London · 1729

Starlight Tilts with the Earth’s Motion

Portrait of James Bradley
James BradleyAfter Thomas Hudson, about 1742–47

Hunting for one shift of the stars, an astronomer finds a different one. The English astronomer James Bradley wants to find the shift that Tycho couldn’t, known as parallax: as the Earth moves from one side of its orbit to the other, a nearby star should seem to move against the stars behind it. He measures the star Gamma Draconis with a telescope pointed straight up.

The star does move back and forth over the year, by about 20 seconds of arc either way, but its extremes come three months off from where the Earth’s position would put them. They follow the direction the Earth is moving in instead. So it’s a different shift, known today as the aberration of starlight, caused not by where the Earth is but by which way it’s going: light takes time to reach us, and because the Earth moves, it seems to come in at a slight slant, as rain does when you run through it.

Bradley finds the same aberration in other stars, and works out that light takes 8 minutes 12 seconds to come from the Sun, close to today’s 8 minutes 19 seconds. Of parallax, he finds no sign: it must be smaller than a second of arc. So Tycho’s objection stands.

The Earth circling the Sun, and a telescope carried along by it, which has to lean toward the direction the Earth moves in for falling starlight to run down its middle, first one way, then the other, over the year Sun Earth From above A telescope on the moving Earth being ‘showered’ by starlight From the side Where the star is Where it seems to be Not to scale
Drag the slider to move through the year. The star is straight above the telescope on the right. Because the Earth carries the telescope along while the light travels down it, the light seems to come in at a slant, so the star seems shifted toward the way the Earth is moving, to where the outline is, and the telescope has to lean that way too, first one way, then the other.

Criticism of #5812 by James Bradley​·​#5813

Gamma Draconis, and the other stars I’ve measured, shift back and forth over the year by about 20 seconds of arc, always toward the direction the Earth is moving in at the time. Light takes time to arrive, and the Earth’s motion slants the direction it seems to come from. A motionless Earth can’t produce this.

The state of the discussion

Riccioli’s system now has a pending criticism too, so it isn’t rationally adoptable anymore. Neither is Kepler’s Sun-centered system: Bradley finds aberration, not the parallax Tycho found missing, so Tycho’s criticism is still pending. Once more, no system of the world is rationally adoptable.

Use arrow keys ← →, the Previous and Next buttons above, or the timeline below to move through the history.Swipe left or right, or use the Previous and Next buttons above or the timeline below, to move through the history.

Source: Bradley, “A Letter … giving an Account of a new discovered Motion of the Fix’d Stars”, Philosophical Transactions 35 (1727–28), 637–661

Researched and written with the help of AI, from the sources named. AI can make mistakes. Veritula doesn’t claim perfect historical accuracy; the sources are there to check against.

The full discussion

Why Don’t We Feel the Earth Move?

Dennis Hackethal started this discussion 1 day ago.

Search​·​Activity

The ground feels still, and anyone can see the Sun circle us. Overturning that took two thousand years. It revealed that we ride a planet that spins, circles the Sun, and sweeps around the Milky Way at 230 kilometers a second.


Discussions can branch out indefinitely. You may need to scroll sideways.
The discussion as it was in 1729. Chronicle discussions are read-only. Jump to the present
Aristarchus of Samos’s avatar
Aristarchus of SamosHistorical profile​·​#5808​·​1609​·​AI-assisted
3rd of 3 versions​·​revised by Johannes KeplerHistorical profile

The Earth is a planet. It spins once a day and goes around the Sun once a year, as the other planets do. Mars moves on an ellipse, a stretched circle, with the Sun at one of the ellipse’s two foci, so that the line from the Sun to the planet sweeps out equal areas in equal times, and the other planets, I expect, move the same way.

Criticized1
Aristarchus of Samos’s avatar
Aristarchus of SamosHistorical profile​·​#5790​·​about 270 BCE​·​AI-assisted

If the Earth circled the Sun, we would see the stars from different places over the year, so they would seem to shift back and forth. They don’t.

