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Log 116 (72)

Log 116 (72) is the logarithm of 72 to the base 116:

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Result:
Simply the Best Logarithm Calculator! Click To Tweet As you can see in our log calculator, log116 (72) = 0.89967076400852.

Calculate Log Base 116 of 72

To solve the equation log 116 (72) = 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 = 72, a = 116:
    log 116 (72) = log(72) / log(116)
  3. Evaluate the term:
    log(72) / log(116)
    = 1.39794000867204 / 1.92427928606188
    = 0.89967076400852
    = Logarithm of 72 with base 116
Here’s the logarithm of 116 to the base 72.

Additional Information

  • From the definition of logarithm b y = x ⇔ y = log b(x) follows that 116 0.89967076400852 = 72
  • 116 0.89967076400852 = 72 is the exponential form of log116 (72)
  • 116 is the logarithm base of log116 (72)
  • 72 is the argument of log116 (72)
  • 0.89967076400852 is the exponent or power of 116 0.89967076400852 = 72
BTW: Logarithmic equations have many uses in various contexts in science.

Frequently searched terms on our site include:

FAQs

What is the value of log116 72?

Log116 (72) = 0.89967076400852.

How do you find the value of log 11672?

Carry out the change of base logarithm operation.

What does log 116 72 mean?

It means the logarithm of 72 with base 116.

How do you solve log base 116 72?

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

What is the log base 116 of 72?

The value is 0.89967076400852.

How do you write log 116 72 in exponential form?

In exponential form is 116 0.89967076400852 = 72.

What is log116 (72) equal to?

log base 116 of 72 = 0.89967076400852.

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 116 of 72 = 0.89967076400852.

You now know everything about the logarithm with base 116, argument 72 and exponent 0.89967076400852.
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 Log116 (72).

Table

Our quick conversion table is easy to use:
log 116(x) Value
log 116(71.5)=0.89820478376286
log 116(71.51)=0.89823420370752
log 116(71.52)=0.89826361953836
log 116(71.53)=0.89829303125654
log 116(71.54)=0.8983224388632
log 116(71.55)=0.8983518423595
log 116(71.56)=0.89838124174658
log 116(71.57)=0.8984106370256
log 116(71.58)=0.89844002819769
log 116(71.59)=0.89846941526402
log 116(71.6)=0.89849879822571
log 116(71.61)=0.89852817708393
log 116(71.62)=0.89855755183981
log 116(71.63)=0.89858692249451
log 116(71.64)=0.89861628904917
log 116(71.65)=0.89864565150492
log 116(71.66)=0.89867500986292
log 116(71.67)=0.89870436412432
log 116(71.68)=0.89873371429024
log 116(71.69)=0.89876306036184
log 116(71.7)=0.89879240234026
log 116(71.71)=0.89882174022664
log 116(71.72)=0.89885107402211
log 116(71.73)=0.89888040372783
log 116(71.74)=0.89890972934493
log 116(71.75)=0.89893905087455
log 116(71.76)=0.89896836831783
log 116(71.77)=0.89899768167591
log 116(71.78)=0.89902699094993
log 116(71.79)=0.89905629614102
log 116(71.8)=0.89908559725033
log 116(71.81)=0.89911489427899
log 116(71.82)=0.89914418722813
log 116(71.83)=0.89917347609889
log 116(71.84)=0.89920276089242
log 116(71.85)=0.89923204160983
log 116(71.86)=0.89926131825227
log 116(71.87)=0.89929059082087
log 116(71.88)=0.89931985931677
log 116(71.89)=0.8993491237411
log 116(71.9)=0.89937838409498
log 116(71.91)=0.89940764037956
log 116(71.92)=0.89943689259597
log 116(71.93)=0.89946614074532
log 116(71.94)=0.89949538482877
log 116(71.95)=0.89952462484743
log 116(71.96)=0.89955386080244
log 116(71.97)=0.89958309269492
log 116(71.98)=0.89961232052601
log 116(71.99)=0.89964154429683
log 116(72)=0.89967076400852
log 116(72.01)=0.89969997966219
log 116(72.02)=0.89972919125898
log 116(72.03)=0.89975839880001
log 116(72.04)=0.8997876022864
log 116(72.05)=0.89981680171929
log 116(72.06)=0.8998459970998
log 116(72.07)=0.89987518842906
log 116(72.08)=0.89990437570818
log 116(72.09)=0.89993355893829
log 116(72.1)=0.89996273812052
log 116(72.11)=0.89999191325598
log 116(72.12)=0.9000210843458
log 116(72.13)=0.90005025139111
log 116(72.14)=0.90007941439302
log 116(72.15)=0.90010857335265
log 116(72.16)=0.90013772827112
log 116(72.17)=0.90016687914956
log 116(72.18)=0.90019602598909
log 116(72.19)=0.90022516879081
log 116(72.2)=0.90025430755586
log 116(72.21)=0.90028344228535
log 116(72.22)=0.90031257298039
log 116(72.23)=0.90034169964211
log 116(72.24)=0.90037082227162
log 116(72.25)=0.90039994087003
log 116(72.26)=0.90042905543847
log 116(72.27)=0.90045816597805
log 116(72.28)=0.90048727248988
log 116(72.29)=0.90051637497508
log 116(72.3)=0.90054547343476
log 116(72.31)=0.90057456787004
log 116(72.32)=0.90060365828202
log 116(72.33)=0.90063274467183
log 116(72.34)=0.90066182704056
log 116(72.35)=0.90069090538934
log 116(72.36)=0.90071997971928
log 116(72.37)=0.90074905003148
log 116(72.38)=0.90077811632706
log 116(72.39)=0.90080717860713
log 116(72.4)=0.90083623687279
log 116(72.41)=0.90086529112516
log 116(72.42)=0.90089434136534
log 116(72.43)=0.90092338759444
log 116(72.44)=0.90095242981357
log 116(72.45)=0.90098146802383
log 116(72.46)=0.90101050222634
log 116(72.47)=0.90103953242219
log 116(72.480000000001)=0.9010685586125
log 116(72.490000000001)=0.90109758079837
log 116(72.500000000001)=0.9011265989809

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