Knowledge

Navigation

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as an informed search. In target approximation, on the other hand, the location of the destination is known to the navigator but a further distinction is made based on whether the navigator knows how to arrive or not to the destination. Path following means that the environment, the path, and the destination are all known which means that the navigator simply follows the path they already know and arrive at the destination without much thought. For example, when you are in your city and walking on the same path as you normally take from your house to your job or university. However, path finding means that the navigator knows where the destination is but does not know the route they have to take to arrive at the destination: you know where a specific store is but you do not know how to arrive there or what path to take. If the navigator does not know the environment, it is called path search which means that only the destination is known while neither the path nor the environment is: you are in a new city and need to arrive at the train station but do not know how to get there. Path planning, on the other hand, means that the navigator knows both where the destination is and is familiar with the environment so they only need to plan the route or path that they should take to arrive at their target. For example, if you are in your city and need to get to a specific store that you know the destination of but do not know the specific path you need to take to get there.
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triangular structure with a pivot at the top and a graduated segment of a circle, referred to as the "arc", at the bottom. The second component is the index arm, which is attached to the pivot at the top of the frame. At the bottom is an endless vernier which clamps into teeth on the bottom of the "arc". The optical system consists of two mirrors and, generally, a low power telescope. One mirror, referred to as the "index mirror" is fixed to the top of the index arm, over the pivot. As the index arm is moved, this mirror rotates, and the graduated scale on the arc indicates the measured angle ("altitude").
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and angular bearings to charted objects and use these to establish arcs of position and lines of position on a chart. A fix consisting of only radar information is called a radar fix. Types of radar fixes include "range and bearing to a single object," "two or more bearings," "tangent bearings," and "two or more ranges." Radar can also be used with
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position themselves, typically with the aid of electronic position fixing. While the military navigator will have a bearing book and someone to record entries for each fix, the civilian navigator will simply pilot the bearings on the chart as they are taken and not record them at all. If the ship is equipped with an
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Directed wayfinding, instead, can be further subdivided into search vs. target approximation. Search means that a person does not know where the destination is located and must find it either in an unfamiliar environment, which is labeled as an uninformed search, or in a familiar environment, labeled
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Navigation can be distinguished into two sptial components: locomotion and wayfinding. Locomotion is the process of movement from one place to another, both in humans and in animals. Locomotion helps you understand an environment by moving through a space in order to create a mental representation of
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The chronometer is designed to operate for a minimum of one year on a single set of batteries. Observations may be timed and ship's clocks set with a comparing watch, which is set to chronometer time and taken to the bridge wing for recording sight times. In practice, a wrist watch coordinated to the
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A military navigation team will nearly always consist of several people. A military navigator might have bearing takers stationed at the gyro repeaters on the bridge wings for taking simultaneous bearings, while the civilian navigator on a merchant ship or leisure craft must often take and plot their
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information on the route. In the next stage, the written plan is created. The third stage is the execution of the finalised voyage plan, taking into account any special circumstances which may arise such as changes in the weather, which may require the plan to be reviewed or altered. The final stage
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Other techniques that are less used in general navigation have been developed for special situations. One, known as the "contour method," involves marking a transparent plastic template on the radar screen and moving it to the chart to fix a position. Another special technique, known as the Franklin
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The first inertial system is considered to be the V-2 guidance system deployed by the Germans in 1942. However, inertial sensors are traced to the early 19th century. The advantages INSs led their use in aircraft, missiles, surface ships and submarines. For example, the U.S. Navy developed the Ships
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Advantages over other navigation systems are that, once aligned, an INS does not require outside information. An INS is not affected by adverse weather conditions and it cannot be detected or jammed. Its disadvantage is that since the current position is calculated solely from previous positions and
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In navigation, a rhumb line (or loxodrome) is a line crossing all meridians of longitude at the same angle, i.e. a path derived from a defined initial bearing. That is, upon taking an initial bearing, one proceeds along the same bearing, without changing the direction as measured relative to true or
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Electronic integrated bridge concepts are driving future navigation system planning. Integrated systems take inputs from various ship sensors, electronically display positioning information, and provide control signals required to maintain a vessel on a preset course. The navigator becomes a system
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is used to measure the body's angular height above the horizon. That height can then be used to compute distance from the subpoint to create a circular line of position. A navigator shoots a number of stars in succession to give a series of overlapping lines of position. Where they intersect is the
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Piloting (also called pilotage) involves navigating an aircraft by visual reference to landmarks, or a water vessel in restricted waters and fixing its position as precisely as possible at frequent intervals. More so than in other phases of navigation, proper preparation and attention to detail are
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Radar is an effective aid to navigation because it provides ranges and bearings to objects within range of the radar scanner. When a vessel (ship or boat) is within radar range of land or fixed objects (such as special radar aids to navigation and navigation marks) the navigator can take distances
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The second critical component of celestial navigation is to measure the angle formed at the observer's eye between the celestial body and the sensible horizon. The sextant, an optical instrument, is used to perform this function. The sextant consists of two primary assemblies. The frame is a rigid
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In order to accurately measure longitude, the precise time of a sextant sighting (down to the second, if possible) must be recorded. Each second of error is equivalent to 15 seconds of longitude error, which at the equator is a position error of .25 of a nautical mile, about the accuracy limit of
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The second mirror, referred to as the "horizon glass", is fixed to the front of the frame. One half of the horizon glass is silvered and the other half is clear. Light from the celestial body strikes the index mirror and is reflected to the silvered portion of the horizon glass, then back to the
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were unavailable until the late 18th century and not affordable until the 19th century. For about a hundred years, from about 1767 until about 1850, mariners lacking a chronometer used the method of lunar distances to determine Greenwich time to find their longitude. A mariner with a chronometer
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The spring-driven marine chronometer is a precision timepiece used aboard ship to provide accurate time for celestial observations. A chronometer differs from a spring-driven watch principally in that it contains a variable lever device to maintain even pressure on the mainspring, and a special
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is defined as an active process of following or deciding upon a path between one place to another through mental representations. It involves processes such as representation, planning and decision which help to avoid obstacles, to stay on course or to regulate pace when approaching particular
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Adjustment of the sextant consists of checking and aligning all the optical elements to eliminate "index correction". Index correction should be checked, using the horizon or more preferably a star, each time the sextant is used. The practice of taking celestial observations from the deck of a
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A spring-driven chronometer is set approximately to Greenwich mean time (GMT) and is not reset until the instrument is overhauled and cleaned, usually at three-year intervals. The difference between GMT and chronometer time is carefully determined and applied as a correction to all chronometer
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in cooperation with six partner nations. OMEGA was developed by the United States Navy for military aviation users. It was approved for development in 1968 and promised a true worldwide oceanic coverage capability with only eight transmitters and the ability to achieve a four-mile (6 km)
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type of navigation system that computes its position based on motion sensors. Before actually navigating, the initial latitude and longitude and the INS's physical orientation relative to the Earth (e.g., north and level) are established. After alignment, an INS receives impulses from motion
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have replaced spring-driven chronometers aboard many ships because of their greater accuracy. They are maintained on GMT directly from radio time signals. This eliminates chronometer error and watch error corrections. Should the second hand be in error by a readable amount, it can be reset
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A line of position can refer to two different things, either a line on a chart or a line between the observer and an object in real life. A bearing is a measure of the direction to an object. If the navigator measures the direction in real life, the angle can then be drawn on a
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navigators for civilians who own them. Overuse of these devices, whether in the vehicle or on foot, can lead to a relative inability to learn about navigated environments, resulting in sub-optimal navigation abilities when and if these devices become unavailable. Typically a
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Continuous Radar Plot Technique, involves drawing the path a radar object should follow on the radar display if the ship stays on its planned course. During the transit, the navigator can check that the ship is on track by checking that the pip lies on the drawn line.
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motion sensors, its errors are cumulative, increasing at a rate roughly proportional to the time since the initial position was input. Inertial navigation systems must therefore be frequently corrected with a location 'fix' from some other type of navigation system.
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with charitable status, aimed at furthering the development of navigation on land and sea, in the air and in space. It was founded in 1947 as a forum for mariners, pilots, engineers and academics to compare their experiences and exchange information. In the US, the
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Methods of navigation have changed through history. Each new method has enhanced the mariner's ability to complete his voyage. One of the most important judgments the navigator must make is the best method to use. Some types of navigation are depicted in the table.
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detectors that measure (a) the acceleration along three axes (accelerometers), and (b) rate of rotation about three orthogonal axes (gyroscopes). These enable an INS to continually and accurately calculate its current latitude and longitude (and often velocity).
