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32-773: Coordinates : 6°33′N 73°26′W / 6.550°N 73.433°W / 6.550; -73.433 National park in Colombia Yariguíes National Park IUCN category II ( national park ) [REDACTED] [REDACTED] Yariguíes Location Santander Department , Colombia Nearest city Barrancabermeja Coordinates 6°33′N 73°26′W / 6.550°N 73.433°W / 6.550; -73.433 Area 78,837 hectares (194,810 acres) Website Parques naturales de Colombia Yariguíes National Park ( Spanish : Serranía de los Yariguíes )
64-502: A tan ϕ {\displaystyle \textstyle {\tan \beta ={\frac {b}{a}}\tan \phi }\,\!} ; for the GRS 80 and WGS 84 spheroids, b a = 0.99664719 {\textstyle {\tfrac {b}{a}}=0.99664719} . ( β {\displaystyle \textstyle {\beta }\,\!} is known as the reduced (or parametric) latitude ). Aside from rounding, this
96-456: A datum transformation such as a Helmert transformation , although in certain situations a simple translation may be sufficient. Datums may be global, meaning that they represent the whole Earth, or they may be local, meaning that they represent an ellipsoid best-fit to only a portion of the Earth. Examples of global datums include World Geodetic System (WGS 84, also known as EPSG:4326 ),
128-588: A point on Earth's surface is the angle east or west of a reference meridian to another meridian that passes through that point. All meridians are halves of great ellipses (often called great circles ), which converge at the North and South Poles. The meridian of the British Royal Observatory in Greenwich , in southeast London, England, is the international prime meridian , although some organizations—such as
160-473: A region of the surface of the Earth. Some newer datums are bound to the center of mass of the Earth. This combination of mathematical model and physical binding mean that anyone using the same datum will obtain the same location measurement for the same physical location. However, two different datums will usually yield different location measurements for the same physical location, which may appear to differ by as much as several hundred meters; this not because
192-411: Is 6,367,449 m . Since the Earth is an oblate spheroid , not spherical, that result can be off by several tenths of a percent; a better approximation of a longitudinal degree at latitude ϕ {\displaystyle \phi } is where Earth's equatorial radius a {\displaystyle a} equals 6,378,137 m and tan β = b
224-475: Is 110.6 km. The circles of longitude, meridians, meet at the geographical poles, with the west–east width of a second naturally decreasing as latitude increases. On the Equator at sea level, one longitudinal second measures 30.92 m, a longitudinal minute is 1855 m and a longitudinal degree is 111.3 km. At 30° a longitudinal second is 26.76 m, at Greenwich (51°28′38″N) 19.22 m, and at 60° it
256-519: Is 15.42 m. On the WGS 84 spheroid, the length in meters of a degree of latitude at latitude ϕ (that is, the number of meters you would have to travel along a north–south line to move 1 degree in latitude, when at latitude ϕ ), is about The returned measure of meters per degree latitude varies continuously with latitude. Similarly, the length in meters of a degree of longitude can be calculated as (Those coefficients can be improved, but as they stand
288-650: Is a national park located in the Vichada Department in the Orinoquía Region of Colombia . It is the only protected area in the Eastern Plains ( Llanos Orientales ) under Colombia's Natural Parks System . One of its main attractions is the mighty stream Raudal de Maypures (Maipures Rapids), called the " Eighth Wonder of the World " by German explorer Alexander von Humboldt in the 19th century. The flat area
320-658: Is a natural park in north central Colombia . It is located in the Santander department and measures 78,837 hectares (194,810 acres). It was officially designated as a national natural park in 2005. See also [ edit ] Cerulean Warbler Bird Reserve List of national parks of Colombia References [ edit ] ^ Benjamin Villegas; Laura Sesana (2007). Colombia Natural Parks . Villegas Associates. p. 253. ISBN 978-958-8156-87-3 . Retrieved 4 August 2011 . ^ Office of
352-574: Is bounded by the Orinoco River to the east, the Tomo River to the north and the Tuparro River to the south. It was created in 1970 and covers an area of 548,000 hectares. In addition to the park's two broad types of natural ecosystems, flooded and non-flooded savannas , it also has five types of riparian forests . Average yearly rainfall is 2477 mm in the western region and 2939 mm in
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#1733093206775384-411: Is different from Wikidata Coordinates on Wikidata Geographic coordinate system A geographic coordinate system ( GCS ) is a spherical or geodetic coordinate system for measuring and communicating positions directly on Earth as latitude and longitude . It is the simplest, oldest and most widely used of the various spatial reference systems that are in use, and forms
416-452: Is known as a graticule . The origin/zero point of this system is located in the Gulf of Guinea about 625 km (390 mi) south of Tema , Ghana , a location often facetiously called Null Island . In order to use the theoretical definitions of latitude, longitude, and height to precisely measure actual locations on the physical earth, a geodetic datum must be used. A horizonal datum
