Especialidades JA/Orientación/Respuestas

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Orientación
Asociación General

Recreación


Destreza: 2
Año de introducción: 1956



Template:Division variant (GC)/es




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Conexión Logros para la Investidura: Esta especialidad está relacionada con los requisitos de Logros para la Investidura para VIAJERO AL AIRE LIBRE Vida al Aire Libre que requiere completar esta especialidad o una de 4 otras, no obtenida previamente.


Para esta especialidad, necesitará una brújula militar como la del enlace hacia Amazon. También necesitará mapas topográficas que se pueden descargar gratuitamente o se pueden comprar.



1

Explicar qué es un mapa topográfico, lo que se espera encontrar en él y tres usos de él.



2

Identificar al menos 20 signos y símbolos utilizados en los mapas topográficos.


These symbols are used by the U.S. National Park Service:


3

Dar la nomenclatura de una brújula de orientación.


Lensatic Compass


The lensatic compass consists of three major parts: the cover, the base, and the lens.


4

Conocer el significado de los siguientes términos:


4a

Elevación


4b

Curvas de nivel (isolínea)


4c

Norte magnético


4d

Declinación


4e

Escala


4f

Medición


4g

Retro-acimut


4h

Norte verdadero


4i

Acimut


4j

Distancia


4k

Formas de la tierra




5

Demostrar cómo encontrar el acimut magnético.



6

Demostrar la manera de andar con un acimut magnético.


Compass preset at 320 degrees.



7

Conocer dos métodos para corregir la declinación.


Method #1

(These directions assume your orienting arrow lines up with the North indicator on your compass dial, meaning the compass has not been adjusted for declination).

G) If local declination is positive, then subtract the declination amount (turn the dial clockwise). If local declination is negative, then add the declination amount (turn the dial counter-clockwise).

H) Again, with the direction of travel arrow pointing directly away from you, rotate your body and compass all in one motion until the red magnetic needle overlays the orienting arrow. Sight a landmark along this direction of travel and proceed to it. Repeat this step until you reach your destination.

Adjustable Declination Compasses:

A compass with adjustable declination allows you to rotate the orienting arrow independently of the compass dial. If you have such a compass, you may calculate your map bearing without adding or subtracting the amount of local magnetic declination. To calibrate your compass in this fashion, rotate the inner liquid capsule (or turn the screw with the key) until the orienting arrow deviates from the compass ring’s north indicator by the amount & direction of the local magnetic declination. For example, if local declination is 10 degrees east of true north, rotate the inner liquid capsule (or turn the screw with the key) until the orienting arrow points to 10 degrees east. If using Method #1, you do not need to add or subtract as indicated in step E; just make sure compass ring north (not the orienting arrow) agrees with map north as directed in step D If using Method #2, skip steps G and H; again, be sure compass ring north (not the orienting arrow) agrees with map north as directed in step E.

Magnetic Declination Varies Considerably Across The United States

The magnetic needle in a compass is attracted by the magnetism of the Earth, and therefore always points to the constantly shifting Magnetic North Pole. The Geographic North Pole is static and is located about 1200 miles north of the Magnetic Pole. Maps and directions are usually oriented toward the Geographic Pole, also referred to as "True North."

Magnetic declination is the direction and amount of variation between the Magnetic Pole and True North. The amount and direction of declination depends upon how those two poles align relative to a given point on Earth. When the two poles align, declination is zero, and the line of zero declination is termed the agonic line. At points west of the agonic line, a magnetic needle will point east of true north (positive declination). At points east of the agonic line, a magnetic needle will point west of true north (negative declination). There is a pattern, but it does not follow meridians or parallels. Isogonic lines are like magnetic contour lines -they trace a path of constant magnetic declination. Magneticdeclination.jpg


8

Ser capaz de orientarse por sí mismo y un mapa, por inspección y por una brújula.


Place the compass on the map so the baseplate parallels the north-to-south map neat line. Rotate the dial until compass ring North agrees with map North. Add or subtract the amount needed to adjust for local magnetic declination (subtract if local declination is positive, add if local declination is negative); if your adjustable declination compass is already calibrated for local declination, you don’t need to add or subtract, just make sure compass ring North (not the orienting arrow) agrees with map North. Holding the map and compass steadily (the baseplate should still be on the north-to-south map neat line), rotate the map and compass all in one motion until the red magnetic needle overlays the orienting arrow. Again, make sure there is no interference from metal when you perform this (ex: rebar in concrete). Your map and your compass are now oriented to true north. Compare the physical features around you with your map to help derive your location on the map..


9

Explicar la triangulación y su uso.


Resection is a method of using a compass and a map to determine your current position. The first step is to find a feature of the landscape that you can also identify on the map. This could be a mountain peak, an intersection, a bridge, or even a utility pole (some topographic maps mark where high-voltage lines are, as well as the position of the poles that hold them up). The closer these two landmarks are to 90° offset from one another, the more accurate the resection will be. For instance, if the first landmark is at 115°, choose the second one as close to either 205° (115°+90°) or 25° (115°-90°) as you can. This is not a hard and fast rule, and the prominence of the landmark may well be more important than the 90° offset. Once you have shot an azimuth to the first landmark, calculate the back azimuth, and plot a line on your map from the landmark towards (and past) your current position (which should be somewhere on that line). Be sure to correct for declination when plotting this line. Then shoot the azimuth of the second landmark, and plot it's back azimuth on the map as well, again correcting for declination. If your readings are accurate and your plotting was done carefully, your current position should be very close to where these two lines intersect.


10

Demostrar su habilidad en el uso de un mapa y/o una brújula, siguiendo el curso de una milla (1.6 km) a campo traviesa con un mínimo de cinco puntos de lectura o puntos de control.


References