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The basic element for time generation is a quartz crystal oscillator. The quartz crystal is temperature compensated and is hermetically sealed in an evacuated envelope. A calibrated adjustment capability is provided to adjust for the aging of the crystal.
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is aboard, as is often the case in the most restricted of waters, his judgement can generally be relied upon, further easing the workload. But should the ECDIS fail, the navigator will have to rely on his skill in the manual and time-tested procedures.
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Passage planning or voyage planning is a procedure to develop a complete description of vessel's voyage from start to finish. The plan includes leaving the dock and harbor area, the en route portion of a voyage, approaching the destination, and
2012:, etc., in their navigation process which generally involves low spatial reasoning and is less cognitively demanding. Unaided wayfinding involves no such devices for the person who is navigating. Unaided wayfinding can be subdivided into a 1237:
series of letters, which the RDF can tune in to see if the beacon is "on the air". Most modern detectors can also tune in any commercial radio stations, which is particularly useful due to their high power and location near major cities.
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of the human body and its extensions: above/below, front/back and left/right. Tversky ultimately proposed a fourfold classification of navigable space: space of the body, space around the body, space of navigation and space of graphics.
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The appraisal stage deals with the collection of information relevant to the proposed voyage as well as ascertaining risks and assessing the key features of the voyage. This will involve considering the type of navigation required e.g.
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is a factor in 80 percent of navigational accidents and that in many cases the human making the error had access to information that could have prevented the accident. The practice of voyage planning has evolved from penciling lines on
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A stop watch, either spring wound or digital, may also be used for celestial observations. In this case, the watch is started at a known GMT by chronometer, and the elapsed time of each sight added to this to obtain GMT of the sight.
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or DR, in which one advances a prior position using the ship's course and speed. The new position is called a DR position. It is generally accepted that only course and speed determine the DR position. Correcting the DR position for
123:. Early Pacific Polynesians used the motion of stars, weather, the position of certain wildlife species, or the size of waves to find the path from one island to another. Maritime navigation using scientific instruments such as the 1309:
radio transmitters that use the time interval between radio signals received from three or more stations to determine the position of a ship or aircraft. The current version of LORAN in common use is LORAN-C, which operates in the
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In addition to bearings, navigators also often measure distances to objects. On the chart, a distance produces a circle or arc of position. Circles, arcs, and hyperbolae of positions are often referred to as lines of position.
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In land navigation, courses and training is often provided to young persons as part of general or extra-curricular education. Land navigation is also an essential part of army training. Additionally, organisations such as the
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The day's work in navigation is a minimal set of tasks consistent with prudent navigation. The definition will vary on military and civilian vessels, and from ship to ship, but the traditional method takes a form resembling:
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observer's eye through the telescope. The observer manipulates the index arm so the reflected image of the body in the horizon glass is just resting on the visual horizon, seen through the clear side of the horizon glass.
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being the primary replacement. However, there are attempts to enhance and re-popularize LORAN. LORAN signals are less susceptible to interference and can penetrate better into foliage and buildings than GPS signals.
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The Handbook Of The SAS And Elite Forces. How The Professionals Fight And Win. Edited by Jon E. Lewis. p.363-Tactics And Techniques, Personal Skills And Techniques. Robinson Publishing Ltd 1997. ISBN 1-85487-675-9
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Navigation is an essential everyday activity that involves a series of abilities that help humans and animals to locate, track, and follow paths in order to arrive at different destinations. Navigation, in
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Not to be confused with satellite navigation, which depends upon satellites to function, space navigation refers to the navigation of spacecraft themselves. This has historically been achieved (during the
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of tasks depending on whether it is undirected or directed, which basically makes the distinction of whether there is a precise destination or not: undirected wayfinding means that a person is simply
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the use of Omega declined during the 1990s, to a point where the cost of operating Omega could no longer be justified. Omega was terminated on September 30, 1997, and all stations ceased operation.
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source. Due to radio's ability to travel very long distances "over the horizon", it makes a particularly good navigation system for ships and aircraft that might be flying at a distance from land.
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and using sight reduction tables to correct for height of eye and atmospheric refraction. The height of Polaris in degrees above the horizon is the latitude of the observer, within a degree or so.
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is the discipline of following a route through terrain on foot or by vehicle, using maps with reference to terrain, a compass, and other basic navigational tools and/or using landmarks and signs.
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and listening for the direction in which the signal from a known station comes through most strongly. This sort of system was widely used in the 1930s and 1940s. RDF antennas are easy to spot on
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organisations are a type of sports that require navigational skills using a map and compass to navigate from point to point in diverse and usually unfamiliar terrain whilst moving at speed.
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celestial fix. The Moon and Sun may also be used. The Sun can also be used by itself to shoot a succession of lines of position (best done around local noon) to determine a position.
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accuracy when fixing a position. Initially, the system was to be used for navigating nuclear bombers across the North Pole to Russia. Later, it was found useful for submarines.
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systems (GPS) became available. INSs are still in common use on submarines (since GPS reception or other fix sources are not possible while submerged) and long-range missiles.
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relies primarily on positions determined electronically by receivers collecting information from satellites. Most other modern techniques rely on finding intersecting
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uses radar to determine the distance from or bearing of objects whose position is known. This process is separate from radar's use as a collision avoidance system.
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All chronometers and watches should be checked regularly with a radio time signal. Times and frequencies of radio time signals are listed in publications such as
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with varying curvature in this projection; but are actually circular with different radii. All locations with a given latitude are collectively referred to as a
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By mental navigation checks, a pilot or a navigator estimates tracks, distances, and altitudes which will then help the pilot avoid gross navigation errors.
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Since the first experimental satellite was launched in 1978, GPS has become an indispensable aid to navigation around the world, and an important tool for
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led by Elcano sailed across the Indian Ocean and north along the coast of Africa, to finally arrive in Spain in 1522, three years after its departure. The
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Global Navigation Satellite System or GNSS is the term for satellite navigation systems that provide positioning with global coverage. A GNSS allow small
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750 million per year, including the replacement of aging satellites, and research and development. Despite this fact, GPS is free for civilian use as a
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program to ensure a reliable and accurate navigation system to initial its missile guidance systems. Inertial navigation systems were in wide use until
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of passage planning consists of monitoring the vessel's progress in relation to the plan and responding to deviations and unforeseen circumstances.
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involves navigating in restricted/coastal waters with frequent determination of position relative to geographic and hydrographic features.
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is probably the earliest form of open-ocean navigation; it was based on memory and observation recorded on scientific instruments like the
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Professional organisations also assist to encourage improvements in navigation or bring together navigators in learned environments. The
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important. Procedures vary from vessel to vessel, and between military, commercial, and private vessels. As pilotage takes place in
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Noontime meridian or ex-meridian observation of the Sun for noon latitude line. Running fix or cross with Venus line for noon fix.
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There are some methods seldom used today such as "dipping a light" to calculate the geographic range from observer to lighthouse.
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Embassy to the Eastern courts of Cochin-China, Siam, and Muscat: in the U.S. sloop-of-war Peacock ... during the years 1832–3–4
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There are two types of wayfinding in navigation: aided and unaided. Aided wayfinding requires a person to use various types of
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with varying curvature in this projection, but are actually halves of great ellipses, with identical radii at a given latitude.
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rolling ship, often through cloud cover and with a hazy horizon, is by far the most challenging part of celestial navigation.
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Computation of the interval to noon, watch time of local apparent noon, and constants for meridian or ex-meridian sights.
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Professional standards for navigation depend on the type of navigation and vary by country. For marine navigation,
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and these guidelines are reflected in the local laws of IMO signatory countries (for example, Title 33 of the U.S.
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Gardony, Aaron L. (June 2015). "Navigational Aids and Spatial Memory Impairment: The Role of Divided Attention".
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Passage planning consists of four stages: appraisal, planning, execution, and monitoring, which are specified in
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is legally responsible for passage planning, however on larger vessels, the task will be delegated to the ship's
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Navigation, in a broader sense, can refer to any skill or study that involves the determination of position and
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Gardony, Aaron L (April 2013). "How Navigational Aids Impair Spatial Memory: Evidence for Divided Attention".
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when the Allied forces needed a system which could be used to achieve accurate landings. As was the case with
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systematized the space, but this time taking into consideration the three dimensions that correspond to the
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are available on navigation, which are published by professional sources all over the world. In the UK, the
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terrestrial range (natural or man made) when two charted points are observed to be in line with each other,
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started during the Age of Discovery in the 15th century. The Portuguese began systematically exploring the
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Take two or more star observations at evening twilight for a celestial fix (prudent to observe six stars).
