The mass on the moon will remain the same, 20 kg
If the object's mass is 20 kg, then it's 20 kg. On Earth, on the moon, on Mars,
or floating weightless in a space ship coasting from one of them to another.
Weight depends on where you are, but mass doesn't.
The equation to determine the weight of a body on the earth or moon is a modification of Newton's second law, W = mg, where W is weight in Newtons, m is mass in kg, and g is acceleration due to gravity in m/s2.Acceleration due to gravity on the earth is 9.8m/s2. A 20kg mass on the earth would weigh W = 20kg x 9.8m/s2 = 196N.Acceleration due to gravity on the earth is 1.63m/s2. A 20kg mass on the moon would weigh W = 20kg x 1.63m/s2 = 32.6N.
Because the gravitational force between any two objects depends on the product of both their masses. The object's weight on earth depends on the object's mass and the earth's mass, whereas its weight on the moon depends on the object's mass and the moon's mass. Since the moon's mass is very different from the earth's mass, the object's weight is also different there.
The mass of the object remains the same on the moon as it is on Earth. However, the weight of the object will be approximately 1/6th of its weight on Earth due to the moon's lower gravity.
No, the mass density of an object would not be the same on the moon as on Earth. The mass of the object would remain the same, but since the gravitational pull on the moon is weaker than that on Earth, the volume of the object would decrease on the moon, resulting in a different mass density calculation compared to Earth.
The object's mass doesn't change, no matter where it is or where it goes.
No. On Earth, each kilogram weighs about 9.8 newtons. On the Moon, the weight of each kilogram is about 1/6 of what it is on Earth.
The equation to determine the weight of a body on the earth or moon is a modification of Newton's second law, W = mg, where W is weight in Newtons, m is mass in kg, and g is acceleration due to gravity in m/s2.Acceleration due to gravity on the earth is 9.8m/s2. A 20kg mass on the earth would weigh W = 20kg x 9.8m/s2 = 196N.Acceleration due to gravity on the earth is 1.63m/s2. A 20kg mass on the moon would weigh W = 20kg x 1.63m/s2 = 32.6N.
Because the gravitational force between any two objects depends on the product of both their masses. The object's weight on earth depends on the object's mass and the earth's mass, whereas its weight on the moon depends on the object's mass and the moon's mass. Since the moon's mass is very different from the earth's mass, the object's weight is also different there.
The mass of the object remains the same on the moon as it is on Earth. However, the weight of the object will be approximately 1/6th of its weight on Earth due to the moon's lower gravity.
No, the mass density of an object would not be the same on the moon as on Earth. The mass of the object would remain the same, but since the gravitational pull on the moon is weaker than that on Earth, the volume of the object would decrease on the moon, resulting in a different mass density calculation compared to Earth.
The mass of an object would remain the same on the moon as it is on Earth. Mass is a measure of the amount of matter in an object, so it does not change with location. However, the weight of the object would be less on the moon due to the moon's lower gravity compared to Earth.
The 10N object has the same mass whether on the moon or on Earth. Mass is an intrinsic property of an object that does not change with location. However, the weight of the object would be lower on the moon due to the moon's weaker gravity compared to Earth.
there is no change in the mass of body
The object's mass doesn't change, no matter where it is or where it goes.
It's 4.2 . An object's mass doesn't change. The thing that does change is the gravitational forcethat attracts the object to another mass. The strength of that force depends on the mass of bothobjects. The force on the first object is what we call the object's "weight".
The amount of matter an object has, also known as its mass, would remain the same whether the object is on the moon or on Earth. Mass is an intrinsic property of an object and is independent of the object's location. However, the object's weight (the force of gravity acting on it) would be different on the moon compared to Earth due to the moon's lower gravity.
The mass of an object remains the same regardless of its location. Mass is a measure of the amount of matter in an object, so it does not change when the object is moved from Earth to the Moon. However, the object's weight would change due to the difference in gravitational pull between Earth and the Moon.