An Elementary Treatise on Plane & Spherical Trigonometry: With Their Applications to Navigation, Surveying, Heights, and Distances, and Spherical Astronomy, and Particularly Adapted to Explaining the Construction of Bowditch's Navigator, and the Nautical Almanac |
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Page 1
... Sailing III . Parallel Sailing IV . Middle Latitude Sailing V. Mercator's Sailing VI . Surveying · VII . Heights and Distances I. SPHERICAL TRIGONOMETRY . Definitions II . Right Triangles III . Oblique Triangles 81 . 90 94 • 97 ...
... Sailing III . Parallel Sailing IV . Middle Latitude Sailing V. Mercator's Sailing VI . Surveying · VII . Heights and Distances I. SPHERICAL TRIGONOMETRY . Definitions II . Right Triangles III . Oblique Triangles 81 . 90 94 • 97 ...
Page 81
... SAILING . 1. The daily revolution of the earth is performed around a straight line , passing through its centre , which is called the earth's axis . The extremities of this axis on the surface of the earth are the terrestrial poles ...
... SAILING . 1. The daily revolution of the earth is performed around a straight line , passing through its centre , which is called the earth's axis . The extremities of this axis on the surface of the earth are the terrestrial poles ...
Page 83
... sailing from one place to the other in a path , which crosses every meridian at the same angle . [ B. p . 52. ] 9. The course of the ship , or the bearing of the two places from each other , is the angle which the ship's path makes with ...
... sailing from one place to the other in a path , which crosses every meridian at the same angle . [ B. p . 52. ] 9. The course of the ship , or the bearing of the two places from each other , is the angle which the ship's path makes with ...
Page 84
... Sailing is to calculate the Distance , Course or Bearing , Difference of Latitude and Departure , when either two of them are known . [ B. p . 52. ] 13. Problem . To find the difference of latitude and departure , when the distance and ...
... Sailing is to calculate the Distance , Course or Bearing , Difference of Latitude and Departure , when either two of them are known . [ B. p . 52. ] 13. Problem . To find the difference of latitude and departure , when the distance and ...
Page 85
... A a X cos . course , a mA a X sin course ; ana bXcos . course , b na b × sin . course ; bp bc x cos . course , c p = b c X sin . course . & c . & c . Given course and departure . The sums of these equations 8 $ 13. ] 85 PLANE SAILING .
... A a X cos . course , a mA a X sin course ; ana bXcos . course , b na b × sin . course ; bp bc x cos . course , c p = b c X sin . course . & c . & c . Given course and departure . The sums of these equations 8 $ 13. ] 85 PLANE SAILING .
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Common terms and phrases
A₁ aberration altitude and azimuth angle given ascension and declination azimuth celestial equator celestial sphere centre circle computed Corollary corr correct central altitude corresponding cosec cosine cotan diff difference of latitude difference of longitude dist earth eclipse of April equal to 90 formula gives Greenwich Hence horizon horizontal parallax hour angle hypothenuse included angle interval latitude and longitude lunar distance mean meridian altitude method middle latitude moon's motion N₁ Napier's Rules Nautical Almanac Navigator Nutation obliquity obtuse perpendicular plane polar triangle prime vertical Problem R₁ radius reduced right ascension sailing Scholium second member semidiameter sideral sideral day solar eclipse Solution solve the triangle spherical right triangle spherical triangle star's sun's Table XXIII tang tangent Theorem transit triangle ABC Trig true latitude tude vernal equinox whence
Popular passages
Page 156 - I. The sine of the middle part is equal to the product of the tangents of the adjacent parts.
Page 145 - A spherical triangle is a portion of the surface of a sphere, bounded by three arcs of great circles.
Page 48 - As the sine of the angle opposite the given side is to the sine of the angle opposite the required side, so is the given side to the required side. Thus, if a (fig.
Page 50 - The third side is found by the proportion. As the sine of the given angle is to the sine of the angle opposite the required side, so is the side opposite the given angle to the required side.
Page 41 - Since, when an angle is acute its supplement is obtuse, it follows from the preceding proposition, that the sine and cosecant of an obtuse angle are positive, while its cosine, tangent, cotangent, and secant, are negative.
Page 53 - The sum of any two sides of a triangle is to their difference, as the tangent of half the sum of the angles opposite to those sides, to the tangent of half their difference.
Page 182 - But a' = 180° - A, b' = 180° - ß, c' = 180° - C. and A' = 180° - a. Therefore, — cos A = (— cos B)(— cos C) + sin B sin C(— cos a...