Number Symbols Copy and Paste

Tap a number to copy it: 314 characters in eight groups, from circled ① to Roman Ⅻ.

⓪Circled 0U+24EAReady to copy

314 characters. Tap one to copy it.

Circled 72

White on black 40

Brackets, stops and commas 51

Bold, outline and wide 60

Superscript and subscript 20

Roman numerals 37

Fractions 21

Keycap emoji 13

How it works

Number symbols to copy and paste, grouped by form: circled, white on black, bracketed, styled, raised and lowered, Roman, fractions and keycap emoji. No style counts forever: circled stops at 50. Some apps strip or block these characters, and screen readers may read them badly.

Read the full guide

How high each style counts

A styled number exists only where Unicode made one. Circled runs 0 to 50; white on black circles, brackets and full stops reach 20; double circles and sans-serif circles stop at 10, commas at 9. The black squares go 10 to 80 in tens: they are speed limit signs from a Japanese television standard. There is no circled 51.

Every form of one number

Search a number as a word: four finds the 19 forms of 4, from ④ to Ⅳ and the keycap, while the digit 4 finds 132 tiles, because the box also reads code points. Words work from zero to twelve. Writing 2026 needs a zero, and double circles and brackets have none.

Tips
  • A site that normalises text (NFKC) turns ④ into 4 and Ⅳ into IV; 80 tiles, such as ❹, survive.
  • On our Mac the sans-serif circles 0 to 9 drew exactly like the ordinary ones; other devices may differ.
  • No ready-made 5/12? Type 5, the fraction slash ⁄ and 12: Unicode calls that the generic way to write fractions.

Questions and answers

What are the symbols for 4?

Nineteen: ④ ⓸ ➃ ❹ ➍ ⑷ ⒋ 🄅 𝟒 𝟜 𝟦 𝟰 𝟺 4 ⁴ ₄ Ⅳ ⅳ and the keycap 4️⃣. Search four to line them up. Every number 4 symbol here is a character, so it pastes as text.

How high do circled numbers go?

To 50. ⓪ to ⑳ are in the Enclosed Alphanumerics block; ㉑ to ㊿ came with Unicode 3.2 in a CJK block. On our Mac one font drew ⓪ to ⑨ and another most of the rest, so the look shifts at ⑩.

Are Roman numeral symbols the same as letters?

No. Ⅻ is one character; XII is three letters. Unicode added the numerals 1 to 12, 50, 100, 500 and 1000 for compatibility with East Asian standards and says letters are preferable for most purposes. The single characters stay upright in vertical text.

All 314 characters

Circled 72

  • Circled 0 U+24EA Circled digit zero. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 0.
  • Circled 1 U+2460 Circled digit one. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 1.
  • Circled 10 U+2469 Circled number ten. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 10.
  • Circled 11 U+246A Circled number eleven. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 11.
  • Circled 12 U+246B Circled number twelve. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 12.
  • Circled 13 U+246C Circled number thirteen. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 13.
  • Circled 14 U+246D Circled number fourteen. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 14.
  • Circled 15 U+246E Circled number fifteen. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 15.
  • Circled 16 U+246F Circled number sixteen. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 16.
  • Circled 17 U+2470 Circled number seventeen. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 17.
Show all 314 characters (304 more)