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Take two or more star observations at morning twilight for a celestial fix (prudent to observe six stars).
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provide numerous navigational publications, including the comprehensive Admiralty Manual of Navigation.
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from one place to another. The field of navigation includes four general categories: land navigation,
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Poor passage planning and deviation from the plan can lead to groundings, ship damage and cargo loss.
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An Analysis Of Navigational Instruments In The Age Of Exploration: 15th Century To Mid-17th century
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Similar to latitude, the longitude of a place on Earth is the angular distance east or west of the
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An illustration showing a compass used for navigation from Bowditch's American Practical Navigator
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Process of monitoring and controlling the movement of a craft or vehicle from one place to another
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If the navigator draws two lines of position, and they intersect he must be at that position. A
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manager, choosing system presets, interpreting system output, and monitoring vessel response.
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in 1519, crossed the Atlantic Ocean and after several stopovers rounded the southern tip of
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to perform navigation tasks. All navigational techniques involve locating the navigator's
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is a next generation GNSS in the final deployment phase, and became operational in 2016.
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as a means of position fixing with the radar image or distance/bearing overlaid onto an
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Roughly, the latitude of a place on Earth is its angular distance north or south of the
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and the Philippines. By then, only two galleons were left from the original seven. The
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The practice of navigation usually involves a combination of these different methods.
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readings. Spring-driven chronometers must be wound at about the same time each day.
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is 90° S. Mariners calculated latitude in the Northern Hemisphere by sighting the
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is a field of study that focuses on the process of monitoring and controlling the
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dating from 1295. The perfecting of this navigation instrument is attributed to
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At least one afternoon Sun line, in case the stars are not visible at twilight.
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Celestial navigation systems are based on observation of the positions of the
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In the European medieval period, navigation was considered part of the set of
5407: 5377: 5130: 4457: 4374: 4079: 4041: 3872:. Vol. 22 (11th ed.). Cambridge University Press. pp. 703–704. 3863: 3844:. Vol. 19 (11th ed.). Cambridge University Press. pp. 284–298. 3835: 3797:(7th ed.). Bethesda, MD: U.S. Government Printing Office. Archived from 3586: 3530: 3522: 3443: 3246: 2671:"An historical perspective on inertial navigation systems", Daniel Tazartes, 2518:
The Handbook of the SAS and Elite Forces. How the Professionals Fight and Win
1948: 1830: 1772:", short for satellite navigation), as well as any means available on water. 1488: 1435: 1319: 1311: 1306: 1286: 1256: 1215: 957: 875: 708: 674: 642:
If only one line of position is available, this may be evaluated against the
557: 293:
sailed east from the Philippines, trying to find a maritime path back to the
274: 227: 176: 1922:
is a free available encyclopedia of navigation issued by the US Government.
1373:
Parallel indexing is a technique defined by William Burger in the 1957 book
1291: 786:
involves reducing celestial measurements to lines of position using tables,
5070: 4892: 4447: 4379: 4223: 3798: 3736: 3451: 3301: 3254: 2368:
Chronometers were not regularly supplied to the Royal Navy until about 1825
1857: 1795: 1275: 1267: 1211: 1196:
A radio direction finder or RDF is a device for finding the direction to a
937: 933: 207: 82: 3481: 3222: 3075:
Standards of Training and Certification of Watchkeeping' (STCW) Convention
1472:, transmitting signals allowing GPS receivers to determine the receiver's 1007:
are used to compute the subpoint on Earth a celestial body is over, and a
4130: 3994: 3984: 3904: 2017: 1727: 1692: 1529: 1480: 1416: 1400: 649:
Lines (or circles) of position can be derived from a variety of sources:
416: 305:
sailed from the Philippines, north to parallel 39°, and hit the eastward
262: 148: 5267: 3694: 3368: 1563: 1214:
aircraft, as loops under the rear section of the fuselage, whereas most
1154:
Another possibility that has been explored for deep space navigation is
884:
uses a Global Navigation Satellite System (GNSS) to determine position.
823: 5170: 5057: 4780: 4645: 4384: 4125: 1960: 1803: 1492: 1234: 1226: 1077:
is used to measure the elevation of celestial bodies above the horizon.
765: 736: 670: 628:
and the navigator will be somewhere on that bearing line on the chart.
598: 589:
could check its reading using a lunar determination of Greenwich time.
499: 495: 249:
The first circumnavigation of the earth was completed in 1522 with the
86: 42: 3136: 1844:
officers receive navigation training as part of their naval training.
1221:
In navigational applications, RDF signals are provided in the form of
66:
It is also the term of art used for the specialized knowledge used by
4785: 4353: 4310: 4115: 4011: 3561:
Wiener, Jan M.; Büchner, Simon J.; Hölscher, Christoph (2009-05-20).
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Montello, Daniel R. (2005-07-18), Shah, Priti; Miyake, Akira (eds.),
1784: 1685: 1484: 1428: 1404: 1253: 523: 503: 377: 277:. Some ships were lost, but the remaining fleet continued across the 128: 127:
first occurred in the Mediterranean during the Middle Ages. Although
67: 3238: 2673:
2014 International Symposium on Inertial Sensors and Systems (ISISS)
5277: 5140: 5135: 4887: 4760: 4650: 3787: 2649:"How Did Aviators "Shoot" the Sun and Stars? | Time and Navigation" 2013: 1936: 1849: 1761: 1412: 1408: 979:
A celestial fix will be at the intersection of two or more circles.
910: 851:
Availability has declined due to the development of accurate GNSS.
755: 743: 477: 394: 310: 294: 191: 5310: 2343: 1218:
aircraft enclosed the antenna in a small teardrop-shaped fairing.
5387: 5241: 5160: 5090: 4897: 4770: 4672: 4667: 4500: 4469: 4442: 4135: 4120: 3949: 3829: 1538: 1446: 1271: 1249: 1208: 1082: 1074: 1069: 1008: 845: 565: 511: 507: 491: 483: 424: 360: 278: 187: 56: 3563:"Taxonomy of Human Wayfinding Tasks: A Knowledge-Based Approach" 1743:
Integrated Bridge System, integrated on an Offshore Service Ship
975: 777: 5226: 5165: 4765: 4677: 4662: 4657: 4192: 3794:
Publication 1310: Radar Navigation and Maneuvering Board Manual
1769: 1756:
Navigation for cars and other land-based travel typically uses
1443: 1327: 992: 928:, it typically involves following courses to ensure sufficient 857: 720: 549: 219: 195: 52: 3857: 1357:
Radar ranges and bearings can be used to determine a position.
115:, none of which were used for long voyages across open ocean. 5392: 2054: 1636:
Noontime determination the day's run and day's set and drift.
1550: 1458: 1424: 1363: 1323: 1315: 1252:
are three similar hyperbolic navigation systems. Decca was a
1197: 953: 941: 369: 322: 270: 243: 231: 3473:
Space and Spatial Cognition: A Multidisciplinary Perspective
3334:(1 ed.), Cambridge University Press, pp. 257–294, 915: 794:. It is primarily used at sea but can also be used on land. 5155: 5145: 4099: 3663: 3507:"Structures Of Mental Spaces: How People Think About Space" 2152: 1841: 1836:
are trained and internationally certified according to the
1159: 1031:
balance designed to compensate for temperature variations.
988: 580:, can be used to calculate the time at zero longitude (see 282: 253:, a Spanish voyage of discovery led by Portuguese explorer 235: 3918: 2962:. Heidelberg, Germany: Springer Berlin. pp. 238–254. 1642:
Determine compass error by azimuth observation of the Sun.
1627:
Determine compass error by azimuth observation of the Sun.
4613: 3813:(4th ed.). Centreville, MD: Cornell Maritime Press. 3394:"Cognitive Maps, Spatial Abilities, and Human Wayfinding" 2570: 2568: 2020:
an environment for pleasure without any set destination.
2001: 1776: 1757: 1667: 1541:
is also provided to determine direction when not moving.
1533: 984: 494:
to 90° at the North and South poles. The latitude of the
365: 309:
which took its galleon across the Pacific. He arrived in
3808: 3737:
Bernhard Hofmann-Wellenhof; K. Legat; M. Wieser (2003).
