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Log 48 (147)

Log 48 (147) is the logarithm of 147 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 (147) = 1.2891174012192.

Calculate Log Base 48 of 147

To solve the equation log 48 (147) = 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 = 147, a = 48:
    log 48 (147) = log(147) / log(48)
  3. Evaluate the term:
    log(147) / log(48)
    = 1.39794000867204 / 1.92427928606188
    = 1.2891174012192
    = Logarithm of 147 with base 48
Here’s the logarithm of 48 to the base 147.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 48 1.2891174012192 = 147
  • 48 1.2891174012192 = 147 is the exponential form of log48 (147)
  • 48 is the logarithm base of log48 (147)
  • 147 is the argument of log48 (147)
  • 1.2891174012192 is the exponent or power of 48 1.2891174012192 = 147
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 147?

Log48 (147) = 1.2891174012192.

How do you find the value of log 48147?

Carry out the change of base logarithm operation.

What does log 48 147 mean?

It means the logarithm of 147 with base 48.

How do you solve log base 48 147?

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

What is the log base 48 of 147?

The value is 1.2891174012192.

How do you write log 48 147 in exponential form?

In exponential form is 48 1.2891174012192 = 147.

What is log48 (147) equal to?

log base 48 of 147 = 1.2891174012192.

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 147 = 1.2891174012192.

You now know everything about the logarithm with base 48, argument 147 and exponent 1.2891174012192.
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 (147).

Table

Our quick conversion table is easy to use:
log 48(x) Value
log 48(146.5)=1.2882372716904
log 48(146.51)=1.2882549037007
log 48(146.52)=1.2882725345076
log 48(146.53)=1.2882901641112
log 48(146.54)=1.2883077925117
log 48(146.55)=1.2883254197093
log 48(146.56)=1.2883430457041
log 48(146.57)=1.2883606704963
log 48(146.58)=1.2883782940861
log 48(146.59)=1.2883959164735
log 48(146.6)=1.2884135376589
log 48(146.61)=1.2884311576423
log 48(146.62)=1.288448776424
log 48(146.63)=1.288466394004
log 48(146.64)=1.2884840103825
log 48(146.65)=1.2885016255598
log 48(146.66)=1.2885192395359
log 48(146.67)=1.2885368523111
log 48(146.68)=1.2885544638854
log 48(146.69)=1.2885720742591
log 48(146.7)=1.2885896834324
log 48(146.71)=1.2886072914053
log 48(146.72)=1.2886248981781
log 48(146.73)=1.2886425037509
log 48(146.74)=1.2886601081239
log 48(146.75)=1.2886777112972
log 48(146.76)=1.288695313271
log 48(146.77)=1.2887129140455
log 48(146.78)=1.2887305136209
log 48(146.79)=1.2887481119972
log 48(146.8)=1.2887657091747
log 48(146.81)=1.2887833051535
log 48(146.82)=1.2888008999338
log 48(146.83)=1.2888184935157
log 48(146.84)=1.2888360858995
log 48(146.85)=1.2888536770852
log 48(146.86)=1.2888712670731
log 48(146.87)=1.2888888558633
log 48(146.88)=1.2889064434559
log 48(146.89)=1.2889240298512
log 48(146.9)=1.2889416150492
log 48(146.91)=1.2889591990502
log 48(146.92)=1.2889767818544
log 48(146.93)=1.2889943634618
log 48(146.94)=1.2890119438726
log 48(146.95)=1.2890295230871
log 48(146.96)=1.2890471011053
log 48(146.97)=1.2890646779275
log 48(146.98)=1.2890822535538
log 48(146.99)=1.2890998279843
log 48(147)=1.2891174012192
log 48(147.01)=1.2891349732587
log 48(147.02)=1.289152544103
log 48(147.03)=1.2891701137521
log 48(147.04)=1.2891876822064
log 48(147.05)=1.2892052494659
log 48(147.06)=1.2892228155307
log 48(147.07)=1.2892403804012
log 48(147.08)=1.2892579440773
log 48(147.09)=1.2892755065593
log 48(147.1)=1.2892930678474
log 48(147.11)=1.2893106279417
log 48(147.12)=1.2893281868423
log 48(147.13)=1.2893457445495
log 48(147.14)=1.2893633010634
log 48(147.15)=1.2893808563841
log 48(147.16)=1.2893984105119
log 48(147.17)=1.2894159634468
log 48(147.18)=1.2894335151891
log 48(147.19)=1.2894510657388
log 48(147.2)=1.2894686150963
log 48(147.21)=1.2894861632616
log 48(147.22)=1.2895037102348
log 48(147.23)=1.2895212560162
log 48(147.24)=1.289538800606
log 48(147.25)=1.2895563440042
log 48(147.26)=1.289573886211
log 48(147.27)=1.2895914272267
log 48(147.28)=1.2896089670513
log 48(147.29)=1.289626505685
log 48(147.3)=1.289644043128
log 48(147.31)=1.2896615793805
log 48(147.32)=1.2896791144426
log 48(147.33)=1.2896966483144
log 48(147.34)=1.2897141809962
log 48(147.35)=1.289731712488
log 48(147.36)=1.2897492427902
log 48(147.37)=1.2897667719027
log 48(147.38)=1.2897842998258
log 48(147.39)=1.2898018265597
log 48(147.4)=1.2898193521044
log 48(147.41)=1.2898368764602
log 48(147.42)=1.2898543996273
log 48(147.43)=1.2898719216057
log 48(147.44)=1.2898894423957
log 48(147.45)=1.2899069619974
log 48(147.46)=1.2899244804109
log 48(147.47)=1.2899419976365
log 48(147.48)=1.2899595136742
log 48(147.49)=1.2899770285243
log 48(147.5)=1.289994542187
log 48(147.51)=1.2900120546623

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