Circled, continued

  • Circled 18 U+2471 Circled number eighteen. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 18.
  • Circled 19 U+2472 Circled number nineteen. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 19.
  • Circled 2 U+2461 Circled digit two. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 2.
  • Circled 20 U+2473 Circled number twenty. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 20.
  • Circled 21 U+3251 Circled number twenty one. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 21.
  • Circled 22 U+3252 Circled number twenty two. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 22.
  • Circled 23 U+3253 Circled number twenty three. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 23.
  • Circled 24 U+3254 Circled number twenty four. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 24.
  • Circled 25 U+3255 Circled number twenty five. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 25.
  • Circled 26 U+3256 Circled number twenty six. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 26.
  • Circled 27 U+3257 Circled number twenty seven. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 27.
  • Circled 28 U+3258 Circled number twenty eight. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 28.
  • Circled 29 U+3259 Circled number twenty nine. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 29.
  • Circled 3 U+2462 Circled digit three. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 3.
  • Circled 30 U+325A Circled number thirty. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 30.
  • Circled 31 U+325B Circled number thirty one. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 31.
  • Circled 32 U+325C Circled number thirty two. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 32.
  • Circled 33 U+325D Circled number thirty three. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 33.
  • Circled 34 U+325E Circled number thirty four. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 34.
  • Circled 35 U+325F Circled number thirty five. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 35.
  • Circled 36 U+32B1 Circled number thirty six. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 36.
  • Circled 37 U+32B2 Circled number thirty seven. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 37.
  • Circled 38 U+32B3 Circled number thirty eight. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 38.
  • Circled 39 U+32B4 Circled number thirty nine. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 39.
  • Circled 4 U+2463 Circled digit four. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 4.
  • Circled 40 U+32B5 Circled number forty. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 40.
  • Circled 41 U+32B6 Circled number forty one. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 41.
  • Circled 42 U+32B7 Circled number forty two. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 42.
  • Circled 43 U+32B8 Circled number forty three. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 43.
  • Circled 44 U+32B9 Circled number forty four. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 44.
  • Circled 45 U+32BA Circled number forty five. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 45.
  • Circled 46 U+32BB Circled number forty six. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 46.
  • Circled 47 U+32BC Circled number forty seven. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 47.
  • Circled 48 U+32BD Circled number forty eight. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 48.
  • Circled 49 U+32BE Circled number forty nine. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 49.
  • Circled 5 U+2464 Circled digit five. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 5.
  • Circled 50 U+32BF Circled number fifty. Enclosed CJK Letters and Months block, Unicode 3.2. Normalising text to NFKC turns it into 50.
  • Circled 6 U+2465 Circled digit six. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 6.
  • Circled 7 U+2466 Circled digit seven. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 7.
  • Circled 8 U+2467 Circled digit eight. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 8.
  • Circled 9 U+2468 Circled digit nine. Enclosed Alphanumerics block, Unicode 1.1. Normalising text to NFKC turns it into 9.
  • Double circled 1 U+24F5 Double circled digit one. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 10 U+24FE Double circled number ten. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 2 U+24F6 Double circled digit two. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 3 U+24F7 Double circled digit three. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 4 U+24F8 Double circled digit four. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 5 U+24F9 Double circled digit five. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 6 U+24FA Double circled digit six. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 7 U+24FB Double circled digit seven. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 8 U+24FC Double circled digit eight. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Double circled 9 U+24FD Double circled digit nine. Enclosed Alphanumerics block, Unicode 3.2. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Sans-serif circled 0 U+1F10B Dingbat circled sans-serif digit zero. Enclosed Alphanumeric Supplement block, Unicode 7.0. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+24EA, circled 0.
  • Sans-serif circled 1 U+2780 Dingbat circled sans-serif digit one. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2460, circled 1.
  • Sans-serif circled 10 U+2789 Dingbat circled sans-serif number ten. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Sans-serif circled 2 U+2781 Dingbat circled sans-serif digit two. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2461, circled 2.
  • Sans-serif circled 3 U+2782 Dingbat circled sans-serif digit three. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2462, circled 3.
  • Sans-serif circled 4 U+2783 Dingbat circled sans-serif digit four. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2463, circled 4.
  • Sans-serif circled 5 U+2784 Dingbat circled sans-serif digit five. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2464, circled 5.
  • Sans-serif circled 6 U+2785 Dingbat circled sans-serif digit six. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2465, circled 6.
  • Sans-serif circled 7 U+2786 Dingbat circled sans-serif digit seven. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2466, circled 7.
  • Sans-serif circled 8 U+2787 Dingbat circled sans-serif digit eight. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2467, circled 8.
  • Sans-serif circled 9 U+2788 Dingbat circled sans-serif digit nine. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2468, circled 9.

