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Skala
Bukak kaca lengkapEverything here is at true scale: sizes and distances in the same proportion. Each pixel you scroll carries you 3.000 km.
Keep scrolling. Every picture you have seen of the solar system squeezed this emptiness out.
Mercury is ahead, where sunlight is almost seven times stronger than on Earth.
Still nothing. You have crossed 16,8 yuta km since Mercury.
The sunlight passing you now left the Sun 5 mnt 5 dtk ago.
Earth is ahead. Watch how small home turns out to be.
Mars is still 58,8 yuta km ahead.
A radio message from Earth takes between 3 and 22 minutes to reach Mars, depending on where the two planets are.
You could line up 4.611 Earths side by side in the space you have crossed since Bumi.
You are 14% of the way from Mars to Ceres.
Still nothing. You have crossed 53,1 yuta km since Mars.
The sunlight passing you now left the Sun 17 mnt 6 dtk ago.
Ceres is still 79,6 yuta km ahead.
You are inside the asteroid belt. Did you hit anything? On average the asteroids are about a million kilometres apart.
You could line up 12.497 Earths side by side in the space you have crossed since Mars.
You are 17% of the way from Ceres to Jupiter.
Still nothing. You have crossed 122 yuta km since Ceres.
The sunlight passing you now left the Sun 33 mnt 8 dtk ago.
Jupiter is still 122 yuta km ahead.
You could line up 23.846 Earths side by side in the space you have crossed since Ceres.
You are 10% of the way from Jupiter to Saturnus.
Still nothing. You have crossed 130 yuta km since Jupiter.
The sunlight passing you now left the Sun 54 mnt 5 dtk ago.
Saturnus is still 389 yuta km ahead.
Voyager 1 took about 20 months to fly from Jupiter to Saturn.
You could line up 30.529 Earths side by side in the space you have crossed since Jupiter.
You are 70% of the way from Jupiter to Saturnus.
Still nothing. You have crossed 519 yuta km since Jupiter.
The sunlight passing you now left the Sun 1 jam 16 mnt ago.
Uranus is still 1,31 milyar km ahead.
You could line up 20.605 Earths side by side in the space you have crossed since Saturnus.
You are 27% of the way from Saturnus to Uranus.
Still nothing. You have crossed 525 yuta km since Saturnus.
Uranus orbits twice as far from the Sun as Saturn. The farther out you go, the emptier it gets.
The sunlight passing you now left the Sun 2 jam 3 mnt ago.
Uranus is still 525 yuta km ahead.
You could line up 82.418 Earths side by side in the space you have crossed since Saturnus.
You are 82% of the way from Saturnus to Uranus.
Still nothing. You have crossed 1,31 milyar km since Saturnus.
The sunlight passing you now left the Sun 2 jam 48 mnt ago.
Neptunus is still 1,33 milyar km ahead.
You could line up 34.840 Earths side by side in the space you have crossed since Uranus.
You are 36% of the way from Uranus to Neptunus.
Still nothing. You have crossed 740 yuta km since Uranus.
Voyager 2 needed about three and a half years to cross this gap, from Uranus in 1986 to Neptune in 1989.
The sunlight passing you now left the Sun 3 jam 37 mnt ago.
Neptunus is still 444 yuta km ahead.
You could line up 104.519 Earths side by side in the space you have crossed since Uranus.
You are 91% of the way from Uranus to Neptunus.
Still nothing. You have crossed 129 yuta km since Neptunus.
The sunlight passing you now left the Sun 4 jam 24 mnt ago.
The Kuiper belt: a ring of icy worlds so spread out that after Pluto, New Horizons flew close to just one of them.
Pluto is still 906 yuta km ahead.
You could line up 50.798 Earths side by side in the space you have crossed since Neptunus.
You are 55% of the way from Neptunus to Pluto.
Still nothing. You have crossed 906 yuta km since Neptunus.
New Horizons, one of the fastest spacecraft ever launched, took nine and a half years to reach Pluto. Sunlight gets to Pluto's average distance in about five and a half hours.
The sunlight passing you now left the Sun 5 jam 15 mnt ago.
Pluto is still 129 yuta km ahead.
Scroll down inside the frame to fly outward, or start the autopilot below.
Journey's end
Look back. That bright star is the Sun.
Jadwal data (alternatif teks)
| Dunia | Diameter | Jarak saka Matahari | Time from Sun | px |
|---|---|---|---|---|
| Mercury | 4.879 km | 0,387 au | 3 mnt 13 dtk | 19.303 |
| Venus | 12.104 km | 0,723 au | 6 mnt 1 dtk | 36.070 |
| Bumi | 12.742 km | 1 au | 8 mnt 19 dtk | 49.866 |
| Mars | 6.779 km | 1,52 au | 12 mnt 40 dtk | 75.981 |
| Ceres | 939 km | 2,77 au | 23 mnt 0 dtk | 137.907 |
| Jupiter | 139.822 km | 5,2 au | 43 mnt 16 dtk | 259.447 |
| Saturnus | 116.464 km | 9,54 au | 1 jam 19 mnt | 475.555 |
| Uranus | 50.724 km | 19,2 au | 2 jam 40 mnt | 956.886 |
| Neptunus | 49.244 km | 30,1 au | 4 jam 10 mnt | 1.499.465 |
| Pluto | 2.377 km | 39,6 au | 5 jam 29 mnt | 1.974.125 |
Almost every picture of the solar system lies. To fit on a page, the planets are squeezed together and blown up in size. Walk it at true scale and you discover the real star of the show: empty space.