Criticism of #5808
Aristarchus of Samos’s avatar
Aristarchus of SamosHistorical profile​·​#5791​·​about 270 BCE​·​AI-assisted

The stars are so far away that, next to their distance, the Earth’s orbit is like a point. Their shift is far too small to see.

Criticism of #5790Criticized1
Tycho Brahe’s avatar
Tycho BraheHistorical profile​·​#5803​·​1588​·​AI-assisted

Even my instruments, precise to a minute of arc, show no shift of the stars. So they would have to be at least 700 times farther from the Sun than Saturn is, leaving an absurd empty gap in between.

Criticism of #5791
Claudius Ptolemy’s avatar
Claudius PtolemyHistorical profile​·​#5795​·​about 150 CE​·​AI-assisted

If the Earth spun once a day from west to east, it would outrun everything not standing on it. Clouds, birds, and anything thrown would always seem to drift westward, and we would never see them move east.

Criticism of #5808Criticized1
Claudius Ptolemy’s avatar
Claudius PtolemyHistorical profile​·​#5796​·​about 150 CE​·​AI-assisted

The air might turn with the Earth and carry the clouds and the birds along, so they wouldn’t be left behind.

Criticism of #5795
Claudius Ptolemy’s avatar
Claudius PtolemyHistorical profile​·​#5797​·​about 150 CE​·​AI-assisted

If the air carried them along, they would never seem to move at all. But we see them move in every direction.

Criticism of #5796Criticized1
Nicolaus Copernicus’s avatar
Nicolaus CopernicusHistorical profile​·​#5800​·​1543​·​AI-assisted

The air near the Earth turns with it and carries the clouds along, and whatever rises or falls through the air turns with the Earth too, on top of its own motion. So we see them move every which way, as they would on a motionless Earth.

Criticism of #5797
Tycho Brahe’s avatar
Tycho BraheHistorical profile​·​#5804​·​1588​·​AI-assisted

If the Earth spun from west to east, a cannonball fired eastward would fly a different distance than one fired westward with the same force. I’m sure both would fly equally far, so the Earth doesn’t spin.

Criticism of #5808Criticized1
Galileo Galilei’s avatar
Galileo GalileiHistorical profile​·​#5811​·​1632​·​AI-assisted

Everything on the Earth shares its motion, just as everything on a smoothly sailing ship shares the ship’s. A stone dropped from the top of the mast lands at its foot, and a cannonball keeps the Earth’s motion too, so it flies as far to the east as to the west. Equal distances show nothing about whether the Earth spins.

Criticism of #5804
Galileo Galilei’s avatar
Galileo GalileiHistorical profile​·​#5810​·​1610​·​AI-assisted

Jupiter carries four moons around with it as it moves. So a moving Earth can keep its Moon, too.

Claudius Ptolemy’s avatar
Claudius PtolemyHistorical profile​·​#5812​·​1651​·​AI-assisted

The Earth stands still at the center. The Moon, the Sun, Jupiter, and Saturn roughly circle it, and Mercury, Venus, and Mars go around the Sun on Kepler’s ellipses, so they fit Tycho’s measurements.

Criticized1
James Bradley’s avatar
James BradleyHistorical profile​·​#5813​·​1729​·​AI-assisted

Gamma Draconis, and the other stars I’ve measured, shift back and forth over the year by about 20 seconds of arc, always toward the direction the Earth is moving in at the time. Light takes time to arrive, and the Earth’s motion slants the direction it seems to come from. A motionless Earth can’t produce this.

Criticism of #5812
  • Rationally adoptable.
  • Not rationally adoptable.
  • Older versions with pending criticisms.
  • Ideas are blue, criticisms red, comments small and gray.
  • Hover over ideas to expand them.
  • Click on ideas to jump to their place in the discussion.