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  2. All About January's Rare Planetary Alignment and How to ... - AOL

    www.aol.com/januarys-rare-planetary-alignment...

    Catching a glimpse of the planets will depend on the time of day and their relative distance from the planet at the time. For example, Venus, Saturn and Jupiter are best viewed after sunset at ...

  3. Syzygy (astronomy) - Wikipedia

    en.wikipedia.org/wiki/Syzygy_(astronomy)

    The term is also used to describe situations when all the planets are on the same side of the Sun although they are not necessarily in a straight line, such as on March 10, 1982. [8] Apparent planetary alignment involving Mercury, Venus, Mars, and Jupiter; the Moon is also shown, as the brightest object.

  4. All planets to align at the same time in rare planetary parade

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    Seven planets are set to appear in the night sky this month in a rare full planetary alignment. Mars, Jupiter, Uranus, Venus, Neptune, Mercury and Saturn will appear in a row on the evening of 28 ...

  5. How to see 6 planets align in a rare night-sky parade in ...

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    Draw a line between the two planets, then follow that line upwards to find Jupiter high overhead. Sky chart showing the planets visible to the naked eye after dark in January. NASA/JPL-Caltech

  6. Ecliptic - Wikipedia

    en.wikipedia.org/wiki/Ecliptic

    The planets of the solar system can also be seen along the ecliptic, because their orbital planes are very close to Earth's. The moon's orbital plane is also similar to Earth's; the ecliptic is so named because the ancients noted that eclipses only occur when the Moon is crossing it.

  7. Planetary alignments aren’t rare, but 6 visible planets are ...

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    Because planets always appear in a line, the alignment isn't anything out of the norm. What's less common is seeing so many bright planets at once. Planetary alignments aren’t rare, but 6 ...

  8. Up to 7 planets align in night sky wowing skygazers in ... - AOL

    www.aol.com/news/7-planets-align-night-sky...

    The planets are always in a line known as the ecliptic, the plane where they orbit the Sun. As the planets race around the Sun at different speeds, sometimes they line up on the same side of the ...

  9. Poles of astronomical bodies - Wikipedia

    en.wikipedia.org/wiki/Poles_of_astronomical_bodies

    The poles of astronomical bodies are determined based on their axis of rotation in relation to the celestial poles of the celestial sphere. Astronomical bodies include stars, planets, dwarf planets and small Solar System bodies such as comets and minor planets (e.g., asteroids), as well as natural satellites and minor-planet moons.