The sea officers companion: being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge
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1. Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
London
printed for the author
M.DCC.LXXVIII [1778]
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Schlagworte: | |
Online-Zugang: | UEI01 BSB01 LCO01 SBR01 UBA01 UBG01 UBM01 UBR01 UBT01 UER01 Volltext |
Beschreibung: | An enlarged edition of Robert Waddington's anonymous 'Of the reflecting sextant, and its use at sea', published in [1775?] English Short Title Catalog, T72501 Reproduction of original from British Library |
Beschreibung: | Online-Ressource ([4],40Seiten,plates) ill 4° |
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language | English |
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spelling | Waddington, Robert Verfasser aut Of the reflecting sextant, and its use at sea The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge London printed for the author M.DCC.LXXVIII [1778] Online-Ressource ([4],40Seiten,plates) ill 4° txt rdacontent c rdamedia cr rdacarrier An enlarged edition of Robert Waddington's anonymous 'Of the reflecting sextant, and its use at sea', published in [1775?] English Short Title Catalog, T72501 Reproduction of original from British Library Online-Ausg Farmington Hills, Mich Cengage Gale 2009 Eighteenth Century Collections Online Electronic reproduction; Available via the World Wide Web |2009|||||||||| Sextant Early works to 1800 Solar system Early works to 1800 http://nl.sub.uni-goettingen.de/id/1176000900?origin=/collection/nlh-ecc Verlag Volltext |
spellingShingle | Waddington, Robert The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge Sextant Early works to 1800 Solar system Early works to 1800 |
title | The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
title_alt | Of the reflecting sextant, and its use at sea |
title_auth | The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
title_exact_search | The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
title_exact_search_txtP | The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
title_full | The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
title_fullStr | The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
title_full_unstemmed | The sea officers companion being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
title_short | The sea officers companion |
title_sort | the sea officers companion being an appendix to waddington s navigation which makes it a complete system of that art containing several methods of obtaining the latitude of a place either at sea or on land both by sun and moon the variation of the needle obtained by the moon a table of the limits of the times for taking the altitudes of sun or moon in order to obtain the latitude from two altitudes and the time elapsed the method of obtaining the longitude at sea and of computing the observations in a concise and easy manner the nature and principle of refraction and reflection as defined by sir isaac newton tables of refraction and parallax of the moon at all altitudes illustrated the solar system described the method of using artificial horizons both at sea and land the method of using artificial horizons both at sea and land the method of surveying coasts and harbours with copper plate plans for the illustration by r waddington teacher of mathematics surry side westminster bridge |
title_sub | being an appendix to Waddington's Navigation; (which makes it a complete system of that art) containing several methods of obtaining the latitude of a place either at Sea or on Land, both by Sun and Moon. The Variation of the Needle, Obtained by the Moon. A Table of the Limits of the Times for taking the Altitudes of Sun or Moon, in order to obtain the Latitude from Two Altitudes and the Time Elapsed. The Method of obtaining the Longitude at Sea, and of computing the Observations in a concise and easy Manner. The Nature and Principle of Refraction and Reflection, as Defined by Sir Isaac Newton. Tables of Refraction, and Parallax of the Moon at All Altitudes, illustrated. The Solar System Described. The Method of using Artificial Horizons both at sea and land. The Method of using Artificial Horizons both at sea and land. The Method of Surveying Coasts and Harbours, with Copper-Plate Plans for the Illustration. By R. Waddington, Teacher of Mathematics, Surry-Side, Westminster-Bridge |
topic | Sextant Early works to 1800 Solar system Early works to 1800 |
topic_facet | Sextant Early works to 1800 Solar system Early works to 1800 |
url | http://nl.sub.uni-goettingen.de/id/1176000900?origin=/collection/nlh-ecc |
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