nobody really knows but when you are on the moon you wweigh les than what you would weigh on earth beacause there is no gravvity in space obviously...
The difference between a person's weight on the earth and on the moon has to due with the difference between mass and weight. Mass is a measure of the amount of matter and weight is the pull of gravity on that mass. Gravity on the moon is about 83% that on earth, so if you weigh 100 lbs on earth, you will weigh approximately 17 lbs on the moon.
The direct variation formula for weight on Earth compared to weight on the Moon can be expressed as ( W_m = \frac{1}{6} W_e ), where ( W_m ) is the weight on the Moon and ( W_e ) is the weight on Earth. This indicates that an object's weight on the Moon is one-sixth of its weight on Earth due to the difference in gravitational force. Consequently, if you know an object's weight on Earth, you can easily calculate its weight on the Moon using this formula.
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.
Mass is a universal unit. It does not change depending on your location because the amount of matter something is made of does not change from location to location. Weight is a much more relative unit. Weight is related to gravity as opposed to the amount of mass making up something. On the moon has approximately 1/6 the gravity of Earth. Therefore, if you weigh 120 pounds on Earth you would weigh 20 pounds on the moon. Because earth's gravitational pull is stronger than the moon's.
Weight would change when an object is taken from Earth to the Moon due to the difference in gravitational pull between the two celestial bodies. It would weigh less on the Moon compared to Earth.
The difference between a person's weight on the earth and on the moon has to due with the difference between mass and weight. Mass is a measure of the amount of matter and weight is the pull of gravity on that mass. Gravity on the moon is about 83% that on earth, so if you weigh 100 lbs on earth, you will weigh approximately 17 lbs on the moon.
The weight of an object on the moon's surface is 16.3% of the same object's weight on the earth's surface.
The direct variation formula for weight on Earth compared to weight on the Moon can be expressed as ( W_m = \frac{1}{6} W_e ), where ( W_m ) is the weight on the Moon and ( W_e ) is the weight on Earth. This indicates that an object's weight on the Moon is one-sixth of its weight on Earth due to the difference in gravitational force. Consequently, if you know an object's weight on Earth, you can easily calculate its weight on the Moon using this formula.
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.
weight on earth=x weight on moon=z formula=x divided by 6 = z i think i splaind it right EXAMPLE: weight on moon=weight earth divided by gravity weight on moon=250N divided by 6 weight on moon=41.66. an object that weight 250N on earth, weight 41.66N on moon. A+=6
Mass is a universal unit. It does not change depending on your location because the amount of matter something is made of does not change from location to location. Weight is a much more relative unit. Weight is related to gravity as opposed to the amount of mass making up something. On the moon has approximately 1/6 the gravity of Earth. Therefore, if you weigh 120 pounds on Earth you would weigh 20 pounds on the moon. Because earth's gravitational pull is stronger than the moon's.
Weight would change when an object is taken from Earth to the Moon due to the difference in gravitational pull between the two celestial bodies. It would weigh less on the Moon compared to Earth.
The primary property of a coin that differs on the Moon compared to Earth is its weight due to the difference in gravitational force. The Moon's gravity is about 1/6th that of Earth's, meaning a coin would weigh significantly less on the Moon. However, its mass remains the same; only the weight is affected by the gravitational difference.
An object weighs less on the moon compared to Earth because the moon has lower gravity. The gravitational pull on the moon is about 1/6th that of Earth, so a person or object would weigh approximately 1/6th of their weight on the moon.
The weight of 1 kilogram of iron on Earth is greater than the weight of 1 kilogram of iron on the Moon. This is because weight depends on the gravitational pull of the celestial body, and Earth has a stronger gravitational force than the Moon.
You weight on the moon is 16.5% of what your weight is on Earth.
The Earth weighs 6 times more than its' moon.