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Johannes Kepler determined that all planets have elliptical orbits.

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The shape of the orbit of each planet is a?

The shape of the orbit of each planet is an ellipse. An ellipse is a geometric shape that is like a flattened circle. The Sun is located at one of the foci of the ellipse, not at the center.


What kind of orbits do the planets do around the sun?

An ellipse, like any planet. In the case of Earth (and the other planets in the Solar System), the ellipse is quite close to a circle (in math/astronomy terms, the ellipse has a low eccentricity).


Are circles orbits of the planets?

NO!!! The planets do NOT orbit in circles. They orbit the Sun in an ellipsoidal manner. An ellipse has two foci. The Sun lies at one of the foci, the other might be deemed to be a 'blind' focus. The Sun does NOT lie at the centre of the ellipse. Also the satellites(moons) orbit their parent planets in a similar manner. It has also been discovered that the planets in an an ellipsoidal manner. That is as each orbit is completed the planet 'over-shoot' their starting point, and the ellipse does not close . See Johannes Kepler, who gave us the Law of orbiting planets sweeping equal arcs in equal times , in 1602 AD.


Kepler discovered that the orbit of each planet is an what rather than a perfect circle?

Johannes Kepler discovered that the Earth revolves/orbits the Sun in an ELLIPSE. He also discovered that the Sun is NOT at the centre of the ellipse, but at one of the foci ; (plural of focus). The other focal point being 'blind'. From this we have the definition, that as the Earth orbits the Sun , 'It sweeps equal arcs in equal times'. As the Earth orbits, it speeds up and slows down. It is moving at its fastest when passing the Sun at it nearest point ( perigee) and slowest when at its furthest point ( apogee). Have a look in Wikipedia under' Johannes Kepler.


What type of orbit do the planets have to revolve around the sun?

According to Keplers first law of 1618 which has not been repealed yet, the planets each move in an elliptical orbit with the Sun occupying one focus. The shape of an ellipse is described by the eccentricity. For low eccentricity such as the planets' orbits have, the orbit is very close to being a circle but the most significant difference is that the Sun is off-centre.

Related Questions

Kepler discovered that the orbit of each planet is a?

Ellipse.


What is the shape of the orbitof planets?

The ellipse is, with the sun at one focus of each planetary orbit.


The shape of the orbit of each planet is a?

The shape of the orbit of each planet is an ellipse. An ellipse is a geometric shape that is like a flattened circle. The Sun is located at one of the foci of the ellipse, not at the center.


What kind of orbits do the planets do around the sun?

An ellipse, like any planet. In the case of Earth (and the other planets in the Solar System), the ellipse is quite close to a circle (in math/astronomy terms, the ellipse has a low eccentricity).


The fact that each planet's orbit is an ellipse was discovered by what man?

Johannes Kepler formulated the laws of planetary motion in the early 17th century, including the discovery that planets move in elliptical orbits with the sun at one of the foci.


The shape of the orbit of each planet is an?

Elliptical


Are circles orbits of the planets?

NO!!! The planets do NOT orbit in circles. They orbit the Sun in an ellipsoidal manner. An ellipse has two foci. The Sun lies at one of the foci, the other might be deemed to be a 'blind' focus. The Sun does NOT lie at the centre of the ellipse. Also the satellites(moons) orbit their parent planets in a similar manner. It has also been discovered that the planets in an an ellipsoidal manner. That is as each orbit is completed the planet 'over-shoot' their starting point, and the ellipse does not close . See Johannes Kepler, who gave us the Law of orbiting planets sweeping equal arcs in equal times , in 1602 AD.


The Sun is located slightly off-center from the middle of each planet's orbit?

This off-center position is due to the gravitational pull of the planets affecting the Sun's position. The Sun's gravity causes the planets to orbit around it, but the planets' gravitational pull also affects the Sun, causing it to be slightly off-center. This is known as the barycenter, or center of mass, of the solar system.


Is it true or false that the shape of the orbit of each planet is an eclipse?

False. The term is elliptical. Eclipse is what happens when planets and moons pass in front of one another or the sun.


What scientist found the orbit of each planet to be ellipse?

Kepler


Kepler discovered that the orbit of each planet is an what rather than a perfect circle?

Johannes Kepler discovered that the Earth revolves/orbits the Sun in an ELLIPSE. He also discovered that the Sun is NOT at the centre of the ellipse, but at one of the foci ; (plural of focus). The other focal point being 'blind'. From this we have the definition, that as the Earth orbits the Sun , 'It sweeps equal arcs in equal times'. As the Earth orbits, it speeds up and slows down. It is moving at its fastest when passing the Sun at it nearest point ( perigee) and slowest when at its furthest point ( apogee). Have a look in Wikipedia under' Johannes Kepler.


Is the orbit of each planet a ellipse?

Yes, according to Kepler's laws of planetary motion, the orbit of each planet around the Sun is an ellipse with the Sun at one of the two foci. This means that the planet's distance from the Sun varies throughout its orbit.