Home » Logarithms of 252 » Log252 (138)

Log 252 (138)

Log 252 (138) is the logarithm of 138 to the base 252:

Calculator

log

Result:
Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log252 (138) = 0.89109627905089.

Calculate Log Base 252 of 138

To solve the equation log 252 (138) = 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 = 138, a = 252:
    log 252 (138) = log(138) / log(252)
  3. Evaluate the term:
    log(138) / log(252)
    = 1.39794000867204 / 1.92427928606188
    = 0.89109627905089
    = Logarithm of 138 with base 252
Here’s the logarithm of 252 to the base 138.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 252 0.89109627905089 = 138
  • 252 0.89109627905089 = 138 is the exponential form of log252 (138)
  • 252 is the logarithm base of log252 (138)
  • 138 is the argument of log252 (138)
  • 0.89109627905089 is the exponent or power of 252 0.89109627905089 = 138
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

What is the value of log252 138?

Log252 (138) = 0.89109627905089.

How do you find the value of log 252138?

Carry out the change of base logarithm operation.

What does log 252 138 mean?

It means the logarithm of 138 with base 252.

How do you solve log base 252 138?

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

What is the log base 252 of 138?

The value is 0.89109627905089.

How do you write log 252 138 in exponential form?

In exponential form is 252 0.89109627905089 = 138.

What is log252 (138) equal to?

log base 252 of 138 = 0.89109627905089.

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 252 of 138 = 0.89109627905089.

You now know everything about the logarithm with base 252, argument 138 and exponent 0.89109627905089.
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 Log252 (138).

Table

Our quick conversion table is easy to use:
log 252(x) Value
log 252(137.5)=0.89043983369403
log 252(137.51)=0.89045298597921
log 252(137.52)=0.89046613730796
log 252(137.53)=0.89047928768043
log 252(137.54)=0.89049243709675
log 252(137.55)=0.89050558555706
log 252(137.56)=0.8905187330615
log 252(137.57)=0.89053187961021
log 252(137.58)=0.89054502520333
log 252(137.59)=0.89055816984099
log 252(137.6)=0.89057131352335
log 252(137.61)=0.89058445625052
log 252(137.62)=0.89059759802267
log 252(137.63)=0.89061073883991
log 252(137.64)=0.8906238787024
log 252(137.65)=0.89063701761026
log 252(137.66)=0.89065015556365
log 252(137.67)=0.89066329256269
log 252(137.68)=0.89067642860753
log 252(137.69)=0.89068956369831
log 252(137.7)=0.89070269783516
log 252(137.71)=0.89071583101822
log 252(137.72)=0.89072896324763
log 252(137.73)=0.89074209452353
log 252(137.74)=0.89075522484605
log 252(137.75)=0.89076835421535
log 252(137.76)=0.89078148263155
log 252(137.77)=0.89079461009479
log 252(137.78)=0.89080773660521
log 252(137.79)=0.89082086216295
log 252(137.8)=0.89083398676815
log 252(137.81)=0.89084711042094
log 252(137.82)=0.89086023312147
log 252(137.83)=0.89087335486987
log 252(137.84)=0.89088647566628
log 252(137.85)=0.89089959551084
log 252(137.86)=0.89091271440369
log 252(137.87)=0.89092583234496
log 252(137.88)=0.89093894933479
log 252(137.89)=0.89095206537333
log 252(137.9)=0.8909651804607
log 252(137.91)=0.89097829459705
log 252(137.92)=0.89099140778251
log 252(137.93)=0.89100452001723
log 252(137.94)=0.89101763130134
log 252(137.95)=0.89103074163497
log 252(137.96)=0.89104385101827
log 252(137.97)=0.89105695945138
log 252(137.98)=0.89107006693442
log 252(137.99)=0.89108317346755
log 252(138)=0.89109627905089
log 252(138.01)=0.89110938368459
log 252(138.02)=0.89112248736878
log 252(138.03)=0.8911355901036
log 252(138.04)=0.89114869188918
log 252(138.05)=0.89116179272567
log 252(138.06)=0.89117489261321
log 252(138.07)=0.89118799155192
log 252(138.08)=0.89120108954195
log 252(138.09)=0.89121418658343
log 252(138.1)=0.89122728267651
log 252(138.11)=0.89124037782131
log 252(138.12)=0.89125347201798
log 252(138.13)=0.89126656526666
log 252(138.14)=0.89127965756748
log 252(138.15)=0.89129274892057
log 252(138.16)=0.89130583932608
log 252(138.17)=0.89131892878414
log 252(138.18)=0.8913320172949
log 252(138.19)=0.89134510485848
log 252(138.2)=0.89135819147502
log 252(138.21)=0.89137127714467
log 252(138.22)=0.89138436186755
log 252(138.23)=0.89139744564381
log 252(138.24)=0.89141052847358
log 252(138.25)=0.891423610357
log 252(138.26)=0.8914366912942
log 252(138.27)=0.89144977128533
log 252(138.28)=0.89146285033052
log 252(138.29)=0.8914759284299
log 252(138.3)=0.89148900558362
log 252(138.31)=0.89150208179181
log 252(138.32)=0.8915151570546
log 252(138.33)=0.89152823137214
log 252(138.34)=0.89154130474456
log 252(138.35)=0.89155437717199
log 252(138.36)=0.89156744865458
log 252(138.37)=0.89158051919245
log 252(138.38)=0.89159358878576
log 252(138.39)=0.89160665743462
log 252(138.4)=0.89161972513919
log 252(138.41)=0.89163279189959
log 252(138.42)=0.89164585771596
log 252(138.43)=0.89165892258844
log 252(138.44)=0.89167198651717
log 252(138.45)=0.89168504950228
log 252(138.46)=0.8916981115439
log 252(138.47)=0.89171117264218
log 252(138.48)=0.89172423279725
log 252(138.49)=0.89173729200925
log 252(138.5)=0.89175035027831
log 252(138.51)=0.89176340760457

Base 2 Logarithm Quiz

Take our free base 2 logarithm quiz practice to test your knowledge of the binary logarithm.

Take Base 2 Logarithm Quiz Now!
Scroll to Top