"IF Earth's magnetic north pole is not located at the geographic north pole why is a compass useful for determining direction?"
A compass. The North magnetic pole is in the direction of the N on the compass. Therefore, the North magnetic pole is in fact a magnetic field south pole since it *attracts* the north magnetic field pole of the compass magnet.
The angle between the geographic North Pole and the direction in which a compass needle points is called magnetic declination. This angle varies depending on the location on Earth and can be used to adjust navigation using a compass.
False. A compass needle points to magnetic north, which is not the same as geographic north. Magnetic north is the direction that a compass points toward the Earth's magnetic pole, which is currently located in the Arctic region, while geographic north refers to the North Pole. The difference between these two directions is known as magnetic declination and varies depending on your location.
It is a device for determining aircraft direction using the magnetic field of the earth. See link to Earth inductor compass
A compass points north due to Earth's magnetic field, which has magnetic poles near the geographic poles. The needle of a compass is a small magnet that aligns itself with the magnetic field, causing one end (the north-seeking pole) to point toward the magnetic north pole. This alignment occurs because opposite magnetic poles attract, allowing the compass to provide a reliable indication of direction.
A compass. The North magnetic pole is in the direction of the N on the compass. Therefore, the North magnetic pole is in fact a magnetic field south pole since it *attracts* the north magnetic field pole of the compass magnet.
magnetic compass
A compass is an instrument for determining direction consisting essentially of a freely suspended magnetic needle that points toward the magnetic north.
The angle between the geographic North Pole and the direction in which a compass needle points is called magnetic declination. This angle varies depending on the location on Earth and can be used to adjust navigation using a compass.
A compass is a commonly used tool for determining direction. It works by pointing towards the Earth's magnetic north pole.
A spinning compass is significant in navigation because it points towards the Earth's magnetic north, helping determine direction. However, if the compass spins too fast or is near magnetic objects, it can give inaccurate readings, affecting the accuracy of determining direction.
This is the description of a magnetic compass.
The line with which a compass aligns is called "magnetic north." This term refers to the direction that a compass points, which is toward the Earth's magnetic north pole. Unlike true north, which is the geographic North Pole, magnetic north can vary based on geographic location due to the Earth's magnetic field fluctuations. This alignment helps navigators determine direction and orientation.
A compass will tell you which direction you are traveling in.
The Earth has a magnetic field approximately like a magnetic dipole, with the magnetic field S pole near the Earth's geographic north pole and the other magnetic field N pole near the Earth's geographic south pole. A compass can determining direction relative to the Earth's magnetic poles by using a magnetized pointer (usually marked on the North end) which is pivoting free to align itself with Earth's magnetic field.
Magnetic.
A compass has a magnetized needle that aligns with Earth's magnetic field, which causes it to point towards the magnetic North Pole. The magnetic energy within the compass needle allows it to maintain this alignment and provide a reliable reference for determining direction.