Because the gravitational attraction between each person and the earth is far greater than that between the two people.
Gravitational force between two objects is proportional to the mass of each object. The mass of the earth is far far greater than that of a pesron.
You do not feel a gravitational tug from a person passing you on the street because the gravitational force between two people is extremely small compared to the force of gravity between us and the Earth. The force of gravity between two people is too weak to be noticeable in everyday situations.
The gravitational force between Stephen and Andy is very small because they have much less mass than objects like Earth. This force is negligible compared to the effects of the Earth's gravity pulling them down, so they don't feel the gravitational force between each other.
A person does feel a gravitational force between themselves and another person, but its effect is extremely small compared to other forces they experience, like the force of the ground pushing up on them due to their weight. Additionally, the force between two people is much weaker than the force between a person and a planet like Earth.
But you do feel gravitational force. Your body has weight, doesn't it? Your arms have weight and you feel them being pulled down? If you let go of your arms, they move down? What you feel is the force required to oppose the force of gravity. Newton's Third law says that, for every force, there is an equal and opposite force. Your muscles impose a force holding your arms up. You feel this as effort, i.e. force. As far as electrostatic force, its the same concept...
You cannot feel the gravitational attraction between you and an object because the force of gravity is very weak compared to the other forces acting on you (such as electromagnetic forces). Additionally, other factors like the Earth's gravitational field are much stronger, so you are not as sensitive to the gravitational attraction between you and smaller objects.
You do not feel a gravitational tug from a person passing you on the street because the gravitational force between two people is extremely small compared to the force of gravity between us and the Earth. The force of gravity between two people is too weak to be noticeable in everyday situations.
The masses of humans are quite small and thus the magnitude of gravitational force is also very small and negligible as compared to that shown by Earth. Thus, gravitational force exists between two people sitting close by but it is negligible and cannot be felt.
The gravitational force between Stephen and Andy is very small because they have much less mass than objects like Earth. This force is negligible compared to the effects of the Earth's gravity pulling them down, so they don't feel the gravitational force between each other.
A person does feel a gravitational force between themselves and another person, but its effect is extremely small compared to other forces they experience, like the force of the ground pushing up on them due to their weight. Additionally, the force between two people is much weaker than the force between a person and a planet like Earth.
But you do feel gravitational force. Your body has weight, doesn't it? Your arms have weight and you feel them being pulled down? If you let go of your arms, they move down? What you feel is the force required to oppose the force of gravity. Newton's Third law says that, for every force, there is an equal and opposite force. Your muscles impose a force holding your arms up. You feel this as effort, i.e. force. As far as electrostatic force, its the same concept...
You cannot feel the gravitational attraction between you and an object because the force of gravity is very weak compared to the other forces acting on you (such as electromagnetic forces). Additionally, other factors like the Earth's gravitational field are much stronger, so you are not as sensitive to the gravitational attraction between you and smaller objects.
thats because only you can feel your feelings ...for example if you fall down and get hurt it will hurt you but it won't hurt me,coz you are the one who got hurt and just like that your teacher won't feel and see the effect of earth's gravitational force on you but she will feel and see earth's gravitational force on her.(your question is a little dumb)
The gravitational attraction between two people is extremely small because the force of gravity between two objects depends on their mass and distance. For two average-sized people standing a few feet apart, the gravitational force would be negligible compared to the other forces acting on them.
No. There is a gravitational force of attraction between every two masses in the universe. The strongest pair of forces you feel is the pair between you and the earth, which you call your "weight". It would be there even if the sun were not there.
Humans on Earth don't feel attracted to the Sun's gravitational force because the gravitational force between two objects depends on their masses and distance apart. Since humans have much smaller masses compared to the Earth, the gravitational force towards the Sun is negligible in comparison to Earth's gravitational pull. Additionally, the Earth's gravitational force keeps humans firmly grounded to the planet's surface.
Gravitational pull still acts in space, but when you are in space, you are too far from the earth to feel any of its gravitational force. Gravitational force between two objects depends on their distance from each other and the further two objects are apart, the weaker the force of gravity is. So when we are in space, the earth's gravitational pull is still acting on us, but it is too far away for us to feel it.
Because there's such a difference between the strengths of the two forces.The gravitational force between two masses is proportional to the product of the masses.So if one mass is constant, then the force is proportional to the other mass. Also, the forceis inversely proportional to the square of the distance between the two masses.Let's say the book has a mass of 1 kg, and is one meter from you.The earth's mass is 5.97 x 1024 kg, and it's centered 6,378,000 meters from you (earth's radius).So the ratio of the (gravitational force toward the earth) to the (gravitational force toward the book) is(5.97 x 1024)/ (6.378 x 106)2 = 1.468 x 1011The gravitational force between you and the earth is about 147 billion times as strong asthe force between you and the book !If you weigh a ton (2,000 lbs), then the force between you and the book is like 0.000000218 ounce.