Our Earth has a hidden force.
Our Earth has a hidden force.
Earth has a hidden magnetic field. Scientists use a model to study it. They imagine Earth is like a giant bar magnet. This model has two points called geomagnetic poles.
These poles are not the same as the magnetic poles. The magnetic poles move a lot. This is because hot metal moves in the Earth's outer core. The geomagnetic poles are more stable. They help us find where to see auroras. Auroras are the beautiful lights in the sky.
Scientists cannot see the geomagnetic poles directly. They find them by using math and data. They use tools like satellites to measure the field.
Sometimes, the poles switch places. This is called a geomagnetic reversal. North becomes south, and south becomes north. This happens about once every half a million years. We can see proof of this in the ocean. As new ocean floor forms, it traps the magnetic direction. This lets us study the past. The poles also swing in a small oval every day. This happens because of solar wind from the sun.
Earth has a hidden magnetic field that surrounds our whole world. Scientists use a special model to study how this field works. They imagine Earth is like a giant bar magnet sitting at the center. This model has two points called the geomagnetic poles.
To understand this, we must look at how the model works. Scientists imagine a tilted bar magnet inside the Earth. This magnet is tilted about 9.6 degrees from the Earth's rotation axis. The geomagnetic poles are the two points where this imaginary magnet's axis hits the surface.
Researchers have studied these patterns for a very long time. They use data from satellites and special observatories on the ground. They use tools like the International Geomagnetic Reference Field to track changes. Another tool is the U.S. World Magnetic Model, which looks at five-year periods.
There are many specific facts about where these poles are located. In 2017, the North Geomagnetic Pole was at 80.5°N and 72.8°W. The South Geomagnetic Pole was at 80.5°S and 107.2°E.
Nature has some very big changes that happen over long times. Sometimes the North and South poles switch places entirely. This event is called a geomagnetic reversal.
The Earth is surrounded by a magnetic field that helps us understand our planet. Scientists use a model to describe this field called a dipole. A dipole is a simple shape that acts like a bar magnet. The geomagnetic poles are the two points where the axis of this theoretical magnet hits the Earth's surface.
To understand how this works, we must look at the dipole model. Scientists imagine a bar magnet sitting at the very center of the Earth. This imaginary magnet is tilted about 9.6 degrees away from the Earth's rotation axis. The rotation axis is what defines our Geographic North and South Poles. The geomagnetic poles are the antipodal points of this tilted axis. This means they are located exactly opposite each other on the globe.
The real magnetic field is much more complicated than this simple model. The actual magnetic poles move because of the motion of molten iron alloys in the Earth's outer core. This movement is called secular variation. Because the field is not a perfect dipole, the geomagnetic poles and the magnetic poles are in different places. For example, in 2017, the North Geomagnetic Pole was at 80.5°N, 72.8°W. In that same year, the South Geomagnetic Pole was at 80.5°S, 107.2°E.
Scientists track these locations using data from satellites and geomagnetic observatories. They use specific mathematical models to find these points. One model is the International Geomagnetic Reference Field, which covers a long time-span in history. Another is the U.S. World Magnetic Model, which covers a five-year period.
The strength of the Earth's magnetic field changes over time. For instance, the magnetic dipole moment was 7.84 in the year 1990. By the year 2020, that number had decreased to 7.71.
One of the most amazing things about Earth's magnetism is that it can reverse. This event is called a geomagnetic reversal. During a reversal, the geomagnetic north and south poles switch places. This happens roughly once every half a million years. However, the timing can vary greatly between every 10,000 years and every 50 million years.
We can find proof of these reversals at mid-ocean ridges. This is where tectonic plates move apart and allow magma to rise from the mantle. As the magma cools and becomes new ocean floor, the magnetic minerals inside it freeze in place. These minerals align with the direction of the magnetic field at that exact time. By looking at the newest ocean floor and moving toward the older sections, scientists can read the history of the Earth's magnetic field. This connects the study of magnetism to the way our planet's crust is built.
🖼️ Images & Media (2)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
🪜 Step back
Simpler topics to build understanding
What is Nepedia?
A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.