448-718: Is the exact distance along a parallel of latitude; getting the distance along the shortest route will be more work, but those two distances are always within 0.6 m of each other if the two points are one degree of longitude apart. Like any series of multiple-digit numbers, latitude-longitude pairs can be challenging to communicate and remember. Therefore, alternative schemes have been developed for encoding GCS coordinates into alphanumeric strings or words: These are not distinct coordinate systems, only alternative methods for expressing latitude and longitude measurements. El Tuparro National Natural Park El Tuparro National Natural Park ( Spanish : Parque Nacional Natural El Tuparro )
480-465: Is used to precisely measure latitude and longitude, while a vertical datum is used to measure elevation or altitude. Both types of datum bind a mathematical model of the shape of the earth (usually a reference ellipsoid for a horizontal datum, and a more precise geoid for a vertical datum) to the earth. Traditionally, this binding was created by a network of control points , surveyed locations at which monuments are installed, and were only accurate for
512-471: The International Date Line , which diverges from it in several places for political and convenience reasons, including between far eastern Russia and the far western Aleutian Islands . The combination of these two components specifies the position of any location on the surface of Earth, without consideration of altitude or depth. The visual grid on a map formed by lines of latitude and longitude
544-515: The 1st or 2nd century, Marinus of Tyre compiled an extensive gazetteer and mathematically plotted world map using coordinates measured east from a prime meridian at the westernmost known land, designated the Fortunate Isles , off the coast of western Africa around the Canary or Cape Verde Islands , and measured north or south of the island of Rhodes off Asia Minor . Ptolemy credited him with
576-499: The Earth's surface move relative to each other due to continental plate motion, subsidence, and diurnal Earth tidal movement caused by the Moon and the Sun. This daily movement can be as much as a meter. Continental movement can be up to 10 cm a year, or 10 m in a century. A weather system high-pressure area can cause a sinking of 5 mm . Scandinavia is rising by 1 cm a year as a result of
608-708: The European ED50 , and the British OSGB36 . Given a location, the datum provides the latitude ϕ {\displaystyle \phi } and longitude λ {\displaystyle \lambda } . In the United Kingdom there are three common latitude, longitude, and height systems in use. WGS 84 differs at Greenwich from the one used on published maps OSGB36 by approximately 112 m. The military system ED50 , used by NATO , differs from about 120 m to 180 m. Points on
640-524: The French Institut national de l'information géographique et forestière —continue to use other meridians for internal purposes. The prime meridian determines the proper Eastern and Western Hemispheres , although maps often divide these hemispheres further west in order to keep the Old World on a single side. The antipodal meridian of Greenwich is both 180°W and 180°E. This is not to be conflated with
672-3671: The President (2005). "Serranía de Los Yariguíes, Nuevo Parque Nacional Natural" (in Spanish). Presidencia de la República . Retrieved 4 August 2011 . External links [ edit ] Bird species of Yariguíes National Park v t e Protected areas of Colombia National Natural Parks Alto Fragua Indi-Wasi Amacayacu Bahía Portete Cahuinarí Catatumbo Barí Chingaza Corales de Profundidad Corales del Rosario y San Bernardo Cordillera de los Picachos Cueva de los Guácharos Doña Juana-Cascabel Volcanic Complex El Tuparro Farallones de Cali Isla Gorgona La Paya Las Hermosas Las Orquídeas Los Katíos Los Nevados Macuira Munchique Nevado del Huila Old Providence McBean Lagoon Paramillo Pisba Puracé Río Puré Sanquianga Selva de Florencia Serranía de Chiribiquete Serranía de la Macarena Serranía de Los Churumbelos Auka-Wasi Serranía de los Yariguíes Sierra Nevada de Santa Marta Sierra Nevada del Cocuy Sumapaz Tamá Tatamá Tayrona Tinigua Uramba Bahía Málaga Utría Yaigojé Apaporis [REDACTED] Flora and Fauna Sanctuaries Ciénaga Grande de Santa Marta El Corchal "El mono Hernández" Galeras Guanentá Alto Río Fonce Iguaque Isla de La Corota Los Colorados Los Flamencos Malpelo Otún Quimbaya Plantas Medicinales Orito Ingi-Ande Playona Acandí National Natural Reserves Nukak Puinawai Unique Natural Area Los Estoraques Road parks Salamanca Island Regional Nature Reserves Cerulean Warbler Colibri del Sol Laguna de Sonso Proposed Areas Bosque Seco del Patía Morichales de Paz de Ariporo Serranía de Pinche Serranía de San Lucas Biodiversity Natural hazards Natural regions v t e Mountain ranges of Colombia Colombian Andes Western Ranges Serranía de Pinche Farallones de Cali Serranía de los Paraguas Paramillo Massif Serranía de Abibe Serranía de San Jerónimo Serranía de Ayapel Central Ranges Serranía de los Churumbelos Serranía de las Minas Eastern Ranges Altiplano Cundiboyacense Eastern Hills Suba Hills Serranía de los Yariguíes Serranía de las Quinchas Sierra Nevada del Cocuy Serranía del Perijá Main Andes Colombian Massif Pasto Massif [REDACTED] Isolated ranges Serranía de Macuira Serranía de Chiribiquete Serranía de la Macarena Sierra Nevada de Santa Marta Serranía del Darién Serranía del Baudó Montes de María Serranía de San Lucas Retrieved from " https://en.wikipedia.org/w/index.php?title=Yariguíes_National_Park&oldid=1239547613 " Categories : IUCN Category II Páramos Mountain ranges of Colombia National parks of Colombia Geography of Santander Department Protected areas established in 2005 Hidden categories: Pages using gadget WikiMiniAtlas CS1 Spanish-language sources (es) Articles with short description Short description
