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10. Do you think Mars rotates? Explain your answer.

Ask by Coleman Potter. in the United States
Feb 04,2025

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Mars does rotate on its axis, completing a full turn every approximately 24.6 hours. This rotation causes day and night cycles and influences atmospheric movements and seasonal changes on the planet.

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Mind Expander

Absolutely, Mars does rotate! In fact, it has a rotation period close to that of Earth, taking about 24.6 hours to complete one full spin on its axis. This means a day on Mars is just a bit longer than a day on Earth, which is quite fascinating for those dreaming of exploring it. Mars' axial tilt is about 25 degrees, similar to Earth's 23.5 degrees, resulting in seasons much like our own. However, due to its longer orbit around the Sun—about 687 Earth days—those seasons on Mars last almost twice as long. So, get ready for a Martian summer that feels never-ending!

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Physics South Africa Feb 04, 2025

Latest Physics Questions

1. A stone is dropped from the top of a building and hits the ground travelling at Checkpoint 2 \( 45 \mathrm{~m} \cdot \mathrm{~s}^{-1} \). Ignore the effects of air resistance. Calculate the height of the building. 2. A ball is thrown upward at an unknown initial velocity. It takes \( 3,2 \mathrm{~s} \) to reach its highest point. Ignore the effects of air resistance. Calculate the initial velocity of the ball Exercise 2.1 Ignore the effects of air resistance. 1. A bomb falls out of an aircraft. To break the sound barrier of \( 340 \mathrm{~m} . \mathrm{s}^{-1} \) : a) how far does it need to fall? b) how long will this take? 2. A stone is thrown vertically upward from ground level with a velocity of \( 25 \mathrm{~m} . \mathrm{s}^{-1} \). Calculate: a) the maximum height reached. b) the time taken to reach its maximum height. 3. A stone is dropped from a bridge and is seen to splash into the water 3 s later. Calculate: a) the height of the bridge. b) the velocity with which the stone strikes the water. 4. A brick falls off a scaffold at a height of 80 m above the ground. Calculate: a) the magnitude of its velocity after falling for 2 s . b) the magnitude of its velocity when it hits the ground. c) the time taken to fall to the ground. 5. A stone, dropped from the top of a lighthouse, strikes the rocks below at a speed of \( 50 \mathrm{~m} \cdot \mathrm{~s}^{-1} \). Calculate the height of the lighthouse. 6. A stone is thrown vertically upward and reaches a height of 10 m . a) What was the initial velocity of the stone as it left the thrower's hand?
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