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Duodecimal (base 12) to Hexadecimal (base 16) Conversion Table

Quick Find Conversion Table

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0 - 23
duodecimal (base 12) to hexadecimal (base 16)
012= 016
112= 116
212= 216
312= 316
412= 416
512= 516
612= 616
712= 716
812= 816
912= 916
a12= a16
b12= b16
1012= c16
1112= d16
1212= e16
1312= f16
1412= 1016
1512= 1116
1612= 1216
1712= 1316
1812= 1416
1912= 1516
1a12= 1616
1b12= 1716
24 - 47
duodecimal (base 12) to hexadecimal (base 16)
2012= 1816
2112= 1916
2212= 1a16
2312= 1b16
2412= 1c16
2512= 1d16
2612= 1e16
2712= 1f16
2812= 2016
2912= 2116
2a12= 2216
2b12= 2316
3012= 2416
3112= 2516
3212= 2616
3312= 2716
3412= 2816
3512= 2916
3612= 2a16
3712= 2b16
3812= 2c16
3912= 2d16
3a12= 2e16
3b12= 2f16
48 - 71
duodecimal (base 12) to hexadecimal (base 16)
4012= 3016
4112= 3116
4212= 3216
4312= 3316
4412= 3416
4512= 3516
4612= 3616
4712= 3716
4812= 3816
4912= 3916
4a12= 3a16
4b12= 3b16
5012= 3c16
5112= 3d16
5212= 3e16
5312= 3f16
5412= 4016
5512= 4116
5612= 4216
5712= 4316
5812= 4416
5912= 4516
5a12= 4616

duodecimal (base 12)

The duodecimal system (also known as base 12 or dozenal) is a positional notation numeral system using twelve as its base.

hexadecimal (base 16)

In mathematics and computing, hexadecimal (also base 16, or hex) is a positional numeral system with a radix, or base, of 16. It uses sixteen distinct symbols, most often the symbols 0–9 to represent values zero to nine, and A, B, C, D, E, F (or alternatively a, b, c, d, e, f) to represent values ten to fifteen.