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Log 48 (122)

Log 48 (122) is the logarithm of 122 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 (122) = 1.2409639879709.

Calculate Log Base 48 of 122

To solve the equation log 48 (122) = 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 = 122, a = 48:
    log 48 (122) = log(122) / log(48)
  3. Evaluate the term:
    log(122) / log(48)
    = 1.39794000867204 / 1.92427928606188
    = 1.2409639879709
    = Logarithm of 122 with base 48
Here’s the logarithm of 48 to the base 122.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 48 1.2409639879709 = 122
  • 48 1.2409639879709 = 122 is the exponential form of log48 (122)
  • 48 is the logarithm base of log48 (122)
  • 122 is the argument of log48 (122)
  • 1.2409639879709 is the exponent or power of 48 1.2409639879709 = 122
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 122?

Log48 (122) = 1.2409639879709.

How do you find the value of log 48122?

Carry out the change of base logarithm operation.

What does log 48 122 mean?

It means the logarithm of 122 with base 48.

How do you solve log base 48 122?

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

What is the log base 48 of 122?

The value is 1.2409639879709.

How do you write log 48 122 in exponential form?

In exponential form is 48 1.2409639879709 = 122.

What is log48 (122) equal to?

log base 48 of 122 = 1.2409639879709.

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 122 = 1.2409639879709.

You now know everything about the logarithm with base 48, argument 122 and exponent 1.2409639879709.
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 (122).

Table

Our quick conversion table is easy to use:
log 48(x) Value
log 48(121.5)=1.2399031332281
log 48(121.51)=1.2399243930748
log 48(121.52)=1.2399456511719
log 48(121.53)=1.2399669075197
log 48(121.54)=1.2399881621186
log 48(121.55)=1.2400094149687
log 48(121.56)=1.2400306660704
log 48(121.57)=1.240051915424
log 48(121.58)=1.2400731630298
log 48(121.59)=1.240094408888
log 48(121.6)=1.2401156529989
log 48(121.61)=1.2401368953629
log 48(121.62)=1.2401581359801
log 48(121.63)=1.240179374851
log 48(121.64)=1.2402006119758
log 48(121.65)=1.2402218473547
log 48(121.66)=1.2402430809881
log 48(121.67)=1.2402643128762
log 48(121.68)=1.2402855430194
log 48(121.69)=1.2403067714179
log 48(121.7)=1.2403279980719
log 48(121.71)=1.2403492229819
log 48(121.72)=1.2403704461481
log 48(121.73)=1.2403916675707
log 48(121.74)=1.2404128872501
log 48(121.75)=1.2404341051865
log 48(121.76)=1.2404553213803
log 48(121.77)=1.2404765358316
log 48(121.78)=1.2404977485409
log 48(121.79)=1.2405189595083
log 48(121.8)=1.2405401687342
log 48(121.81)=1.2405613762189
log 48(121.82)=1.2405825819626
log 48(121.83)=1.2406037859656
log 48(121.84)=1.2406249882283
log 48(121.85)=1.2406461887508
log 48(121.86)=1.2406673875336
log 48(121.87)=1.2406885845768
log 48(121.88)=1.2407097798807
log 48(121.89)=1.2407309734457
log 48(121.9)=1.240752165272
log 48(121.91)=1.24077335536
log 48(121.92)=1.2407945437098
log 48(121.93)=1.2408157303218
log 48(121.94)=1.2408369151963
log 48(121.95)=1.2408580983335
log 48(121.96)=1.2408792797338
log 48(121.97)=1.2409004593974
log 48(121.98)=1.2409216373246
log 48(121.99)=1.2409428135156
log 48(122)=1.2409639879709
log 48(122.01)=1.2409851606906
log 48(122.02)=1.2410063316751
log 48(122.03)=1.2410275009246
log 48(122.04)=1.2410486684394
log 48(122.05)=1.2410698342198
log 48(122.06)=1.2410909982661
log 48(122.07)=1.2411121605785
log 48(122.08)=1.2411333211574
log 48(122.09)=1.2411544800031
log 48(122.1)=1.2411756371157
log 48(122.11)=1.2411967924957
log 48(122.12)=1.2412179461432
log 48(122.13)=1.2412390980586
log 48(122.14)=1.2412602482422
log 48(122.15)=1.2412813966942
log 48(122.16)=1.2413025434149
log 48(122.17)=1.2413236884046
log 48(122.18)=1.2413448316637
log 48(122.19)=1.2413659731922
log 48(122.2)=1.2413871129907
log 48(122.21)=1.2414082510592
log 48(122.22)=1.2414293873982
log 48(122.23)=1.2414505220079
log 48(122.24)=1.2414716548886
log 48(122.25)=1.2414927860405
log 48(122.26)=1.241513915464
log 48(122.27)=1.2415350431594
log 48(122.28)=1.2415561691268
log 48(122.29)=1.2415772933667
log 48(122.3)=1.2415984158792
log 48(122.31)=1.2416195366647
log 48(122.32)=1.2416406557234
log 48(122.33)=1.2416617730557
log 48(122.34)=1.2416828886618
log 48(122.35)=1.2417040025419
log 48(122.36)=1.2417251146965
log 48(122.37)=1.2417462251257
log 48(122.38)=1.2417673338298
log 48(122.39)=1.2417884408092
log 48(122.4)=1.2418095460641
log 48(122.41)=1.2418306495947
log 48(122.42)=1.2418517514014
log 48(122.43)=1.2418728514845
log 48(122.44)=1.2418939498442
log 48(122.45)=1.2419150464808
log 48(122.46)=1.2419361413946
log 48(122.47)=1.2419572345859
log 48(122.48)=1.2419783260549
log 48(122.49)=1.241999415802
log 48(122.5)=1.2420205038274

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