3117:"The Royal Institute of Navigation - Aims and Objects". 2405:(Digital ed.). Harper & brothers. p. 373. 1824: 1491:
used in many applications including scientific study of
940:. It may also involve navigating a ship within a river, 3649:(15th ed.). Annapolis, MD: Naval Institute Press. 1649:
Navigation on ships is usually always conducted on the
1281:
The OMEGA Navigation System was the first truly global
238:. Soon, the Portuguese sailed further eastward, to the 234:
by sailing around Africa, opening up direct trade with
3883:, Boca Raton, FL: CRC Press Taylor and Francis Group, 3773:(64th ed.). New York: Hearst Communications Inc. 3095:. The Canadian Orienteering Federation. Archived from 2565: 1726:, the region the ship will be passing through and the 1517:. The cost of maintaining the system is approximately 1318:. Many nations are users of the system, including the 1050:
nearest second with the chronometer will be adequate.
3560: 3172: 2862: 1712:
Resolution A.893(21), Guidelines For Voyage Planning,
1624:
for longitude, or at any time for a line of position.
3150: 3054:
IMO RESOLUTION A.893(21) adopted on 25 November 1999
3029:
IMO RESOLUTION A.893(21) adopted on 25 November 1999
2997:
IMO RESOLUTION A.893(21) adopted on 25 November 1999
2290: 2288: 2220:, MA Thesis, Texas A&M University, December 2005 2031: 340:"to sail, sail over, go by sea, steer a ship," from 3050:"ANNEX 25 – MCA Guidance Notes for Voyage Planning" 3025:"ANNEX 24 – MCA Guidance Notes for Voyage Planning" 2093:
Navigation: Principles of Positioning and Guidances
2090: 1967:Navigation and wayfinding can be approached in the 175:) published in 1551, based on the principle of the 3766: 3740:Navigation: principles of positioning and guidance 2869:GPS Overview from the NAVSTAR Joint Program Office 2316: 1925: 143:, the oldest record of a sea astrolabe is that of 5383:United Kingdom Global Navigation Satellite System 5050: 3695:Great Britain Ministry of Defence (Navy) (1995). 2285: 2257: 1620:Morning Sun observation. Can be taken on or near 932:, ensuring a sufficient depth of water below the 832:uses radio waves to determine position by either 186:Open-seas navigation using the astrolabe and the 5405: 5211: 3718:Gilardoni, Eduardo O.; Presedo, Juan P. (2017). 3717: 2821:Parallel Index Techniques in Restricted Waters - 2575:Gilardoni, Eduardo O.; Presedo, Juan P. (2017). 2574: 2298:New and Complete Epitome of Practical Navigation 2267:New and Complete Epitome of Practical Navigation 2127: 226:. In 1498, a Portuguese expedition commanded by 222:by crossing the Atlantic, which resulted in the 3913:How to navigate with less than a compass or GPS 3332:The Cambridge Handbook of Visuospatial Thinking 2326:An Epitome of Navigation and Nautical Astronomy 1604: 63:, aeronautic navigation, and space navigation. 3848: 3809:Turpin, Edward A.; McEwen, William A. (1980). 3612: 3275: 2859:National Imagery and Mapping Agency, 2001:182. 2847:National Imagery and Mapping Agency, 2001:164. 2809:National Imagery and Mapping Agency, 2001:169. 2795:National Imagery and Mapping Agency, 2001:163. 1953:egocentric and allocentric frames of reference 653:celestial observation (a short segment of the 265:in 1521. The fleet of seven ships sailed from 5197: 5036: 4208: 3934: 3676:. Department of the Air Force. Archived from 3278:"What determines our navigational abilities?" 3276:Wolbers, Thomas; Hegarty, Mary (March 2010). 2353:Former Clock & Watchmakers and Their Work 2171: 1680:. According to international law, a vessel's 1126:Inertial Navigation System (SINS) during the 669:on certain coastlines, a depth sounding from 646:position to establish an estimated position. 452: 121:Marshall Islands Stick Charts of Ocean Swells 2713: 2356:. New York: Spon & Chamberlain. p.  1734: 1599: 2737: 2735: 1775:Computerized navigation commonly relies on 896: 869:Primarily when within radar range of land. 5204: 5190: 5043: 5029: 4215: 4201: 3941: 3927: 3019: 3017: 3015: 3013: 2855: 2853: 2805: 2803: 2801: 2791: 2789: 2787: 2785: 2634: 2632: 2630: 2628: 2626: 2624: 2622: 2620: 2618: 2616: 2231:"Etymonline - Online Etymology Dictionary" 2134:The Ty Pros Companion to Ships and the Sea 1614:Maintain a continuous dead reckoning plot. 1468:More than two dozen GPS satellites are in 1449:are fully globally operational GNSSs. The 1314:portion of the EM spectrum from 90 to 110 459: 445: 3876: 3624:Navigation Advanced for Mates and Masters 3369:"APA Dictionary of Psychology/Locomotion" 3194: 2744:Navigation Advanced for Mates and Masters 2614: 2612: 2610: 2608: 2606: 2604: 2602: 2600: 2598: 2596: 2558: 2556: 2554: 2552: 2550: 2548: 2546: 2544: 2542: 2454: 2452: 2450: 2440: 2438: 2436: 2434: 2432: 1461:has indicated it may expand its regional 639:is the intersection of two or more LOPs. 281:making a number of discoveries including 74:compared to known locations or patterns. 3391: 3325: 2976: 2732: 2665: 2536:Federal Aviation Regulations Part 1 §1.1 2504: 2502: 2397:"Chapter XXIV―departure from Mozambique" 2086: 2084: 2082: 2080: 1890: 1809: 1783:of roads and navigable routes, and uses 1738: 1666: 1352: 1173: 1169: 1068: 974: 919:Manual navigation through Dutch airspace 914: 702:Traditional navigation methods include: 607: 552:, for example, has a longitude of about 218:'s expedition to sail west to reach the 36: 3764: 3504: 3392:GOLLEDGE, Reginald G. (December 2000). 3042: 3010: 2922: 2887: 2850: 2841: 2798: 2782: 2764: 2500: 2498: 2496: 2494: 2492: 2490: 2488: 2486: 2484: 2482: 2391: 2385: 2349: 1920:Bowditch's American Practical Navigator 1594: 1403:receivers to determine their location ( 1388: 964: 657:, but generally represented as a line), 490:(marked with °) ranging from 0° at the 14: 5406: 3827: 3644: 3617:(2002) by the United States government 3417: 2957: 2818: 2812: 2773: 2593: 2539: 2530: 2470: 2461: 2447: 2429: 2329:(Ninth ed.). Taylor. p. 295f 2322: 2250: 2248: 2246: 2244: 2210: 2202:: CS1 maint: archived copy as title ( 2091:Rell Pros-Wellenhof, Bernhard (2007). 1544: 1330:. LORAN use is in steep decline, with 1099: 5185: 5024: 4701:International Orienteering Federation 4196: 3922: 3880:Mobile Intelligent Autonomous Systems 3877:Raol, Jitendra; Gopal, Ajith (2013), 3621: 3556: 3554: 3552: 3550: 3548: 3469: 3465: 3463: 3461: 3321: 3319: 2985: 2741: 2301:. London. p. 221. Archived from 2294: 2270:. London. p. 222. Archived from 2263: 2109: 2077: 2060:Collision avoidance in transportation 1867:training as part of learning to fly. 1825:Standards, training and organisations 1794:Pedestrian navigation is involved in 1285:system for aircraft, operated by the 1203:RDFs works by rotating a directional 1064: 1015: 576:, or "lunar" for short) that, with a 81:. In this sense, navigation includes 4316:Radio Orienteering in a Compact Area 4175: 3765:Maloney, Elbert S. (December 2003). 