Because you don't understand proper grammar
An astronaut will weigh less on the moon compared to on Earth due to the moon's lower gravity. The moon's gravitational pull is about 1/6th of Earth's, so an astronaut's weight would be significantly reduced on the moon.
The astronaut's inertia on the moon would be the same as on Earth, as inertia is an object's resistance to a change in motion. However, due to the moon's lower gravity, the astronaut would weigh less and experience a reduced force opposing their motion compared to Earth.
An astronaut can carry more massive equipment on the moon than on Earth because the moon has lower gravity compared to Earth. This means there is less gravitational force pulling down on the equipment, making it easier to lift and carry heavier loads.
The mass of an astronaut remains the same whether they are on the moon or on Earth. Mass is a measure of the amount of matter an object has and is independent of the gravitational force acting on it. However, the weight of an astronaut would be less on the moon compared to Earth due to the moon's weaker gravitational pull.
Inertia is related to MASS. MASS is a property of matter. Matter is the same on the Earth or on the Moon. Therefore his inertia would be the same.
An astronaut will weigh less on the moon compared to on Earth due to the moon's lower gravity. The moon's gravitational pull is about 1/6th of Earth's, so an astronaut's weight would be significantly reduced on the moon.
The astronaut's inertia on the moon would be the same as on Earth, as inertia is an object's resistance to a change in motion. However, due to the moon's lower gravity, the astronaut would weigh less and experience a reduced force opposing their motion compared to Earth.
yes
They have gone to the moon not to kill each other, but for a more purposeful mission. They could have done it on earth.
An astronaut would weigh more on Earth than on the moon due to the stronger gravitational pull of Earth. The gravitational force on the moon is about one-sixth that of Earth, so objects weigh less on the moon than on Earth.
It would weigh about one sixth (1/6) as much as it does on earth - as the moon's gravity is about one sixth as it is here.
Because anything on the surface of the moon has only about 1/6 the weight that it has on the Earth's surface.
An astronaut can carry more massive equipment on the moon than on Earth because the moon has lower gravity compared to Earth. This means there is less gravitational force pulling down on the equipment, making it easier to lift and carry heavier loads.
The mass of an astronaut remains the same whether they are on the moon or on Earth. Mass is a measure of the amount of matter an object has and is independent of the gravitational force acting on it. However, the weight of an astronaut would be less on the moon compared to Earth due to the moon's weaker gravitational pull.
moon sand has more of a chalky and smooth apperance and feel. while the sand on earth is mostly rocky and rough:) you can ask google or email an astronaut?~cierra13cierra<3
Inertia is related to MASS. MASS is a property of matter. Matter is the same on the Earth or on the Moon. Therefore his inertia would be the same.
One thing that makes answering this a bit tricky is determining how to measure. The Moon has no "sea level", so the comparison that makes the most sense is to measure from the highest point to the lowest. On the Moon, this is a bit over 18km. On Earth, Mt. Everest is at nearly 9km above sea level, and the deepest point is the Mariana Trench at not quite 11km below sea level, for a total difference of well over 19km. By that standard, the Earth's mountains are taller than the Moon's mountains. However, the difference is only about 10%, and the Earth is a lot more than 10% bigger than the Moon, so proportionally speaking the Moon's mountains are taller.