White on black 40

  • Black circle 0 U+24FF Negative circled digit zero. Enclosed Alphanumerics block, Unicode 4.0. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 1 U+2776 Dingbat negative circled digit one. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 10 U+277F Dingbat negative circled number ten. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 11 U+24EB Negative circled number eleven. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 12 U+24EC Negative circled number twelve. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 13 U+24ED Negative circled number thirteen. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 14 U+24EE Negative circled number fourteen. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 15 U+24EF Negative circled number fifteen. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 16 U+24F0 Negative circled number sixteen. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 17 U+24F1 Negative circled number seventeen. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 18 U+24F2 Negative circled number eighteen. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 19 U+24F3 Negative circled number nineteen. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 2 U+2777 Dingbat negative circled digit two. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 20 U+24F4 Negative circled number twenty. Enclosed Alphanumerics block, Unicode 3.2. The Unicode Standard calls 11 to 20 a continuation of the white on black 1 to 10 of the Dingbats block. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 3 U+2778 Dingbat negative circled digit three. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 4 U+2779 Dingbat negative circled digit four. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 5 U+277A Dingbat negative circled digit five. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 6 U+277B Dingbat negative circled digit six. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 7 U+277C Dingbat negative circled digit seven. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 8 U+277D Dingbat negative circled digit eight. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Black circle 9 U+277E Dingbat negative circled digit nine. Dingbats block, Unicode 1.1. One of the ten white on black numbers of the Dingbats block; 11 to 20 continue the set from the Enclosed Alphanumerics block, says the Unicode Standard. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 10 on black square U+3248 Circled number ten on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 10 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 20 on black square U+3249 Circled number twenty on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 20 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 30 on black square U+324A Circled number thirty on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 30 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 40 on black square U+324B Circled number forty on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 40 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 50 on black square U+324C Circled number fifty on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 50 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 60 on black square U+324D Circled number sixty on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 60 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 70 on black square U+324E Circled number seventy on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 70 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Circled 80 on black square U+324F Circled number eighty on black square. Enclosed CJK Letters and Months block, Unicode 5.2. Encoded for the Japanese television standard ARIB STD B24, where it stands for a speed limit sign, says the Unicode Standard; its names list glosses this one as speed limit 80 km/h. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Sans-serif black circle 0 U+1F10C Dingbat negative circled sans-serif digit zero. Enclosed Alphanumeric Supplement block, Unicode 7.0. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+24FF, black circle 0.
  • Sans-serif black circle 1 U+278A Dingbat negative circled sans-serif digit one. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2776, black circle 1.
  • Sans-serif black circle 10 U+2793 Dingbat negative circled sans-serif number ten. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is.
  • Sans-serif black circle 2 U+278B Dingbat negative circled sans-serif digit two. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2777, black circle 2.
  • Sans-serif black circle 3 U+278C Dingbat negative circled sans-serif digit three. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2778, black circle 3.
  • Sans-serif black circle 4 U+278D Dingbat negative circled sans-serif digit four. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+2779, black circle 4.
  • Sans-serif black circle 5 U+278E Dingbat negative circled sans-serif digit five. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+277A, black circle 5.
  • Sans-serif black circle 6 U+278F Dingbat negative circled sans-serif digit six. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+277B, black circle 6.
  • Sans-serif black circle 7 U+2790 Dingbat negative circled sans-serif digit seven. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+277C, black circle 7.
  • Sans-serif black circle 8 U+2791 Dingbat negative circled sans-serif digit eight. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+277D, black circle 8.
  • Sans-serif black circle 9 U+2792 Dingbat negative circled sans-serif digit nine. Dingbats block, Unicode 1.1. Unicode maps it to no plain digits, so normalising text leaves it as it is. On our test Mac it drew exactly like U+277E, black circle 9.

