizon: Een korte geschiedenis van navigatie op Nederlandse schepen. Haarlem: Hollandia, 2012.

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19

Peter, Hertel. Das Geheimnis der alten Seefahrer: Aus der Geschichte der Navigation. Gotha: H. Haack, 1990.

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20

Ifland, Peter. Taking the Stars: Celestial Navigation from Argonauts to Astronauts. Newsport News, Va: Mariners' Museum, 1998.

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21

König, Rolf. Zur Fehlertheorie und Ausgleichung inertialer Positionsbestimmungen. Neubiberg: Studiengang Vermessungswesen, Universität der Bundeswehr München, 1988.

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22

Willem F. J. Mörzer Bruyns. Konst der stuurlieden: Stuurmanskunst en maritieme cartografie in acht portretten, 1540-2000. Amsterdam: Vereeniging Nederlandsch Historisch Scheepvaart Museum, 2001.

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23

Mariners' Museum (Newport News, Va.). Elements of navigation in the collection of the Mariners' Museum. Newport News, Va: The Museum, 1996.

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24

(Editor), Peter Godwin, ed. Radio Navigation and Instrument Flying (Air Pilot's Manual). 5th ed. Air Pilot Publisher Ltd, 2003.

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25

Flying Training for the Private Pilot Licence: Instrument Flying, Radio Navigation and Instrument Approach Procedure. Blackwell Science Inc, 1987.

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26

IFR. Charts and Plates (The Instrument Pilot's Library). Belvoir Books, 1994.

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27

Air Pilot's Manual - Radio Navigation and Instrument Flying: Volume 5. Air Pilot Publishing Ltd, 2016.

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28

H, Chapman William, and Geological Survey (U.S.), eds. Inertial instrument system for aerial surveying. NSTL, Miss: U.S. Dept. of the Interior, Geological Survey, 1985.

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29

Radio Navigation and Instrument Flying: Air Pilot's Manual (Air Pilot's Manual Series). Airlife Publishing,, 2002.

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30

A Highrate Virtual Instrument Of Marine Vehicle Motions For Underwater Navigation And Ocean Remote Sensing. Springer, 2012.

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31

Kent, Brooks N., United States. National Aeronautics and Space Administration., Langley Research Center, and Ohio University. Avionics Engineering Center., eds. Loran-C performance assurance assessment program. Athens, Ohio: Ohio University, Avionics Engineering Center, 1992.

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32

United States. National Aeronautics and Space Administration., ed. A systems analysis of the impact of navigation instrument on-board a Mars rover based on a covariance analysis of navigation performance. Cambridge, Mass: Charles Stark Draper Laboratory, inc., 1992.

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33

United States. National Aeronautics and Space Administration., ed. A systems analysis of the impact of navigation instrument on-board a Mars rover based on a covariance analysis of navigation performance. Cambridge, Mass: Charles Stark Draper Laboratory, inc., 1992.

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34

Low Cost Visual Systems. The Royal Aeronautical Society, 1988.

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35

Society, Royal Aeronautical, ed. Low cost visual systems: Wednesday, 23 November, 1988 : proceedings. London: Royal Aeronautical Society, 1988.

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36

The Civil Aviation (Route Charges for Navigation Services) (Fifth Amendment) Regulations 1988 (Statutory Instrument: 1988: 2130). Stationery Office Books, 1988.

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37

Gelin, Chrystel. A High-Rate Virtual Instrument of Marine Vehicle Motions for Underwater Navigation and Ocean Remote Sensing. Springer, 2012.

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38

Procedures for Air Navigation Services: Aircraft Operations : Construction of Visual and Instrument Flight Procedures/Doc 8168-Ops/611. 3rd ed. Intl Civil Aviation Organization, 1993.

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39

Center, Langley Research, ed. Integrated airport surface operations. Hampton, Va: National Aeronautics and Space Administration, Langley Research Center, 1998.

