Phobos
Phobos experiences a stronger gravitational force from Mars compared to Deimos due to its closer proximity to the planet. The gravitational force acting on an object decreases with increasing distance from the source of the force, hence the closer moon Phobos feels a stronger pull from Mars.
There is no minimum mass at which point an object (celestial or otherwise) begins to have a gravitational force. Any object with mass has an associated gravitational force. The magnitude of that force is proportional to to the mass of the object - lots of mass results in lots of gravitational force; little masses result in only little gravitational force.
It greatly depends upon their distance to one another at the time. However, the universal law of gravitational attraction applies: F = G * ((m1*m2)/r) where m1 is the mass of moon 1 (kg) m2 is the mass of moon 2 (kg) r is the distance (m) G is the gravitational constant F is the force of attraction.
elephant truck A basketball Your hand a camel NOT A BIKE!
They exert Gravitational Force on each other. It is a force which is directly proportional to Mass of the object
Phobos experiences a stronger gravitational force from Mars compared to Deimos due to its closer proximity to the planet. The gravitational force acting on an object decreases with increasing distance from the source of the force, hence the closer moon Phobos feels a stronger pull from Mars.
its bigger
Though the moon is closer, it is relatively small compared to the sun. The sun is much larger and exerts a far stronger gravitational force.
The bigger an object is, the more gravity it has! Earth is much bigger than the moon, therefore it has stronger gravity.
There is no minimum mass at which point an object (celestial or otherwise) begins to have a gravitational force. Any object with mass has an associated gravitational force. The magnitude of that force is proportional to to the mass of the object - lots of mass results in lots of gravitational force; little masses result in only little gravitational force.
It greatly depends upon their distance to one another at the time. However, the universal law of gravitational attraction applies: F = G * ((m1*m2)/r) where m1 is the mass of moon 1 (kg) m2 is the mass of moon 2 (kg) r is the distance (m) G is the gravitational constant F is the force of attraction.
The amount of gravity an object has is determined by its mass. The larger the mass of an object, the greater its gravitational pull. This means that objects with more mass will exert a stronger gravitational force on other objects.
Earth exerts a stronger gravitational force than the moon due to its larger mass. The force of gravity is directly proportional to an object's mass, so Earth's greater mass results in a stronger gravitational pull compared to the moon.
All materials with mass exert a gravitational pull.
If the object having some mass then for sure it exert a gravitational force.The more the mass the more will be gravity.
The larger an object's mass, the greater its gravitational force. Objects with more mass exert a stronger gravitational pull on other objects. This is why larger objects, like planets and stars, have stronger gravitational effects compared to smaller objects.
The mass of the objects is a key factor affecting the gravitational attraction between them. Objects with greater mass exert a stronger gravitational force on each other compared to objects with smaller mass.