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Log 48 (153)

Log 48 (153) is the logarithm of 153 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 (153) = 1.299451489917.

Calculate Log Base 48 of 153

To solve the equation log 48 (153) = 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 = 153, a = 48:
    log 48 (153) = log(153) / log(48)
  3. Evaluate the term:
    log(153) / log(48)
    = 1.39794000867204 / 1.92427928606188
    = 1.299451489917
    = Logarithm of 153 with base 48
Here’s the logarithm of 48 to the base 153.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 48 1.299451489917 = 153
  • 48 1.299451489917 = 153 is the exponential form of log48 (153)
  • 48 is the logarithm base of log48 (153)
  • 153 is the argument of log48 (153)
  • 1.299451489917 is the exponent or power of 48 1.299451489917 = 153
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 153?

Log48 (153) = 1.299451489917.

How do you find the value of log 48153?

Carry out the change of base logarithm operation.

What does log 48 153 mean?

It means the logarithm of 153 with base 48.

How do you solve log base 48 153?

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

What is the log base 48 of 153?

The value is 1.299451489917.

How do you write log 48 153 in exponential form?

In exponential form is 48 1.299451489917 = 153.

What is log48 (153) equal to?

log base 48 of 153 = 1.299451489917.

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 153 = 1.299451489917.

You now know everything about the logarithm with base 48, argument 153 and exponent 1.299451489917.
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 (153).

Table

Our quick conversion table is easy to use:
log 48(x) Value
log 48(152.5)=1.2986059318238
log 48(152.51)=1.2986228701385
log 48(152.52)=1.2986398073425
log 48(152.53)=1.298656743436
log 48(152.54)=1.2986736784193
log 48(152.55)=1.2986906122923
log 48(152.56)=1.2987075450554
log 48(152.57)=1.2987244767086
log 48(152.58)=1.2987414072521
log 48(152.59)=1.2987583366859
log 48(152.6)=1.2987752650104
log 48(152.61)=1.2987921922255
log 48(152.62)=1.2988091183316
log 48(152.63)=1.2988260433286
log 48(152.64)=1.2988429672167
log 48(152.65)=1.2988598899962
log 48(152.66)=1.2988768116671
log 48(152.67)=1.2988937322295
log 48(152.68)=1.2989106516837
log 48(152.69)=1.2989275700298
log 48(152.7)=1.2989444872679
log 48(152.71)=1.2989614033981
log 48(152.72)=1.2989783184207
log 48(152.73)=1.2989952323357
log 48(152.74)=1.2990121451433
log 48(152.75)=1.2990290568436
log 48(152.76)=1.2990459674368
log 48(152.77)=1.2990628769231
log 48(152.78)=1.2990797853025
log 48(152.79)=1.2990966925753
log 48(152.8)=1.2991135987415
log 48(152.81)=1.2991305038014
log 48(152.82)=1.299147407755
log 48(152.83)=1.2991643106025
log 48(152.84)=1.299181212344
log 48(152.85)=1.2991981129798
log 48(152.86)=1.2992150125098
log 48(152.87)=1.2992319109344
log 48(152.88)=1.2992488082535
log 48(152.89)=1.2992657044675
log 48(152.9)=1.2992825995764
log 48(152.91)=1.2992994935803
log 48(152.92)=1.2993163864794
log 48(152.93)=1.2993332782739
log 48(152.94)=1.2993501689638
log 48(152.95)=1.2993670585494
log 48(152.96)=1.2993839470308
log 48(152.97)=1.2994008344081
log 48(152.98)=1.2994177206815
log 48(152.99)=1.2994346058511
log 48(153)=1.299451489917
log 48(153.01)=1.2994683728794
log 48(153.02)=1.2994852547385
log 48(153.03)=1.2995021354944
log 48(153.04)=1.2995190151472
log 48(153.05)=1.2995358936971
log 48(153.06)=1.2995527711443
log 48(153.07)=1.2995696474887
log 48(153.08)=1.2995865227307
log 48(153.09)=1.2996033968704
log 48(153.1)=1.2996202699078
log 48(153.11)=1.2996371418432
log 48(153.12)=1.2996540126767
log 48(153.13)=1.2996708824084
log 48(153.14)=1.2996877510385
log 48(153.15)=1.2997046185671
log 48(153.16)=1.2997214849944
log 48(153.17)=1.2997383503205
log 48(153.18)=1.2997552145455
log 48(153.19)=1.2997720776697
log 48(153.2)=1.299788939693
log 48(153.21)=1.2998058006158
log 48(153.22)=1.299822660438
log 48(153.23)=1.29983951916
log 48(153.24)=1.2998563767817
log 48(153.25)=1.2998732333034
log 48(153.26)=1.2998900887252
log 48(153.27)=1.2999069430473
log 48(153.28)=1.2999237962697
log 48(153.29)=1.2999406483927
log 48(153.3)=1.2999574994163
log 48(153.31)=1.2999743493408
log 48(153.32)=1.2999911981662
log 48(153.33)=1.3000080458927
log 48(153.34)=1.3000248925205
log 48(153.35)=1.3000417380496
log 48(153.36)=1.3000585824803
log 48(153.37)=1.3000754258127
log 48(153.38)=1.3000922680469
log 48(153.39)=1.3001091091831
log 48(153.4)=1.3001259492213
log 48(153.41)=1.3001427881618
log 48(153.42)=1.3001596260047
log 48(153.43)=1.3001764627502
log 48(153.44)=1.3001932983983
log 48(153.45)=1.3002101329492
log 48(153.46)=1.3002269664031
log 48(153.47)=1.3002437987601
log 48(153.48)=1.3002606300204
log 48(153.49)=1.3002774601841
log 48(153.5)=1.3002942892513
log 48(153.51)=1.3003111172221

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