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on a compass it caused the compass to point to the magnet instead of magnetic north, I think that South will point to the magnet (if I remember correctly)

You can get around this by using our patent which allows a magnetic radio speaker in a radio direction finder to sit directly next to a compass - by aligning the radio speaker to sit directly south of the compass it does not effect the accuracy.

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15y ago

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Can a magnetic compass reading change?

Yes, a magnetic compass reading can change due to fluctuations in the Earth's magnetic field, interference from nearby magnetic objects, or errors in calibration. It is important to regularly check and correct the compass reading for accurate navigation.


Why does a compass always work?

A compass works by aligning itself with the Earth's magnetic field. The needle of the compass is magnetized, pointing towards the magnetic north pole. As long as the Earth's magnetic field remains stable and the compass is not influenced by nearby magnetic objects, it will always point north.


Why do compasses stop working when they are to close to metal objects?

Metal objects can interfere with the Earth's magnetic field around the compass, causing inaccurate readings. This is because the metal objects can create their own magnetic fields that disrupt the compass needle's ability to point towards the Earth's magnetic pole.


What might interfere with the compass's pointing north?

Magnetic objects nearby, electromagnetic interference, and changes in the Earth's magnetic field can interfere with a compass pointing north. Other factors such as metal structures or power lines can also affect the accuracy of a compass reading.


What are the errors of a magnetic compass?

The errors of a magnetic compass include deviation, which is caused by local magnetic fields on the vessel, and variation, which is the difference between true north and magnetic north. Other errors can be caused by inclination, interference from metallic objects, and incorrect calibration. It is important to regularly check and adjust the compass to minimize these errors for accurate navigation.

Related Questions

Will titanium effect a magnetic compass?

Yes, titanium is non-magnetic and does not affect the accuracy of a magnetic compass. The compass will still function normally near titanium objects.


What metal makes compass go haywire?

Iron can make a compass go haywire as it can create magnetic interference. When a compass is near iron or magnetic objects, it can disrupt the Earth's magnetic field that the compass relies on for accurate readings.


Can a magnetic compass reading change?

Yes, a magnetic compass reading can change due to fluctuations in the Earth's magnetic field, interference from nearby magnetic objects, or errors in calibration. It is important to regularly check and correct the compass reading for accurate navigation.


Why does a compass always work?

A compass works by aligning itself with the Earth's magnetic field. The needle of the compass is magnetized, pointing towards the magnetic north pole. As long as the Earth's magnetic field remains stable and the compass is not influenced by nearby magnetic objects, it will always point north.


Why do compasses stop working when they are to close to metal objects?

Metal objects can interfere with the Earth's magnetic field around the compass, causing inaccurate readings. This is because the metal objects can create their own magnetic fields that disrupt the compass needle's ability to point towards the Earth's magnetic pole.


What happens when a magnetic compass is held in space far away from earth's magnetic field....will it be influenced by the other stellar objects which may or may not have magnetic poles of their own?

How far away? Compasses function based on their interaction with the Earth's magnetic field. If a person were to take a compass outside of that field, it would cease to provide any relevant information. Of course, no human has ever been anywhere near that far away, but interplanetary robots and probes have.


What might interfere with the compass's pointing north?

Magnetic objects nearby, electromagnetic interference, and changes in the Earth's magnetic field can interfere with a compass pointing north. Other factors such as metal structures or power lines can also affect the accuracy of a compass reading.


What are the errors of a magnetic compass?

The errors of a magnetic compass include deviation, which is caused by local magnetic fields on the vessel, and variation, which is the difference between true north and magnetic north. Other errors can be caused by inclination, interference from metallic objects, and incorrect calibration. It is important to regularly check and adjust the compass to minimize these errors for accurate navigation.


What will affect a compass reading?

Magnetic fields, metal objects, electrical equipment, and proximity to the Earth's magnetic poles can all affect a compass reading. These external influences can cause the needle to deviate from pointing true north.


What is more important to a ship a caravel astrolabe or magnetic compass?

Both the caravel astrolabe and the magnetic compass are important navigation tools for a ship, but the magnetic compass is generally considered more crucial. The compass provides a reliable and constant indication of the ship's direction, allowing for accurate navigation even when visibility is limited. The caravel astrolabe, on the other hand, is used to measure the altitude of celestial objects to determine latitude, and while it is helpful for navigation, it is not as essential as the magnetic compass.


What is local attraction on compass survey?

The local attraction are the error affecting device available at near by the compass while doing surveying. the local attraction is the effect of the magnetic materials on the compass and gets the incorrect bearing.


What depend on a magnetic compass?

The navigator and hence the exploration group, who trust navigation to the navigator. A2 Even modern ships have magnetic compasses. They are a fail safe alternative to all the other electronic navigation aids, because they require no power to work.