It has to do with Earth's gravitational force. The farther away an object is from the object it is attracted to (in this case, the solid, magnetic core of the Earth), the less effect the force of gravity has on it.
An object will weigh slightly less at the top of a tall mountain compared to at sea level due to the decreased gravitational pull at higher altitudes. This is because gravitational acceleration decreases with distance from the center of the Earth.
You would weigh more at sea level. As you get father away from the surface of the earth, the force of gravity is weaker
The weight of an object is the force of gravity on the object's mass. At the top of a mountain, you are slightly farther from the center of the earth, and so the earth's gravity is very slightly weaker. Thus, you weigh a tiny, tiny bit less at the top of the mountain than at sea level.
You would weigh less on a high mountain peak due to the decreased gravitational force at higher altitudes, which is farther from the center of the Earth. At sea level, you would weigh more due to the stronger gravitational pull closer to the Earth's center.
You would weigh slightly less on a high mountain peak than at sea level due to the decrease in gravitational force at higher altitudes. This is because the force of gravity weakens with distance from the Earth's center, which is measured from the mountain peak to the center, causing a slight reduction in weight.
The weight of an object is the force of gravity on the object's mass. At the top of a mountain, you are slightly farther from the center of the earth, and so the earth's gravity is very slightly weaker. Thus, you weigh a tiny, tiny bit less at the top of the mountain than at sea level.
The weight of an object is the force of gravity on the object's mass. At the top of a mountain, you are slightly farther from the center of the earth, and so the earth's gravity is very slightly weaker. Thus, you weigh a tiny, tiny bit less at the top of the mountain than at sea level.
An object will weigh slightly less at the top of a tall mountain compared to at sea level due to the decreased gravitational pull at higher altitudes. This is because gravitational acceleration decreases with distance from the center of the Earth.
You would weigh more at sea level. As you get father away from the surface of the earth, the force of gravity is weaker
The weight of an object is the force of gravity on the object's mass. At the top of a mountain, you are slightly farther from the center of the earth, and so the earth's gravity is very slightly weaker. Thus, you weigh a tiny, tiny bit less at the top of the mountain than at sea level.
You would weigh less on a high mountain peak due to the decreased gravitational force at higher altitudes, which is farther from the center of the Earth. At sea level, you would weigh more due to the stronger gravitational pull closer to the Earth's center.
They would not. In fact, they would weigh slightly less. The force of gravity decreases as an object gets further from the centre of the Earth.
the less oxygen
Objects under water seem to weigh less but they have the same mass as they would out of water.
sea level because the closer you get to the center of the earth the more pressure there is and a top a mountain there is less gravity force pulling you down so you feel a lot lighter.
An object would weigh less on the moon compared to Earth because the moon has less gravitational pull than Earth. Weight is a measure of the gravitational force acting on an object, so with less gravitational pull on the moon, the object would weigh less.
You would weigh slightly less on a high mountain peak than at sea level due to the decrease in gravitational force at higher altitudes. This is because the force of gravity weakens with distance from the Earth's center, which is measured from the mountain peak to the center, causing a slight reduction in weight.