Brackets, stops and commas 51

  • 0 with comma U+1F101 Digit zero comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 0 and an ordinary comma.
  • 0 with full stop U+1F100 Digit zero full stop. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 0 and an ordinary full stop.
  • 1 in brackets U+2474 Parenthesized digit one. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (1).
  • 1 with comma U+1F102 Digit one comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 1 and an ordinary comma.
  • 1 with full stop U+2488 Digit one full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 1 and an ordinary full stop.
  • 10 in brackets U+247D Parenthesized number ten. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (10).
  • 10 with full stop U+2491 Number ten full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 10 and an ordinary full stop.
  • 11 in brackets U+247E Parenthesized number eleven. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (11).
  • 11 with full stop U+2492 Number eleven full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 11 and an ordinary full stop.
  • 12 in brackets U+247F Parenthesized number twelve. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (12).
  • 12 with full stop U+2493 Number twelve full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 12 and an ordinary full stop.
  • 13 in brackets U+2480 Parenthesized number thirteen. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (13).
  • 13 with full stop U+2494 Number thirteen full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 13 and an ordinary full stop.
  • 14 in brackets U+2481 Parenthesized number fourteen. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (14).
  • 14 with full stop U+2495 Number fourteen full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 14 and an ordinary full stop.
  • 15 in brackets U+2482 Parenthesized number fifteen. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (15).
  • 15 with full stop U+2496 Number fifteen full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 15 and an ordinary full stop.
  • 16 in brackets U+2483 Parenthesized number sixteen. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (16).
  • 16 with full stop U+2497 Number sixteen full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 16 and an ordinary full stop.
  • 17 in brackets U+2484 Parenthesized number seventeen. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (17).
  • 17 with full stop U+2498 Number seventeen full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 17 and an ordinary full stop.
  • 18 in brackets U+2485 Parenthesized number eighteen. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (18).
  • 18 with full stop U+2499 Number eighteen full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 18 and an ordinary full stop.
  • 19 in brackets U+2486 Parenthesized number nineteen. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (19).
  • 19 with full stop U+249A Number nineteen full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 19 and an ordinary full stop.
  • 2 in brackets U+2475 Parenthesized digit two. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (2).
  • 2 with comma U+1F103 Digit two comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 2 and an ordinary comma.
  • 2 with full stop U+2489 Digit two full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 2 and an ordinary full stop.
  • 20 in brackets U+2487 Parenthesized number twenty. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (20).
  • 20 with full stop U+249B Number twenty full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 20 and an ordinary full stop.
  • 3 in brackets U+2476 Parenthesized digit three. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (3).
  • 3 with comma U+1F104 Digit three comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 3 and an ordinary comma.
  • 3 with full stop U+248A Digit three full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 3 and an ordinary full stop.
  • 4 in brackets U+2477 Parenthesized digit four. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (4).
  • 4 with comma U+1F105 Digit four comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 4 and an ordinary comma.
  • 4 with full stop U+248B Digit four full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 4 and an ordinary full stop.
  • 5 in brackets U+2478 Parenthesized digit five. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (5).
  • 5 with comma U+1F106 Digit five comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 5 and an ordinary comma.
  • 5 with full stop U+248C Digit five full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 5 and an ordinary full stop.
  • 6 in brackets U+2479 Parenthesized digit six. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (6).
  • 6 with comma U+1F107 Digit six comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 6 and an ordinary comma.
  • 6 with full stop U+248D Digit six full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 6 and an ordinary full stop.
  • 7 in brackets U+247A Parenthesized digit seven. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (7).
  • 7 with comma U+1F108 Digit seven comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 7 and an ordinary comma.
  • 7 with full stop U+248E Digit seven full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 7 and an ordinary full stop.
  • 8 in brackets U+247B Parenthesized digit eight. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (8).
  • 8 with comma U+1F109 Digit eight comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 8 and an ordinary comma.
  • 8 with full stop U+248F Digit eight full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 8 and an ordinary full stop.
  • 9 in brackets U+247C Parenthesized digit nine. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into (9).
  • 9 with comma U+1F10A Digit nine comma. Enclosed Alphanumeric Supplement block, Unicode 5.2. Normalising text to NFKC turns it into 9 and an ordinary comma.
  • 9 with full stop U+2490 Digit nine full stop. Enclosed Alphanumerics block, Unicode 1.1. Made as a bullet for a numbered list, says the Unicode Standard. Normalising text to NFKC turns it into 9 and an ordinary full stop.