3158:"The Admiralty Manual of Navigation" 3067: 2479: 2153:Comandante Estácio dos Reis (2002). 1947:of our environment, also known as a 1856:teach navigation to their students. 1779:for current location information, a 1558: 663:compass bearing to a charted object, 536:. Longitude is usually expressed in 321:The term stems from the 1530s, from 198:from 1418, under the sponsorship of 5005: 3789:National Imagery and Mapping Agency 3722:. Livingston, Scotland: Witherbys. 3645:Cutler, Thomas J. (December 2003). 3567:Spatial Cognition & Computation 3129: 3079:International Maritime Organization 2925:Spatial Cognition & Computation 2890:Spatial Cognition & Computation 2579:. Livingston, Scotland: Witherbys. 2241: 1710:International Maritime Organization 1656: 1504:United States Department of Defense 1338: 1229:. The signal is typically a simple 1181: 1137: 817:using electronic means, including: 727:develops an extremely accurate EP. 486:. Latitude is usually expressed in 257:and completed by Spanish navigator 24: 3811:Merchant Marine Officers' Handbook 3545: 3458: 3316: 3202:"The American Practical Navigator" 1905:United Kingdom Hydrographic Office 1751: 1039:Quartz crystal marine chronometers 498:is 90° N, and the latitude of the 415: 25: 5430: 3898: 3615:The American Practical Navigator, 3505:Tversky, Barbara (January 2003). 2993:"Regulation 34 – Safe Navigation" 2350:Britten, Frederick James (1894). 1266:) that was first deployed during 351: 5004: 4995: 4994: 4222: 4174: 4163: 4162: 4150: 3420:"Cognitive maps in rats and men" 2381:Wrinkles in Practical Navigation 2034: 1562: 1499:of telecommunications networks. 874: 856: 822: 776: 754: 735: 707: 666:radar range to a charted object, 359: 261:after the former's death in the 4306:Amateur radio direction finding 3828:Martin, William Robert (1911). 3769:Chapman Piloting and Seamanship 3498: 3411: 3385: 3361: 3269: 3215: 3110: 3085: 2951: 2916: 2881: 2707: 2678: 2641: 2511: 2373: 1926:Navigation in spatial cognition 1886: 1349:Doppler radar § navigation 936:as well as a consideration for 836:or hyperbolic systems, such as 834:radio direction finding systems 3697:Admiralty Manual of Seamanship 2223: 2146: 2118: 1863:In aviation, pilots undertake 1487:. GPS also provides a precise 797:Used primarily as a backup to 13: 1: 5051:Seamanship (seafaring) topics 3605: 3137:"The Institute of Navigation" 2982:Turpin and McEwen, 1980:6–18. 2937:10.1080/13875868.2015.1059432 2878:. Accessed December 15, 2006. 1991: 1872:Royal Institute of Navigation 1434:As of October 2011, only the 1375:The Radar Observer's Handbook 1027:manual celestial navigation. 544:at the Greenwich meridian to 540:(marked with °) ranging from 5213:Satellite navigation systems 4880:North American Championships 3720:Navigation in Shallow Waters 3647:Dutton's Nautical Navigation 3470:Denis, Michel (2017-11-13). 3401:Geographical Review of Japan 3340:10.1017/cbo9780511610448.008 3282:Trends in Cognitive Sciences 3223:"Focus on spatial cognition" 2902:10.1080/13875868.2013.792821 2577:Navigation in Shallow Waters 2065:Spatial cognition#Navigation 1791:to identify optimal routes. 1605:One day's work in navigation 1415:) within a few meters using 948:in close proximity to land. 592: 517: 316: 7: 5116:Ship-to-ship cargo transfer 4240:List of orienteering events 4095:Precession of the equinoxes 3948: 3665:Department of the Air Force 3626:(2nd ed.). Edinburgh: 3233:(11): 1431. November 2017. 3182:. Witherby Publishing Group 2823:(2nd ed.). Edinburgh: 2746:(2nd ed.). Edinburgh: 2714:Rafi Letzter (2018-04-16). 2338:Nautical Almanac 1849-1851. 2027: 1716:Code of Federal Regulations 904: 749:When within sight of land. 471: 436:, and has a latitude of 0°. 210:by this route. In 1492 the 32:Navigation (disambiguation) 10: 5435: 4952:Mountain bike orienteering 4598:WinOL / WinOL II Oriantica 4274:Mountain bike orienteering 3915:(archived 8 December 2012) 3909:by Ernest Gallaudet Draper 3418:Tolman, Edward C. (1948). 3294:10.1016/j.tics.2010.01.001 2960:Spatial Information Theory 2095:. Springer. pp. 5–6. 1813: 1800:land navigation (military) 1660: 1548: 1455:Galileo positioning system 1392: 1342: 1294:Due to the success of the 1185: 1111:Inertial navigation system 1106:Inertial navigation system 1103: 1080: 1019: 968: 908: 872: 854: 820: 808: 774: 752: 733: 705: 700: 596: 521: 475: 428:divides the planet into a 385:Lines of longitude appear 251:Magellan-Elcano expedition 102: 96: 92: 41:A navigation system on an 29: 5365: 5291: 5260: 5219: 5151:Man overboard rescue turn 5056: 4990: 4968: 4950: 4918: 4815: 4808: 4743: 4693: 4606: 4578: 4548: 4522: 4513: 4483: 4435: 4409: 4402: 4362: 4326: 4292: 4255: 4248: 4230: 4144: 4108: 4050: 3977: 3956: 3628:Witherby Publishing Group 3579:10.1080/13875860902906496 3476:(1 ed.). Routledge. 3180:"Navigation Publications" 2825:Witherby Publishing Group 2748:Witherby Publishing Group 1909:Witherby Publishing Group 1781:navigational map database 1735:Integrated bridge systems 1600:Ships and similar vessels 1440:Global Positioning System 1368:Electronic nautical chart 1296:Global Positioning System 1225:, the radio version of a 809: 701: 402:Lines of latitude appear 224:Discovery of the Americas 179:used in constructing the 4903:Kainuu Orienteering Week 3854:Beazley, Charles Raymond 3523:10.1177/0013916502238865 3511:Environment and Behavior 3160:. The Nautical Institute 2958:Winter, Stephen (2007). 2653:timeandnavigation.si.edu 2070: 1463:Beidou navigation system 897:Mental navigation checks 887:Used in all situations. 768:is the more basic form. 655:circle of equal altitude 165:Martín Cortés de Albacar 155:navigators during early 4908:Jan Kjellström Festival 4793:Scoutcraft orienteering 4556:OpenOrienteering Mapper 4235:History of orienteering 3869:Encyclopædia Britannica 3850:Bunbury, Edward Herbert 3841:Encyclopædia Britannica 2686:"GSP Executive Summary" 2136:, Peter Kemp ed., 1976 1881:Institute of Navigation 1512:United States Air Force 1508:satellite constellation 1476:, speed and direction. 1301:LORAN is a terrestrial 1059:Radio Navigational Aids 344:"ship" and the root of 4863:European Championships 4593:Suunnistussimulaattori 3906:Lectures in Navigation 3622:Anwar, Nadeem (2015). 