How does solar weather affect Earth's magnetosphere? Select the two correct answers.(1 point)

Responses

It develops solar wind.
It develops solar wind.

It generates auroras.
It generates auroras.

It causes geomagnetic storms.
It causes geomagnetic storms.

It forms radiation belts.

3 answers

The correct answers are:

- It causes geomagnetic storms. Geomagnetic storms occur when solar flares or coronal mass ejections (CMEs) from the sun interact with Earth's magnetosphere, causing disturbances in the magnetic field.
- It generates auroras. When charged particles from solar storms enter Earth's atmosphere and interact with its magnetic field, they can produce colorful light displays known as auroras.
Which describes a difference between solar wind and a geomagnetic storm? Select the three correct answers.(2 points)
Responses

Geomagnetic storms are associated with CMEs; solar wind is associated with the constant activity in the sun.
Geomagnetic storms are associated with CMEs; solar wind is associated with the constant activity in the sun.

Geomagnetic storms are constant; solar wind occurs only occasionally.
Geomagnetic storms are constant; solar wind occurs only occasionally.

Geomagnetic storms travel at the speed of light, while solar wind takes four days to reach Earth.
Geomagnetic storms travel at the speed of light, while solar wind takes four days to reach Earth.

Geomagnetic storms occur only occasionally; solar wind is constant.
Geomagnetic storms occur only occasionally; solar wind is constant.

Solar wind sometimes results in geomagnetic storms; geomagnetic storms do not cause solar wind.
The correct answers are:

- Geomagnetic storms are associated with CMEs; solar wind is associated with the constant activity in the sun. Geomagnetic storms occur when Earth's magnetosphere interacts with the charged particles and magnetic fields from coronal mass ejections (CMEs) from the sun. Solar wind, on the other hand, is a constant stream of charged particles that flows from the sun and interacts with Earth's magnetosphere.
- Geomagnetic storms travel at the speed of light, while solar wind takes four days to reach Earth. Geomagnetic storms are the result of fast-moving CMEs, which can travel at the speed of light and reach Earth quickly. Solar wind, however, takes around four days to reach Earth from the sun.
- Solar wind sometimes results in geomagnetic storms; geomagnetic storms do not cause solar wind. Solar wind can occasionally lead to geomagnetic storms when the charged particles and magnetic fields interact with Earth's magnetosphere. Geomagnetic storms themselves do not cause solar wind; they are caused by the interaction between solar activity and Earth's magnetosphere.