Bold, outline and wide 60

  • Bold 0 U+1D7CE Mathematical bold digit zero. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 0.
  • Bold 1 U+1D7CF Mathematical bold digit one. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 1.
  • Bold 2 U+1D7D0 Mathematical bold digit two. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 2.
  • Bold 3 U+1D7D1 Mathematical bold digit three. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 3.
  • Bold 4 U+1D7D2 Mathematical bold digit four. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 4.
  • Bold 5 U+1D7D3 Mathematical bold digit five. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 5.
  • Bold 6 U+1D7D4 Mathematical bold digit six. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 6.
  • Bold 7 U+1D7D5 Mathematical bold digit seven. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 7.
  • Bold 8 U+1D7D6 Mathematical bold digit eight. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 8.
  • Bold 9 U+1D7D7 Mathematical bold digit nine. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 9.
  • Double-struck 0 U+1D7D8 Mathematical double-struck digit zero. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 0.
  • Double-struck 1 U+1D7D9 Mathematical double-struck digit one. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 1.
  • Double-struck 2 U+1D7DA Mathematical double-struck digit two. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 2.
  • Double-struck 3 U+1D7DB Mathematical double-struck digit three. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 3.
  • Double-struck 4 U+1D7DC Mathematical double-struck digit four. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 4.
  • Double-struck 5 U+1D7DD Mathematical double-struck digit five. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 5.
  • Double-struck 6 U+1D7DE Mathematical double-struck digit six. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 6.
  • Double-struck 7 U+1D7DF Mathematical double-struck digit seven. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 7.
  • Double-struck 8 U+1D7E0 Mathematical double-struck digit eight. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 8.
  • Double-struck 9 U+1D7E1 Mathematical double-struck digit nine. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 9.
  • Fullwidth 0 U+FF10 Fullwidth digit zero. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 0.
  • Fullwidth 1 U+FF11 Fullwidth digit one. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 1.
  • Fullwidth 2 U+FF12 Fullwidth digit two. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 2.
  • Fullwidth 3 U+FF13 Fullwidth digit three. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 3.
  • Fullwidth 4 U+FF14 Fullwidth digit four. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 4.
  • Fullwidth 5 U+FF15 Fullwidth digit five. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 5.
  • Fullwidth 6 U+FF16 Fullwidth digit six. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 6.
  • Fullwidth 7 U+FF17 Fullwidth digit seven. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 7.
  • Fullwidth 8 U+FF18 Fullwidth digit eight. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 8.
  • Fullwidth 9 U+FF19 Fullwidth digit nine. Halfwidth and Fullwidth Forms block, Unicode 1.1. A wide presentation form of the plain digit for East Asian typography, says the Unicode Standard. East Asian Width: fullwidth. Normalising text to NFKC turns it into 9.
  • Monospace 0 U+1D7F6 Mathematical monospace digit zero. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 0.
  • Monospace 1 U+1D7F7 Mathematical monospace digit one. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 1.
  • Monospace 2 U+1D7F8 Mathematical monospace digit two. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 2.
  • Monospace 3 U+1D7F9 Mathematical monospace digit three. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 3.
  • Monospace 4 U+1D7FA Mathematical monospace digit four. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 4.
  • Monospace 5 U+1D7FB Mathematical monospace digit five. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 5.
  • Monospace 6 U+1D7FC Mathematical monospace digit six. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 6.
  • Monospace 7 U+1D7FD Mathematical monospace digit seven. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 7.
  • Monospace 8 U+1D7FE Mathematical monospace digit eight. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 8.
  • Monospace 9 U+1D7FF Mathematical monospace digit nine. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 9.
  • Sans-serif 0 U+1D7E2 Mathematical sans-serif digit zero. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 0.
  • Sans-serif 1 U+1D7E3 Mathematical sans-serif digit one. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 1.
  • Sans-serif 2 U+1D7E4 Mathematical sans-serif digit two. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 2.
  • Sans-serif 3 U+1D7E5 Mathematical sans-serif digit three. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 3.
  • Sans-serif 4 U+1D7E6 Mathematical sans-serif digit four. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 4.
  • Sans-serif 5 U+1D7E7 Mathematical sans-serif digit five. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 5.
  • Sans-serif 6 U+1D7E8 Mathematical sans-serif digit six. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 6.
  • Sans-serif 7 U+1D7E9 Mathematical sans-serif digit seven. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 7.
  • Sans-serif 8 U+1D7EA Mathematical sans-serif digit eight. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 8.
  • Sans-serif 9 U+1D7EB Mathematical sans-serif digit nine. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 9.
  • Sans-serif bold 0 U+1D7EC Mathematical sans-serif bold digit zero. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 0.
  • Sans-serif bold 1 U+1D7ED Mathematical sans-serif bold digit one. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 1.
  • Sans-serif bold 2 U+1D7EE Mathematical sans-serif bold digit two. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 2.
  • Sans-serif bold 3 U+1D7EF Mathematical sans-serif bold digit three. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 3.
  • Sans-serif bold 4 U+1D7F0 Mathematical sans-serif bold digit four. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 4.
  • Sans-serif bold 5 U+1D7F1 Mathematical sans-serif bold digit five. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 5.
  • Sans-serif bold 6 U+1D7F2 Mathematical sans-serif bold digit six. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 6.
  • Sans-serif bold 7 U+1D7F3 Mathematical sans-serif bold digit seven. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 7.
  • Sans-serif bold 8 U+1D7F4 Mathematical sans-serif bold digit eight. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 8.
  • Sans-serif bold 9 U+1D7F5 Mathematical sans-serif bold digit nine. Mathematical Alphanumeric Symbols block, Unicode 3.1. Normalising text to NFKC turns it into 9.