2819:Victor, Alain (2020). 2742:Anwar, Nadeem (2015). 2323:Taylor, Janet (1851). 1945:mental representations 1939:of the environment as 1896: 1764:, and in recent times 1744: 1672: 1465:into a global system. 1358: 1262:system (also known as 1192:Radio direction finder 1178: 1078: 980: 920: 788:spherical trigonometry 742:In marine navigation, 714:In marine navigation, 420: 157:Portuguese discoveries 45: 4694:Organisations / lists 4075:Earth's gravity field 4070:Earth's energy budget 3701:The Stationery Office 3482:10.4324/9781315103808 3119:Journal of Navigation 1901:nautical publications 1894: 1810:Underwater navigation 1789:shortest path problem 1742: 1670: 1393:Further information: 1356: 1343:Further information: 1177: 1170:Electronic navigation 1149:navigational computer 1104:Further information: 1081:Further information: 1072: 978: 918: 909:Further information: 813:covers any method of 811:Electronic navigation 608:Methods of navigation 597:Further information: 574:the lunar observation 522:Further information: 476:Further information: 419: 267:Sanlúcar de Barrameda 259:Juan Sebastián Elcano 173:The Art of Navigation 131:were invented in the 117:Polynesian navigation 112:seven mechanical arts 99:History of navigation 97:Further information: 40: 4496:Satellite navigation 4349:Mounted orienteering 3990:Computer cartography 3613:Nathaniel Bowditch, 3424:Psychological Review 3093:"About Orienteering" 2750:. pp. 133–139. 2295:Norie, J.W. (1828). 2264:Norie, J.W. (1828). 2155:Astrolábios Náuticos 1977:space classification 1941:frames of references 1820:Submarine navigation 1595:Navigation processes 1419:transmitted along a 1395:Satellite navigation 1389:Satellite navigation 1132:satellite navigation 971:Celestial navigation 965:Celestial navigation 930:under keel clearance 882:Satellite navigation 784:Celestial navigation 313:on October 8, 1565. 242:in 1512, landing in 216:Christopher Columbus 30:For other uses, see 4978:World Championships 4960:World Championships 4928:World Championships 4825:World Championships 4776:Location-based game 4390:Transmitter hunting 4109:Related disciplines 3227:Nature Neuroscience 2779:Bowditch, 2002:816. 2675:, Laguna Beach, CA 2638:Bowditch, 2002:269. 2562:Bowditch, 2002:105. 2216:Swanick, Lois Ann. 2115:Bowditch, 2003:799. 2010:directional signage 1969:environmental space 1766:computer navigation 1545:Acoustic navigation 1100:Inertial navigation 805:in the open ocean. 771:Used at all times. 730:Used at all times. 586:marine chronometers 582:Greenwich Mean Time 560:has a longitude of 434:Southern Hemisphere 430:Northern Hemisphere 137:classical antiquity 125:mariner's astrolabe 5373:GNSS reflectometry 5101:Naval architecture 4970:Trail orienteering 4718:List of orienteers 4631:cardinal direction 4334:Canoe orienteering 4284:Trail orienteering 4157:Geodesy portal 4007:Geodetic astronomy 3831:"Navigation"  3373:dictionary.apa.org 3125:(66): b1–b2. 2016. 2874:2006-09-28 at the 2770:Maloney, 2003:744. 2476:Maloney, 2003:622. 2467:Maloney, 2003:618. 2444:Maloney, 2003:615. 2235:www.etymonline.com 1913:Nautical Institute 1897: 1745: 1691:Studies show that 1673: 1574:. You can help by 1510:is managed by the 1470:medium Earth orbit 1359: 1179: 1079: 1065:The marine sextant 1022:Marine chronometer 1016:Marine chronometer 1005:marine chronometer 997:navigational stars 981: 921: 803:electronic systems 725:inertial navigator 534:Greenwich meridian 421: 408:circle of latitude 303:Andrés de Urdaneta 255:Ferdinand Magellan 141:Islamic Golden Age 133:Hellenistic period 105:History of geodesy 46: 5401: 5400: 5293:GNSS augmentation 5179: 5178: 5018: 5017: 4986: 4985: 4936: 4847: 4840: 4833: 4817:Foot orienteering 4744:Non-sport related 4588:Catching Features 4574: 4573: 4509: 4508: 4398: 4397: 4344:Mountain marathon 4269:Foot orienteering 4249:Sport disciplines 4190: 4189: 3890:978-1-4398-6300-8 3820:978-0-87033-056-8 3780:978-1-58816-089-8 3750:978-3-211-00828-7 3729:978-1-85609-667-6 3710:978-0-11-772696-3 3656:978-1-55750-248-3 3637:978-1-85609-627-0 3491:978-1-315-10380-8 3349:978-0-511-61044-8 2757:978-1-85609-627-0 2586:978-1-85609-667-6 2508:Bowditch, 2002:1. 2458:Maloney, 2003:614 2254:Bowditch, 2003:4. 2164:978-972-797-037-7 2102:978-3-211-00828-7 1933:spatial cognition 1592: 1591: 1555:Acoustic location 1502:Developed by the 1156:Pulsar navigation 891: 890: 618:lines of position 614:modern navigation 469: 468: 181:Egyptian pyramids 61:marine navigation 16:(Redirected from 5426: 5337:QZSS / Michibiki 5206: 5199: 5192: 5183: 5182: 5126:Passage planning 5086:Maritime studies 5045: 5038: 5031: 5022: 5021: 5008: 5007: 4998: 4997: 4932: 4920:Ski orienteering 4843: 4836: 4829: 4813: 4812: 4751:Adventure travel 4619:orienteering map 4520: 4519: 4407: 4406: 4370:Adventure racing 4339:Car orienteering 4279:Ski orienteering 4253: 4252: 4217: 4210: 4203: 4194: 4193: 4178: 4177: 4166: 4165: 4155: 4154: 4153: 4085:Gravity of Earth 4017:Gravity of Earth 3943: 3936: 3929: 3920: 3919: 3893: 3873: 3861: 3845: 3833: 3824: 3805: 3803: 3784: 3772: 3761: 3759: 3757: 3733: 3714: 3691: 3689: 3688: 3682: 3675: 3660: 3641: 3599: 3598: 3558: 3543: 3542: 3502: 3496: 3495: 3467: 3456: 3455: 3436:10.1037/h0061626 3415: 3409: 3408: 3398: 3389: 3383: 3382: 3380: 3379: 3365: 3359: 3358: 3357: 3356: 3323: 3314: 3313: 3273: 3267: 3266: 3219: 3213: 3212: 3210: 3208: 3198: 3192: 3191: 3189: 3187: 3176: 3170: 3169: 3167: 3165: 3154: 3148: 3147: 3145: 3143: 3133: 3127: 3126: 3114: 3108: 3107: 3105: 3104: 3089: 3083: 3082: 3071: 3065: 3064: 3062: 3060: 3046: 3040: 3039: 3037: 3035: 3021: 3008: 3007: 3005: 3003: 2989: 2983: 2980: 2974: 2973: 2955: 2949: 2948: 2920: 2914: 2913: 2885: 2879: 2866: 2860: 2857: 2848: 2845: 2839: 2838: 2816: 2810: 2807: 2796: 2793: 2780: 2777: 2771: 2768: 2762: 2761: 2739: 2730: 2729: 2727: 2726: 2711: 2705: 2704: 2702: 2701: 2692:. Archived from 2682: 2676: 2669: 2663: 2662: 2660: 2659: 2645: 2639: 2636: 2591: 2590: 2572: 2563: 2560: 2537: 2534: 2528: 2515: 2509: 2506: 2477: 2474: 2468: 2465: 2459: 2456: 2445: 2442: 2427: 2426: 2421: 2419: 2389: 2383: 2377: 2371: 2370: 2365: 2364: 2347: 2341: 2340: 2335: 2334: 2320: 2314: 2313: 2311: 2310: 2292: 2283: 2282: 2280: 2279: 2261: 2255: 2252: 2239: 2238: 2227: 2221: 2214: 2208: 2207: 2201: 2193: 2191: 2190: 2181:. Archived from 2175: 2169: 2168: 2150: 2144: 2131: 2125: 2122: 2116: 2113: 2107: 2106: 2088: 2050:Robot navigation 2044: 2042:Geography portal 2039: 2038: 2037: 1816:Diver navigation 1700:to a process of 1663:Passage planning 1657:Passage planning 1587: 1584: 1566: 1559: 1532:act as personal 1345:Radar navigation 1339:Radar navigation 1283:radio navigation 1260:radio navigation 1188:Radio navigation 1182:Radio navigation 1138:Space navigation 1001:nautical almanac 878: 864:Radar navigation 860: 830:Radio navigation 826: 780: 758: 739: 711: 688: 687: 604:magnetic north. 