hey i think its because of the solar system
That's the one with the largest mass - i.e., the Sun.
The best example of a large object in the solar system that emits electromagnetic waves is the sun, since it is the largest such object and also emits the greatest amount of electromagnetic waves. But also note, the planets Earth and Jupiter also both qualify as large objects which emit electromagnetic waves.
Aside from the Moon, the Sun also has an effect on the tides due to its gravitational pull. However, the Moon plays a more significant role in causing tides on Earth compared to the Sun.
No. It is the reddest object in the Solar System. The second reddest object is Mars.
hey i think its because of the solar system
Within our own solar system, the sun, Sol, has the greatest effect on the rest of the system. Outside of our system, objects with great effect on us include the black hole at the center of the Milky Way, other galaxies, the singularity trace where the Big Bang first occurred, roughly the "Center of the Universe," and space itself.
the sun
The largest single celestial object in the solar system would be the Sun (or Sol), inside which over a million Earths could comfortably fit.
The sun has the majority of the mass in the solar system. Gravitational attraction varies directly as the magnitude of the mass. The sun therefore has the greatest gravitational effect in the solar system.
Jupiter because it is so massive.
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At any given distance, the object with the greatest mass also has the greatest gravitational force. That's the Sun. The Sun also has the largest surface gravity.
That's the one with the largest mass - i.e., the Sun.
A spring has maximum potential energy at maximum displacement from equilibrium. This means that the greatest potential energy will occur when a spring is stretched as far as it will stretch or compressed as tightly as it will compress. In an oscillating system, where an object attached to a spring is moving back and forth at a given frequency, the object will oscillate about the equilibrium point, and the potential energy of the system will be greatest (and equal) when the object is farthest from equilibrium on either side.