Superscript and subscript 20

  • Subscript 0 U+2080 Subscript zero. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 0.
  • Subscript 1 U+2081 Subscript one. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 1.
  • Subscript 2 U+2082 Subscript two. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 2.
  • Subscript 3 U+2083 Subscript three. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 3.
  • Subscript 4 U+2084 Subscript four. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 4.
  • Subscript 5 U+2085 Subscript five. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 5.
  • Subscript 6 U+2086 Subscript six. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 6.
  • Subscript 7 U+2087 Subscript seven. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 7.
  • Subscript 8 U+2088 Subscript eight. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 8.
  • Subscript 9 U+2089 Subscript nine. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 9.
  • Superscript 0 U+2070 Superscript zero. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 0.
  • Superscript 1 U+00B9 Superscript one. Latin-1 Supplement block, Unicode 1.1. Normalising text to NFKC turns it into 1.
  • Superscript 2 U+00B2 Superscript two. Latin-1 Supplement block, Unicode 1.1. The Unicode names list also calls it squared. Normalising text to NFKC turns it into 2.
  • Superscript 3 U+00B3 Superscript three. Latin-1 Supplement block, Unicode 1.1. The Unicode names list also calls it cubed. Normalising text to NFKC turns it into 3.
  • Superscript 4 U+2074 Superscript four. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 4.
  • Superscript 5 U+2075 Superscript five. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 5.
  • Superscript 6 U+2076 Superscript six. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 6.
  • Superscript 7 U+2077 Superscript seven. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 7.
  • Superscript 8 U+2078 Superscript eight. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 8.
  • Superscript 9 U+2079 Superscript nine. Superscripts and Subscripts block, Unicode 1.1. Normalising text to NFKC turns it into 9.

Roman numerals 37

  • Roman numeral 1 U+2160 Roman numeral one. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter I.
  • Roman numeral 10 U+2169 Roman numeral ten. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter X.
  • Roman numeral 100 U+216D Roman numeral one hundred. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter C.
  • Roman numeral 1000 U+216F Roman numeral one thousand. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter M.
  • Roman numeral 1000, old form U+2180 Roman numeral one thousand c d. Number Forms block, Unicode 1.1. The Unicode names list files it under Archaic Roman numerals. Unicode maps it to no plain letters, so normalising text leaves it as it is.
  • Roman numeral 10000 U+2182 Roman numeral ten thousand. Number Forms block, Unicode 1.1. The Unicode names list files it under Archaic Roman numerals. Unicode maps it to no plain letters, so normalising text leaves it as it is.
  • Roman numeral 11 U+216A Roman numeral eleven. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters XI.
  • Roman numeral 12 U+216B Roman numeral twelve. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters XII.
  • Roman numeral 2 U+2161 Roman numeral two. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters II.
  • Roman numeral 3 U+2162 Roman numeral three. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters III.
  • Roman numeral 4 U+2163 Roman numeral four. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters IV.
  • Roman numeral 5 U+2164 Roman numeral five. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter V.
  • Roman numeral 50 U+216C Roman numeral fifty. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter L.
  • Roman numeral 50, early form U+2186 Roman numeral fifty early form. Number Forms block, Unicode 5.1. The Unicode names list files it under Archaic Roman numerals. Unicode maps it to no plain letters, so normalising text leaves it as it is.
  • Roman numeral 500 U+216E Roman numeral five hundred. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter D.
  • Roman numeral 5000 U+2181 Roman numeral five thousand. Number Forms block, Unicode 1.1. The Unicode names list files it under Archaic Roman numerals. Unicode maps it to no plain letters, so normalising text leaves it as it is.
  • Roman numeral 6 U+2165 Roman numeral six. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters VI.
  • Roman numeral 6, late form U+2185 Roman numeral six late form. Number Forms block, Unicode 5.1. The Unicode names list files it under Archaic Roman numerals. Unicode maps it to no plain letters, so normalising text leaves it as it is.
  • Roman numeral 7 U+2166 Roman numeral seven. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters VII.
  • Roman numeral 8 U+2167 Roman numeral eight. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters VIII.
  • Roman numeral 9 U+2168 Roman numeral nine. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters IX.
  • Small Roman numeral 1 U+2170 Small Roman numeral one. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter i.
  • Small Roman numeral 10 U+2179 Small Roman numeral ten. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter x.
  • Small Roman numeral 100 U+217D Small Roman numeral one hundred. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter c.
  • Small Roman numeral 1000 U+217F Small Roman numeral one thousand. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter m.
  • Small Roman numeral 11 U+217A Small Roman numeral eleven. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters xi.
  • Small Roman numeral 12 U+217B Small Roman numeral twelve. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters xii.
  • Small Roman numeral 2 U+2171 Small Roman numeral two. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters ii.
  • Small Roman numeral 3 U+2172 Small Roman numeral three. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters iii.
  • Small Roman numeral 4 U+2173 Small Roman numeral four. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters iv.
  • Small Roman numeral 5 U+2174 Small Roman numeral five. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter v.
  • Small Roman numeral 50 U+217C Small Roman numeral fifty. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter l.
  • Small Roman numeral 500 U+217E Small Roman numeral five hundred. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letter d.
  • Small Roman numeral 6 U+2175 Small Roman numeral six. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters vi.
  • Small Roman numeral 7 U+2176 Small Roman numeral seven. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters vii.
  • Small Roman numeral 8 U+2177 Small Roman numeral eight. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters viii.
  • Small Roman numeral 9 U+2178 Small Roman numeral nine. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into the letters ix.