578:nautical almanac 461: 454: 447: 363: 356: 355: 307:Kuroshio Current 246:one year later. 212:Spanish monarchs 161:Age of Discovery 21: 5434: 5433: 5429: 5428: 5427: 5425: 5424: 5423: 5404: 5403: 5402: 5397: 5361: 5287: 5256: 5215: 5210: 5180: 5175: 5052: 5049: 5019: 5014: 4982: 4964: 4946: 4914: 4804: 4756:Bicycle touring 4739: 4689: 4683:mountain biking 4602: 4570: 4544: 4505: 4479: 4431: 4394: 4358: 4322: 4288: 4244: 4226: 4221: 4191: 4186: 4151: 4149: 4140: 4104: 4090:Plate tectonics 4065:Coriolis effect 4060:Chandler wobble 4052: 4046: 3973: 3952: 3947: 3901: 3896: 3891: 3859:"Pytheas"  3821: 3801: 3781: 3755: 3753: 3751: 3730: 3711: 3686: 3684: 3680: 3673: 3657: 3638: 3608: 3603: 3602: 3559: 3546: 3503: 3499: 3492: 3468: 3459: 3416: 3412: 3396: 3390: 3386: 3377: 3375: 3367: 3366: 3362: 3354: 3352: 3350: 3324: 3317: 3274: 3270: 3239:10.1038/nn.4666 3221: 3220: 3216: 3206: 3204: 3200: 3199: 3195: 3185: 3183: 3178: 3177: 3173: 3163: 3161: 3156: 3155: 3151: 3141: 3139: 3135: 3134: 3130: 3116: 3115: 3111: 3102: 3100: 3091: 3090: 3086: 3073: 3072: 3068: 3058: 3056: 3048: 3047: 3043: 3033: 3031: 3023: 3022: 3011: 3001: 2999: 2991: 2990: 2986: 2981: 2977: 2970: 2956: 2952: 2921: 2917: 2886: 2882: 2876:Wayback Machine 2867: 2863: 2858: 2851: 2846: 2842: 2835: 2817: 2813: 2808: 2799: 2794: 2783: 2778: 2774: 2769: 2765: 2758: 2740: 2733: 2724: 2722: 2720:livescience.com 2712: 2708: 2699: 2697: 2684: 2683: 2679: 2670: 2666: 2657: 2655: 2647: 2646: 2642: 2637: 2594: 2587: 2573: 2566: 2561: 2540: 2535: 2531: 2516: 2512: 2507: 2480: 2475: 2471: 2466: 2462: 2457: 2448: 2443: 2430: 2417: 2415: 2413: 2393:Roberts, Edmund 2390: 2386: 2379:Lecky, Squire, 2378: 2374: 2362: 2360: 2348: 2344: 2332: 2330: 2321: 2317: 2308: 2306: 2293: 2286: 2277: 2275: 2262: 2258: 2253: 2242: 2229: 2228: 2224: 2215: 2211: 2195: 2194: 2188: 2186: 2179:"Archived copy" 2177: 2176: 2172: 2165: 2151: 2147: 2132: 2128: 2123: 2119: 2114: 2110: 2103: 2089: 2078: 2073: 2040: 2035: 2033: 2030: 1994: 1981:Barbara Tversky 1971:. According to 1928: 1889: 1876:learned society 1838:STCW Convention 1827: 1822: 1814:Main articles: 1812: 1787:related to the 1754: 1752:Land navigation 1737: 1702:risk management 1698:nautical charts 1665: 1659: 1607: 1602: 1597: 1588: 1582: 1579: 1572:needs expansion 1557: 1549:Main articles: 1547: 1515:50th Space Wing 1497:synchronization 1397: 1391: 1351: 1341: 1264:multilateration 1233:broadcast of a 1194: 1186:Main articles: 1184: 1172: 1140: 1128:Polaris missile 1108: 1102: 1085: 1067: 1024: 1018: 973: 967: 913: 907: 899: 815:position fixing 762:Land navigation 610: 601: 595: 548:east and west. 526: 520: 480: 474: 465: 372: 354: 319: 204:Bartolomeu Dias 169:Arte de Navegar 135:and existed in 129:land astrolabes 107: 101: 95: 35: 28: 23: 22: 15: 12: 11: 5: 5432: 5422: 5421: 5416: 5399: 5398: 5396: 5395: 5390: 5385: 5380: 5375: 5369: 5367: 5366:Related topics 5363: 5362: 5360: 5359: 5354: 5349: 5344: 5339: 5334: 5329: 5324: 5319: 5314: 5308: 5303: 5297: 5295: 5289: 5288: 5286: 5285: 5280: 5275: 5270: 5268:BDS / BeiDou-1 5264: 5262: 5258: 5257: 5255: 5254: 5249: 5244: 5239: 5234: 5229: 5223: 5221: 5217: 5216: 5209: 5208: 5201: 5194: 5186: 5177: 5176: 5174: 5173: 5168: 5163: 5158: 5153: 5148: 5143: 5138: 5133: 5128: 5123: 5121:Propeller walk 5118: 5113: 5108: 5106:Ship stability 5103: 5098: 5096:Nautical terms 5093: 5088: 5083: 5078: 5076:Ice navigation 5073: 5068: 5062: 5060: 5054: 5053: 5048: 5047: 5040: 5033: 5025: 5016: 5015: 5013: 5012: 5002: 4991: 4988: 4987: 4984: 4983: 4981: 4980: 4974: 4972: 4966: 4965: 4963: 4962: 4956: 4954: 4948: 4947: 4945: 4944: 4939: 4938: 4937: 4924: 4922: 4916: 4915: 4913: 4912: 4911: 4910: 4905: 4900: 4895: 4890: 4882: 4877: 4876: 4875: 4870: 4860: 4855: 4850: 4849: 4848: 4841: 4834: 4821: 4819: 4810: 4806: 4805: 4803: 4802: 4801: 4800: 4790: 4789: 4788: 4783: 4773: 4768: 4763: 4758: 4753: 4747: 4745: 4741: 4740: 4738: 4737: 4735:List of events 4732: 4731: 4730: 4725: 4715: 4710: 4709: 4708: 4697: 4695: 4691: 4690: 4688: 4687: 4686: 4685: 4680: 4675: 4670: 4665: 4655: 4654: 4653: 4648: 4643: 4638: 4633: 4623: 4622: 4621: 4610: 4608: 4604: 4603: 4601: 4600: 4595: 4590: 4584: 4582: 4576: 4575: 4572: 4571: 4569: 4568: 4563: 4558: 4552: 4550: 4546: 4545: 4543: 4542: 4537: 4532: 4526: 4524: 4517: 4511: 4510: 4507: 4506: 4504: 4503: 4498: 4493: 4487: 4485: 4481: 4480: 4478: 4477: 4472: 4467: 4465:Eye protectors 4462: 4461: 4460: 4455: 4450: 4439: 4437: 4433: 4432: 4430: 4429: 4424: 4419: 4413: 4411: 4404: 4400: 4399: 4396: 4395: 4393: 4392: 4387: 4382: 4377: 4372: 4366: 4364: 4360: 4359: 4357: 4356: 4351: 4346: 4341: 4336: 4330: 4328: 4324: 4323: 4321: 4320: 4319: 4318: 4313: 4302: 4300: 4290: 4289: 4287: 4286: 4281: 4276: 4271: 4265: 4263: 4250: 4246: 4245: 4243: 4242: 4237: 4231: 4228: 4227: 4220: 4219: 4212: 4205: 4197: 4188: 4187: 4185: 4184: 4172: 4160: 4145: 4142: 4141: 4139: 4138: 4133: 4128: 4123: 4118: 4112: 4110: 4106: 4105: 4103: 4102: 4097: 4092: 4087: 4082: 4077: 4072: 4067: 4062: 4056: 4054: 4048: 4047: 4045: 4044: 4039: 4037:Geopositioning 4034: 4032:Remote Sensing 4029: 4027:Photogrammetry 4024: 4019: 4014: 4009: 4004: 3999: 3998: 3997: 3992: 3981: 3979: 3975: 3974: 3972: 3971: 3966: 3960: 3958: 3954: 3953: 3946: 3945: 3938: 3931: 3923: 3917: 3916: 3910: 3900: 3899:External links 3897: 3895: 3894: 3889: 3874: 3864:Chisholm, Hugh 3846: 3836:Chisholm, Hugh 3825: 3819: 3806: 3804:on 2007-03-07. 3785: 3779: 3762: 3749: 3734: 3728: 3715: 3709: 3692: 3670:Air Navigation 3667:(March 2001). 3661: 3655: 3642: 3636: 3619: 3609: 3607: 3604: 3601: 3600: 3573:(2): 152–165. 3544: 3497: 3490: 3457: 3430:(4): 189–208. 3410: 3384: 3360: 3348: 3315: 3288:(3): 138–146. 3268: 3214: 3193: 3171: 3149: 3128: 3109: 3084: 3066: 3041: 3009: 2984: 2975: 2969:978-3540747888 2968: 2950: 2931:(4): 246–284. 2915: 2896:(4): 319–350. 