Centrifugal force and gravity keep the planets locked in orbit. The mass of the Sun naturally desires to pull other masses toward it. This causes the planets to move. The First Law of Motion states that objects in motion will continue unless acted on. Thus, we know that the planets would naturally have a tendency to continue in a straight line. However, the mass of the Sun (likewise with individual planets and their moons) causes the planets to have an altered, oval-shaped orbit.
Yes, the square of the orbital period of a planet is proportional to the cube of the average distance of the planet from the Sun. This relationship is known as Kepler's Third Law of Planetary Motion. It describes the mathematical relationship between a planet's orbital period and its average distance from the Sun.
He referred to it as an eclipse where the planets orbit the sun in a path.
Kepler's third law of planetary motion states that the square of a planet's orbital period is directly proportional to the cube of its average distance from the sun. This relationship allows us to predict the orbital period of a planet based on its distance from the sun, and vice versa.
The average distance between the earth and moon is : 384,401 kilometres. Average meaning it changes from time to time
The average distance between Earth and its moon is 238,000 miles, approximately.
Yes, the square of the orbital period of a planet is proportional to the cube of the average distance of the planet from the Sun. This relationship is known as Kepler's Third Law of Planetary Motion. It describes the mathematical relationship between a planet's orbital period and its average distance from the Sun.
He referred to it as an eclipse where the planets orbit the sun in a path.
Johannes Kepler stated the relationship in his third law of planetary motion. This law, formulated in the early 17th century, describes the relationship between a planet's orbital period and its average distance from the sun.
The energy force equation that describes the relationship between energy and force is: Work (energy) Force x Distance. This equation shows that the amount of work done (energy) is equal to the force applied multiplied by the distance over which the force is applied.
The scale of a map shows the relationship between the map distance and real world distance. The average scale is one eighty-thousandth of the actual size.
The average speed of an object is calculated by dividing the total distance traveled by the total time taken. Therefore, there is a direct relationship between distance, time, and average speed. If the distance traveled increases while the time taken remains constant, the average speed will increase. Conversely, if the time taken to travel a certain distance increases, the average speed will decrease.
an algebraic equation that describes a relationship between several variables is called a?
um Long-distance relationship?
scale
That is the wavelength.
function rule
Rocky best describes the relationship between Slytherin and the other founders - but the other three were friends.