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Log(13)

Log (13) is the decimal logarithm of 13:

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Result:
Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log(13) = 1.1139433523068.

Calculate Log 13

To solve the equation log (13) = x using a base distinct from 10 carry out the following steps.
  1. Apply the change of base rule:
    log a (x) = log b (x) / log b (a)
    With b = e:
    log a (x) = ln(x) / ln(a)
  2. Substitute the variables:
    With x = 13, a = 10:
    log (13) = ln(13) / ln(10)
  3. Evaluate the term:
    ln(13) / ln(10)
    = 8.74113642290101 / 2.30258509299405
    = 1.1139433523068
    = Decimal logarithm of 13

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 10 1.1139433523068 = 13
  • 10 1.1139433523068 = 13 is the exponential form of log(13)
  • 10 is the logarithm base of log(13)
  • 13 is the argument of log(13)
  • 1.1139433523068 is the exponent or power of 10 1.1139433523068 = 13
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

Log(13) = 1.1139433523068.
Carry out the change of base logarithm operation.
It means the logarithm of 13 with base 10.
Apply the change of base rule, substitute the variables, and evaluate the term.
The value is 1.1139433523068.
In exponential form is 10 1.1139433523068 = 13.
Decimal log of 13 = 1.1139433523068.

For further questions about the logarithm equation, common logarithms, the exponential function or the exponential equation fill in the form at the bottom.

Summary

In conclusion, log 13 = 1.1139433523068.

You now know everything about the decimal logarithm with argument 13 and exponent 1.1139433523068.
Further information, particularly about the binary logarithm, natural logarithm and decadic logarithm can be located in our article logarithm.

Besides the types of logarithms, there, we also shed a light on the terms on the properties of logarithms and the logarithm function, just to name a few.

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Table

Our quick conversion table is easy to use:
log(x) Value
log(12.5)=1.0969100130081
log(12.51)=1.0972573096934
log(12.52)=1.0976043288744
log(12.53)=1.0979510709942
log(12.54)=1.0982975364947
log(12.55)=1.0986437258171
log(12.56)=1.0989896394012
log(12.57)=1.099335277686
log(12.58)=1.0996806411093
log(12.59)=1.1000257301079
log(12.6)=1.1003705451176
log(12.61)=1.1007150865731
log(12.62)=1.1010593549081
log(12.63)=1.1014033505553
log(12.64)=1.1017470739464
log(12.65)=1.1020905255118
log(12.66)=1.1024337056813
log(12.67)=1.1027766148834
log(12.68)=1.1031192535457
log(12.69)=1.1034616220947
log(12.7)=1.103803720956
log(12.71)=1.104145550554
log(12.72)=1.1044871113124
log(12.73)=1.1048284036537
log(12.74)=1.1051694279993
log(12.75)=1.10551018477
log(12.76)=1.1058506743851
log(12.77)=1.1061908972634
log(12.78)=1.1065308538224
log(12.79)=1.1068705444787
log(12.8)=1.1072099696479
log(12.81)=1.1075491297447
log(12.82)=1.1078880251828
log(12.83)=1.1082266563749
log(12.84)=1.1085650237328
log(12.85)=1.1089031276673
log(12.86)=1.1092409685882
log(12.87)=1.1095785469044
log(12.88)=1.1099158630238
log(12.89)=1.1102529173534
log(12.9)=1.1105897102992
log(12.91)=1.1109262422664
log(12.92)=1.1112625136591
log(12.93)=1.1115985248804
log(12.94)=1.1119342763327
log(12.95)=1.1122697684173
log(12.96)=1.1126050015346
log(12.97)=1.1129399760841
log(12.98)=1.1132746924644
log(12.99)=1.113609151073
log(13)=1.1139433523068
log(13.01)=1.1142772965616
log(13.02)=1.1146109842322
log(13.03)=1.1149444157126
log(13.04)=1.1152775913959
log(13.05)=1.1156105116743
log(13.06)=1.1159431769391
log(13.07)=1.1162755875805
log(13.08)=1.1166077439882
log(13.09)=1.1169396465508
log(13.1)=1.1172712956558
log(13.11)=1.1176026916901
log(13.12)=1.1179338350396
log(13.13)=1.1182647260895
log(13.14)=1.1185953652238
log(13.15)=1.1189257528258
log(13.16)=1.1192558892779
log(13.17)=1.1195857749618
log(13.18)=1.119915410258
log(13.19)=1.1202447955464
log(13.2)=1.1205739312058
log(13.21)=1.1209028176145
log(13.22)=1.1212314551496
log(13.23)=1.1215598441875
log(13.24)=1.1218879851037
log(13.25)=1.1222158782728
log(13.26)=1.1225435240688
log(13.27)=1.1228709228644
log(13.28)=1.123198075032
log(13.29)=1.1235249809427
log(13.3)=1.1238516409671
log(13.31)=1.1241780554747
log(13.32)=1.1245042248343
log(13.33)=1.1248301494139
log(13.34)=1.1251558295805
log(13.35)=1.1254812657006
log(13.36)=1.1258064581395
log(13.37)=1.126131407262
log(13.38)=1.1264561134318
log(13.39)=1.126780577012
log(13.4)=1.1271047983648
log(13.41)=1.1274287778516
log(13.42)=1.127752515833
log(13.43)=1.1280760126687
log(13.44)=1.1283992687178
log(13.45)=1.1287222843384
log(13.46)=1.129045059888
log(13.47)=1.129367595723
log(13.48)=1.1296898921993
log(13.49)=1.1300119496719
log(13.5)=1.130333768495
log(13.51)=1.130655349022

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