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#1733093206775704-528: The basis for most others. Although latitude and longitude form a coordinate tuple like a cartesian coordinate system , the geographic coordinate system is not cartesian because the measurements are angles and are not on a planar surface. A full GCS specification, such as those listed in the EPSG and ISO 19111 standards, also includes a choice of geodetic datum (including an Earth ellipsoid ), as different datums will yield different latitude and longitude values for
736-566: The center of the Earth. Lines joining points of the same latitude trace circles on the surface of Earth called parallels , as they are parallel to the Equator and to each other. The North Pole is 90° N; the South Pole is 90° S. The 0° parallel of latitude is designated the Equator , the fundamental plane of all geographic coordinate systems. The Equator divides the globe into Northern and Southern Hemispheres . The longitude λ of
768-613: The default datum used for the Global Positioning System , and the International Terrestrial Reference System and Frame (ITRF), used for estimating continental drift and crustal deformation . The distance to Earth's center can be used both for very deep positions and for positions in space. Local datums chosen by a national cartographical organization include the North American Datum ,
800-490: The distance they give is correct within a centimeter.) The formulae both return units of meters per degree. An alternative method to estimate the length of a longitudinal degree at latitude ϕ {\displaystyle \phi } is to assume a spherical Earth (to get the width per minute and second, divide by 60 and 3600, respectively): where Earth's average meridional radius M r {\displaystyle \textstyle {M_{r}}\,\!}
832-496: The eastern. Average temperature is 27 °C. Savannas cover 75% of the area, and gallery forests covering the rest. Predominating plants include the Moriche Palm and the tree Caraipa llanorum . The dominant vegetation on the non-flooded savannas is grass. The park is home to 74 species of mammals, 320 birds (many of them marine), 17 reptiles, 26 fish and five primate species. Amphibians are significantly diverse due to
864-468: The full adoption of longitude and latitude, rather than measuring latitude in terms of the length of the midsummer day. Ptolemy's 2nd-century Geography used the same prime meridian but measured latitude from the Equator instead. After their work was translated into Arabic in the 9th century, Al-Khwārizmī 's Book of the Description of the Earth corrected Marinus' and Ptolemy's errors regarding
896-749: The length of the Mediterranean Sea , causing medieval Arabic cartography to use a prime meridian around 10° east of Ptolemy's line. Mathematical cartography resumed in Europe following Maximus Planudes ' recovery of Ptolemy's text a little before 1300; the text was translated into Latin at Florence by Jacopo d'Angelo around 1407. In 1884, the United States hosted the International Meridian Conference , attended by representatives from twenty-five nations. Twenty-two of them agreed to adopt
928-461: The location has moved, but because the reference system used to measure it has shifted. Because any spatial reference system or map projection is ultimately calculated from latitude and longitude, it is crucial that they clearly state the datum on which they are based. For example, a UTM coordinate based on WGS84 will be different than a UTM coordinate based on NAD27 for the same location. Converting coordinates from one datum to another requires
960-579: The longitude of the Royal Observatory in Greenwich , England as the zero-reference line. The Dominican Republic voted against the motion, while France and Brazil abstained. France adopted Greenwich Mean Time in place of local determinations by the Paris Observatory in 1911. The latitude ϕ of a point on Earth's surface is the angle between the equatorial plane and the straight line that passes through that point and through (or close to)
992-460: The melting of the ice sheets of the last ice age , but neighboring Scotland is rising by only 0.2 cm . These changes are insignificant if a local datum is used, but are statistically significant if a global datum is used. On the GRS 80 or WGS 84 spheroid at sea level at the Equator, one latitudinal second measures 30.715 m , one latitudinal minute is 1843 m and one latitudinal degree
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1024-507: The same location. The invention of a geographic coordinate system is generally credited to Eratosthenes of Cyrene , who composed his now-lost Geography at the Library of Alexandria in the 3rd century BC. A century later, Hipparchus of Nicaea improved on this system by determining latitude from stellar measurements rather than solar altitude and determining longitude by timings of lunar eclipses , rather than dead reckoning . In
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