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40

Cullet, Philippe, and Sujith Koonan, eds. Other Legal Instruments Incorporating a Water Dimension. Oxford University Press, 2018. http://dx.doi.org/10.1093/oso/9780199472475.003.0011.

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This chapter reproduces legal instruments that cover a number of activities and sectors that depend on freshwater and are therefore relevant in the water law context. The first three sections focus on legal instruments relating to fishing, navigation, and electricity production. Mining is an important commercial activity with severe implications on water and the fourth section explains how water related concerns have been addressed in legal instruments regulating mining activities in different states. The next section captures how rural employment schemes are linked to the water sector. It also covers an instrument relating to land acquisition that is relevant to water resource development projects. The next section focuses on water-related crimes as prescribed in the general criminal law of the country. The last section captures some of the important instruments that protect the interests of scheduled castes and scheduled tribes in the context of access to and management of water.
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41

Navigational Instruments. Bloomsbury Publishing Plc, 2016.

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42

Cabanes. Instruments de navigation aerienne. Sees, 1996.

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43

Stephen C, McCaffrey. The Law of International Watercourses. Oxford University Press, 2019. http://dx.doi.org/10.1093/law/9780198736929.001.0001.

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This book is an authoritative guide to the rules of international law governing the navigational and non-navigational uses of international rivers, lakes, and groundwater. The continued growth of the world’s population places increasing demands on Earth’s finite supplies of fresh water. Because two or more States share many of the world’s most important drainage basins, competition for increasingly scarce fresh water resources will only increase. Agreements between the States sharing international watercourses are negotiated, and disputes over shared water are resolved, against the backdrop of the rules of international law governing the use of this precious resource. The basic legal rules governing the use of shared freshwater for purposes other than navigation are reflected in the 1997 UN Convention on the Law of the Non-Navigational Uses of International Watercourses. This book devotes a chapter to the 1997 Convention but also examines the factual and legal context in which the Convention should be understood, considers the more important rules of the Convention in some depth, and discusses specific issues that could not be addressed in a framework instrument of that kind. It reviews the major cases and controversies concerning international watercourses as a background against which to consider the basic substantive and procedural rights and obligations of States in the field. This new edition covers the implications of the 1997 Convention coming into force in August 2014, and the compatibility of the 1997 and 1992 Conventions.
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44

Weintrit, Adam. Marine Navigation and Safety of Sea Transportation: Navigational Problems. Taylor & Francis Group, 2013.

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45

Marine Navigation and Safety of Sea Transportation: Navigational Problems. Taylor & Francis Group, 2013.

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46

Weintrit, Adam. Marine Navigation and Safety of Sea Transportation: Navigational Problems. Taylor & Francis Group, 2013.

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47

Weintrit, Adam. Marine Navigation and Safety of Sea Transportation: Navigational Problems. Taylor & Francis Group, 2013.

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48

Weintrit, Adam. Marine Navigation and Safety of Sea Transportation: Navigational Problems. Taylor & Francis Group, 2013.

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49

Cotte, Bruno. Instruments de navigation : Loch, sondeur, gonio. Gallimard, 1985.

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50

Bennett, Jim. Navigation: A Very Short Introduction. Oxford University Press, 2017. http://dx.doi.org/10.1093/actrade/9780198733713.001.0001.

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Navigation: A Very Short Introduction looks at the history of navigation, including the distinctive cultures of early navigation. It shows how the adoption of mathematical methods, use of instruments, writing of textbooks, and publication of charts combined to create a more standardized practice. Methods such as longitude-finding by chronometer and lunar distance were complemented by recording courses and reckoning position ‘by account’. This VSI also introduces the incredible array of instruments relied on by sailors, from astrolabes, sextants, and chronometers, to more modern radio receivers and electronic equipment, highlighting the crucial role played by the endeavour and resourcefulness of mathematicians, scientists, and seamen in finding their way at sea.
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