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An orbit is the path that an object takes around another object in space, like a planet orbiting a star. An orbital, on the other hand, refers to the specific region around an atom where an electron is likely to be found. Orbits are larger and more defined paths in space, while orbitals are smaller and more specific areas within an atom.

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In what way does an orbit differ from an orbital?

An orbit is the path an object takes around another object, like a planet around a star. An orbital is the specific region around an atom where an electron is likely to be found.


What is the significance of eccentricity in determining the orbital characteristics of planets?

The eccentricity of a planet's orbit is important in determining its orbital characteristics because it affects the shape and size of the orbit. A high eccentricity means the orbit is more elongated, while a low eccentricity means the orbit is more circular. This can impact factors such as the planet's distance from the sun, its speed, and its overall stability in its orbit.


Where do you think Earth-observing satellites orbit and what determines their orbital altitude?

Earth-observing satellites typically orbit in low Earth orbit (LEO) or geostationary orbit (GEO). The orbital altitude of these satellites is determined by factors such as the mission objectives, desired coverage area, and the balance between gravitational pull and orbital velocity.


What is the difference between an orbit and an orbital in the context of celestial bodies?

An orbit is the path that a celestial body follows around another body in space, such as a planet orbiting a star. An orbital, on the other hand, refers to the specific path or trajectory of an individual object within that larger orbit, such as a satellite orbiting Earth. In essence, an orbit is the general path, while an orbital is the specific path within that orbit.


How does the period change as the orbital radius increases in a celestial body's orbit?

As the orbital radius of a celestial body's orbit increases, the period of the orbit also increases. This means that it takes longer for the celestial body to complete one full orbit around its central object.

Related Questions

In what way does an orbit differ from an orbital?

An orbit is the path an object takes around another object, like a planet around a star. An orbital is the specific region around an atom where an electron is likely to be found.


What is the significance of eccentricity in determining the orbital characteristics of planets?

The eccentricity of a planet's orbit is important in determining its orbital characteristics because it affects the shape and size of the orbit. A high eccentricity means the orbit is more elongated, while a low eccentricity means the orbit is more circular. This can impact factors such as the planet's distance from the sun, its speed, and its overall stability in its orbit.


Occasionally Plutos' orbit will remain inside Neptunes' orbit for a period of about how many years?

Pluto's orbit remains inside Neptune's orbit for about 20 years out of its 248-year orbital period. This phenomenon occurs due to the unique orbital characteristics of Pluto and Neptune.


Which term refers to the speed at which a planet travel in its orbit?

Orbital velocity refers to the speed at which a planet travels in its orbit.


What is the formula for orbital speed?

Orbital speed = (circumference of the orbit) / (period of revolution)


What is meant by orbital?

An orbital is the orbit (energy level) in which the electron spins around an atom. The arrangement of electrons in the outer orbitals determines the physical and chemical characteristics of an element.


What is the root word of orbital?

The root word of orbital is "orbit," which refers to the path an object takes around another object in space.


What is a synonym for an orbital path?

Trajectory.


What part of speech is orbit?

Orbital is an adjective.


Where is the orbit location?

The orbital is in the eye socket.


Does the weight of space junk affect its orbital speed?

If something is in orbit it's orbital speed is independent of its mass. Be it a gram or a tonne, it's speed depends only on its orbit; if it had a different speed it would be in a different orbit ( or none at all).


What are the orbital communications satellites are placed in called?

Geosynchronous orbit? or Low Earth Orbit?