2880: 2861: 2849: 2840: 2833: 2811: 2797: 2781: 2772: 2763: 2756: 2731: 2706: 2677: 2664: 2640: 2592: 2585: 2564: 2538: 2529: 2510: 2478: 2469: 2460: 2446: 2428: 2411: 2384: 2372: 2342: 2315: 2284: 2256: 2240: 2222: 2209: 2170: 2163: 2145: 2126: 2117: 2108: 2101: 2075: 2074: 2072: 2069: 2068: 2067: 2062: 2057: 2052: 2046: 2045: 2029: 2026: 1993: 1990: 1927: 1924: 1888: 1885: 1865:air navigation 1826: 1823: 1811: 1808: 1753: 1750: 1736: 1733: 1724:Ice navigation 1661:Main article: 1658: 1655: 1647: 1646: 1643: 1640: 1637: 1634: 1631: 1628: 1625: 1622:prime vertical 1618: 1615: 1606: 1603: 1601: 1598: 1596: 1593: 1590: 1589: 1569: 1567: 1546: 1543: 1489:time reference 1485:land surveying 1451:European Union 1442:(GPS) and the 1390: 1387: 1340: 1337: 1183: 1180: 1171: 1168: 1145:Apollo program 1139: 1136: 1115:dead reckoning 1101: 1098: 1066: 1063: 1042:electrically. 1020:Main article: 1017: 1014: 969:Main article: 966: 963: 926:shallow waters 906: 903: 898: 895: 889: 888: 885: 879: 871: 870: 867: 861: 853: 852: 849: 827: 819: 818: 807: 806: 795: 781: 773: 772: 769: 759: 751: 750: 747: 740: 732: 731: 728: 716:dead reckoning 712: 704: 703: 699: 698: 695: 692: 679: 678: 667: 664: 661: 658: 644:dead reckoning 626:nautical chart 609: 606: 594: 591: 570:lunar distance 530:prime meridian 519: 516: 473: 470: 467: 466: 464: 463: 456: 449: 441: 438: 437: 412: 411: 399: 398: 391: 390: 382: 381: 374: 373: 364: 353: 352:Basic concepts 350: 318: 315: 94: 91: 55:of a craft or 26: 9: 6: 4: 3: 2: 5431: 5420: 5417: 5415: 5412: 5411: 5409: 5394: 5391: 5389: 5386: 5384: 5381: 5379: 5378:Kalman filter 5376: 5374: 5371: 5370: 5368: 5364: 5358: 5355: 5353: 5350: 5348: 5345: 5343: 5340: 5338: 5335: 5333: 5330: 5328: 5325: 5323: 5320: 5318: 5315: 5312: 5309: 5307: 5304: 5302: 5299: 5298: 5296: 5294: 5290: 5284: 5281: 5279: 5276: 5274: 5271: 5269: 5266: 5265: 5263: 5259: 5253: 5252:IRNSS / NAVIC 5250: 5248: 5247:GPS / NavStar 5245: 5243: 5240: 5238: 5235: 5233: 5230: 5228: 5225: 5224: 5222: 5218: 5214: 5207: 5202: 5200: 5195: 5193: 5188: 5187: 5184: 5172: 5169: 5167: 5164: 5162: 5159: 5157: 5154: 5152: 5149: 5147: 5144: 5142: 5139: 5137: 5134: 5132: 5129: 5127: 5124: 5122: 5119: 5117: 5114: 5112: 5111:Hydrodynamics 5109: 5107: 5104: 5102: 5099: 5097: 5094: 5092: 5089: 5087: 5084: 5082: 5079: 5077: 5074: 5072: 5069: 5067: 5064: 5063: 5061: 5059: 5055: 5046: 5041: 5039: 5034: 5032: 5027: 5026: 5023: 5011: 5003: 5001: 4993: 4992: 4989: 4979: 4976: 4975: 4973: 4971: 4967: 4961: 4958: 4957: 4955: 4953: 4949: 4943: 4940: 4935: 4931: 4930: 4929: 4926: 4925: 4923: 4921: 4917: 4909: 4906: 4904: 4901: 4899: 4896: 4894: 4891: 4889: 4886: 4885: 4883: 4881: 4878: 4874: 4871: 4869: 4866: 4865: 4864: 4861: 4859: 4856: 4854: 4851: 4846: 4842: 4839: 4835: 4832: 4828: 4827: 4826: 4823: 4822: 4820: 4818: 4814: 4811: 4807: 4799: 4796: 4795: 4794: 4791: 4787: 4784: 4782: 4779: 4778: 4777: 4774: 4772: 4769: 4767: 4764: 4762: 4759: 4757: 4754: 4752: 4749: 4748: 4746: 4742: 4736: 4733: 4729: 4726: 4724: 4721: 4720: 4719: 4716: 4714: 4713:List of clubs 4711: 4707: 4704: 4703: 4702: 4699: 4698: 4696: 4692: 4684: 4681: 4679: 4676: 4674: 4671: 4669: 4666: 4664: 4661: 4660: 4659: 4656: 4652: 4649: 4647: 4644: 4642: 4639: 4637: 4634: 4632: 4629: 4628: 4627: 4624: 4620: 4617: 4616: 4615: 4612: 4611: 4609: 4605: 4599: 4596: 4594: 4591: 4589: 4586: 4585: 4583: 4581: 4577: 4567: 4564: 4562: 4559: 4557: 4554: 4553: 4551: 4547: 4541: 4540:SportSoftware 4538: 4536: 4533: 4531: 4528: 4527: 4525: 4521: 4518: 4516: 4512: 4502: 4499: 4497: 4494: 4492: 4489: 4488: 4486: 4482: 4476: 4473: 4471: 4468: 4466: 4463: 4459: 4456: 4454: 4451: 4449: 4446: 4445: 4444: 4441: 4440: 4438: 4434: 4428: 4425: 4423: 4420: 4418: 4417:Control point 4415: 4414: 4412: 4408: 4405: 4401: 4391: 4388: 4386: 4383: 4381: 4378: 4376: 4375:Alleycat race 4373: 4371: 4368: 4367: 4365: 4361: 4355: 4352: 4350: 4347: 4345: 4342: 4340: 4337: 4335: 4332: 4331: 4329: 4325: 4317: 4314: 4312: 4309: 4308: 4307: 4304: 4303: 4301: 4299: 4295: 4291: 4285: 4282: 4280: 4277: 4275: 4272: 4270: 4267: 4266: 4264: 4262: 4258: 4254: 4251: 4247: 4241: 4238: 4236: 4233: 4232: 4229: 4225: 4218: 4213: 4211: 4206: 4204: 4199: 4198: 4195: 4183: 4182: 4173: 4171: 4170: 4161: 4159: 4158: 4147: 4146: 4143: 4137: 4134: 4132: 4129: 4127: 4124: 4122: 4119: 4117: 4114: 4113: 4111: 4107: 4101: 4098: 4096: 4093: 4091: 4088: 4086: 4083: 4081: 4078: 4076: 4073: 4071: 4068: 4066: 4063: 4061: 4058: 4057: 4055: 4049: 4043: 4042:Virtual globe 4040: 4038: 4035: 4033: 4030: 4028: 4025: 4023: 4020: 4018: 4015: 4013: 4010: 4008: 4005: 4003: 4002:Earth's orbit 4000: 3996: 3993: 3991: 3988: 3987: 3986: 3983: 3982: 3980: 3976: 3970: 3967: 3965: 3962: 3961: 3959: 3955: 3951: 3944: 3939: 3937: 3932: 3930: 3925: 3924: 3921: 3914: 3911: 3908: 3907: 3903: 3902: 3892: 3886: 3882: 3881: 3875: 3871: 3870: 3865: 3860: 3855: 3851: 3847: 3843: 3842: 3837: 3832: 3826: 3822: 3816: 3812: 3807: 3800: 3796: 3795: 3790: 3786: 3782: 3776: 3771: 3770: 3763: 3752: 3746: 3742: 3741: 3735: 3731: 3725: 3721: 3716: 3712: 3706: 3702: 3698: 3693: 3683:on 2007-03-25 3679: 3672: 3671: 3666: 3662: 3658: 3652: 3648: 3643: 3639: 3633: 3629: 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2736: 2721: 2717: 2710: 2696:on 2017-03-16 2695: 2691: 2687: 2681: 2674: 2668: 2654: 2650: 2644: 2635: 2633: 2631: 2629: 2627: 2625: 2623: 2621: 2619: 2617: 2615: 2613: 2611: 2609: 2607: 2605: 2603: 2601: 2599: 2597: 2588: 2582: 2578: 2571: 2569: 2559: 2557: 2555: 2553: 2551: 2549: 2547: 2545: 2543: 2533: 2527: 2523: 2519: 2514: 2505: 2503: 2501: 2499: 2497: 2495: 2493: 2491: 2489: 2487: 2485: 2483: 2473: 2464: 2455: 2453: 2451: 2441: 2439: 2437: 2435: 2433: 2425: 2414: 2412:9780608404066 2408: 2404: 2403: 2398: 2394: 2388: 2382: 2376: 2369: 2359: 2355: 2354: 2346: 2339: 2328: 2327: 2319: 2305:on 2007-09-27 2304: 2300: 2299: 2291: 2289: 2274:on 2007-09-27 2273: 2269: 2268: 2260: 2251: 2249: 2247: 2245: 2236: 2232: 2226: 2219: 2213: 2205: 2199: 2185:on 2012-11-22 2184: 2180: 2174: 2166: 2160: 2156: 2149: 2143: 2142:0-586-08308-1 2139: 2135: 2130: 2121: 2112: 2104: 2098: 2094: 2087: 2085: 2083: 2081: 2076: 2066: 2063: 2061: 2058: 2056: 2053: 2051: 2048: 2047: 2043: 2032: 2025: 2021: 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Index

Navigational
Navigation (disambiguation)

oil tanker
movement
vehicle
marine navigation
navigators
position
direction
orienteering
pedestrian
History of navigation
History of geodesy
seven mechanical arts
Polynesian navigation
Marshall Islands Stick Charts of Ocean Swells
mariner's astrolabe
land astrolabes
Hellenistic period
classical antiquity
Islamic Golden Age
Spanish
Ramon Llull
Portuguese
Portuguese discoveries
Age of Discovery
Martín Cortés de Albacar
archipendulum
Egyptian pyramids

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