elliptical orbit

Frequency: 7.08.1 per million words

describes the oval-shaped path of one celestial body around another

Categories:

Examples (20)

  • Earth follows an elliptical orbit around the Sun, not a perfect circle.
  • The satellite was placed into an elliptical orbit to maximize its observation time over a specific region.
  • Most comets travel in a highly elliptical orbit, bringing them very close to the sun and then flinging them far out into space.
  • Comets often follow highly elliptical orbits around the Sun.
  • Scientists carefully calculated the spacecraft's planned elliptical orbit to maximize fuel efficiency.
  • Scientists are studying the planet's elliptical orbit to understand its climate variations.
  • A planet in an elliptical orbit speeds up as it approaches its star and slows down as it moves away.
  • The spacecraft adjusted its trajectory to achieve a stable elliptical orbit around Mars.
  • The new satellite was successfully placed into a stable, elliptical orbit yesterday.
  • A highly elliptical orbit means that the object's distance from the central body varies significantly.
  • Kepler's first law of planetary motion states that planets move in an elliptical orbit with the Sun at one of the two foci.
  • The new telescope will be positioned in an elliptical orbit to avoid Earth's atmospheric interference.
  • Adjusting the thrusters allowed the probe to shift from a circular to an elliptical orbit.
  • Early models of the solar system struggled to explain the observed elliptical orbits of planets.
  • The moon's slightly elliptical orbit is the reason we experience phenomena like supermoons.
  • Gravitational forces can sometimes cause a celestial body to shift into a more elliptical orbit.
  • The captured asteroid will be settled into a temporary elliptical orbit for further study.
  • The mission design calls for the probe to enter a long-period elliptical orbit.
  • Gravitational disturbances can sometimes push a celestial body into an unstable elliptical orbit.
  • Objects in a perfect circular orbit have constant speed, unlike those in an elliptical orbit.