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  1. 3 days ago · Hint: As we all know that the gravitational force of us is nothing when we compare with the gravitational force of the Earth. Or, the gravitational force is not a strong force unless the presence of the huge masses. Complete step by step answer: Unless enormous masses are present, gravitational force is a weak force.

  2. Jun 26, 2024 · The acceleration due to gravity has to be calculated. The formula of acceleration due to gravity at the given height from the earth's surface is to be used here. The gravitational force is also the product of mass and gravitational acceleration. Using these relations the gravitational force can be found at the given height. Formula used:

  3. 4 days ago · Hint: To solve this sort of question we use the concepts of gravity and electrostatic force.Then we substitute the given values within the formulae of gravity and electrostatic force.Finally we take ratio of those to seek out the order. Formula used: Gravitational force is given by, \[{F_g} = \dfrac{{G{m_1}{m_2}}}{{{r^2}}}\]

  4. 3 days ago · Gravitational force is a non-contact force as it acts between two bodies without the bodies actually coming in contact with each other. For example, the sun attracts the planets without coming in contact with them. Similar is the case with electrostatic force and the magnetic force.

  5. 5 days ago · The gravity force on Earth is equivalent to the gravitational force that the Earth exerts on us.The gravity force equals our weight when we are at rest on or near the Earth's surface.The acceleration of gravity on a different planetary body, such as Venus or the Moon, is other than on Earth because if we stood on a scale, it would show us the weight, which has a different amount than on Earth.

  6. 4 days ago · 1.10 x 10^18 N. As a 70 kg person stands at the seashore gazing at the tides (which are caused by the moon), how large is the gravitational force on that person due to the moon? The mass of the moon is 7.35 x 10^22kg, the distance to the moon is 3.82 x 10^8 m and G=6.67 x 10^-11 Nm^2/kg^2. 0.0024 N.

  7. 3 days ago · The gravitational force between two particles is attractive and can be given by Newton’s Law of Universal Gravitation. When these two particles move apart in opposite directions, the gravitational force between them will decrease as it inversely depends on the distance between two particles.

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