A reproduction of a compass from Photo by: Virginia State Parks staff/wikimedia Photo by: Virginia State Parks staff/ Wikimedia.

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Transcription:

What is a compass? By National Geographic, adapted by Newsela staff on 09.26.17 Word Count 838 Level 810L A reproduction of a compass from 1607. Photo by: Virginia State Parks staff/wikimedia Photo by: Virginia State Parks staff/ Wikimedia. A compass is a device that shows direction. It is one of the most important instruments for navigation. This article is available at 5 reading levels at https://newsela.com. 1

Magnetic compasses are the most well-known type of compass. The design and construction of this type of compass have changed over time. But the idea of how it works is the same. Magnetic compasses have a magnetized needle. The needle is allowed to rotate so it lines up with the Earth's magnetic field. The ends point to what are known as magnetic north and magnetic south. This article is available at 5 reading levels at https://newsela.com. 2

Very early compasses were made of a magnetized needle. It was attached to a piece of wood or cork that floated in a dish of water. As the needle would settle, the marked end would point toward magnetic north. Historians think China was the first to create a magnetic compass for navigation. Chinese scientists may have developed these tools as early as the 11th or 12th century. Western Europeans soon followed at the end of the 12th century. Adjustments And Adaptations By the 1400s, explorers realized that the north indicated by a compass was not the same as Earth s true geographic north. This is called variation. It is also called magnetic declination. Variation is not a huge problem when using magnetic compasses near the equator. But the difference is much greater closer to the North and South Poles. It can lead someone offcourse. This article is available at 5 reading levels at https://newsela.com. 3

Other adaptations have been made to magnetic compasses over time. Ships used to be made out of wood. Eventually they were made out of iron and steel. The magnetism of these newer ships affected compass readings. This difference is called deviation. One way to address deviation is to put iron balls near the compass. Another is to use bar magnets. Doing either of those things helps keep the compass working correctly. Deviation also matters on airplanes. There is metal in airplanes. Magnetic compasses come in many forms. The most basic are compasses you can carry around. People often use those on hikes. Magnetic compasses can have other features. Some of them have magnifiers for use with maps. Some have a prism or a mirror that allows you to This article is available at 5 reading levels at https://newsela.com. 4

see the landscape as you follow the compass reading. Other compasses have markings in Braille for the visually impaired. The most complicated compasses are complex devices on ships or planes. Those devices can calculate and adjust for motion, variation and deviation. Other Types Of Compasses Some compasses do not use Earth s magnetism to indicate direction. The gyrocompass, invented in the early 20th century, uses a spinning device called a gyroscope. The device is able to follow Earth s axis of rotation to point to true north. Since magnetic north is not measured, variation is not an issue. Once the gyroscope begins spinning, motion will not disturb it. This type of compass is often used on ships and aircraft. A solar compass uses the sun as a navigational tool. The most common method is to use a compass card and the angle of the shadow of the sun to indicate direction. Even without a compass card, there are techniques that use the sun as a compass. One method is to make a shadow stick. A shadow stick is a stick placed upright in the ground. Pebbles placed around the stick and a piece of string to track the shadow of the sun across the sky help a navigator determine the directions of east and west. This article is available at 5 reading levels at https://newsela.com. 5

Another type of solar compass is an old-fashioned analog (not digital) watch. Using the watch s hands and the position of the sun, it is possible to determine north or south. Simply hold the watch parallel to the ground (in your hand) and point the hour hand in the direction of the sun. Find the angle between the hour hand and the 12 o clock mark. This is the northsouth line. In the Southern Hemisphere, north will be the direction closer to the sun. In the Northern Hemisphere, north will be the direction further from the sun. Global positioning system (GPS) receivers have begun to take the place of compasses. A GPS receiver coordinates with satellites orbiting the Earth and monitoring stations on Earth to pinpoint the receiver's location. GPS receivers can plot someone's location on a map. Unless large objects block signals, readings are usually accurate to within about 50 feet. There is a lot of technology now that helps people get where they need to go. GPS is one example. The compass is still a valuable tool, though. Many airplanes and ships still use highly advanced compasses. For people traveling on foot or in small boats, a pocket compass is still useful. This article is available at 5 reading levels at https://newsela.com. 6