Fractions 21

  • Fraction 0/3 U+2189 Vulgar fraction zero thirds. Number Forms block, Unicode 5.2. Used in baseball scoring, from ARIB STD B24, says the Unicode names list. Normalising text to NFKC turns it into 0, a fraction slash (U+2044) and 3.
  • Fraction 1/10 U+2152 Vulgar fraction one tenth. Number Forms block, Unicode 5.2. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 10.
  • Fraction 1/2 U+00BD Vulgar fraction one half. Latin-1 Supplement block, Unicode 1.1. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 2.
  • Fraction 1/3 U+2153 Vulgar fraction one third. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 3.
  • Fraction 1/4 U+00BC Vulgar fraction one quarter. Latin-1 Supplement block, Unicode 1.1. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 4.
  • Fraction 1/5 U+2155 Vulgar fraction one fifth. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 5.
  • Fraction 1/6 U+2159 Vulgar fraction one sixth. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 6.
  • Fraction 1/7 U+2150 Vulgar fraction one seventh. Number Forms block, Unicode 5.2. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 7.
  • Fraction 1/8 U+215B Vulgar fraction one eighth. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 8.
  • Fraction 1/9 U+2151 Vulgar fraction one ninth. Number Forms block, Unicode 5.2. Normalising text to NFKC turns it into 1, a fraction slash (U+2044) and 9.
  • Fraction 2/3 U+2154 Vulgar fraction two thirds. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 2, a fraction slash (U+2044) and 3.
  • Fraction 2/5 U+2156 Vulgar fraction two fifths. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 2, a fraction slash (U+2044) and 5.
  • Fraction 3/4 U+00BE Vulgar fraction three quarters. Latin-1 Supplement block, Unicode 1.1. Normalising text to NFKC turns it into 3, a fraction slash (U+2044) and 4.
  • Fraction 3/5 U+2157 Vulgar fraction three fifths. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 3, a fraction slash (U+2044) and 5.
  • Fraction 3/8 U+215C Vulgar fraction three eighths. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 3, a fraction slash (U+2044) and 8.
  • Fraction 4/5 U+2158 Vulgar fraction four fifths. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 4, a fraction slash (U+2044) and 5.
  • Fraction 5/6 U+215A Vulgar fraction five sixths. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 5, a fraction slash (U+2044) and 6.
  • Fraction 5/8 U+215D Vulgar fraction five eighths. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 5, a fraction slash (U+2044) and 8.
  • Fraction 7/8 U+215E Vulgar fraction seven eighths. Number Forms block, Unicode 1.1. Normalising text to NFKC turns it into 7, a fraction slash (U+2044) and 8.
  • Fraction numerator 1 U+215F Fraction numerator one. Number Forms block, Unicode 1.1. A 1 and a fraction slash in one character, waiting for a denominator. Normalising text to NFKC turns it into 1 and a fraction slash (U+2044).
  • Fraction slash U+2044 Fraction slash. General Punctuation block, Unicode 1.1. For composing arbitrary fractions, says the Unicode names list. It is not the keyboard slash, U+002F.

Keycap emoji 13

  • Hundred points U+1F4AF. The number 100 as one colour emoji. CLDR files it under 100, hundred, score and perfect. Emoji 0.6.
  • Input numbers U+1F522. CLDR files it under 1234, input and numbers. Emoji 0.6.
  • Keycap 0 U+0030 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 1 U+0031 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 10 U+1F51F. One character of its own, unlike keycaps 0 to 9, which are sequences. Emoji 0.6.
  • Keycap 2 U+0032 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 3 U+0033 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 4 U+0034 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 5 U+0035 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 6 U+0036 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 7 U+0037 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 8 U+0038 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.
  • Keycap 9 U+0039 U+FE0F U+20E3. Three characters: the plain digit, U+FE0F and U+20E3, the combining enclosing keycap. Software that counts code points sees 3. Emoji 0.6.

