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Log 138 (50)

Log 138 (50) is the logarithm of 50 to the base 138:

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Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log138 (50) = 0.79395607683296.

Calculate Log Base 138 of 50

To solve the equation log 138 (50) = x carry out the following steps.
  1. Apply the change of base rule:
    log a (x) = log b (x) / log b (a)
    With b = 10:
    log a (x) = log(x) / log(a)
  2. Substitute the variables:
    With x = 50, a = 138:
    log 138 (50) = log(50) / log(138)
  3. Evaluate the term:
    log(50) / log(138)
    = 1.39794000867204 / 1.92427928606188
    = 0.79395607683296
    = Logarithm of 50 with base 138
Here’s the logarithm of 138 to the base 50.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 138 0.79395607683296 = 50
  • 138 0.79395607683296 = 50 is the exponential form of log138 (50)
  • 138 is the logarithm base of log138 (50)
  • 50 is the argument of log138 (50)
  • 0.79395607683296 is the exponent or power of 138 0.79395607683296 = 50
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

What is the value of log138 50?

Log138 (50) = 0.79395607683296.

How do you find the value of log 13850?

Carry out the change of base logarithm operation.

What does log 138 50 mean?

It means the logarithm of 50 with base 138.

How do you solve log base 138 50?

Apply the change of base rule, substitute the variables, and evaluate the term.

What is the log base 138 of 50?

The value is 0.79395607683296.

How do you write log 138 50 in exponential form?

In exponential form is 138 0.79395607683296 = 50.

What is log138 (50) equal to?

log base 138 of 50 = 0.79395607683296.

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 base 138 of 50 = 0.79395607683296.

You now know everything about the logarithm with base 138, argument 50 and exponent 0.79395607683296.
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.
Thanks for visiting Log138 (50).

Table

Our quick conversion table is easy to use:
log 138(x) Value
log 138(49.5)=0.79191633289126
log 138(49.51)=0.7919573293188
log 138(49.52)=0.79199831746675
log 138(49.53)=0.79203929733844
log 138(49.54)=0.79208026893722
log 138(49.55)=0.79212123226642
log 138(49.56)=0.79216218732939
log 138(49.57)=0.79220313412946
log 138(49.58)=0.79224407266997
log 138(49.59)=0.79228500295424
log 138(49.6)=0.7923259249856
log 138(49.61)=0.79236683876738
log 138(49.62)=0.79240774430292
log 138(49.63)=0.79244864159552
log 138(49.64)=0.79248953064852
log 138(49.65)=0.79253041146522
log 138(49.66)=0.79257128404896
log 138(49.67)=0.79261214840304
log 138(49.68)=0.79265300453078
log 138(49.69)=0.79269385243549
log 138(49.7)=0.79273469212048
log 138(49.71)=0.79277552358905
log 138(49.72)=0.79281634684452
log 138(49.73)=0.79285716189017
log 138(49.74)=0.79289796872933
log 138(49.75)=0.79293876736528
log 138(49.76)=0.79297955780133
log 138(49.77)=0.79302034004076
log 138(49.78)=0.79306111408688
log 138(49.79)=0.79310187994297
log 138(49.8)=0.79314263761232
log 138(49.81)=0.79318338709822
log 138(49.82)=0.79322412840396
log 138(49.83)=0.79326486153282
log 138(49.84)=0.79330558648808
log 138(49.85)=0.79334630327302
log 138(49.86)=0.79338701189092
log 138(49.87)=0.79342771234506
log 138(49.88)=0.7934684046387
log 138(49.89)=0.79350908877512
log 138(49.9)=0.79354976475759
log 138(49.91)=0.79359043258938
log 138(49.92)=0.79363109227375
log 138(49.93)=0.79367174381397
log 138(49.94)=0.79371238721329
log 138(49.95)=0.79375302247499
log 138(49.96)=0.79379364960231
log 138(49.97)=0.79383426859852
log 138(49.98)=0.79387487946686
log 138(49.99)=0.79391548221059
log 138(50)=0.79395607683296
log 138(50.01)=0.79399666333721
log 138(50.02)=0.7940372417266
log 138(50.03)=0.79407781200437
log 138(50.04)=0.79411837417376
log 138(50.05)=0.79415892823801
log 138(50.06)=0.79419947420036
log 138(50.07)=0.79424001206404
log 138(50.08)=0.7942805418323
log 138(50.09)=0.79432106350835
log 138(50.1)=0.79436157709544
log 138(50.11)=0.7944020825968
log 138(50.12)=0.79444258001564
log 138(50.13)=0.7944830693552
log 138(50.14)=0.79452355061869
log 138(50.15)=0.79456402380935
log 138(50.16)=0.79460448893038
log 138(50.17)=0.794644945985
log 138(50.18)=0.79468539497644
log 138(50.19)=0.7947258359079
log 138(50.2)=0.79476626878259
log 138(50.21)=0.79480669360373
log 138(50.22)=0.79484711037453
log 138(50.23)=0.79488751909817
log 138(50.24)=0.79492791977789
log 138(50.25)=0.79496831241686
log 138(50.26)=0.7950086970183
log 138(50.27)=0.7950490735854
log 138(50.28)=0.79508944212136
log 138(50.29)=0.79512980262937
log 138(50.3)=0.79517015511262
log 138(50.31)=0.79521049957431
log 138(50.32)=0.79525083601762
log 138(50.33)=0.79529116444575
log 138(50.34)=0.79533148486186
log 138(50.35)=0.79537179726916
log 138(50.36)=0.79541210167081
log 138(50.37)=0.79545239807
log 138(50.38)=0.79549268646991
log 138(50.39)=0.7955329668737
log 138(50.4)=0.79557323928456
log 138(50.41)=0.79561350370566
log 138(50.42)=0.79565376014016
log 138(50.43)=0.79569400859123
log 138(50.44)=0.79573424906204
log 138(50.45)=0.79577448155575
log 138(50.46)=0.79581470607552
log 138(50.47)=0.79585492262452
log 138(50.48)=0.7958951312059
log 138(50.49)=0.79593533182282
log 138(50.5)=0.79597552447844
log 138(50.51)=0.7960157091759

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