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Log 120 (164)

Log 120 (164) is the logarithm of 164 to the base 120:

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Result:
Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log120 (164) = 1.0652480885242.

Calculate Log Base 120 of 164

To solve the equation log 120 (164) = 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 = 164, a = 120:
    log 120 (164) = log(164) / log(120)
  3. Evaluate the term:
    log(164) / log(120)
    = 1.39794000867204 / 1.92427928606188
    = 1.0652480885242
    = Logarithm of 164 with base 120
Here’s the logarithm of 120 to the base 164.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 120 1.0652480885242 = 164
  • 120 1.0652480885242 = 164 is the exponential form of log120 (164)
  • 120 is the logarithm base of log120 (164)
  • 164 is the argument of log120 (164)
  • 1.0652480885242 is the exponent or power of 120 1.0652480885242 = 164
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

What is the value of log120 164?

Log120 (164) = 1.0652480885242.

How do you find the value of log 120164?

Carry out the change of base logarithm operation.

What does log 120 164 mean?

It means the logarithm of 164 with base 120.

How do you solve log base 120 164?

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

What is the log base 120 of 164?

The value is 1.0652480885242.

How do you write log 120 164 in exponential form?

In exponential form is 120 1.0652480885242 = 164.

What is log120 (164) equal to?

log base 120 of 164 = 1.0652480885242.

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 120 of 164 = 1.0652480885242.

You now know everything about the logarithm with base 120, argument 164 and exponent 1.0652480885242.
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 Log120 (164).

Table

Our quick conversion table is easy to use:
log 120(x) Value
log 120(163.5)=1.0646102936933
log 120(163.51)=1.0646230686937
log 120(163.52)=1.0646358429129
log 120(163.53)=1.0646486163509
log 120(163.54)=1.0646613890078
log 120(163.55)=1.0646741608838
log 120(163.56)=1.0646869319788
log 120(163.57)=1.064699702293
log 120(163.58)=1.0647124718266
log 120(163.59)=1.0647252405795
log 120(163.6)=1.0647380085519
log 120(163.61)=1.064750775744
log 120(163.62)=1.0647635421557
log 120(163.63)=1.0647763077871
log 120(163.64)=1.0647890726385
log 120(163.65)=1.0648018367098
log 120(163.66)=1.0648146000011
log 120(163.67)=1.0648273625127
log 120(163.68)=1.0648401242445
log 120(163.69)=1.0648528851966
log 120(163.7)=1.0648656453692
log 120(163.71)=1.0648784047623
log 120(163.72)=1.064891163376
log 120(163.73)=1.0649039212105
log 120(163.74)=1.0649166782658
log 120(163.75)=1.064929434542
log 120(163.76)=1.0649421900392
log 120(163.77)=1.0649549447576
log 120(163.78)=1.0649676986971
log 120(163.79)=1.064980451858
log 120(163.8)=1.0649932042402
log 120(163.81)=1.0650059558439
log 120(163.82)=1.0650187066693
log 120(163.83)=1.0650314567162
log 120(163.84)=1.065044205985
log 120(163.85)=1.0650569544757
log 120(163.86)=1.0650697021883
log 120(163.87)=1.0650824491229
log 120(163.88)=1.0650951952798
log 120(163.89)=1.0651079406588
log 120(163.9)=1.0651206852602
log 120(163.91)=1.0651334290841
log 120(163.92)=1.0651461721305
log 120(163.93)=1.0651589143995
log 120(163.94)=1.0651716558913
log 120(163.95)=1.0651843966058
log 120(163.96)=1.0651971365433
log 120(163.97)=1.0652098757038
log 120(163.98)=1.0652226140874
log 120(163.99)=1.0652353516942
log 120(164)=1.0652480885242
log 120(164.01)=1.0652608245777
log 120(164.02)=1.0652735598547
log 120(164.03)=1.0652862943552
log 120(164.04)=1.0652990280794
log 120(164.05)=1.0653117610274
log 120(164.06)=1.0653244931992
log 120(164.07)=1.065337224595
log 120(164.08)=1.0653499552148
log 120(164.09)=1.0653626850588
log 120(164.1)=1.065375414127
log 120(164.11)=1.0653881424196
log 120(164.12)=1.0654008699365
log 120(164.13)=1.065413596678
log 120(164.14)=1.0654263226442
log 120(164.15)=1.065439047835
log 120(164.16)=1.0654517722506
log 120(164.17)=1.0654644958912
log 120(164.18)=1.0654772187567
log 120(164.19)=1.0654899408473
log 120(164.2)=1.0655026621631
log 120(164.21)=1.0655153827042
log 120(164.22)=1.0655281024707
log 120(164.23)=1.0655408214626
log 120(164.24)=1.0655535396801
log 120(164.25)=1.0655662571232
log 120(164.26)=1.0655789737921
log 120(164.27)=1.0655916896869
log 120(164.28)=1.0656044048076
log 120(164.29)=1.0656171191543
log 120(164.3)=1.0656298327271
log 120(164.31)=1.0656425455262
log 120(164.32)=1.0656552575515
log 120(164.33)=1.0656679688033
log 120(164.34)=1.0656806792816
log 120(164.35)=1.0656933889865
log 120(164.36)=1.0657060979181
log 120(164.37)=1.0657188060764
log 120(164.38)=1.0657315134617
log 120(164.39)=1.0657442200739
log 120(164.4)=1.0657569259132
log 120(164.41)=1.0657696309796
log 120(164.42)=1.0657823352733
log 120(164.43)=1.0657950387944
log 120(164.44)=1.0658077415429
log 120(164.45)=1.0658204435189
log 120(164.46)=1.0658331447226
log 120(164.47)=1.065845845154
log 120(164.48)=1.0658585448132
log 120(164.49)=1.0658712437003
log 120(164.5)=1.0658839418154
log 120(164.51)=1.0658966391587

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