Spica is a binary star system 250 light-years away in the constellation Virgo. The primary star is one of the nearest massive stars to the Sun, about 10 times the Sun's mass.
Spica is 250 light-years from Earth. That is about 2.37 quadrillion km (1.47 quadrillion miles), or 15.8 million astronomical units.
| Unit | Distance |
|---|---|
| Light-years | 250 |
| Kilometers | 2,370,000,000,000,000 km |
| Miles | 1,470,000,000,000,000 miles |
| Astronomical units (AU) | 15,800,000 astronomical units |
| Parsecs | 76.7 |
Light from Spica takes 250 years to reach Earth, so the light you see tonight left Spica 250 years ago.
Voyager 1, the fastest object humans have sent into deep space, travels at about 17 km/s. It would need about 4.41 million years to cover this distance.
Notable For: 15th brightest star, eclipsing binary
At light speed, it would take 250 years to reach Spica. At 1g constant acceleration with deceleration, a traveler would experience about 62 years.
Yes, Spica's primary star is massive enough to eventually explode as a supernova. However, this won't happen for millions of years, and at 250 light-years away, it poses no threat to Earth.
Spica is 250 light-years from Earth, which is about 2.37 quadrillion km or 1.47 quadrillion miles. Light from Spica takes 250 years to reach us.
Spica is 250 light-years from Earth. One light-year is about 9.46 trillion km, the distance light travels in one year. In parsecs, Spica is about 76.7 parsecs away.
This time dilation calculator lets you enter a distance in light-years and acceleration in m/s² to see how time dilation affects your journey. It shows differences between traveler and observer times, maximum velocity, energy requirements, Doppler shift, Lorentz factor, and how distances vary between reference frames. Charts appear after you calculate.
Time dilation is an effect from Einstein's theory of special relativity. The faster you move, the slower time passes for you compared to someone standing still. At 90% of light speed, time passes about 2.3 times slower for the traveler than for someone on Earth.
The Time Dilation Formula is:
Where:
t' = time measured by the observer (on Earth)
t = time experienced by the traveler
v = velocity of the traveler
c = speed of light (299,792,458 meters per second)