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From the Notation section:
"In 1856, Wilhelm Eduard Weber and Rudolf Kohlrausch had used c for a different constant that was later shown to equal √2 times the speed of light in vacuum."
Please replace with \sqrt{2}. LOWERCASEUSERNAME (talk) 23:27, 22 June 2026 (UTC)

The lede says When communicating with distant space probes, it can take hours for signals to travel.
It might be time to change this soon, as NASA says Voyager 1 will be one light day from Earth in November this year [1]. ☆ Bri (talk) 14:16, 7 July 2026 (UTC)
The name luminal speed for the speed of light in vacuum is allowed by iternational IEC standards. It is shorter, exact and it also fits to broadly used superluminal speed and subluminal speed. Will you add it into the first line just after (or maybe even before) speed of light in vacuum?
See official page controlled by IEC, Electropedia:
Note 3 to entry: The term “luminal speed" is used in relativity theory. Related concepts are "subluminal speed" and "superluminal speed". JOb (talk) 20:44, 10 July 2026 (UTC)
I just noticed that the lede and the article are almost entirely about "speed of light in vacuum". Of course in any case where we discuss "speed of light in vacuum", we switch to "speed of light" once that context is established. That is what we should do in this article: start with the fully specific term as the title, explain the issue and use "speed of light" as normal. One of our sources (https://electropedia.org/iev/iev.nsf/display?openform&ievref=113-01-34) puts it this way:
The term "speed of light" shall be used only when the context indicates without ambiguity that the full term “speed of light in vacuum” is meant, because "speed of light" is also observed in matter where its value is always less than that in vacuum.
Coming into the article the context is not established: we should begin with "speed of light in vacuum" as the title. Johnjbarton (talk) 19:45, 15 July 2026 (UTC)
After looking over the talk page archives, I can see that this has been debated repeatedly, but I can't for the life of me wrap my head around the logic that has led to the current situation in the infobox. Why are these values so dramatically reduced in precision compared to the exact figure of 299,792,458 m/s?
The primary argument in favor of the status quo seems to be that most visitors to the page won't need any more precision than that. In that case, why provide the 299,792,458 figure in the first place? Just say it's approximately 300 million, and anybody who wants more precision can click on the footnote to get it straight from the source. Wikipedia is a work of reference, and it should provide reference values. These numbers are not so complicated that they require dumbing down. And the article as a whole is clearly not written to be understood by people who would find such numbers overwhelming.
Let's say there are two types of people who come to this article looking for an imperial value for the speed of light: people who want to see 186,282 (or, to match the precision of the original value, 186,282.397), and people who will be satisfied with the precision level of 186,000. As it currently stands, the latter group will be okay, and the former will be annoyed that they have to do the calculation themselves. If more precision was added to the values in the infobox, the former group would be satisfied, and the latter would have the far simpler task of mentally replacing the "extraneous" digits with zeroes. Even if the former group is very small, which I doubt, providing more precision would be a net benefit to our readers.
Also, why are the approximate values cited to a high school algebra textbook? Surely, regardless of the chosen level of precision, converting the original value into other units falls under WP:BASICMATH and requires no citation. I can't see the cited page on Google Books, does it have something to say about the significant digits themselves? – Reschultzed (talk) 03:05, 22 July 2026 (UTC)
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