No. Gravity cannot be seen.
The sun gravity is stronger
Gravity causes force that pulls every two masses together. It's the force of gravity between the sun and earth that keeps the earth in orbit around the sun. Same goes for the other planets. The force of gravity is also what holds you on the earth. Gravity is everywhere, and you see the effects wherever there are two masses.
Anything with mass has gravity. The sun's mass is enormous. Therefore the sun has strong gravity.
The sun has all the gravity to keep the planets a certain distance from the sun.
the sun connect to gravity because the sun is heavy remember the heavier some thing is the more gravity pulls you and the lighter u are the least gravity pulls you
the ansewer is not gravity. Gravity is what keeps it around the sun. you see mercury has linear motion, which just means it is going strait. if the sun had no gravity mercury would simply fly past the sun and out of the solar system. Also if mercury had no linar motion it would simply fall strait into the sun. so.. it is the balance of gravity with mercury's linear motion that keeps it in orbit around the sun.
The sun gravity is stronger
The sun has the most gravity within the solar system, which pulls all the other planets towards itself. See, the gravity in outerspace is different; it pulls all the balls (planets) together because there is gravity on the sun (every part of the sun) and the spheres create a spinning motion. Since there is no planet exceeding the size and weight of the sun, the sun cannot revolve any planets.
The gravity of the sun is massive. A 100 lb person would weigh over 2100 lbs on the sun!
Gravity is always in action, pulling objects towards each other. We see gravity in action when we drop something and it falls to the ground, when the planets orbit around the sun, and when we jump and come back down to the Earth.
The sun definitely has more gravity than the moon. Gravity is based on mass, and the sun is much more massive.
The pull of the Sun's gravity is needed to hold the Earth in orbit.