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Log 48 (162)

Log 48 (162) is the logarithm of 162 to the base 48:

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Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log48 (162) = 1.3142165237344.

Calculate Log Base 48 of 162

To solve the equation log 48 (162) = 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 = 162, a = 48:
    log 48 (162) = log(162) / log(48)
  3. Evaluate the term:
    log(162) / log(48)
    = 1.39794000867204 / 1.92427928606188
    = 1.3142165237344
    = Logarithm of 162 with base 48
Here’s the logarithm of 48 to the base 162.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 48 1.3142165237344 = 162
  • 48 1.3142165237344 = 162 is the exponential form of log48 (162)
  • 48 is the logarithm base of log48 (162)
  • 162 is the argument of log48 (162)
  • 1.3142165237344 is the exponent or power of 48 1.3142165237344 = 162
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

What is the value of log48 162?

Log48 (162) = 1.3142165237344.

How do you find the value of log 48162?

Carry out the change of base logarithm operation.

What does log 48 162 mean?

It means the logarithm of 162 with base 48.

How do you solve log base 48 162?

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

What is the log base 48 of 162?

The value is 1.3142165237344.

How do you write log 48 162 in exponential form?

In exponential form is 48 1.3142165237344 = 162.

What is log48 (162) equal to?

log base 48 of 162 = 1.3142165237344.

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 48 of 162 = 1.3142165237344.

You now know everything about the logarithm with base 48, argument 162 and exponent 1.3142165237344.
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 Log48 (162).

Table

Our quick conversion table is easy to use:
log 48(x) Value
log 48(161.5)=1.313418013773
log 48(161.51)=1.313434008186
log 48(161.52)=1.3134500016087
log 48(161.53)=1.3134659940413
log 48(161.54)=1.3134819854838
log 48(161.55)=1.3134979759364
log 48(161.56)=1.3135139653993
log 48(161.57)=1.3135299538724
log 48(161.58)=1.3135459413561
log 48(161.59)=1.3135619278503
log 48(161.6)=1.3135779133552
log 48(161.61)=1.313593897871
log 48(161.62)=1.3136098813977
log 48(161.63)=1.3136258639355
log 48(161.64)=1.3136418454844
log 48(161.65)=1.3136578260447
log 48(161.66)=1.3136738056165
log 48(161.67)=1.3136897841998
log 48(161.68)=1.3137057617948
log 48(161.69)=1.3137217384015
log 48(161.7)=1.3137377140203
log 48(161.71)=1.313753688651
log 48(161.72)=1.313769662294
log 48(161.73)=1.3137856349492
log 48(161.74)=1.3138016066169
log 48(161.75)=1.3138175772971
log 48(161.76)=1.3138335469899
log 48(161.77)=1.3138495156956
log 48(161.78)=1.3138654834141
log 48(161.79)=1.3138814501457
log 48(161.8)=1.3138974158905
log 48(161.81)=1.3139133806485
log 48(161.82)=1.3139293444199
log 48(161.83)=1.3139453072048
log 48(161.84)=1.3139612690033
log 48(161.85)=1.3139772298156
log 48(161.86)=1.3139931896418
log 48(161.87)=1.314009148482
log 48(161.88)=1.3140251063364
log 48(161.89)=1.3140410632049
log 48(161.9)=1.3140570190879
log 48(161.91)=1.3140729739853
log 48(161.92)=1.3140889278974
log 48(161.93)=1.3141048808241
log 48(161.94)=1.3141208327658
log 48(161.95)=1.3141367837224
log 48(161.96)=1.3141527336941
log 48(161.97)=1.314168682681
log 48(161.98)=1.3141846306833
log 48(161.99)=1.3142005777011
log 48(162)=1.3142165237344
log 48(162.01)=1.3142324687834
log 48(162.02)=1.3142484128483
log 48(162.03)=1.3142643559291
log 48(162.04)=1.314280298026
log 48(162.05)=1.3142962391391
log 48(162.06)=1.3143121792684
log 48(162.07)=1.3143281184143
log 48(162.08)=1.3143440565767
log 48(162.09)=1.3143599937557
log 48(162.1)=1.3143759299516
log 48(162.11)=1.3143918651644
log 48(162.12)=1.3144077993942
log 48(162.13)=1.3144237326412
log 48(162.14)=1.3144396649055
log 48(162.15)=1.3144555961872
log 48(162.16)=1.3144715264864
log 48(162.17)=1.3144874558032
log 48(162.18)=1.3145033841379
log 48(162.19)=1.3145193114904
log 48(162.2)=1.3145352378609
log 48(162.21)=1.3145511632496
log 48(162.22)=1.3145670876565
log 48(162.23)=1.3145830110818
log 48(162.24)=1.3145989335256
log 48(162.25)=1.314614854988
log 48(162.26)=1.3146307754692
log 48(162.27)=1.3146466949692
log 48(162.28)=1.3146626134882
log 48(162.29)=1.3146785310263
log 48(162.3)=1.3146944475836
log 48(162.31)=1.3147103631602
log 48(162.32)=1.3147262777564
log 48(162.33)=1.3147421913721
log 48(162.34)=1.3147581040075
log 48(162.35)=1.3147740156627
log 48(162.36)=1.3147899263379
log 48(162.37)=1.3148058360331
log 48(162.38)=1.3148217447486
log 48(162.39)=1.3148376524843
log 48(162.4)=1.3148535592405
log 48(162.41)=1.3148694650172
log 48(162.42)=1.3148853698146
log 48(162.43)=1.3149012736328
log 48(162.44)=1.3149171764719
log 48(162.45)=1.314933078332
log 48(162.46)=1.3149489792133
log 48(162.47)=1.3149648791159
log 48(162.48)=1.3149807780398
log 48(162.49)=1.3149966759853
log 48(162.5)=1.3150125729524
log 48(162.51)=1.3150284689412

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