The solar system is mostly empty space, and that emptiness is the whole story.
Look
Most pictures of the solar system squeeze the planets together like beads on a string, and draw them far too big. They have to: at true scale, a page would be almost completely empty.
Guess first: if the Sun were a beach ball, how far away would Earth be? A step? A room? A street?
A street. With the Sun as a 1-metre ball, Earth is a 9 mm pea about 107 metres away: roughly the length of a football pitch. Keep that picture in mind as you travel.
The Scale Walk above is drawn at true scale: sizes and distances in the same proportion. Every pixel you scroll carries you 3,000 km. Scroll inside the frame, press Next world, or tap a planet on the journey map at the top.
- The journey map is to scale too. The white marker is you. Notice how the Sun and the four inner planets crowd together at the far left.
- The odometer counts kilometres and the time sunlight has needed to get where you are.
- When you stop near a world, the camera locks on and leans in (the zoom is shown next to the scale bar), and a card tells you where you are.
- Earth, a globe 12,742 km across, is almost 50,000 scrolled pixels from the Sun. Neptune is about 1.5 million pixels away.
Notice how much of the trip is just black, with only a few lines of narration drifting past. That is the real solar system: tiny worlds separated by enormous emptiness.
Understand
A scale model divides every length by the same number. Here the number is 3,000: 3,000 km of real space becomes 1 pixel.
| World | Real diameter | Diameter at 1 px = 3,000 km | Distance from Sun | At this scale |
|---|---|---|---|---|
| Sun | 1,391,400 km | 464 px | 0 | 0 |
| Earth | 12,742 km | 4 px | 149.6 million km | 49,866 px |
| Jupiter | 139,822 km | 47 px | 778.3 million km | 259,437 px |
| Neptune | 49,244 km | 16 px | 4,498 million km | 1,499,000 px |
A handy comparison uses the Sun as a 1-metre ball. Divide everything by the Sun’s diameter (1.39 million km):
- Earth is a 9 mm pea, 107 m away.
- Jupiter is a 10 cm grapefruit, 560 m away.
- Neptune is a 3.5 cm marble, 3.2 km away.
- The nearest star, Proxima Centauri, would be another ball about 29,000 km away: more than two thirds of the way around the real Earth.
Try the autopilot at 1×, the real speed of light. You move 100 pixels per second, which feels slow on screen. Real sunlight really does need 8 minutes to reach Earth and more than 4 hours to reach Neptune. The faster settings compress time, not distance: the autopilot still brakes and pauses at every world.
Guess first: scrolling with a mouse wheel, are you moving faster or slower than light?
Much faster. A brisk scroll carries you millions of kilometres per second, often ten or more times the speed of light; the speed readout under the odometer shows it. Even so, the outer planets take a long time to reach. That is how big the distances are.
Master
Two separate compressions distort normal diagrams: the size scale and the distance scale. The ratio of the Sun-Neptune distance (4.5 × 10⁹ km) to Earth’s diameter (1.27 × 10⁴ km) is about 350,000. A screen 1,000 pixels tall can resolve a range of about 1,000, so no single static image can show both the planets and their spacing. Interactive zoom, logarithmic axes or a scroll-length model like this one are the only honest options.
This is also why the orrery on this site offers two modes. Readable scale compresses distance with a square root (r_screen ∝ √r) and draws planets at fixed legible sizes. True scale is linear in both size and distance, so the planets shrink to sub-pixel dots.
The emptiness has consequences for spaceflight. Travelling between planets is not like driving between cities: the planets move, the distances are huge, and the energy cost depends far more on changes of speed than on distance. That idea, delta-v, is at the heart of the Navigator path.
A last scale fact: the asteroid belt, often drawn as a crowded field of rocks, is so sparse that spacecraft cross it without any special manoeuvres. The Kuiper belt beyond Neptune is emptier still.
Coba
Set the autopilot speed to 1× and press 'Travel at the speed of light'. Watch the light-time clock as you reach Earth: about 8 minutes 20 seconds. Before you look at the table, guess how long the same trip takes to Neptune, then check.
Great. Challenges are where the learning sticks.
QShortcut
3 quick questions. Pick an answer to see if you are right.
-
If the Sun were a ball 1 metre wide, about how big would Earth be?
- A A football
- B A grapefruit
- C About 9 millimetres, like a pea
- D About 1 millimetre
Show the answer
C. About 9 millimetres, like a pea The Sun is about 109 times wider than Earth, so 1 m ÷ 109 ≈ 9 mm.
-
At that same scale, how far away would Earth be from the 1-metre Sun?
- A About 1 metre
- B About 10 metres
- C About 107 metres
- D About 1 kilometre
Show the answer
C. About 107 metres 1 au is about 107.5 Sun diameters, so Earth would be a pea about the length of a football pitch away.
-
Why do most drawings of the solar system show the planets close together?
- A Because they really are close
- B Because at true scale the planets would be too small to see on the page
- C Because the drawings show the planets at their closest approach
- D Because of light pollution
Show the answer
B. Because at true scale the planets would be too small to see on the page
Finish line
- Played with the interactive
- Read the lesson
- Did the challenge
- Took the quiz
Mark the lesson complete to save it to your progress on this device.
Lesson complete. Well done!
Up next Days and years on each worldKaca ing pelajaran iki
Sumber
- NASA NSSDCA Planetary Fact Sheet (diameters, distances)
- JPL SSD: Approximate Positions of the Planets (semi-major axes)
- NASA NSSDCA: Schoolyard Solar System scale model
Leksan iki dilisensikake CC BY-SA 4.0.