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Rotation only controls day and night. Seasons are a result of the 23.5 degree tilt of the earth.
No. Erosion could not have such a dramatic effect on Earth's rotation. The tilt on Earth's axis is likely a result of a collision with another planet early in Earth's history. This same collision formed the moon.
Mars is the planet that has a tilt axis similar to Earth's, with Mars having a tilt of about 25 degrees compared to Earth's 23.5 degrees. This similarity in tilt axis is one reason why Mars experiences seasons similar to Earth.
They both have tilts but if the planet does tilt anymore there's a problem.
Earth's 23 degree tilt is likely the result of a major impact very early in the planet's history, which resulted in the formation of our moon.
Huge amounts of energy would be required to increase or decrease the tilt of the Earth, and the result would likely be devastation over the entire surface of the planet.
No, there is no evidence to suggest that Nibiru, a hypothetical planet, is going to tilt the Earth. Nibiru is considered to be a conspiracy theory and there is no scientific basis for its existence or impact on Earth's tilt. Earth's tilt is primarily determined by its natural processes and interactions with other celestial bodies in the solar system.
It is the result of how the earth was formed.
Yes, tilt is important for creating seasons on a planet. Earth's tilt allows different parts of the planet to receive varying amounts of sunlight throughout the year, leading to the seasonal changes we experience. Without tilt, a planet would not have distinct seasons.
the tilt of the planet
If an Earth-like planet had a 35-degree axial tilt, it would experience more extreme seasonal variations compared to Earth’s current 23.5-degree tilt. The greater tilt would lead to more pronounced differences in temperature and daylight hours between summer and winter, particularly at higher latitudes. This could result in harsher winters and hotter summers, potentially affecting ecosystems, weather patterns, and the distribution of climates across the planet. Overall, the climate would likely be less stable and more dynamic than that of Earth.
which planet has the slowest orbital velocity