Mercury has weaker gravity compared to Earth. Its surface gravity is about 38% of Earth's gravity.
Mercury's surface resembles that of Earth's Moon due to its heavily cratered appearance and lack of a significant atmosphere. Both bodies have experienced intense impacts, resulting in a landscape filled with craters of varying sizes. Additionally, Mercury's surface features, such as scarps and basins, can also be compared to those found on the Moon.
The force of gravity on the surface of Mercury is 3.7 ms-2, compared to 9.81 ms-2 on earth.
The gravity on Mercury is about 38% of Earth's gravity, which means that objects weigh less on Mercury compared to Earth. This is due to Mercury's smaller size and mass compared to Earth.
The acceleration due to gravity on Mercury is approximately 3.7 m/s², which is about 38% of the acceleration due to gravity on Earth. This is due to Mercury's smaller mass and radius compared to Earth.
It is the only metal to be fluently on the surface of the earth in room temperature - luise Canyons are physical features that are found on Mercury -Chrissy
The planet Mercury has an acceleration due to gravity of approximately 40% what is felt on Earth. In SI units the gravity of Mercury is 3.7-meter per second per second (m/s^2) as compared to Earth's 9.8.
mercury gravity: earth gravity
Mercury's gravitational field strength is approximately 3.7 m/s^2, which is about 38% of Earth's gravitational field strength. This means that objects on the surface of Mercury would weigh less compared to Earth due to the lower gravitational pull.
The planet Mercury has the most similar cratered surface compared to the moon.
The surfaces of Mercury and Mars share similarities with Earth's surface in that they both have geological features such as craters, valleys, and mountains. Like Earth, Mars shows evidence of past volcanic activity and erosion, indicating a dynamic history. However, unlike Earth, Mercury's surface is heavily cratered and lacks an atmosphere, while Mars has a thin atmosphere but exhibits signs of ancient water flows. These features highlight both the shared processes and distinct evolutionary paths of these planetary bodies.
If you are referring to mass, then the percentage would be: Mercury = 0.330x1024kg Earth = 5.97 x1024kg Percentage = mercury/earth = 0.330x1024kg/5.97 x1024kg *100 = 5.5% If you are referring to diameter, the percentage would be: Mercury = 4879km Earth = 12,756km Percentage = mercury/earth = 4879km/12,756km *100 = 38.2%