How this list was compiled: Built by script on 2026-09-19, not typed by hand. Every character was checked against UnicodeData.txt, version 18.0.0 (https://www.unicode.org/Public/18.0.0/ucd/UnicodeData.txt): the code points and the character names in the notes come from that file, names in sentence case. The number on each tile is the numeric value that file gives the character (its ninth field), checked one by one, and every row was compared with all the character names of its pattern in the file, so a row ends where Unicode ends: circled at 50, white on black circles at 20, brackets and full stops at 20, double circles and the sans-serif dingbat circles at 10, ready-made Roman numerals at 12. Block names come from Blocks.txt (https://www.unicode.org/Public/18.0.0/ucd/Blocks.txt) and the Unicode version each character arrived in from DerivedAge.txt (https://www.unicode.org/Public/18.0.0/ucd/DerivedAge.txt), both version 18.0.0. Other names and uses of a character come from the annotations in NamesList.txt, version 18.0.0 (https://www.unicode.org/Public/18.0.0/ucd/NamesList.txt). That is where speed limit 10 km/h to 80 km/h and the heading that the circled numbers on black squares come from ARIB STD B24, the heading Archaic Roman numerals, squared and cubed, baseball scoring for the fraction zero thirds, and "for composing arbitrary fractions" come from. The emoji, their names, code points and Emoji version numbers come from emoji-test.txt, version 18.0 (https://www.unicode.org/Public/18.0.0/emoji/emoji-test.txt); names are the CLDR short names printed in that file, in sentence case. Emoji search words are from the CLDR English annotations (https://github.com/unicode-org/cldr/blob/main/common/annotations/en.xml and https://github.com/unicode-org/cldr/blob/main/common/annotationsDerived/en.xml, main branch). Which characters are wide comes from EastAsianWidth.txt, version 18.0.0 (https://www.unicode.org/Public/18.0.0/ucd/EastAsianWidth.txt), read on 2026-09-19. The Unicode Standard, Version 18.0, chapter 22, Symbols (https://www.unicode.org/versions/Unicode18.0.0/core-spec/chapter-22/), read on 2026-09-19: the circled, bracketed and full stop numbers are meant as bullets for ordered lists; white on black 11 to 20 continue the 1 to 10 of the Dingbats block and circled 21 to 50 continue the circled numbers from another block; the circled numbers on black squares are speed limit signs of ARIB STD B24; most of these sets lack a 0; fullwidth digits are wide presentation forms for East Asian typography; Roman numerals through 12 plus L, C, D and M were encoded for compatibility with East Asian standards, letters are preferable for most purposes, and the single characters stay upright in vertical layout; the fraction slash is the more generic way to write a fraction. The build checks each sentence against a saved copy of the page. What a character turns into when text is normalised comes from the compatibility mappings in the sixth field of UnicodeData.txt; normalization form NFKC is defined in Unicode Standard Annex 15 (https://www.unicode.org/reports/tr15/). 234 of the 314 tiles change, and the build checks each mapping against the NFKC of its own runtime. The rows with no mapping are the white on black circles, the double circles, the sans-serif dingbat circles, the circled numbers on black squares and the archaic Roman numerals. Our own measurement, not a Unicode fact: on 2026-09-19 every tile was drawn with CoreText in the system fonts of one Mac and none came out as an empty box. 20 of the 22 sans-serif dingbat circles drew pixel for pixel like the ordinary circled or white on black number of the same value, and their notes say so. Left out because they drew as empty boxes there: the ten segmented digits (U+1FBF0 to U+1FBF9), the ten outlined digits of Unicode 16.0 (U+1CCF0 to U+1CCF9), the turned digits two and three (U+218A, U+218B) and the Roman numerals fifty thousand and one hundred thousand (U+2187, U+2188). U+2183, Roman numeral reversed one hundred, is left out because it is a letter with no numeric value. Left out on purpose: the digits of other scripts, the circled and bracketed Chinese numerals, counting rods, Mayan and Kaktovik numerals. The plain tile names, the search words and the order of the groups are this site's own choice; a spelled number (zero to twelve) is a search word only on tiles of exactly that value. All sources were checked on 2026-09-19. Licence: own work